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Published by mercury9299, 2019-07-31 15:36:45

Mercury Catalog 2019 Complete

Mercury Catalog 2019 Complete

Keywords: Mercury Catalog 2019 Complete

Contents

Mercury campany profile …………………………………………………………………………………………………………………………………………………… 1

How to specify Mercury products [ Quartz Crystal ] ……………………………………………………………………………………………… 2

[ Oscillators ] ……………………………………………………………………………………………… 3

[ Spread Spectrum Low EMI Oscillatror ] ………………………………………………………………………… 4

[ VCXO ] ……………………………………………………………………………………………… 5
[ VCTCXO ] ……………………………………………………………………………………………… 6

[ M.C.F. ] ……………………………………………………………………………………………… 7

Specifications

Crystal Units

SMD - - - Ceramic Leadless …………………………………………………………………………………………………………………………………… 8 ~ 9

SMD - - - Metal Housing Gull wing …………………………………………………………………………………………………………………………10 ~ 11

Thru-Hole - - - Metal Housing Type …………………………………………………………………………………………………………………………12 ~ 14

32.768 KHz SMD - - - Ceramic Leadless , Dip - - - tuning fork crystal ………………………………………………………………………… 15

Clock Oscillators [ product code " H " including CMOS , Differential LVPECL , Differential LVDS and Differential HCSL output ] ………… 16

Dip - - - Thru - Hole types [ H8 , H14 series ] ; SMD - - - Metal seal Types [ H43 series ] , 312 KHz ~ 200.0 MHz …………………………… 17

SMD - - - Ceramic Type [ 312 KHz ~ 200.0 MHz ] - - - SWO , H53 , H32 and H22 series …………………………………………… 18

( uA low current , 32.768 KHz ) Clock Oscillators [ AT-cut crystal for it's high frequency stability ] - - - HA series ………………………… 20

CMOS ( Ultra Low Jitter ) Clock Oscillators [ RMS Jitter 48 fsec ] , 20 MHz ~ 50MHz - - - HJ series …………………………… 21

( Ultra Low Jitter ) Clock Oscillators [ RMS Jitter 200 fsec ] , 150 MHz ~ 250MHz - - - HTJF578 / HTJF538 series …………………………… 22 ~ 23

( Wide Operating Temperature ) Clock Oscillators [ Over - 40 °C to +125 °C ] - - - HY series …………………………………………… 24

( Low Power ) Clock Oscillators - - - HG14 series , uA current consumption ……………………………………………………………………… 26

LVPECL ( Non - PLL ) - - - HPK_ series , 13.5 MHz ~ 200 MHz ……………………………………………………………………………………… 28

( Low Phase Jitter , High Frequency Range ) - - - HPQN [ 10 MHz ~ 1500 MHz , 0.6 pS ( typ. ) ] …………………………………………… 29

LVDS ( Non - PLL ) - - - HDK_ series , 13.5 MHz ~ 200 MHz …………………………………………………………………… 30

( Low Phase Jitter , High Frequency Range ) Clock Oscillators - - - HDQN [ 10 MHz ~ 1500 MHz , 0.6 pS ( typ. ) ] ………………… 31

HCSL ( Non - PLL ) - - - HCK_ series , 13.5 MHz ~ 200 MHz ……………………………………… 32

LVPECL CML ( Ultra Low Jitter ) Clock Oscillators [ RMS Jitter 150 fsec ] , 15 MHz ~ 2100MHz - - - H_JF578 series …………………………… 22 ~ 23
LVDS HCSL
(High Frequency Range) H_JF538 series

CMOS ( Spread Spectrum Low EMI ) Clock Oscillators , R , Y , P types , 3.5 MHz ~ 220 MHz - - - HM series ……………………………………… 34
( Switchable output ) Clock Oscillators [ Select f1 or f2 by Toggling Pin 1 ] - - - HC series ……………………………………… 38

CMOS LVPECL ( Switchable output ) Clock Oscillators [ Select f1 or f2 by Toggling Pin 1 ] - - - HC_QF series ………………… 39 ~ 40
LVDS ( 4 Frequencies Switchable ) Clock Oscillators [150fs RMS Jitter typ. ] - - - HC_JF series …………… 41 ~ 42
CMOS
LVPECL HCSL
LVDS CML

True Sine True Sine Wave Clock Oscillators ( 50 ohm load ) - - - HS series …………………………………………………………………………… 43 ~ 44

VCXOs ( Voltage Controlled Crystal Oscillators ) [ product code " G " ] ………… 45

0.625 MHz ~ 50.0 MHz VCXO - - - G series …………………………………………………………………………………… 46

CMOS ( Low Phase Jitter , High Frequency Range ) - - - GTQN [ 50 MHz ~ 250 MHz , 0.6 pS ( typ. ) ] …………………………………………… 49

( Ultra Low Jitter ) VCXO [ RMS Jitter 200 fsec ] , 15 MHz ~ 250MHz - - - GTJF578 / GTJF538 series …………………………………………5…0 ~ 51

LVPECL ( Low Phase Jitter , High Frequency Range ) - - - GPQN [ 10 MHz ~ 1500 MHz , 0.6 pS ( typ. ) ] …………………………………………… 52

LVDS ( Low Phase Jitter , High Frequency Range ) - - - GDQN [ 10 MHz ~ 1500 MHz , 0.6 pS ( typ. ) ] …………………………………………… 53

LVPECL CML ( Ultra Low Jitter ) Differential VCXO [ RMS Jitter 150 fsec ] , 15 MHz ~ 2100MHz - - - G_JF578 series …………… 50 ~ 51
LVDS
HCSL (High Frequency Range) G_JF538 series

True Sine True Sine Wave VCXO ( 50 ohm load ) - - - GS series ……………………………………………………………………………………55…~ 56

CMOS
LVPECL ( Switchable output ) Clock Oscillators [ Select f1 or f2 by Toggling Pin 1 ] - - - GC_QF series ………………… 57 ~ 58
LVDS

TCXOs ( Temperature Compensated Crystal Oscillators ) [ product code " M " ]

VCTCXOs ( Voltage Controlled TCXOs ) [ product code " VM " ]

Clipped SMD (VC)TCXO - - - Ceramic Leadless [ 6.4 MHz ~ 50.0 MHz ] - - - (V) M_ _S_ series ………………………………………………… 60
Sine
Dip TCXO - - - tuning fork crystal [ 6.4 MHz ~ 40.0 MHz ] - - - (V) M_ _S_ series ………………………………………………… 62
CMOS
KHz range (VC)TCXO ( 15pF ) - - - [ 20.0 KHz ~ 52.7 KHz , 32.768 KHz ] - - - (V)M_ _ T_ series ………………………………………………66
CMOS
LVPECL MHz range (VC)TCXO ( 15pF ) - - - [ 1.25 ~ 40.0 MHz ] - - - (V)M_ _ T_ series …………………………………………………………… 67

LVDS MHz range (VC)TCXO ( 15pF ) - - - [ 40.0 ~ 156 MHz ] - - - (V)ML_ _ T_ series ………………………………………………………………68

32.768 KHz TCXO [ nA Current Consumption ] - - - ME32T ( 3.2 * 2.5 * 1.0 mm ) series ………………………………………………69

( High Frequency Range ) (VC)TCXO [ 10 MHz ~ 1500 MHz , 0.8 pS ( typ. ) ] - - - MQN_ _ _ series ………………… 70 ~ 77

CMOS QuickXOTM [ Quick - Turn ] ( Programmable Devices ) ……………………………… 79
……………………………… 81
CMOS Clock Oscillators [ Short lead time. From 1 day to 1 week ] - - - HB series , 1 MHz ~ 200 MHz
LVPECL ( Spread Spectrum Low EMI ) Clock Oscillators - - - HMB series , B types , 3 MHz ~ 200 MHz

LVDS ( Quick Turn ) ( High Frequency Range ) Clock Oscillators [ 1.0 pS ( typ. ) ] - - - H_QF series , 10 MHz ~ 1500 MHz …………………83 ~ 84
CMOS
LVPECL ( Quick Turn ) ( High Frequency Range ) VCXO [ 1.0 pS ( typ. ) ] - - - G_QF series , 10 MHz ~ 1500 MHz ………………… 85 ~ 86
LVDS ( Quick Turn ) ( High Frequency Range ) TCXO [ 1.5 pS ( typ. ) ] - - - MQF_ _ _ series , 10 MHz ~ 1500 MHz ………………… 87 ~ 90
CMOS
LVPECL
LVDS

OCXOs ( Oven Controlled Crystal Oscillators ) [ product code " OC " ]

Thru - Hole [ Metal - can Type ] - - - OC12 , OC 13 , OC14 , OC18 , OC19 , OC32 , OC41 , OC51 series ………………………………………… 91 ~ 99

M. C. F. ( Monolithic Crystal Filters ) ………… 100

SMD - - - Ceramic Type ……………………………………………………………………………………………………………………………………………101

Thru-Hole - - - Metal - can Type ………………………………………………………………………………………………………………………102 ~ 104

Part Number Formats and Product Marking Rules …………………………………………………………………………………………………105 ~ 111

Embossed Tape and Reel Specifications ……………………………………………………………………………………………………112 ~ 114

Mercury www .mercury-crystal.com ■Taiwan : Tel (T8a8iw6)a-n2-:2T4e0l6:(-+2878769)-/2s-2a4le0s6--t2w7@79m/[email protected]

■U.S.A: TUeSl:A(1: )T-e9l0: 9(+-416)-69-0094-24766/-s0a4l2e7s-/ussa@[email protected]■oCmhina: TCelh: i(n8a6:)T-5e1l:2(-+58766)3-5-1821-05076/ 3sa-8le1s0-0cn/ @[email protected]

Mercury Company Profile

Taiwan Plant
Mercury Electronic Industrial Co., Ltd
瑪居禮電波工業股份有限公司

台灣新北市瑞芳區瑞芳工業區頂坪路31號

No. 31,Ting Ping Rd., Shui-Fong Ind. Park , Shui-Fong

District , New Taipei City , Taiwan , 22452

Tel : 886-2-2406-2779 Fax : 886-2-2496-0769

E-mail : [email protected]

Web site : www.mercury-crystal.com

● Established in 1973 .

● Proud to be a pioneer of the crystal industry in Taiwan .

● Corporate headquarters and volume production facility .

● IATF 16949 + ISO9001 and 14001 certified.

U.S.A. Plant

Mercury United Electronics , Inc.

9804 Crescent Center Dr., Unit 603, Rancho
Cucamonga,California 91730-5782 USA

Tel : 1-(909)-466-0427 Fax : 1-(909)-466-0762

E-mail : [email protected]

● Established in 1990 .

● Small volume production facility .

● R & D center .

● QuikXO Quick turn clock oscillators, VCXOs, TCXOs

clock oscillators , VCXOs , TCXOs and OCXOs .

China Office
Mercury Crystal Technology ( Kun Shan ) Inc.
瑪居禮石英晶體科技(昆山)有限公司

中國江蘇省昆山市開發區春旭路258號東安大樓401室
Room 401 Dongan Building Chunxu Road 258 ,
Development Zone Kunshan City
Tel : 86-(512)-5763-8100 Fax : 86-(512)-5763-8103
E-mail : [email protected]
● Established in 2002.
● The Sales Office.

Taiwan : Tel:(+886)-2-2406-2779 / [email protected]

USA: Tel: (M+1e)r-9c0u9r-4y66w-0w42w7./[email protected]■.coTmaiwan : TCehli(n8a8:6T)e-2l:-(2+48066)--2571729-5/7s6a3le-8s1-t0w0@/ [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected] ■-1C-hina: Tel: (86)-512-5763-8100 / [email protected]

How To Specify A Quartz Crystal

CO : Shunt Capacitance
C1 : Motional Capacitance
L1 : Motional Inductance
R1 : Equivalent Series Resistance
CL : Load Capacitance

Holder Type

A Basic Spec. must be specified

A-1 : Holder type: ____________________ □ Thru-Hole type □ SMD Gull Wing type □ SMD Leadless
A-2 : Frequency : ___________________MHz or __________________ KHz
A-3 : Circuit Condition : □ Series □ Parallel

If Series resonance : Assign “ S ” as circuit load .
If Parallel : Specify CL ( Load Capacitance ) ____________ pF ( Typical range is 8 to 32 pF ) .
A-4 : Calibration Tolerance: ± ____________ ppm ( max.) at 25°C
A-5 : Frequency Stability: ± _________ ppm ( max.) over ______°C to ______ °C
A-6 : Maximum Equivalent Series Resistance (ESR): _____________ ohms ( max. )

B Other Spec. If not specified MEC standards will be applied.

B-1 : Shunt Capacitance (Co) : ___________ pF (max.)
B-2 : Motional Capacitance (C1) :___________ fF ± ______ %
B-3 : Motional Inductance (L1) : ____________ mH ± ________ %
B-4 : Capacitance Ratio (Co/C1) : _____________ ± _________ %
B-5 : Trim Sensitivity : ______________ ppm / pF
B-6 : Frequency Pull Ability : When CL= _____ pF, ________ ppm ( max.) ; When CL= _____ pF, ________ ppm (min.)
B-7 : Drive Level : ______________ micro Watts (uW) (max.).
B-8 : Crystal cutting angle type : □ AT - cut □ SL - cut □ XT - cut
B-9 : Mode of Oscillation : □ Fundamental mode □ 3rd overtone □ 5th overtone
B-10 : Spurious: _________ dB (or ohms) (min.) in ± ___________ kHz range of the main mode
B-11 : Crystal Q: ________________ ( min.)
B-12 : Aging: ____________ ppm per year ( max.)
B-13 : Shock: ____________________________ ; Vibration: ______________________________

Part Number Format and Example

Example: X32 - 16.000 - 10P - 15 / 20 / -30+75 /100R = User to specify

- - -X32 16.000 10P 15 / 20 / -30+75 / 100R

(1) (2) (3) (4) (5) (6) (7)

(1) Package code ; (2) Frequency in MHz ; (3) Load Capacitance in pF or "S" for series resonance ; (4) Frequency tolerance at 25°C ; (5) Frequency stability ;

(6) Operating temperature range -30°C to +75°C in this example. Use " X " for -10°C ~ 60°C ; Use " Y " for -20°C ~ 70°C ; Use " I " for -40°C ~ 85°C' ; (7) ESR max.

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected] ■China: Tel: (86)-512-5763-8100 / [email protected]

2 Taiwan : Tel:(+886)-2-2406-2779 / [email protected]

USA: Tel: (+1)-909-466-0427 / [email protected] China: Tel: (+86)-512-5763-8100 / [email protected]

-2-

How To Specify A Crystal Oscillator

Output Wave Forms and Logics

Part Number Format : " H " - - - for Oscillators
" _ " - - - represents PRODUCT SERIES selections in table 1and 2 below .

Basic Spec. must be specified
1 : Holder type with output wave : ____________________ □ Thru-Hole type □ SMD type □ Gull Wing type

Table 1 - - - Square Wave Table 2 - - - Sine Wave
General Clock Oscillators
output wave H_ , SWO , HA , HY , HG14 , HM , Switchable output output load product series
□ CMOS HC , HCTQF
□ LVPECL HPK , HPQN HCPQF □ 50Ω load HS
□ LVDS HDK , HDQN HCDQF
□ HCSL
HCK

2 : Frequency : ____________________ MHz or ____________________ KHz
3 : Input Voltage : □ +5.0V □ +3.3V □ +3.0V □ +2.5V □ +1.8V □ +1.2V □ +1.0V □ others : _________________

4 : Frequency Stability : Stability / Temp . Commercial -10°C ~ +70 °C Industrial -40°C ~ +85 °C
□D
± 25ppm □A □E
□F
± 50ppm □B

± 100ppm □C

□ Custom ( ± ________ ppm over ________ to ________ ℃ )

5 : Output Logic “ 1 ” _______ V (min.) ; Output Logic “ 0 ” _______ V (max.)
6 : Rise time ( Tr ) and Fall time ( Tf ) : _______ nano seconds (max.) .
7 : Start-up time : _______ mini seconds (max.) .
8 : Current Consumption : _______ mA (max.) or _______ uA (max.).
9 : Symmetry (Duty Cycle) : □ Standard ( 50%±10% ) □Option ( 50%±5% ) [ Add " S " at the end of part number ] .
10 : Pin 1 options : □ No Connection □ Tri - state ( Output Enable ) □ Power-down ( Note : Tri-state is standard for SWO , H53 and H32 series ) .

Part Number Format and Example

Example: 3H43 - DT - 33.000 - S = User to specify ★ = Option

★★

3 H43 - D T- 33.000 -S

(1) (2) (3) (4) (5) (6)

(1) Supply voltage code : “ 3 ” for “+3.3V ; “ 5 ” for “+5.0V ;

(2) Package code ; (3) Frequency Stability ; (4) Tri-state option. Omit "T" if not required

(5) Center Frequency in MHz ; (6) Add " S " for 50% ± 5% duty cycle . Omit " S " if not required .

Mercury www .mercury-crystal.com ■TaiwTaaniw: aTnel:(T8e8l6:()+-828-264)-026--22470769-2/ 7s7a9le/s-stawle@[email protected]

■USUA.S: T.Ae:l:T(e+l1: )(-19)0-990-496-466-064-02472/7s/asleasle-uss-u@[email protected] ■CChhiinnaa::TTeel:l:(+(8866))--551122--55776633--88110000//ssaaleless--ccnn@@mmeerrccuurryy--ccrryysstatal.lc.coomm

-3-

How To Specify A EMI Reduction Spread Spectrum Clock Oscillator

Holder Type

Basic Spec. must be specified

1 : Holder type: ____________________ □ Thru-Hole type □ SMD type
2 : Frequency : ____________________ MHz
3 : Input Voltage : □ +2.5V , □ +3.3V
4 : Output Wave : Square Wave ( CMOS )

5 : Frequency Stability : Stability / Temp . Commercial -10°C ~ +70 °C Industrial -40°C ~ +85 °C

( Exclude frequency modulation ) ± 25ppm □A □D

± 50ppm □B □E

± 100ppm □ C □F

□ Custom ( ± ________ ppm over ________ to ________℃ )

6 : Group & Spread type : □ ±1.875 %
(1) □ Group R ( 250 ps cycle-to-cycle jitter ) :

□ Center spread : □ C0.5: ± 0.5 % □ C1.5 : ± 1.5 %
□ Down spread : □ D1.0 : -1.0 % □ D3.0 : - 3.0 %
(2) □ Group Y ( 100 ps cycle-to-cycle jitter ) :
□ Center spread : □ C0.5: ± 0.5 % □ C1.0: ± 1.0 % □ C1.5: ± 1.5 %
□ Down spread : □ D1.0 : - 1.0 % □ D2.0 : - 2.0 % □ D3.0 : - 3.0 %
(3) □ Group P ( 100 ps cycle-to-cycle jitter ) :
□ Center spread : □ ±0.25 % □ ±0.375 % □ ±0.625 % □ ±1.0 % □ ±1.25 % □ ±1.5 % □ ±1.75 %
□ Down spread : □ -0.5 % □ -0.75 % □ -1.25 % □ -2.0 % □ -2.5 % □ -3.0 % □ -3.5 % □ -3.75 %

Part Number Format and Example

Examples of Low EMI Oscillator : 3HM57-DT-33.000R-C0.5 = User to specify ★ = Option


3 HM57 -D T- 33.000 R- C0.5

(1) (2) (4) (5) (6) (7) (8)

(1) Supply voltage code : “ 3 ” for “+3.3V ; (2) Package code ; (3) RoHS compliance. Omit " G " is not required. ; (4) Frequency stability ;

(5) Tri-state option ( Tri - state is standard for group " R " and " Y " ; Tri - state is not available for group " P " ) ; (6) Frequency in MHz ; (7) Group ;

(8) Spread type & percentage ; " C " for center spread , " D " for down spread. C0.5 represents center spread ± 0.5% ( total 1% ).

Mercury www .mercury-crystal.com ■Taiwan : TelT(a8i8w6a)-n2:-2T4e0l:6(+-2878769)-2/ -s2a4le0s6--t2w7@79m/[email protected]
■U.S.AU: TSeAl:: (T1e)l-:9(0+91-)4-96069-0-446267-/0s4a2l7es/-suasl@[email protected]■omChina: TCehl:in(a8:6T)-e5l:1(2+-58766)-35-1821-05076/ 3s-a8le1s0-0cn/ @[email protected]

-4-

How To Specify A VCXO

Holder Type

Part Number Format : " G " - - - for VCXO
" _ " - - - represents PRODUCT SERIES selections in table 1and 2 below .

Basic Spec. must be specified

1 : Holder type : ____________________ □ Thru-Hole type □ Leadless SMD type □ Gull Wing type

Table 1 - - - Square Wave Table 2 - - - Sine Wave
General VCXOs
output wave Switchable output output load product series
□ CMOS G , GTQN GCTQF
□ LVPECL GPQN GCPQF □ 50Ω load GS
□ LVDS GDQN GCDQF

2 : Frequency : ____________________ MHz

3 : Input Voltage : □others : _____________□__+_5_._0_V___ □ +3.3V □ +1.8V
+1.65V ± 1.35V ( 0.3V ~ 3.0V ) +0.9V ± 0.72V ( 0.18V ~ 1.62V )
4 : Control voltage center and range : +2.5V ± 2V ( 0.5V ~ 4.5V )

5 : Frequency Stability : Stability / Temp . Commercial: -10°C ~ +70 °C Industrial: -40°C ~ +85 °C
□D
± 25ppm □A □E
□F
± 50ppm □B

± 100ppm □ C

□ Custom ( ± ________ ppm over ________ to ________ ℃ )

6 : Frequency deviation range : ± _____________ ppm □ min. □ max. □ typical ( ± 20% ) .
7 : Linearity : _________ % (max.)
8 : Input Impedance : _____________ KΩ (min.)
9 : Modulation band width : ± _____________ KHz (min.)

Part Number Format and Example

Examples of VCXO : 3G63 - DT - 150M - 27.000 = User to specify ★ = Option



3 G_63 - D T - 150M - 27.000

(1) (2) (3) (4) (5) (6)

(1) Supply voltage code : “ 18 ” for “+1.8V , “ 25 ” for “+2.5V , “ 3 ” for “+3.3V , “ 5 ” for +5.0V ; (2) Package code ;

(3) Frequency stability ; (4) Tri-state function ;

(5) Pulling range in ppm ( " N " : minimum , " M " : maximum , " T " : typical ) ; (6) Center Frequency in MHz

Mercury www .mercury-crystal.com ■TaiwTaaniw: aTnel: (T8e8l:6()+-828-264)0-26--22470769-2/ 7s7a9le/s-stawl@[email protected]

■USUA.S: T.Ae:l:T(e+l1: )(-19)0-990-496-466-064-02472/7s/asleasle-uss-u@[email protected] ■CChhininaa::TTeel:l:(+(8866))--551122--55776633--88110000//ssaaleless--ccnn@@mmeerrccuurryy--ccrryysstatal.lc.coomm

-5-

How To Specify A ( VC )TCXO

Holder Type

Part Number Format : " M " for TCXO ; " VM " for VCTCXO (TCXO with voltage control function)
" _ " - - - represents PRODUCT SERIES selections in table 1and 2 below .

Basic Spec. must be specified

1 : □ TCXO ( code " M " series ) □ VCTCXO ( code " VM " series )

2 : Holder type: ____________________ □ Thru-Hole type □ SMD type □ Gull Wing type

Output Wave type : " _ " - - - represents Package Code . See page 75 and 76 .

Clipped Sine Wave Square Wave

TCXO VCTCXO output product series
wave
M_S VM _ S □ CMOS TCXO - - - " M " VCTCXO - - - " VM "
□ PECL
□ LVDS M_T ML_T ME32T MQN326T VM_T VML_T

MQN326P -----

MQN326D

3 : Frequency : ____________________ MHz or ____________________ KHz
4 : Input Voltage : □ +5.0V □ +3.3V □ +3.0V □ +1.8V □ others : ______________________

5 : Frequency Stability : □ ± 1.0ppm □ ± 1.5ppm □ ± 2.0ppm
□ ± 2.5ppm □ ± 3.0ppm □ ± 5.0ppm

6 : Operating Temp. : □ 0 °C ~ +60 °C □ 0 °C ~ +70 °C □ -10 °C ~ +60 °C □ -20 °C ~ +70 °C
□ -30 °C ~ +60 °C □ -30 °C ~ +70 °C □ -40 °C ~ +85 °C

7 : ● [ " T " series , Square Wave ] : Output Voltage “ 1 ”: _______ V min.; Output Voltage “ 0 ”: _______ V (max.)
● [ " S " series , Clipped Sine Wave ] : Output Voltage Level : _______ Vp-p (min.)

8 : Start-up time : _______ mini seconds (max.) .
9 : Current Consumption : _______ mA (max.)
10 : ● Mechanical frequency tuning (MFT) range : ± _______ ppm ( min.). For TCXOs and VCTCXOs. ( No MFT for (V)M22 , (V)M32, (V)M53, (V)M57 packages . )

● Electrical frequency tuning range (EFT) : ± _______ ppm ( min.). For VCTCXOs only.
● Control voltage center and range : 1.5V ± 1.0V is standard for 5.0V, 3.3V, 1.5V supply voltages .

Part Number Format and Example

Examples of TCXO : VM39GS5-12.800-2.5/-30+75 = User to specify; ★ = Option

customer to specify

V M39 S 5- 12.800 - 2.5 / -30+75

(1) (2) (4) (5) (6) (7) (8)
(1) “ V ” for VCTCXO ; Omit 'V" if TCXO ; (2) Package code
(3) Wave form code “ S ” for clipped sine wave ; (4) Supply voltage code: “ 3 ” for +3.0V, “ 33 ” for “+3.3V, “ 5 ” for +5.0V ;

(5) Frequency in MHz ; (6) Frequency stability in ±ppm ; (7) Operating temperature range in °C. "-30+75" represents -30°C to +75°C operating temperature range.

Mercury www .mercury-crystal.com ■Taiwan : TelT(a8i8w6a)-n2:-2T4e0l:6(+-2878769)-2/ -s2a4le0s6--t2w7@79m/[email protected]

■U.S.AU: TSeAl:: (T1e)l-:9(0+91-)4-96069-0-446267-/0s4a2l7es/-suasl@[email protected]■omChina: TCehl:in(a8:6T)-e5l:1(2+-58766)-35-1821-05076/ 3s-a8le1s0-0cn/ @[email protected]

6 -6-

How To Specify A Monolithic Crystal Filter

Holder Type

Basic Spec. must be specified

A-1 : Holder type: _______________ □ SMD Leadless □ Thru-Hole type □ SMD Gull Wing type □ Jacket type

A-2 : Frequency : _______________ MHz □ 10.7 MHz ( 10.5 MHz ~ 11.000 MHz available only in 49T series )

□ 21.400 MHz □ 21.700 MHz □ 45.000 MHz ( fund. mode ) □ 45.000 MHz ( 3rd overtone )

A-3 : No. of poles : □ 2 poles □ 4 poles □ 6 poles □ 8 poles

A-4 : Pass Bandwidth : □ ±3.75 KHz □ ±4.5 KHz □ ±7.5 KHz □ ±12.0 KHz □ ±15.0 KHz min at 3 dB

A-5 : Stop Bandwidth : ± _________ KHz max at _________ dB and ± _________ KHz max at _________ dB

A-6 : Ripple : _____________ dB ( max. )

A-7 : Insertion Loss : _____________ dB ( max. )

A-8 : Guaranteed Attenuation : fo + _________ KHz to fo - __________ KHz min. at __________ dB

A-9 : Terminating Impedance : ______ _ Ω // ____________ pF

A-10 : Operating Temperature : ______ _ °C to ____________ °C

Part Number Format and Example

Examples of quartz crystal : 21.7M15DU5SMG = User to specify; ★ = Option

User to specify

21.7 M 15 D U5 SM

(1) (2) (3) (4) (5)
(1) Frequency code ; (2) Pass Bandwidth code ( " 7.5 " for ±3.75 KHz band width, " 15 " for ±7.5 KHz band width, " 30 " for ±15.0 KHz band width ) ;
(3) No. of poles ( " A " for 2 poles , " B " for 4 poles , " C " for 6 poles , " D " for 8 poles , " E " for 10 poles ) ;

(4) Package code ; (5) Gull Wing Type

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USA: Tel: (+1)-909-466-0427 / [email protected] China: Tel: (+86)-512-5763-8100 / [email protected]

-7-

Quartz Crystals

X11 X21 X22 X32 Surface Mount X11 , X21 , X22 , X32 X32 Quartz Crystals
Fundamental 3rd Overtone
[ 1.6 * 1.2 * 0.4 mm ] [ 2.0 * 1.6 * 0.5 mm ] [ 2.5 * 2.0 * 0.6 mm ] [ 3.2 * 2.5 * 0.7 mm ]

Features

Specifications

● The entire package can be grounded via the top metal lid and the two bottom pads
● Small footprint. Ideal for space constrained applications
● Exhibits extremely low aging with a high shock & vibration resistance

General Specifications X11 ( 1.6 * 1.2 * 0.4 mm ) X21 ( 2.0 * 1.6 * 0.5 mm ) X22 ( 2.5 * 2.0 * 0.6 mm ) X32 ( 3.2 * 2.5 * 0.7 mm )
24.0 ~ 48.0 MHz ( Fund. ) 10 ~ 54.0 MHz ( Fund. )
Item / Type 20.0 ~ 54.0 MHz ( Fund. ) 12.0 ~ 60.0 MHz ( Fund. ) 40 ~ 125 MHz ( 3rd Overtone )

Frequency Range AT - Cut / / Series or Parallel ( 8 to 32 pF ) resonance
10 μ W typical ( 100μ W max. )
Crystal Cut // Load Capacitance
Drive Level ± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C
Frequency Tolerance △F / F : ± 3 ppm / year ( max. )
Aging - 50°C to 105°C
Storage Temperature Range

ESR ( Equivalent Series Resistance )

X11 E. S. R. X21 E. S. R. X22 E. S. R. Frequency Range X32 Oscillator Mode
Frequency Range 120 Ω max. Frequency Range 120 Ω max. Frequency Range 300 Ω max. 8.0 ~ 9.9 MHz E. S. R. Fund. Mode
24.0 ~ 29.9 MHz 100 Ω max 20.0 ~ 23.9 MHz 100 Ω max 12.0 ~ 15.9 MHz 100 Ω max 600 Ω max 3rd Overtone
30.0 ~ 36.9 MHz 80 Ω max 24.0 ~ 29.9 MHz 80 Ω max 16.0 ~ 29.9 MHz 70 Ω max 10.0 ~ 11.9 MHz 200 Ω max
40.0 ~ 48.0 MHz 30.0 ~ 37.9 MHz 60 Ω max 30.0 ~ 60.0 MHz 12.0 ~ 29.9 MHz 100 Ω max
38.0 ~ 54.0 MHz 30.0 ~ 54.0 MHz 60 Ω max
40.0 ~ 200.0 MHz 80 Ω max

Frequency stability Vs Operating temperature range

Frequency stability Vs Operating temperature range

Stability code Temp. (ºC) \ ppm ± 5 ± 10 ± 15 ± 20 ± 25 ± 30 ○ : available ;
X ○ ○ ▲ : contact Mercury
Y -10 to 60°C ▲ ○ ○ ○ ○ ○
I ○ ○
-20 to 70°C ○○○

-40 to 85°C ○○

Outline Dimensions ( Unit : mm ) X21
X11

X22 X32

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USA: Tel: (+1)-909-466-0427 / [email protected] China: Tel: (+86)-512-5763-8100 / [email protected]

-8-

Quartz Crystals

Quartz Crystals X42 MJ MF MQ Surface Mount X42 , MJ , MF , MQ MJ , MQ
Fundamental 3rd Overtone
4.0 * 2.5 * 0.7 mm 5.0 * 3.2 * 0.75 mm 6.0 * 3.5 * 1.0 mm 7.0 * 5.0 * 1.0 mm

Features
Specifications
● Exhibits extremely low aging with a high shock and vibration resistance
● The entire package can be grounded via the top metal lid and the two bottom pads
● This low 0.7mm package height is ideal for height constrained applications

General Specifications

Item / Type X42 series MJ series MF series MQ series
Package Dimensions ( 4.0 * 2.5 * 0.7 mm ) ( 7.0 * 5.0 * 1.0 mm )
12.0 ~ 54.0 MHz ( Fund. ) ( 5.0 * 3.2 * 0.75 mm ) ( 6.0 * 3.5 * 1.0 mm ) 6.0 ~ 50.0 MHz ( Fund. )
Frequency Range 40.0 ~ 200.0 MHz ( 3rd ) 40.0 ~ 200.0 MHz ( 3rd )
8.0 ~ 52.0 MHz ( Fund. ) 8.0 ~ 50.0 MHz ( Fund. )
Crystal Cut
Load Capacitance 40.0 ~ 125.0 MHz ( 3rd ) 40.0 ~ 125.0 MHz ( 3rd )
Drive Level
Frequency Tolerance AT - Cut ; 3rd overtone
Aging
Storage Temp. Range Series or Parallel ( 8 to 32 pF ) resonance

10 μ W typical ( 100μ W max. )

± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C

△F / F : ± 3 ppm / year ( max. )

- 50°C to 105°C

ESR ( Equivalent Series Resistance )

X42 MJ Mode Freq. ( MHz ) MF Mode Freq. ( MHz ) MQ Mode
Freq. ( MHz ) E.S.R. Mode Freq. ( MHz ) E.S.R. Fund. 8.0 ~ 11.9 E.S.R. Fund. 6.0 ~ 8.0 E.S.R. Fund.
12.0 ~ 14.9 MHz 80 Ω 12.0 ~ 15.9 80 Ω 8.1 ~ 11.0 80 Ω
15.0 ~ 29.9 MHz 50 Ω 8.0 ~ 9.9 MHz 150 Ω 16.0 ~ 50.0 60 Ω 60 Ω 3rd
30.0 ~ 54.0 MHz 40 Ω Fund. 10.0 ~ 14.9 MHz 80 Ω 40 Ω 11.1 ~ 14.0 50 Ω
14.1 ~ 50.0 40 Ω
15.0 ~ 19.9 MHz 50 Ω 3rd 40.1 ~ 50.0 80 Ω
20.0 ~ 52.0 MHz 40 Ω 50.1 ~ 200.0 90 Ω
40.0 ~ 200.0 MHz 80 Ω

Frequency stability Vs Operating temperature range

Frequency stability vs Operating temperature range

Stability code Temp. (ºC) \ ppm ± 5 ± 10 ± 15 ± 20 ± 25 ± 30 ○ : available
○ ▲ : contact Mercury
X -10 to 60°C ○○○○○ ○

Y -20 to 70°C ▲○○○○

I -40 to 85°C ○○○

Outline Dimensions ( Unit : mm )

X42 MJ

MF MQ

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-9-

Quartz Crystals

M49 ML49 Surface Mount Crystals Fundamental 3rd Overtone Min. Max. Quartz Crystals
3.2 MHz 70 MHz
[ 12.4 * 4.5 * 4.0 mm ] [ 12.4 * 4.5 * 3.0 mm ]

Features

Specifications
● Withstands solder reflow and available in EIA-481A tape and reel
● AT-strip crystal inside. Optimized for low spurious.
● Lowest cost among all Mercury SMD crystals

General Specifications

Item / Type M49 ( 12.4 * 4.5 * 4.0mm ) series ML49 ( 12.4 * 4.5 * 3.0mm ) series

Frequency Range & Crystal Cut 3.2.000 ~ 48.000 MHz , AT-cut , Fundamental Mode ( see Table 1 )
27.000 ~ 70.000 MHz , AT-cut , 3rd overtone ( see Table 1 )
Load Capacitance
Drive Level Series or Parallel ( 8 to 32 pF ) resonance
Frequency Tolerance
Frequency Stability 100μ W typical ( 500μ W max. )
Aging
Storage Temperature Range ± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C

See Table 2

△F / F : ±3 ppm / year ( max. )

- 50°C to 105°C

Table 1 Table 2
Frequency stability Vs Operating temperature range
ESR ( Equivalent Series Resistance )

Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode Stability code Temp. (ºC) \ ppm ± 10 ± 15 ± 20 ± 25 ± 30

3.2 ~ 3.4 300 Ω 27.0 ~ 30.0 150 Ω X -10 to 60°C ○ ○ ○ ○ ○

3.5 ~ 6.0 120 Ω 30.1 ~ 50.0 100 Ω AT , 3rd Y -20 to 70°C ▲ ○ ○ ○ ○
6.1 ~ 10.0 60 Ω 50.1 ~ 70.0 80 Ω
AT , Fund.

I -40 to 85°C ○○○○

10.1 ~ 30.0 40 Ω ○ : available ; ▲ : contact Mercury

Outline Dimensions ( Unit : mm )

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-1100-

Quartz Crystals

Quartz Crystals MP4 , MP5 MP24 , MP25 SMD Fundamental 3rd Overtone Min. Max.
3.2 MHz 70 MHz
[ 12.9 * 4.5 * 4.8 ( 3.8 ) mm ] [ 11.4 * 5.0 * 4.8 ( 3.8 ) mm ]

Features

Specifications
● Designed for top board assembly and an one time solder reflow only
● Do not mount with the metal housing downward

General Specifications

Item / Type MP4 ( 12.9 * 4.5 * 3.8 mm ) series MP5 ( 12.9 * 4.5 * 4.8 mm ) series

Frequency Range & Crystal Cut MP24 ( 11.4 * 5.0 * 3.8 mm ) series MP25 ( 11.4 * 5.0 * 4.8 mm ) series

Load Capacitance 3.200 ~ 48.000 MHz , AT-cut , Fundamental Mode ( see Table 1 )
Drive Level
Frequency Tolerance 27.000 ~ 70.000 MHz , AT-cut , 3rd overtone ( see Table 1 )
Frequency Stability
Aging Series or Parallel ( 8 to 32 pF ) resonance
Storage Temperature Range
100μ W typical ( 500μ W max. )

± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C
See Table 2

△F / F : ±3 ppm / year ( max. )

- 50°C to 105°C

Table 1 Table 2
Frequency stability Vs Operating temperature range
ESR ( Equivalent Series Resistance )

Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode Stability code Temp. (ºC) \ ppm ± 10 ± 15 ± 20 ± 25 ± 30

3.2 ~ 3.4 300 Ω 27.0 ~ 30.0 150 Ω X -10 to 60°C ○ ○ ○ ○ ○

3.5 ~ 6.0 120 Ω 30.1 ~ 50.0 100 Ω AT , 3rd Y -20 to 70°C ▲ ○ ○ ○
AT , Fund. 50.1 ~ 70.0 80 Ω
I -40 to 85°C ○○○
6.1 ~ 10.0 60 Ω

10.1 ~ 30.0 40 Ω ○ : available ; ▲ : contact Mercury

Outline Dimensions ( Unit : mm ) [ MP24 ] ; [ MP25 ]
[ MP4 ] ; [ MP5 ]

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1-111-

Quartz Crystals

HUS HUSL Thru - Hole Crystals Fundamental 3rd Overtone Min. Max. Quartz Crystals
3.2 MHz 70 MHz
[ 10.7 * 4.3 * 3.5 mm ] [ 10.7 * 4.3 * 2.5 mm ]

Features

Specifications
● HUSL ( 2.5mm height ) & HUS ( 3.5mm height)
● Low cost and light weight

General Specifications HUSL ( 10.7 * 4.3 * 2.5mm ) series HUS ( 10.7 * 4.3 * 3.5mm ) series

Item / Type 3.2.000 ~ 48.000 MHz , AT-cut , Fundamental Mode ( see Table 1 )

Frequency Range & Crystal Cut 27.000 ~ 70.000 MHz , AT-cut , 3rd overtone ( see Table 1 )

Load Capacitance Series or Parallel ( 8 to 32 pF ) resonance
Drive Level
Frequency Tolerance 100μ W typical ( 500μ W max. )
Frequency Stability
Aging ± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C
Storage Temperature Range
See Table 2

△F / F : ±3 ppm ( max. )

- 50°C to 105°C

Table 1 Table 2
Frequency stability vs Operating temperature range
ESR ( Equivalent Series Resistance )
Stability code Temp. (ºC) \ ppm ± 10 ± 15 ± 20 ± 25 ± 30
Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode

3.2 ~ 3.4 300 Ω 27.0 ~ 30.0 150 Ω X -10 to 60°C ○ ○ ○ ○ ○

3.5 ~ 6.0 120 Ω 30.1 ~ 50.0 100 Ω AT , 3rd Y -20 to 70°C ▲ ○ ○ ○ ○
6.1 ~ 10.0 60 Ω 50.1 ~ 70.0 80 Ω
AT , Fund.

I -40 to 85°C ○○○○

10.1 ~ 30.0 40 Ω ○ : available ; ▲ : contact Mercury

Outline Dimensions ( Unit : mm )

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-1122-

Quartz Crystals

Quartz Crystals U1 , U5 U1MJ , U5MJ Thru - Hole Fund. 3rd O.T. 5th O.T. Min. Max.
1.0 MHz 200 MHz
[ 7.8 * 3.2 * 8.0 ( 6.0 ) mm ] [ 7.8 * 2.6 * 8.0 mm ]

Features
Specifications
● Round shaped AT-Cut crystal plate inside
● Up to 200 MHz using a 5th overtone crystal
● Annealed and pre-aged for low frequency drift over long-term operation

General Specifications

Item / Type U1 U5 U1MJ U5MJ
Frequency Range
Load Capacitance U1 & U1MJ : 1.0 ~ 1.2 MHz , 4.0 ~ 200.0 MHz ; U5 : 10.0 ~ 200 MHz
Drive Level
Series or Parallel ( 8 to 32 pF ) resonance
Frequency Tolerance
100μ W typical ( 500μ W max. )
Frequency Stability
Aging AT-cut : ± 10 ppm , ± 20 ppm or ± 30 ppm ( max.) at 25°C
Storage Temperature Range
SL-cut : ± 50 ppm ( max.) at 25°C

See Table 2

△F / F : ±3 ppm / year ( max. )

- 50°C to 105°C

Table 1

U1 & U1MJ ESR ( Equivalent Series Resistance ) U5 & U5MJ ESR ( Equivalent Series Resistance )

Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode Freq.(MHz) E.S.R. Osc. Mode

1.0 ~ 1.2 5K Ω SL , Fund. 11.0 ~ 12.9 40 Ω AT , Fund. 10.0 ~ 11.9 60 Ω 35.1 ~ 90.0 60 Ω AT , 3rd
6.0 ~ 6.9 100 Ω 13.0 ~ 45.0 25 Ω 12.0 ~ 14.9 50 Ω 90.1 ~ 135.0 40 Ω
AT , Fund.

7.0 ~ 7.9 90 Ω AT , Fund. 30.0 ~ 50.0 40 Ω AT , 3rd 15.0 ~ 35.0 30 Ω 90.1 ~ 159.0 100 Ω AT , 5th
8.0 ~ 8.9 80 Ω 50.1 ~ 100.0 50 Ω 160.0 ~ 200.0 80 Ω

9.0 ~ 10.9 90 Ω 80.0 ~ 200.0 80 Ω AT , 5th

Table 2 Frequency stability vs Operating temperature range

Stability code Temp. (ºC) \ ppm ± 5 ± 10 ± 15 ± 20 ± 25 ± 30 ± 50 ± 100 ( SL-cut ) ○ : available
X ○ ○ ▲ : contact Mercury
Y -10 to 60°C ○ ○ ○○○○ ○ ○
I ○ ○
-20 to 70°C ▲ ○ ○○○○

-40 to 85°C ▲ ○○○○

Outline Dimensions ( Unit : mm ) Metal jacket type ( U1MJ , U5MJ )
Thru - Hole type ( U1 , U5 )

H T1 T2 H W
8.0 ± 0.2 11.8 ± 0.2
U1 8.0 ± 0.2 2.2 ± 0.2 3.2 ± 0.2 U1MJ 6.0 ± 0.2 9.8 ± 0.2
U5MJ
U5 6.0 ± 0.2 2.2 ± 0.2 3.2 ± 0.2

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13-13-

Quartz Crystals

H49 Thru - Hole Crystals Fund. 3rd O.T. 5th O.T. Min. Max. Quartz Crystals
455 KHz 200 MHz
[ 10.7 * 4.5 * 13.6 mm ]

Features
Specifications
 Tight tolerance and stability. Ideal for communication equipment
● Up to 200 MHz using a 5th overtone crystal
● RoHS compliant

General Specifications

Item / Type H49
Frequency Range 455 KHz ~ 1.3MHz , 1.8 ~ 200.0MHz ( see Table 1 )
Load Capacitance
Drive Level Series or Parallel ( 8 to 32 pF ) resonance
100μ W typical ( 500μ W max. )
Frequency Tolerance
AT- cut : ± 10 ppm , ± 20 ppm or ± 30 ppm at 25°C
Frequency Stability SL-cut: ± 50 ppm at 25°C
Aging See Table 2
Storage Temperature Range
△F / F : ±2 ppm / year ( max. )
- 50°C to 105°C

Table 1

ESR ( Equivalent Series Resistance )

Freq. ( MHz ) Hold Type E.S.R. crystal cut and osc. Mode Freq. ( MHz ) Hold Type E.S.R. crystal cut and osc. Mode
1.0 ~ 1.3 H49 5K Ω 35 Ω
1.8 ~ 3.0 H49 400 Ω SL , Fund. 7.1 ~ 10.0 H49 25 Ω AT , Fund.
3.1 ~ 3.5 H49 150 Ω 20 Ω
3.6 ~ 5.0 H49 100 Ω 10.1 ~ 30.0 H49 60 Ω AT , 3rd
5.1 ~ 7.0 H49 50 Ω 70 Ω AT , 5th
AT , Fund. 30.1 ~ 45.0 H49
24.0 ~ 100.0 H49

80.0 ~ 160.0 H49

Table 2 Frequency stability vs Operating temperature range

Stability code Temp. (ºC) \ ppm ± 5 ± 10 ± 15 ± 20 ± 25 ± 30 ± 50 ± 100 ( SL-cut ) ○ : available
X ○ ○ ▲ : contact Mercury
Y -10 to 60°C ○ ○ ○○○ ○ ○ ○
I ○ ○
-20 to 70°C ▲ ○ ○○○ ○

-40 to 85°C ▲ ○○○ ○

Outline Dimensions ( Unit : mm )

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14
USA: Tel: (+1)-909-466-0427 / [email protected] China: Tel: (+86)-512-5763-8100 / [email protected]

-14-

Quartz Crystals

Quartz Crystals Surface Mount Thru - Hole type

X2012 X3215 T26 T38 32.768 KHz Frequency Tolerance options
± 5 ppm ± 10 ppm ± 20 ppm
[ 2.05 * 1.2 * 0.55 mm ] [ 3.2 * 1.5 * 0.8 mm ] [ 2.0∮ * 6.0 mm ] [ 3.0∮ * 8.0 mm ]

Features

Specifications
Ultra compact, thin, and light weight tuning fork crystal unit
● Excellent heat resistance and environmental characteristics
● Excellent electrical performance optimum for mobile communications,

OA ( office automation ) and AV ( audiovisual ) applications
● RoHS Comlipiant. Meets the re-flow profiling requirements using lead-free solder

General Specifications 32.768 KHz

Frequency Range Surface Mount Type Thru - Hole Type

Hold type X2012 X3215 T26 T38
Item / Type
Package sizes [ 2.05 * 1.2 * 0.55 mm ] [ 3.2 * 1.5 * 0.8 mm ] [ 2.0∮* 6.0 mm ] [ 3.0∮ * 8.0 mm ]
Shunt Capacitance
Equivalent series resistance 1.3 pF typ. / 1.5 pF max. 1.0 pF typ. / 1.6 pF max. 1.5 pF max. 0.9 pF max.
Temperature coefficient
Drive Level 80 KΩ max. 40 KΩ max. 35 KΩ max.
Operating Temperature Range
Storage Temperature Range - 0.04 x 10 -6 / °C 2 max. - 0.035 x 10 -6 / °C 2 max.
Crystal Cut
Load Capacitance 0.1 μ W typical ( 0.5 μ W max. ) 1.0 μ W typical
Frequency Tolerance
Turning POINT - 40 °C to 85 °C - 10 °C to 60 °C
Insulation resistance
- 40 °C to 125 °C - 40 °C to 85 °C

XT - Cut

7 pF , 9 pF or 12.5 pF

± 5 ppm , ± 10 ppm , ± 20 ppm ( max.) at 25°C

+ 25 °C ± 5 °C

500 MΩ min.

Outline Dimensions ( Unit : mm ) X3215
X2012

T26 T38

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-1155-

Mercury Crystal Oscillators ( XOs ) Products Lineup

General Clock Oscillators Selection Guide [ Square Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series
H ( Dip ) General purpose clock oscillators. 25 KHz to 160 MHz .
Square Wave H ( SMD ) 1.0 / 1.2 / 1.8 / 2.5 / 3.3 / 5.0
CMOS
HA General purpose clock oscillators. 25 KHz to 160 MHz .
Square Wave HJ
LVPECL HTJF 1.8 / 2.5 / 3.3 / 5.0 32.768 KHz , uA Current Consumption , Available Frequency Range : 27.3 ~ 100.0 KHz
HY
Square Wave 1.8 / 2.5 / 3.3 Ultra low phase jitter frequency 49.152MHz 48 fsec , Available Frequency Range : 20 ~ 50 MHz
LVDS HG14
1.8 / 2.5 / 3.3 Ultra low phase jitter frequency 250MHz 157 fsec , Available Frequency Range : 150 ~ 250 MHz Oscillators
Square Wave HPK
HCSL HPQN 1.8 / 2.5 / 3.0 / 3.3 / 5.0 Wide Operating Temperature Over -40 °C to +125 °C , 1.25 ~ 50.0 MHz
HDK
LVPECL HDQN 3.3 / 5.0 Low Power oscillators designed for battery-operated devices. Current consumption in the µA range .
LVDS 3.0V to 5.0V supply.1 Hz to 160 KHz, including the popular 32.768 KHz. X-cut tuning fork crystals used .
CML HCK
HCSL 3.3 13.5 MHz ~ 200 MHz , phase jitter : 0.2 ps(typ.) ,Phase Noise : 100K ( -144dBc/Hz) , 10M ( -155dBc/Hz)
HPJF
HDJF 2.5 / 3.3 150 MHz ~ 1,500 MHz , 0.6 pS Phase Jitter ( typical )
HQJF
HCJF 3.3 13.5 MHz ~ 200 MHz , phase jitter : 0.2 ps(typ.) ,Phase Noise : 100K ( -144dBc/Hz) , 10M ( -155dBc/Hz)

2.5 / 3.3 150 MHz ~ 1,500 MHz , 0.6 pS Phase Jitter ( typical )

3.3 13.5 MHz to 200.0 MHz , phase jitter : 0.2 ps(typ.) ,Phase Noise : 100K ( -144dBc/Hz ) , 10M ( -155dBc/Hz )

2.5 / 3.3 15 MHz ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )
2.5 / 3.3 15 MHz ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )
2.5 / 3.3 15 MHz ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )
2.5 / 3.3 15 MHz ~ 700 MHz , 150 fsec Phase Jitter ( typical )

EMI Reduction Spread Spectrum Clock Oscillators [ Square Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series
3.3 3.5 MHz ~ 160 MHz , Reduce EMI at least 7.0 dBc , phase Jitter ± 300 ps ( max.)
Square Wave R 3.3 8.0 MHz ~ 160 MHz , Reduce EMI at least 9.0 dBc , phase Jitter ± 150 ps ( max.)
HM Y 3.3 13 MHz ~ 220 MHz , Reduce EMI at least 7.0 dBc , phase Jitter ± 100 ps ( max.)
CMOS
P

2 Frequencies Switchable output Crystal Oscillators

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series
1.8 / 2.5 / 3.3 1 MHz ~ 200 MHz ,
CMOS HC 2.5 / 3.3 Phase Jitter ( peak-to-peak ) : 80 ps typical .
2.5 / 3.3
CMOS HCTQF 2.5 / 3.3 10 MHz ~ 250 MHz , Switchable output Oscillators

PECL HCPQF 1.5 pS Phase Jitter ( typical )

LVDS HCDQF 10 MHz ~ 1,500 MHz , Switchable output Oscillators

1.5 pS Phase Jitter ( typical )

10 MHz ~ 1,500 MHz , Switchable output Oscillators

1.6 pS Phase Jitter ( typical )

4 Frequencies Switchable output Crystal Oscillators

Output Wave Product Supply Voltage Product Description / Features

Output Logic Series 1.8 / 2.5 / 3.3 15 MHz ~ 250 MHz , 4 Frequencies Switchable, RMS Jitter : 200 ps typical .
CMOS HCTJF 2.5 / 3.3 15 MHz ~ 2,100 MHz , 4 Frequencies Switchable, RMS Jitter : 150 fses typical .
PECL HCPJF 2.5 / 3.3 15 MHz ~ 2,100 MHz , 4 Frequencies Switchable, RMS Jitter : 150 fses typical .
LVDS HCDJF 2.5 / 3.3 15 MHz ~ 700 MHz , 4 Frequencies Switchable, RMS Jitter : 150 fses typical .
HCSL HCCJF 2.5 / 3.3 15 MHz ~ 2,100 MHz , 4 Frequencies Switchable, RMS Jitter : 150 fses typical .
CML HCQJF

Clock Oscillators Selection Guide [ Sine Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series
3.3 10 MHz to 800.0 MHz , Output level is greater than 0 dBm into 50 Ω load .
Sine Wave HS 5.0 10 MHz to 156 MHz , Output level is greater than 0 dBm into 50 Ω load .

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-16-

Crystal Oscillators CMOS output

Thru - Hole SMD

H8 H14 H42 H43 TTL 1.0 V 1.8 V 3.3 V Min. Max.
CMOS 1.2 V 2.5 V 5 V 25 KHz 160 MHz

12.8 * 12.8 * 5.5 20.2 * 1.2.8 * 5.08 11.4 * 9.6 * 2.5 11.4 * 9.6 * 3.0

Oscillators Applications ● Fast Ethernet and Gigabit Ethernet clocks
● CPU , Graphics , Multimedia A / V clocks ● NTSC / PAL encoder / decoder clocks
● MPEG / DVD / HDTV clocks ● PLL / synthesizer clocks
● Laser engine pixel / set - top clocks ● Fibre channel and ADSL clocks
● SONET / SDH / ATM clocks

General Specifications [ TA = +25°C , VDD= at specified voltage , Load : 15 pF ]

Type Thru - Hole type SMD type
Model ( Dimensions ) H43 ( 11.4 * 9.6 * 3.0 mm )
H8 ( 12.8 * 12.8 * 5.5 mm ) H14 ( 20.2 * 12.8 * 5.08 mm )

Input Voltage ( VDD ) + 1.0V D.C.±5% + 1.2V D.C.±5% + 1.8V D.C.±5% + 2.5V D.C.±5% + 3.3 V D.C.±5% + 5.0V D.C.±10%
code is " 10 " code is " 12 " code is " 18 " code is " 25 " code is " 3 " code is " 5 "

Frequency Range 312 KHz ~ 50 MHz 25 KHz ~ 200 MHz 187 KHz ~ 125 MHz

Output Wave Form CMOS CMOS CMOS CMOS T T L / CMOS T T L / CMOS

Output Logic T T L 2.4 V ( min. ) 2.4 V ( min. )

High " 1 " CMOS 0.9 V ( min. ) 0.9 V ( min. ) 1.62 V ( min. ) 2.25 V ( min. ) 2.97 V ( min. ) 4.5 V ( min. )

Output Logic T T L 0.4 V ( max. ) 0.4 V ( max. )

Low " 0 " CMOS 0.1 V ( max. ) 0.1 V ( max. ) 0.18 V ( max. ) 0.25 V ( max. ) 0.33 V ( max. ) 0.5 V ( max. )

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the
Operating Temperature Range desired stability after the " C " or " I "
For example :
Frequency Stability Codes Commercial ( -10°C to +70°C ) A B C " C20 " ±20 ppm over -10°C to +70°C ;
" I30 " ± 30 ppm over -40°C to +85°C
Industrial ( -40°C to +85°C ) D E F

T T L 2 ~ 10 (LS) T T L gates

Output Load CMOS 15 pF typical; 30 pF load for frequencies up to 70 MHz ; Contact Mercury for 50 pF load

Rise Time ( Tr ) TTL 10 n sec.(max.) ; 3 n sec.(typical) . Measured between 0.4VDC ↔ 2.4VDC ( RL=390Ω ; CL = 15pF )
Fall Time ( Tf ) CMOS 10 n sec.(max.) ; 3 n sec.(typical) . Measured between 10% to 90% wave form ( CL=15pF )

Duty Cycle T T L 40% (min.) , 60% (max.) Measured at +1.4V

Start -Up Time (Ts) CMOS 50% ± 10 % of wave form [ 50% ± 5% is also available , add " S " at the end of the part number ]
Current Consumption
Storage Temperature 10 m sec. (max.) ; 5 m sec. ( typical )
Aging
10 ~ 45 mA ( frequency dependent )
Tri-State Option.
- 50°C to 100°C

± 5.0 ppm per year ( max.)

Output is high impedance when " 0 " is applied to pin 1 .
Disable time is 150 n sec. max.
Add " T " in part number for Tri-State option

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-17-

Crystal Oscillators CMOS output

Surface Mount type

H22 H32 H53 SWO TTL 1.0 V 1.8 V 3.3 V Min. Max.
CMOS 1.2 V 2.5 V 5 V 25 KHz 160 MHz
2.5 * 2.0 * 0.95 7.0 * 5.0 * 1.4
3.2 * 2.5 * 1.0 5.0 * 3.2 * 1.2

Applications ● Fast Ethernet and Gigabit Ethernet clocks
● CPU , Graphics , Multimedia A / V clocks ● NTSC / PAL encoder / decoder clocks
● MPEG / DVD / HDTV clocks ● PLL / synthesizer clocks
● Laser engine pixel / set - top clocks ● Fibre channel and ADSL clocks
● SONET / SDH / ATM clocks
Available
Frequency Range

by Voltage

Oscillators
General Specifications [ TA = +25°C , VDD= at specified voltage , Load : 15 pF ]

Model " H22 " ; " H32 " ; " H53 " and " SWO " series [ Output Logic : T T L / CMOS ]

" H22 " series " H32 " series " H53 " series " SWO " series

Dimensions 2.5 x 2.0 x 0.95 mm 3.2 x 2.5 x 1.0 mm 5.0 x 3.2 x 1.2 mm 7.0 x 5.0 x 1.4 mm

----- 1.0 V 0.25 MHz ~ 50 MHz 1.0 V 0.25 MHz ~ 50 MHz 1.0 V 0.25 MHz ~ 50 MHz
1.2 V 1.2 V 1.2 V

1.8 V 1.8 V 1.8 V 32.768 KHz 1.8 V 32.768 KHz

2.5 V 0.156 MHz ~ 80 MHz 2.5 V 32.768 KHz 2.5 V 0.312 MHz ~ 160 MHz 2.5 V 0.312 MHz ~ 160 MHz
3.3 V 3.3 V 0.312 MHz ~ 160 MHz 3.3 V 32.768 KHz 3.3 V 32.768 KHz

0.312 MHz ~ 160 MHz 0.312 MHz ~ 160 MHz

----- 5.0 V 1.75 MHz ~ 50 MHz 5.0 V 0.375 MHz ~ 100 MHz 5.0 V 0.375 MHz ~ 100 MHz

Supply Voltage ( VDD ) +1.0 V D.C.±5% +1.2 V D.C.±5% +1.8 V D.C.±5% +2.5 V D.C.±5% +3.3 V D.C.±5% +5.0 V D.C.±10%
code is " 10 " code is " 12 " code is " 18 " code is " 25 " code is " 3 " code is " 5 "

High "1" ( 90% of VDD min. ) 0.9 V min. 0.9 V min. 1.62 V min. 2.25 V min. 2.97 V min. 4.5 V min.

Logic Low "0" (10% of VDD max. ) 0.1 V max. 0.1 V max. 0.18 V max. 0.25 V max. 0.33 V max. 0.5 V max.
Current Consumption
1.0 ~ 1.5 MHz 1.0 ~ 1.5 MHz 1.0 ~ 1.5 MHz 0.3 ~ 1.5 MHz 0.3 ~ 1.5 MHz 0.3 ~ 1.5 MHz
4 mA max. 4 mA max. 5 mA max. 5 mA max. 5 mA max. 5 mA max.

1.5 ~ 20 MHz 1.5 ~ 20 MHz 1.5 ~ 20 MHz 1.5 ~ 20 MHz 1.5 ~ 20 MHz 1.5 ~ 20 MHz
4 mA max. 4 mA max. 8 mA max. 8 mA max. 8 mA max. 10 mA max.
20 ~ 50 MHz 20.0 ~ 50 MHz
20.0 ~ 60 MHz 20.0 ~ 60 MHz 20.0 ~ 50 MHz 15 mA max. 20.0 ~ 50 MHz 20 mA max.
4 mA max. 4 mA max. 15 mA max. 15 mA max. 50.1 ~ 125 MHz
50.1 ~ 160 MHz 40 mA max.
----- ----- 50.1 ~ 160 MHz 25 mA max. 50.1 ~ 160 MHz
22 mA max. 35 mA max.

6 n sec. ( max. ) 6 n sec. ( max. ) 7 n sec. ( max. ) 7 n sec. ( max. ) 10 n sec. ( max. ) 10 n sec. ( max. )

Rise Time ( Tr ) / Fall Time ( Tf )

Measured between 10% ↔ 90% of wave form ( CL = 15pF )

Frequency Stability Codes Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the
Operating Temperature Range A B C desired stability after the " C " or " I "
D E F For example :
Commercial ( -10°C to +70°C ) " C20 " ±20 ppm over -10°C to +70°C ;
" I30 " ± 30 ppm over -40°C to +85°C
Industrial ( -40°C to +85°C )

Load 15 pF ; ( 30 pF and 50 pF load are also available for +3.3V and +5.0V VDD)
Duty Cycle
Start -up Time ( Ts ) Standard: 50% ± 10%; Option: 50% ± 5%. Please add "-S" at the end of the part number for ± 5% .
Storage Temperature
Aging 1.0 ~ 32.0 MHz : 5 m sec. ( max. ) ; 32.0 ~ 160.0 MHz : 10 m sec. ( max. )

Tri-state Function on pad No. 1 - 50°C to 100°C

± 3 ppm per year (max.)
Output is high impedance when " 0 " is applied to pin 1 .
Disable time is 150 n sec. max.
Add " T " in part number for Tri-State option

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-18-

Clock Oscillators [ T T L / CMOS ] CMOS output

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs [ H32 ]
[ H22 ]

Oscillators [ H_53 ] [ SWO ]

[ HTQN5361 ] [ HTQN5761 ]

[ H43 ] [ H8 ]

[ H14 ]

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-19-

Crystal Oscillators [ 32.768 KHz , 27.3 ~ 100.0 KHz ] CMOS output

HA _ _ 32.768 KHz SMD LVCMOS 1.8 V 2.5 V Min. Max.
uA Current Consumption 3.3 V 5.0 V 27.3 KHz 100 KHz

Features Oscillators
● Features an AT-Cut crystal for high frequency stability, while providing a low micro Amp ( µA )

current consumption that would normally only be available from an X-Cut tuning fork crystal
● 32.768 KHz is popular for Real Time Clocks and other timing applications
● For even tighter frequency stability ( ± 5 ppm over -40 to 85 °C )

and lower current consumption ( 1.2 uA at 3.3V ) , please contact Mercury

General specifications of all available packages , at Ta=+25°C , CL=15pF

Model [ Output Logic ] HA32 " HA " series [ LVCMOS ] HA57
Output Logic 3.2 * 2.5 * 1.0 mm CMOS ( Square Wave ) 7.0 * 5.0 * 1.4 mm
Type HA53
Dimensions 5.0 * 3.2 * 1.2 mm
32.768 KHz ( standard)
Frequency Output Range
27.3 KHz (Min.) 100 KHz (Max.)
Supply Voltage VDD
Current Consumption 1.8 VDD ± 5% 2.5 VDD ± 5% 3.3 VDD ± 5% 5.0 VDD ± 5%
( 32.768 KHz , Load 15pF )
Output Logic " High " , " 1 " 32 uA ( typical ) 32 uA ( typical ) 33 uA ( typical ) 36 uA ( typical )
Output Logic " Low " , " 0 "
1.62 V ( min.) 2.25 V ( min.) 2.97 V ( min.) 4.5 V min.
Frequency Stability Codes 0.18 V ( max.) 0.25 V ( max.)
Frequency Stability over ± 25 ppm ± 50 ppm 0.33 V ( max.) 0.5 V max.
Operating Temperature Range
Commercial ( -10°C to +70°C ) AB ± 100 ppm If non-standard , please enter the
DE C desired stability after the " C " or " I "
Industrial ( -40°C to +85°C ) F For example :
" C20 " ± 20 ppm over -10°C to +70°C ;
" I30 " ± 30 ppm over -40°C to +85°C

Rise Time ( Tr ) / Fall Time ( Tf ) 12 nS (Max.)
10 % ←→ 90 % waveform

Load 15 pF
Start-up Time 1.0 m sec. ( typical ) ; 5.0 m sec. ( max.)
Duty Cycle 50% ± 5%
70% of VDD ( min. ) to enable output.
Output Enable on Pad 1 30% of VDD ( max.) to disable output.
-55°C to + 125°C
Storage Temperature ± 3 ppm max. first year ; ± 2 ppm max. per year thereafter
Aging at Ta=+25ºC

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

[ HA32 ] [ HA53 ] [ HA57 ]

Pin connections : pin 2 : Ground Pin connections : pin 2 : Ground Pin connections : pin 2 : Ground
pin 1 : Enable / Disable pin 4 : Supply Voltage ppinin11: :EEnnaabblele/ /DDisisaabblele pin 4 : Supply Voltage pin 1 : Enable / Disable pin 4 : Supply Voltage
pin 3 : Output ppinin33: :OOuutptpuut t pin 3 : Output

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-20-

Crystal Oscillators [ 20.0 ~ 50.0 MHz ] CMOS output

HJ _ _ Ultra low phase noise SMD LVCMOS 1.8 V 2.5 V 3.3 V Min. Max.
RMS Phase Jitter 48 fsec 20 MHz 50 MHz

Oscillators Features

● The HJ series is ultra low phase noise crystal oscillators.
● Compared with standard oscillator, Mercury’s HJ series has much

better phase noise and jitter. HJ series with output frequency 49.152MHz
has phase jitter 48 fsec (RMS, 12 KHz to 20 MHz) when VDD at 3.3V.

General specifications of all available packages , at Ta=+25°C , CL=15pF

Model [ Output Logic ] HJ32 " HJ " series [ LVCMOS ] HJ57
Type 3.2 * 2.5 * 1.0 mm HJ53 7.0 * 5.0 * 1.4 mm
Dimensions 20.0 ~ 50.0 MHz 20.0 ~ 50.0 MHz
Available Frequency Range 5.0 * 3.2 * 1.2 mm
20.0 ~ 50.0 MHz
Supply Voltage VDD
Current Consumption 1.8 VDD ± 10% +2.5 VDD ± 10% +3.3 VDD ± 10%
Output Logic " High " , " 1 " Voltage code is " 18 " Voltage code is " 25 " Voltage code is " 3 "
Output Logic " Low " , " 0 " 7 mA ( typical ) ; 10 mA ( max.)
Rise Time ( Tr ) / Fall Time ( Tf ) 3 mA ( typical ) ; 5 mA ( max.) 4.7 mA ( typical ) ; 7 mA ( max.)
2.97 V ( min.)
Frequency Stability Codes 1.62 V ( min.) 2.25 V ( min.) 0.33 V ( max.)
1.5 ns ( typical ) ; 10 ns ( max.)
0.18 V ( max.) 0.25 V ( max.)
If non-standard , please enter the
5.0 ns ( typical ) ; 10 ns ( max.) 2.0 ns ( typical ) ; 10 ns ( max.) desired stability after the " C " or " I "
For example :
Measured between 10 % ←→ 90 % of VDD ( CL = 15 pF ) " C20 " ± 20 ppm over -10°C to +70°C ;
" I30 " ± 30 ppm over -40°C to +85°C
Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm
Operating Temperature Range

Commercial ( -10°C to +70°C ) A B C

Industrial ( -40°C to +85°C ) DEF

Supply Voltage vs Freq. Sensitivity ± 1.0 ppm ( max.)
Load
15 pF ( CMOS )

Start-up Time 0.8 m sec. ( typical )

5.0 m sec. ( max.)

Duty Cycle 50% ± 5%
Tri-state Function on pad No. 1
High Enable

Enable / Disable Time Enable : 1 m sec. ( max.)

Disable : 201 n sec. ( max.)

Storage Temperature -55°C to + 150°C

Aging at Ta=+25ºC ± 3 ppm max. first year

± 2 ppm max. per year thereafter

RMS Jitter [49.152MHz , 3.3V] 48 fsec ( typical ) [ 12KHz to 20MHz ]

SSB Phase Noise Offect 10 Hz 100 Hz 1 KHz 10 KHz 100 KHz 1 MHz 10 MHz 20 MHz
[ 49.152MHz , 3.3V ] dBc/Hz -91 -126 -141 -153 -166 -171 -172 -174

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

[ HJ32 ] [ HJ53 ] [ HJ57 ]

Pin connections : Pin connections : Pin connections :

pin 1 : Enable / Disable pin 2 : Ground pin 1 : Enable / Disable pin 2 : Ground pin 1 : Enable / Disable pin 2 : Ground

pin 3 : Output pin 4 : Supply Voltage pin 3 : Output pin 4 : Supply Voltage pin 3 : Output pin 4 : Supply Voltage

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-21-

High Frequency Ultra-low Jitter Crystal Oscillators [ Quick - turn Clock Oscillators , 150 ~ 2,100 MHz ]

H_JF 150 fsec typical Phase Jitter SMD 1.8 V 2.5 V 3.3 V Min. Max.
150 MHz 2,100 MHz
CMOS / Differential

Features Oscillators

H_JF series (8 pads), a member of Mercury QuikXO™ quick-turn clock oscillators, features CMOS,
LVPECL, LVDS, CML or HCSL output logics and Ultra-low RMS phase jitter (157 fsec for 250 MHz
at 3.3V, 12 KHz to 20 MHz). Operating voltages are 1.8V, 2.5Vor 3.3V. Applications include networking,
wireless infrastructure, high resolution audio and video, high-speed data converters and storage
area networks. Differential outputs(LVPECL, LVDS, HCSL, CML) up to 2.1 GHz is also available.
Short lead time, for both standard and custom frequencies.

General specifications , at Ta=+25°C

Model HTJF HPJF HDJF HCJF HQJF
Output Logic
LVCMOS LVPECL LVDS HCSL CML
Supply Voltage VDD + 1.8 VDD ± 5% -- -- + 1.8 VDD ± 5% + 1.8 VDD ± 5%
+ 2.5 VDD ± 10% + 2.5 VDD ± 10% + 2.5 VDD ± 10%
Available Frequency Range + 3.3 VDD ± 10% + 2.5 VDD ± 10% + 2.5 VDD ± 10% + 3.3 VDD ± 10% + 3.3 VDD ± 10%
Load 150 ~ 250 MHz + 3.3 VDD ± 10% + 3.3 VDD ± 10% 150 ~ 700 MHz 150 ~ 2,100 MHz

Output Logic " High " , " 1 " 15pF 150 ~ 2,100 MHz 150 ~ 2,100 MHz 50 Ω to GND 50 Ω to VDD

Output Logic " Low " , " 0 " 90% VDD min. 50 Ω into VDD - 2V or 100 Ω between output and VDD : 0.66V min VDD - 0.085V min.
Current Consumption VDD : 1.15 V max. VDD = max.
( VDD = + 3.3 V ) 10% VDD max. Thevenin equivalent complimentary output
Current with Output Disabled VDD : 0.0V min. VDD - 0.6V min.
75 mA typ. VDD - 1.165 V min. VDD : 1.4V Typical VDD : 0.15V max. VDD - 0.32V max.
Rise Time / Fall Time 90 mA max. VDD - 0.8 V max. VDD : 1.6 V max.
62 mA typical VDD - 2.0 V min. VDD : 1.1 V Typical 94 mA typ. 70 mA typ.
VDD - 1.55 V max. VDD : 0.9 V min. 115 mA max. 85 mA max.
93 mA typical 69 mA typical
100 mA typ. 75 mA typ.
120 mA max. 90 mA max.

99 mA typical 74 mA typical

5.0 nS max. 0.4 nS max. 0.4 nS max. 0.4 nS max. 0.4 nS max.

( 10% to 90% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform )

RMS Phase Jitter fsec ( typical ) 156.250 MHz : 159 fs ; 491.520 MHz : 155 fs ; 644.530 MHz : 151 fs ; 1,480 MHz : 147 fs ; 2,000 MHz : 163 fs
( 12 KHz to 20 MHz )

Frequency Stability Codes Frequency Stability ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
Over Operating Temperature Range A B C stability after the " C " or " I " represents .
Commercial ( -10°C to +70°C ) D E F For example :
" C20 " ± 20 ppm over -10°C to +70°C ;
Industrial ( -40°C to +85°C ) " I40 " ± 40 ppm over -40°C to +85°C

Duty Cycle 50 % ± 5%

Start-up Time 5 m sec ( typ. ) ; 10 m sec. ( max.)

Aging at Ta = +25°C + 3 ppm max. for first year at 25°C ; ± 2 ppm max. per year thereafter

Storage Temperature -55°C to + 150°C

Output Enable Function

OE Control on Pad 1 0.8% of VDD (min.) to enable output.
0.2% of VDD (max.) to disable output.

Output Enable Time / Disable Time 2.5 ms max. / 10 us max.

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

H_JF538 H_JF578

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-22-22

High Frequency Ultra-low Jitter Crystal Oscillators [ Quick - turn Clock Oscillators , 150 ~ 2,100 MHz ]

H_JF 150 fsec typical Phase Jitter SMD 1.8 V 2.5 V 3.3 V Min. Max.
150 MHz 2,100 MHz
CMOS / Differential

Part Number Format and Example

Example : 3HPJF5781-E-644.530

3 H P JF578 1- E- 644.530
Supply Voltage Frequency (MHz)
Oscillators Code “ H ” : for Output Logic Code “ JF ”: Product Series OE function Frequency Stability Code
“ 3 ” for 3.3V Crystal “ E ”:
Oscillators “ T ”: COMS “ 578 ”: Package Size "1" : OE ±50 ppm over -40 to +85°C
“ 25 ” for 2.5V “ P ”: PECL 7.0 x 5.0 x 1.8 mm on
“ D ”: LVDS 8 Pad Pad1 Other frequency stabilities
“ 18 ” for 1.8V Note1 are available.
“ C ”: HCSL

“ Q ”: CML

Test Circuits and Output Waveforms LVPECL , LVDS , HCSL , CML Output Waveforms
CMOS Output Waveforms

HCSL CML

CMOS LVPECL LVDS

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-23-

Crystal Oscillators [ Wide Operating Temperature ] CMOS output

HY _ _ Wide Operating Temperature SMD LVCMOS 1.8V 2.5V 3.3V Min. Max.
Over - 40°C to +125 °C 1.25 MHz 50.0 MHz

Features Oscillators
● Femto second RMS phase jitter. 150 fs typical ( 12 KHz ~ 20 MHz )
● Superior phase noise: -155 dBc/Hz at 10 KHz and -160 dBc/Hz at 100 KHz offset
● Wide Operating Temperature range from -40 °C to +125 °C

General specifications of all available packages , at Ta=+25°C , CL=15pF

Model [ Output Logic ] " HY " series [ LVCMOS ]
HY53
Type HY32 HY57
3.2 * 2.5 * 1.0 mm 5.0 * 3.2 * 1.2 mm 7.0 * 5.0 * 1.4 mm
Dimensions 1.25 ~ 50.0 MHz
1.8 VDD ± 10% +3.3 VDD ± 10%
Available Frequency Range " 18 " +2.5 VDD ± 10% "3"
" 25 "
Supply Voltage ( VDD ) 2.0 mA Max. 4.0 mA Max.
4.0 mA Max. 3.0 mA Max. 6.0 mA Max.
Supply Voltage Code
5.0 mA Max.
Current Consumption 1.25 ~ 19.99 MHz

[ 15pF load ] 20.0 ~ 50.00 MHz

Frequency Stability Codes Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the
Operating Temperature Range A B C
Commercial ( -10°C to +70°C ) D E F desired stability after the " C " or " I "

Industrial ( -40°C to +85°C ) K50 K100 For example :
" C20 " ±20 ppm over -10°C to +70°C ;
Car Grade ( -40°C to +125°C ) " I30 " ± 30 ppm over -40°C to +85°C
" K50 " ± 50 ppm over -40°C to +125°C

Rise Time ( Tr ) / Fall Time ( Tf ) 10 n sec. ( max. )
Measured between 10% ↔ 90% of wave form ( CL = 15pF )

Load 15 pF

Start-up Time 5.0 m sec. ( max. )

Duty Cycle Standard: 50% ± 10%; Option: 50% ± 5%. Please add "-S" at the end of the part number for ± 5% .

Output Enable Function on pad 1 When 70% of VDD ( min. ) to Enable Output.
When 30% of VDD ( max.) to Disable Output.

Phase Jitter ( RMS ) [ 26 MHz , 3.3V ] 150 fs ( typical ) [ 12 KHz to 20 MHz integated ]

SSB Phase Noise Offset 10 Hz 100 Hz 1 KHz 10 KHz 100 KHz 1 MHz 5 MHz
-163
[ 26 MHz , 3.3V ] dBc / Hz ( typical ) -94 -127 -142 -156 -161 -163

Storage Temperature -65°C to + 150°C

Aging at Ta=+25ºC ± 2 ppm max. for first year

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

[ HY32 ] [ HY53 ] [ HY57 ]

Pin connections : Pin connections : Pin connections :
pin 1 : Enable / Disable
pin 1 : Enable / Disable pin 2 : Ground pin 3 : Output pin 2 : Ground pin 1 : Enable / Disable pin 2 : Ground
pin 4 : Supply Voltage
pin 3 : Output pin 4 : Supply Voltage pin 3 : Output pin 4 : Supply Voltage

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-24-

Clock Oscillators [ T T L / CMOS ] CMOS output

Part Number Format and Examples [2] [3] [4] [5]

[1] Holder – Frequency T– Center
Type Stability Frequency
Supply
Voltage

Oscillators (1) 18 SWO - B T- 25.000
(2) 5 H14 - C30 - 10.000
Examples (3) 3 HDK5761 - - 156.250
(4) 3 HY32 - E 50.000
K100 T-

Ex (1) : 18SWO - BT - 25.000 [ 1.8V , SWO type , ±50ppm from -10°C to 70°C , Tri-state , 25.000MHz , ]

Ex (2) : 5H14 - C30 - 10.000 [ 5.0V , H14 type , ±30ppm from -10°C to 70°C , 10.000MHz ]

Ex (3) : 3HDK5761 - E - 156.250 [ 3.3V , ( HDK576 type , Tri-state on pin 1 ) , ±50ppm from -40°C to 85°C , 156.250MHz ]

Ex (4) : 3HY32 - K100T - 50.000 [ 3.3V , HY seires 3225 type , ±100ppm from -40°C to 125°C , OE , 50.000MHz ]

[1] Supply voltage , " 1 " for +1.0V ;" 12 " for +1.2V ; " 18 " for +1.8V ;" 25 " for +2.5V ; " 28 " for +2.8V ; " 3 " for +3.3V ; " 5 " for +5.0V
[2] Holder Type

-10°C ~ 70 °C " A " ± 25ppm ; " B " ± 50ppm ; " C " ± 100ppm ;
If non-standard please enter the desired stability after " C " , example " C15 " : represents ±15ppm over -10 to +70°C

[3] -40°C ~ 85 °C " D " ± 25ppm ; " E " ± 50ppm ; " F " ± 100ppm ;

If non-standard please enter the desired stability after " I " , example " I30 " : represents ± 30ppm over -40 to +85°C

-40°C ~ 125 °C " K50 " ± 50ppm ; " K100 " ± 100ppm

[4] " T " for Tri-state , Leave this space blank if no connection on pin 1 or pad 1 .

Frequency in MHz
[5]

Assigned by Mercury if customer spec , (1) : S ---- duty cycle ± 5% , ex : " - S " ; (2) : 50p ---- output load 50pF , ex : " - 50p "

T T L / HCMOS Square Wave Test Circuit

T T L / HCMOS Output Wave Form

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-25-

Low Power Crystal Oscillators [ 1.0 Hz ~ 160 KHz ] CMOS output

HG _ _ Low Power CMOS Thru-Hole 3.3 V 5.0 V Min. Max.
12 V 15 V 1 Hz 160 KHz

Features Oscillators

● Frequency range in the Hz and KHz range using a tuning fork crystal
● Current consumption in the micro Amp ( µA ) range
● HG_ _ such as 32.768 KHz, provides a time base for a Real Time Clock
● Low current consumption
● Suitable for battery-operated devices such as data logging and portable test equipment

General specifications of all available packages , at Ta=+25°C , CL=15pF

Model HG _ _
Input Voltage ( VDD )
Frequency Range +3.3V D.C.±5% +5.0V D.C.±10%
Output Wave Form
1Hz to 160KHz
Frequency Tolerance ( at 25°C )
± 10 ppm ( Tolerance Code is " P " ) CMOS ( square wave )
Frequency Stability (1) ± 25 ppm ( Tolerance Code is " A " ) ± 50 ppm ( Tolerance Code is " B " )
± 100 ppm ( Tolerance Code is " C " )
Current Consumption
Output Logic High " 1 " -100 ppm ( typ.) over 0°C to +70°C
Output Logic Low " 0 "
Rise Time ( Tr ) & Fall Time ( Tf ) -160 ppm ( typ.) over -40°C to +85°C
Fan-out
Start-up Time 26 µA ( typ.) 45 µA ( typ.)
Duty Cycle
Storage Temperature 2.97 V ( min.) 4.5 V ( min.)
Aging
0.33V ( max.) 0.5 V ( max.)

0.5 µsec ( typ.) ; 1.0 µsec. ( max. ) 25 µsec ( typ.) ; 50 µsec. ( max. )

2 CMOS gates

450 m Sec.( max.)

50%±5% ( typ.) ; 50%±10% ( max.)

-50°C to 100°C

±5 ppm per year (max.)

Outline Dimensions ( Unit : mm ) HG8
HG14

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-26-

Low Power Clock Oscillator CMOS output

Part Number Format and Example [2] [4] [5]

[1] Holder – Frequency – Center
Type Tolerance ( 25 °C ) Frequency
Supply
Voltage

(1) 3 HG14 – P – 32.768K
Example 5
Oscillators HG8 – A – 25.600K
(2)

Ex (1) : 3HG14 - P - 32.768K [ +3.3V input voltage , Full size package 4 pins , Dip type , ±10 ppm frequency tolerance , 32.768 KHz ]
Ex (2) : 5HG8 - A - 25.600K [ +5.0V input voltage , Half size package 4 pins , Dip type , ±25 ppm frequency tolerance, 25.600 KHz ]

[ 1 ] Supply voltage " 33 " for +3.3V ; " 5 " for +5.0V
[ 2 ] Holder Type " 8 " Half size DIP ( 12.8 * 12.8 ) ; " 14 " Full size DIP ( 20.2 * 12.8 )

[ 3 ] Frequency ± 10 ppm ( Code is " P " ) ± 25 ppm ( Code is " A " ) ± 50 ppm ( Code is " B " ) ± 100 ppm ( Code is " C " )

[ 4 ] Center Frequency

T T L / HCMOS Square Wave Test Circuit

T T L / HCMOS Output Wave Form

Related Mercury Products :

● “ HA ” Series, at 32.768KHz, uses an AT-cut crystal to achieve ±25, ±50 or ±100 ppm frequency stabilitiesover both commercial
or industrial temperature ranges with a low 75 µA current consumption at +3.3V.

● “ M572T ” Series TCXO & “VM572T” Series VCTCXO, are also available at a frequency of 32.768KHz.
They are both temperature compensated and they can achieve a frequency stability of ±1.0~±2.5 ppm over commercial or industrial
temperatures, with a current consumption of 3.5 mA at +3.3V.

Mercury www .mercury-crystal.com ■TaiTwaaiwna:nT:eTl e(8l:8(+68)-826-2)-420-264-20767-297/7s9a/lessa-ltews@[email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected] ■China: Tel: (86)-512-5763-8100 / [email protected]
USA: Tel: (+1)-909-466-0427 / [email protected] 27 China: Tel: (+86)-512-5763-8100 / [email protected]

-27-

Differential Crystal Oscillators with No PLL LVPECL Differential

HPK _ _ LVPECL Differential ( Non - PLL ) SMD 2.5 V 3.3 V Min. Max.
Jitter 0.2 pS ( typical ) 13.5 MHz 200 MHz

Features
● Femto second integrated phase jitter ( 200 fs typical , 12 KHz to 20 MHz )
● Superior phase noise ( -138 dBc/Hz at 10 KHz and -144 dBc/Hz at 100 KHz offset )

General specifications , at Ta=+25°C , CL=15pF

Output Logic LVPECL Differential Oscillators
HPK
Model
HPK 5361 ( 5.0 * 3.2 * 1.2 )
Package ( dimensions ) unit : mm HPK 3261 ( 3.2 * 2.5 * 1.0 ) HPK 5761 ( 7.0 * 5.0 * 1.8 )
+2.5 VDD ± 5% 13.5 MHz +3.3 VDD ± 5%
Supply Voltage VDD 200.0 MHz
Available min.

Frequency Range max.

Integrated Phase Jitter 0.2 ps typical; 0.5 ps max. [ For 156.250 MHz ]

( 12 KHz to 20 MHz )

Current Consumption 30 mA typical , 50 mA max.

Rise Time / Fall Time 0.3 ns typical , 0.5 ns max.

( 20%↔80% of the PECL wave form )

SSB Phase Noise [ dBc / Hz ( typical ) ] Offset 62.5 MHz 156.250 MHz
10 Hz -50 -50
100 Hz -82 -80
1 KHz -116 -115
10 KHz -138 -135
100 KHz -144 -142
1 MHz -149 -147
10 MHz -155 -152

Output Logic " High " , " 1 " VDD - 1.03 min. , VDD - 0.6 max. Termination: RL=50 Ω to ( VDD - 2.0V ). See test circuit below.
Output Logic " Low " , " 0 " VDD - 1.85 min. , VDD - 1.6 max. Termination: RL=50 Ω to ( VDD - 2.0V ). See test circuit below.
Output Voltage Swing 595 mV min. , 750 mV typ. , 930 mV max.
Load
Start-up Time 50 Ω into Vcc - 2V or Thevenin equivalent
Duty Cycle
Storage Temperature 5.0 ms typical , 10 m sec. ( max.)
Aging at Ta = +25°C
50% ± 5% ( measured at VDD -1.25V )
Frequency Stability Codes -55°C to + 150°C

± 3 ppm max. first year ; ± 2 ppm max. per year thereafter

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
Operating Temperature Range A B C stability after the "C " or " I " represents .
Commercial ( -10°C to +70°C ) D E F For example :
" C20 " ± 20 ppm over -10°C to +70°C ;
Industrial ( -40°C to +85°C ) " I30 " ± 30 ppm over -40°C to +85°C

OE Function. Enable When 70% min. of VDD to Enable Output.
5761 on pad 1 Disable Enable time : 10 ms max.
When 30% max. of VDD to Disable Output.
Disable current : 10 uA max. , Disable time : 0.2 us (max.)

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HPK3261 HPK5361 HPK5761

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-28-

Low Jitter Differential Crystal Oscillators LVPECL Differential

HPQN _ _ LVPECL 0.6 pS SMD 2.5 V 3.3 V Min. Max.
Differential Phase Jitter 150 MHz 1,500 MHz

Features

Low current consumption ( 54 mA for LVPECL 622.080 MHz at 3.3V ) and
an integrated phase jitter performance of 0.6 pS RMS. Gaining its precision frequency control
market position by providing engineers with few-day samples for prototypes and low cost,
fast delivery for volume production. The perfect solution to replace traditional XO’s & VCXO’s
that use a more expensive, highfrequency, fundamental crystal and a noisy PLL multiplier circuit.

Oscillators General specifications , at Ta=+25°C , CL=15pF

Output Logic LVPECL Differential

Model HPQN

Package ( dimensions ) unit : mm HPQN 3261 ( 3.2 * 2.5 * 1.0 ) HPQN 5361 ( 5.0 * 3.2 * 1.2 ) HPQN 5761 ( 7.0 * 5.0 * 1.8 )

Supply Voltage VDD +2.5 VDD ± 5% +3.3 VDD ± 5%

Available min. 150 MHz

Frequency Range max. 1,500 MHz

Integrated Phase Jitter 0.6 ps typical ( 12 KHz to 20 MHz )

( 12 KHz to 20 MHz ) < 100 fS ( 1.875 KHz to 20 MHz )

Current Consumption 100 MHz : 48 mA max ; 250 MHz : 50 mA max ; 500 MHz : 55 mA max ;

750 MHz : 59 mA max ; 1,000 MHz : 62 mA max ; 1,350 MHz : 68 mA max

Rise Time / Fall Time 0.2 ns typical , 0.5 ns max. [ 20%↔80% of the PECL wave form ]

Offset 77.760 MHz ( 3.3V ) 156.250 MHz ( 3.3V ) 622.08 MHz ( 3.3V ) 1250 MHz ( 3.3V )
-32
10 Hz -74 -67 -51 -68
-94
100 Hz -104 -92 -77 -103
-105
SSB Phase Noise [ dBc / Hz ( typical ) ] 1 KHz -121 -112 -99 -117
-136
10 KHz -130 -121 -109

100 KHz -134 -124 -114

1 MHz -140 -136 -121

10 MHz -157 -153 -141

Output Logic " High " , " 1 " VDD - 1.03 min. , VDD - 0.6 max. Termination: RL=50 Ω to ( VDD - 2.0V ). See test circuit below.
Output Logic " Low " , " 0 "
Output Voltage Swing VDD - 1.85 min. , VDD - 1.6 max. Termination: RL=50 Ω to ( VDD - 2.0V ). See test circuit below.
Load
Start-up Time 595 mV min. , 750 mV typ. , 930 mV max.
Duty Cycle
Storage Temperature 50 Ω into Vcc - 2V or Thevenin equivalent
Aging at Ta = +25°C
5.0 ms typical , 10 m sec. ( max.)
Frequency Stability Codes
50% ± 5%

-55°C to + 150°C

± 3 ppm max. first year ; ± 2 ppm max. per year thereafter

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
Operating Temperature Range C stability after the "C " or " I " represents .
F For example :
Commercial ( -10°C to +70°C ) A B " C20 " ± 20 ppm over -10°C to +70°C ;
" I30 " ± 30 ppm over -40°C to +85°C
Industrial ( -40°C to +85°C ) DE

OE Function. Enable When 70% min. of VDD to Enable Output.
5761 on pad 1 Disable Enable time : 200 n sec. (max.)
When 30% max. of VDD to Disable Output.
Disable current : 16 mA max. , Disable time : 50 n sec. (max.)

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HPQN3261 HPQN5361 HPQN5761

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]
■U.S.A: Tel: (1)-909-466-0427 / [email protected]■n C: Theinl:a(+: 8T8e6l:)-(28-62)-450162--25777693-/8s1a0le0s/-tswa@[email protected]

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-29-

Differential Crystal Oscillators with No PLL LVDS Differential

HDK _ _ LVDS Differential ( Non - PLL ) SMD 1.8 V 2.5 V 3.3 V Min. Max.
Jitter 0.2 pS ( typical ) 13.5 MHz 200 MHz

Features

● Femto second integrated phase jitter ( 200 fs typical , 12 KHz to 20 MHz )
● Supeior phase noise ( -138 dBc/Hz at 10 KHz and -144 dBc/Hz at 100 KHz offset )

General specifications , at Ta=+25°C

Output Logic HDK 3261 ( 3.2 * 2.5 * 1.0 ) LVDS Differential HDK 5761 ( 7.0 * 5.0 * 1.8 ) Oscillators
Model HDK
Package ( dimensions ) unit : mm
HDK 5361 ( 5.0 * 3.2 * 1.2 )

Supply Voltage VDD min. +1.8 VDD ± 5% +2.5 VDD ± 5% +3.3 VDD ± 10%
Supply Voltage Code max. " 18 " " 25 " "3"
Available
Frequency Range 0.3 nS typical 13.5 MHz 0.15 nS typical
0.6 nS max. 200.0 MHz 0.4 nS max.
Rise Time / Fall Time 0.15 nS typical

( 20%↔80% of wave form ) 0.4 nS max.
Current Consumption 16 mA typical , 27 mA max.
Integrated Phase Jitter
( 12 KHz to 20 MHz ) 0.2 ps typical; 0.5 ps max. [ For 156.250 MHz , 3.3V ]

SSB Phase Noise [ dBc / Hz ( typical ) ] Offset 62.5 MHz ( 3.3V ) 156.250 MHz ( 3.3V )
10 Hz -50 -50
100 Hz -82 -80
1 KHz -116 -115
10 KHz -138 -135
100 KHz -144 -142
1 MHz -149 -147
10 MHz -155 -152

Output Logic " High " , " 1 " 1.4 V ( typical ) ; 1.6 V ( max. ) , RL = 100 Ω ,
Output Logic " Low " , " 0 "
Output Voltage Swing 0.9 V ( min. ) ; 1.1 V ( typical ) , RL = 100 Ω ,
Load
Start-up Time 250 mV min. , 350 mV typ. , 450 mV max. , RL = 100 Ω ,
Duty Cycle
Storage Temperature 100 Ω between output and complimentary output
Aging at Ta = +25°C
5.0 ms typical , 10 m sec. ( max.)
Frequency Stability Codes
50% ± 5%

-55°C to + 125°C

± 3 ppm max. first year ; ± 2 ppm max. per year thereafter

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard, please enter the desired
Operating Temperature Range stability after the " C " or " I " represents .

Commercial ( -10°C to +70°C ) A B C For example :
" C20 " ± 20 ppm over -10°C to +70°C ;

Industrial ( -40°C to +85°C ) DE F " I30 " ± 30 ppm over -40°C to +85°C

OE Function. Enable When 70% min. of VDD to Enable Output.
5761 on pad 1 Disable Enable time : 10 ms max.
When 30% max. of VDD to Disable Output.
Disable current : 10 uA max. , Disable time : 0.2 us (max.)

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HDK3261 HDK5361 HDK5761

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected] ■CThainwaa:nT:eTl:e(l8:(6+)8-58162)-527-26430-861-20707/9sa/ lseasl-ecsn-@[email protected]

USA: Tel: (+1)-909-466-0427 / [email protected] China: Tel: (+86)-512-5763-8100 / [email protected]

-30-

Low Jitter Differential Crystal Oscillators LVDS Differential

HDQN _ _ LVDS 0.6 pS SMD 2.5 V 3.3 V Min. Max.
Differential Phase Jitter 150 MHz 1,500 MHz

Features

Low current consumption ( 24 mA for LV 622.080 MHz at 3.3V ) and
an integrated phase jitter performance of 0.6 pS RMS. Gaining its precision frequency control
market position by providing engineers with next-day samples for prototypes and low cost,
fast delivery for volume production. The perfect solution to replace traditional XO’s & VCXO’s
that use a more expensive, highfrequency, fundamental crystal and a noisy PLL multiplier circuit.

Oscillators General specifications , at Ta=+25°C , CL=15pF

Output Logic LVDS Differential

Model HDQN

Package ( dimensions ) unit : mm HDQN 3261 ( 3.2 * 2.5 * 1.0 ) HDQN 5361 ( 5.0 * 3.2 * 1.2 ) HDQN 5761 ( 7.0 * 5.0 * 1.8 )

Supply Voltage VDD +2.5 VDD ± 5% +3.3 VDD ± 5%
Available
min. 150 MHz

Frequency Range max. 1,500 MHz

Integrated Phase Jitter 0.6 ps typical ( 12 KHz to 20 MHz )

( 12 KHz to 20 MHz ) < 100 fS ( 1.875 KHz to 20 MHz )

Current Consumption 100 MHz : 18 mA max ; 250 MHz : 20 mA max ; 500 MHz : 22 mA max ;

750 MHz : 24 mA max ; 1,000 MHz : 26 mA max ; 1,350 MHz : 28 mA max

Rise Time / Fall Time 0.2 ns typical , 0.5 ns max. [ 20%↔80% of the LVDS wave form ]

Offset 77.760 MHz ( 3.3V ) 156.250 MHz ( 3.3V ) 622.08 MHz ( 3.3V ) 1250 MHz ( 3.3V )
10 Hz -32
100 Hz -74 -67 -51 -68
1 KHz -94
10 KHz -104 -92 -77 -103
100 KHz -105
SSB Phase Noise [ dBc / Hz ( typical ) ] 1 MHz -121 -112 -99 -117
10 MHz -136
-130 -121 -109

-134 -124 -114

-140 -136 -121

-157 -153 -141

Output Logic " High " , " 1 " 1.4 V ( typical ) ; 1.6 V ( max. ) , RL = 100 Ω ,
Output Logic " Low " , " 0 "
Output Voltage Swing 0.9 V ( min. ) ; 1.1 V ( typical ) , RL = 100 Ω ,
Load
Start-up Time 250 mV min. , 350 mV typ. , 450 mV max. , RL = 100 Ω ,
Duty Cycle
Storage Temperature 100 Ω between output and complimentary output
Aging at Ta = +25°C
5.0 ms typical , 10 m sec. ( max.)
Frequency Stability Codes
50% ± 5%

-55°C to + 150°C

± 3 ppm max. first year ; ± 2 ppm max. per year thereafter

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard, please enter the desired
Operating Temperature Range stability after the " C " or " I " represents .

Commercial ( -10°C to +70°C ) A B C For example :
" C20 " ± 20 ppm over -10°C to +70°C ;

Industrial ( -40°C to +85°C ) D E F " I30 " ± 30 ppm over -40°C to +85°C

OE Function. Enable When 70% min. of VDD to Enable Output.
5761 on pad 1 Disable Enable time : 200 n sec. (max.)
When 30% max. of VDD to Disable Output.
Disable current : 16 mA max. , Disable time : 50 n sec. (max.)

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HDQN3261 HDQN5361 HDQN5761

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected]■n C: Theinl:a(+: 8T8e6l:)-(28-62)-450162--25777693-/8s1a0le0s/-tswa@[email protected]

USA: Tel: (+1)-909-466-0427 / [email protected] 3C1hina: Tel: (+86)-512-5763-8100 / [email protected]

-31-

Differential Crystal Oscillators with No PLL HCSL Differential

HCK _ _ HCSL Differential ( Non - PLL ) SMD 1.8 V 2.5 V 3.3 V Min. Max.
Jitter 0.2 pS ( typical ) 13.5 MHz 200 MHz

Features

● Femto second integrated phase jitter ( 200 fs typical , 12 KHz to 20 MHz )
● Superior phase noise ( -138 dBc/Hz at 10 KHz and -144 dBc/Hz at 100 KHz offset )

General specifications , at Ta=+25°C Oscillators

Output Logic HCSL Differential
Model
Package ( dimensions ) unit : mm HCK
Supply Voltage VDD
Supply Voltage Code HCK 3261 ( 3.2 * 2.5 * 1.0 ) HCK 5361 ( 5.0 * 3.2 * 1.2 ) HCK 5761 ( 7.0 * 5.0 * 1.8 )
Available Frequency Range
Rise Time / Fall Time +1.8 VDD ± 5% +2.5 VDD ± 5% +3.3 VDD ± 10%
( 20%↔80% of wave form )
Current Consumption " 18 " " 25 " "3"
Integrated Phase Jitter (12 KHz to 20 MHz)
Output Logic " High " : , " 1 ", VOH 13.5 MHz ~ 200.0 MHz
Output Logic " Low " , " 0 ", VOL
Output Voltage Swing 0.3 nS typical 0.15 nS typical 0.15 nS typical
Load
Start-up Time 0.6 nS max. 0.4 nS max. 0.4 nS max.
Duty Cycle
Storage Temperature < 90 MHz: 17 mA typ. , 27 mA max 90.1 MHz ~ 160 MHz : 25 mA max. 160.1 MHz ~ 200 MHz : 30 mA max..
Aging at Ta = +25°C
0.2 ps typical ; For 155.520 MHz
SSB Phase Noise [ dBc / Hz ( typical ) ]
660 mV min. , 740 mV typ. , 850 mV max.
Frequency Stability Codes
-150 mV min. , 0 mV typ. , 150 mV max.
OE Function.
5761 on pad 1 620 mV min. , 700 mV typ. , 780 mV max.

50 Ω to ground on each output

5 ms typical ; 10 m sec. ( max.)

50% ± 5%

-55°C to + 125°C

± 3 ppm max. first year ; ± 2 ppm max. per year thereafter

Offset 10 Hz 100 Hz 1 KHz 10 KHz 100 KHz 1 MHz 10 MHz

125.0 MHz -50 -82 -116 -138 -144 -149 -155

156.250 MHz -50 -80 -115 -135 -142 -147 -152

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
Operating Temperature Range A B C stability after the "C " or "I " represents .
Commercial ( -10°C to +70°C ) D E F For example :
" C20 " ± 20 ppm over -10°C to +70°C ;
Industrial ( -40°C to +85°C ) " I20 " ± 20 ppm over -40°C to +85°C

Enable When 70% min. of VDD to Enable Output.
Disable Enable time : 10 ms max.
When 30% max. of VDD to Disable Output.
Disable current : 10 uA max. , Disable time : 0.2 us (max.)

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HCK3261 HCK5361 HCK5761

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-32-

HP_ [ LVPECL DIfferential ] Crystal Oscillators HC_ [ HCSL Differential ]

HD_ [ LVDS Differential ]

Part Number Format and Example [2] [3] – [4] – [5]
1 or 2
[1] Holder Frequency Center
Type Stability Frequency
Supply
Voltage

Oscillators (1) 3 HPK576 2– A – 100.000
Example 3
HDK576 1– E – 200.000
(2)

Ex (1) : 3HPK5762 - A - 100.000 [ +3.3V , H_ _ 576 type , PECL output , K series ,OE on pad # 2 , ±25 ppm from -10°C to 70°C , 100.000MHz ]

Ex (1) : 3HDK5761 - E - 200.000 [ +3.3V , H_ _ 576 type , LVDS output , K series ,OE on pad # 1 , ±50 ppm from -40°C to 85°C , 200.000MHz ]

[ 1 ] Supply voltage , " 3 " for +3.3V
[ 2 ] Holder Type
[ 3 ] " 1 " : OE function on pad # 1 , " 2 " : OE function on pad # 2

" A " ± 25ppm ; " B " ± 50ppm ; " C " ± 100ppm ;
-10°C ~ 70 °C

If non-standard please enter the desired stability after " C " , for example " C15 " : represents ±15ppm over -10 to +70°C
[4]

" D " ± 25ppm ; " E " ± 50ppm ; " F " ± 100ppm ;
-40°C ~ 85 °C If non-standard please enter the desired stability after " I " , for example " I30 " : represents ± 30ppm over -40 to +85°C
[ 5 ] Frequency in MHz

HCSL Square Wave Test Circuit LVDS Square Wave Test Circuit

PECL Square Wave Test Circuit LVDS Square Wave Output Wave Form

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

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-33-

EMI Reduction Spread Spectrum Clock Oscillators

A Drop-in Replacement Solution For Your EMI / EMC Compliance Problem

The principle sources of the EMI problems come from the system clocks. Oscillators
Therefore, rather than patching the problem with ferrite beads, EMI filters, ground
plane and metal shielding, the most efficient and economical way to reduce
the peak radiation energy is to use a spread spectrum clock oscillator .

Compared with conventional clock oscillator , Mercury's HM series spread
spectrum (dithered) clock oscillator can reduce EMI as much as 12dB.
The beauty is that it is a drop-in replacement for your existing 7 x 5mm , 5 x 3.2mm or 3.2 x 2.5 mm clock oscillator.
No need to re-spin the board.

Applications : ● Embedded systems; Electrical musical instrument
● Printers; Multiple function printers (MPCs) ● Automotive; GPS car navigation systems
● Digital copiers; PDAs ● LCD PC monitors / LCD TVs
● Networking; LAN / WAN; Routers ● ADSL; PCMCIA
● Storage systems (CD-ROM, VCD, DVD and HDD) ● Still Digital cameras (SDCs)
● Scanner; Modems; projectors
● Hand-held ID readers

Modulation Types : [ Output amplitude (dB) vs frequency span (MHz) ]

Down spread “ D ” Center spread “ C "
dB
Conventional
Clock

EMI reduction Spread EMI reduction
Spectrum

Clock

fo-(fo*1.0%) fc Frequency fo-(fo*0.5%) fo=fc fo+(fo*0.5%)
T F
F fo+(fo*0.5%)
fo fo T
fo-(fo*0.5%)
fo-(fo*1.0%)
Modulation Carrier Frequency in KHz Modulation Carrier Frequency in KHz

Spread Spectrum Clock ( SSC ) :
Unlike a conventional clock, the mode energy of a spread spectrum clock is spread over a wider bandwidth,
resulting from the frequency modulation technique.
The modulation carrier frequency is in the KHz range which makes the modulation process transparent to the oscillator frequency.
The controlled modulation process can be all on one side of the nominal frequency ( down spread ) or 50% higher and 50% lower
( center spread ) of the nominal frequency. Down spread is preferred if over-clocking is a problem to the system.

Mercury www .mercury-crystal.com ■Taiwan : TeTla(i8w8a6n)-:2T-e2l4:(0+68-8267)7-92-/2s4a0l6e-s2-t7w7@9 /[email protected]
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-34-

EMI Reduction Spread Spectrum Clock Oscillators

HM _ x EMI Reduction Spread Spectrum Clock Oscillators TTL Min. Max.

R group Y group P group Thru-Hole SMD 3.3V 3.5 MHz 220 MHz

CMOS

General specifications of all available packages
at Ta=+25°C , CL=15pF

Oscillators Group R group Y group P group
3HM572 - R ( 7.0 * 5.0 * 1.4 mm ) 3HM572 - Y ( 7.0 * 5.0 * 1.4 mm ) 3HM57 - P ( 7.0 * 5.0 * 1.8 mm )
Available Packages
Frequency Range ( 3.5 ~ 165.0 MHz ) ( 8.0 ~ 165.0 MHz ) ( 13.0 ~ 220.0 MHz )
3HM53 - R ( 5.0 * 3.2 * 1.2 mm ) 3HM53 - Y ( 5.0 * 3.2 * 1.2 mm ) Total% Down Spread Center Spread
Spread Type
( 6.0 ~ 160.0 MHz ) ( 10.0 ~ 160.0 MHz )
Spread Percentage Total% Down Spread Center Spread Type Total% Down Spread Center Spread

EMI Reduction -0.5% ( D0.5 ) ± 0.25% ( C0.25 ) 1.0% -1.0% ( D1.0 ) ± 0.5% ( C0.5 ) 0.5% -0.5% ( D0.5 ) ± 0.25% ( C0.25 )
( EMI reduction applys to Not available if Tri-state chosen 3.0% -3.0% ( D3.0 ) ±1.5 % ( C1.5 )
the whole spectrum. ) 0.5% 3HM53 1.0% -1.0% ( D1.0 ) ±0.5 % ( C0.5 )
Modulation Carrier Freq. 2.0% -2.0% ( D2.0 ) ±1.0 % ( C1.0 )
( Dither rate ) 0.75% -0.75% ( D0.75 ) ± 0.375% ( C0.375 )
Output Logic
Input Voltage ( VDD ) 1.25% -1.25% ( D1.25 ) ± 0.625% ( C0.625 )
Output Logic " High ", "1 "
Output Logic " Low "," 0 " 1.0% -1.0% ( D1.0 ) ±0.5 % ( C0.5 ) 2.0% -2.0% ( D2.0 ) ± 1.0% ( C1.0 )
Rise Time / Fall Time
Load 3HM57
Start-up Time
3.0% -3.0% ( D3.0 ) ± 1.5% ( C1.5 )
Current Consumption
3.0% -3.0% ( D3.0 ) ±1.5 % ( C1.5 ) 3.0% -3.0% ( D3.0 ) ±1.5 % ( C1.5 ) 3.75% -3.75% ( D3.75 ) ± 1.875% ( C1.875 )
Duty Cycle
Cycle-to-Cycle Jitter 7 dB (min.) , 100MHz at C0.25 9 dB (min.) , 100MHz at C0.5 7 to 16 dB ( typical ) for the main mode
Storage Temperature 9 dB (min.) , 100MHz at C0.5 12 dB (min.) , 100MHz at C1.0
Aging 15 dB (min.) , 100MHz at C1.5 15 dB (min.) , 100MHz at C1.5 25.3 KHz (min.) ; 58.6 KHz (max.)
Pin 1 Option 6.9 KHz (min.) ; 55.5 KHz (max.) 12 KHz (min.) ; 42 KHz (max.) Frequency dependent . Call for details
Frequency dependent . Call for details Frequency dependent . Call for details
CMOS ( Square Wave )
CMOS ( Square Wave ) CMOS ( Square Wave ) VDD = +3.3V D.C. ±5%
VDD = +3.3V D.C. ±5% VDD = +3.3V D.C. ±5% 2.4V (min.) [ at 90% VDD ]
2.4V (min.) [ at 90% VDD ] 2.4V (min.) ; 3.2V (typ.) [ at 90% VDD ] 0.4V (max..) [ at 10% VDD ]
0.5V (max.) [ at 10% VDD ] 0.5V (max.) ; 0.2V (typ.) [ at 10% VDD ] 4n sec. (max.) [ 10% VDD ↔ 90% VDD ]
4n sec. (max.) [ 10% VDD ↔ 90% VDD ] 6n sec. (max.) [ 10% VDD ↔ 90% VDD ]
15pF
15pF 15pF 2 m sec. (typ.) ; 5 m sec. ( max.)
2 m sec. (typ.) ; 5 m sec. ( max.) 2 m sec. (typ.) ; 5 m sec. ( max.)

10.0 ~ 50.000 MHz : 10mA (typ.) 10.0 ~ 50.000 MHz : 10mA (typ.) 25mA (typ.) ; Frequency dependent
50.0 ~ 100.0 MHz : 18mA (typ.) 50.0 ~ 125.0 MHz : 27mA (typ.) , 44mA (max.)
100.0 ~ 160.0 MHz : 35mA (typ.)

50% ± 5% 50% ± 5% 50% ± 5%
±250 ps (typ.) ; ±300 ps (max.) ±100 ps (typ.) ; ±150 ps (max.) ±100 ps (typ.)
-55°C to + 125°C
-55°C to + 125°C -55°C to + 125°C ± 5 ppm per year (max.) ; Ta = +25°C
± 5 ppm per year (max.) ; Ta = +25°C ± 5 ppm per year (max.) ; Ta = +25°C

Tri-State enable high. Output is high impedance when taken low . Do not make connection to this pad .
Enable / disable time: 100 ms max. No Tri-State option available.

Frequency Stability Codes Frequ. Stability over Operating Temperature Range ± 25 ppm ± 50 ppm ± 100 ppm
( exclude modulation ) Commercial ( -10°C to +70°C ) A B C
Industrial ( -40°C to +85°C ) D E F
Static Discharge Voltage >2,000V ( per MIL-STD-883 , method 3015 )
Packaging 16mm tape and reel . 1000pcs per reel

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected]■n C: Theinl:a(+: T88el6:)(-826-2)-450162--25777693-/8s1a0l0es/ -stwal@[email protected]

USA: Tel: (+1)-909-466-0427 / [email protected] 35China: Tel: (+86)-512-5763-8100 / [email protected]

-35-

EMI Reduction Spread Spectrum Clock Oscillators

Part Number Format and Example

[1] [2] [3] [4] [5] [6] [7]
– Spread type
Supply Holder – Frequency T – Center Group
Voltage Type Stability Percentage
Frequency Type
- C1.5
- D1.0
- D3.0
(1) 3ExamplesH M 572 - B T- 10.000 R

Oscillators(2) 3H M 53-FT-75.000Y

(3) 3 H M 43 - D - 100.000 P

[ 1 ] Supply voltage code : " 3 " for +3.3V
[ 2 ] Holder Type ( HM32 , HM53 , HM57 , HM572 or HM43 )

-10°C ~ 70 °C " A " ± 25ppm ; " B " ± 50ppm ; " C " ± 100ppm ;
[3]

-40°C ~ 85 °C " D " ± 25ppm ; " E " ± 50ppm ; " F " ± 100ppm ;
[ 4 ] " T " for Tri-state , " T " is standard for all grounds except for group P .
[ 5 ] Frequency in MHz
[ 6 ] Group " R " , " P " or " Y "
[ 7 ] Spread type & percentage ; " C " for center spread , " D " for down spread

EMI Test Data : 3HM57-B-100.000R , 100.0MHz Group " R " , Modulation Carrier Frequency = 34.687KHz

Whole Spectrum EMI Data : 3HM57-B-100.000R , 100.0MHz Group " R " , Modulation Carrier Frequency = 34.687KHz

EMI Test Data ( " P " group ) Jitter Test Data ( " P " group )
125.0 MHz at various spread percentages. " P " group , cycle to cycle jitter .
Modulation Carrier Frequency : 48.8 KHz 32.59 ps ( min. ) ; 39.76 ps ( max. )

Sample rate : 20.0 G Sa/sec.;No. of sample :1000;Edge Direction: Rising edges

For more technical information please visit the following web site :
www . mercury -crystal.com and down load our technical note
TN-020 ( Title : Low EMI Spread Spectrum Clock Oscillators )

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]
■U.S.A: Tel: (1)-909-466-0427 / [email protected] ■CTahiiwnaa:nT:eTl:e(l:8(6+)8-8561)2--25-726430-68-1207079/ s/ aslaelse-sc-ntw@@mmerecrucruyr-yc-rcyrsytsatla.cl.ocmom

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-36-

EMI Reduction Spread Spectrum Clock Oscillators

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

[ HM 53 ] For group : R Y [ HM 57 ] For group : P

Oscillators

[ HM 572 ] For group : R Y [ HM 43 ] For group : R Y

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-37-

Frequency Switchable Crystal Oscillators CMOS output

HC _ _ Switchable output Oscillators SMD LVCMOS 1.8 V 2.5 V 3.3 V Min. Max.
Select f1 or f2 by Toggling Pin 1 1.0 MHz 200.0 MHz

Features Oscillators

● Features a frequency switching function that provides the convenience for a
system level evaluation at two different clock rated from the same oscillator

● The frequency selection is achieved by toggling FSEL high (default) or low at pin #1
● Custom frequencies and applications are welcome, please contact Mercury

General specifications of all available packages , at Ta=+25°C , CL=15pF

Model [ Output Logic ] " HC " series ( Frequency Selection at pin #1 ) [ LVCMOS ]
Supply Voltage VDD
Available Frequency Range 1.8 VDD ± 10% [ Voltage code “18 ” ] + 2.5 VDD ± 10% [ Voltage code “25 ” ] +3.3 VDD ± 10% [ Voltage code “33 ” ]

Frequency Selection (FSEL) 3.0 ~ 133.0 MHz 3.0 ~ 166.0 MHz 1.0 ~ 200.0 MHz

Frequency Stability Codes When FSEL=0, Output frequency is Freq.1 ( f1 ) ,

When FSEL=1, Output frequency is Freq.2 ( f2 ) . Default FSEL pin has an internal pull-up resistor

Frequency Stability over ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the
Operating Temperature Range desired stability after the " C " or " I "

Commercial ( -10°C to +70°C ) A B C For example :
Industrial ( -40°C to +85°C ) D E " C20 " ± 20 ppm over -10°C to +70°C ;

F " I30 " ± 30 ppm over -40°C to +85°C

Output Logic " High " , " 1 " 90 % of VDD ( min. ) Start-up Time 10 m sec. ( max.)
Output Logic " Low " , " 0 " 10 % of VDD ( max. ) Duty Cycle 50% ± 5%
Output Load 15 pF max. CMOS output Phase Jitter ( peak-to-peak ) 80 ps typical .
Rise Time Storage Temperature -55°C to + 150°C
Fall Time 5.0 n sec. ( max. ) , 10% → 90% of waveform Aging at Ta=+25ºC ± 5 ppm max. for first year
5.0 n sec. ( max. ) , 90% → 10% of waveform

Mercury Model (x =Voltage code) f1 (MHz),FSEL=0 f2 (MHz),FSEL=1 Application
1.544 2.048 T1 (DS1)/E1 mode switching
xHC53 - A - 1.544 / 2.048 6.312 8.448 T2 (DS2)/E2 mode switching
xHC53 - A - 6.312 / 8.448 44.736 34.368 T3 (DS3)/E3 mode switching
xHC53 - A - 44.736 - 34.368 27.027 54.054
xHC53 - A - 27.027 / 54.054 54.054 148.5 480P 1080P pixel clocks
xHC53 - A - 54.054 / 148.500 74.25 24.576
xHC53 - A - 74.250 / 24.576 74.25 33.333 HD video, HDMI LVDS I/F, Digital TV set, video
xHC53 - A - 74.250 / 33.333 74.25 148.5 recorders, set-top box, multi media receivers
xHC53 - A - 74.250 / 148.500 24.576
xHC53 - A - 74.175 / 24.576 74.175824 CPRI, base station
xHC53 - A - 74.175 / 33.333 74.175824 33.333 OBSAI
xHC53 - A - 74.175 / 148.351 74.175824 148.351648 USB
xHC53 - A - 61.440 / 122.880
xHC53 - A - 76.800 / 153.600 61.44 122.88 Serial Attached SCSI (SAS-1 and SAS-2 hard disk
xHC53 - A - 12.000 / 24.000 76.8 153.6 drive), Fiber channel, Ethernet, Gigabit data interface,
xHC53 - A - 24.000 / 48.000 12
xHC53 - A - 62.500 /125.000 24 24 SONET, SDH, RAID controller , OC3
xHC53 - A - 77.760 / 155.520 62.5 48 custom
xHC53 - A - 78.125 / 156.250 77.76 125
xHC53 - A - 125.000 / 156.250 78.125 155.52
xHC53 - A - custom f1 / custom f2 125 156.25
Custom frequecny f 1 156.25
Custom frequency f 2

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HC32 HC53 HC57

Pin connections : Pin connections : Pin connections :

pin 1 : Frequency Select pin 2 : Ground pin 1 : Frequency Select pin 2 : Ground pin 1 : Frequency Select pin 2 : Ground

pin 3 : Output pin 4 : Supply Voltage pin 3 : Output pin 4 : Supply Voltage pin 3 : Output pin 4 : Supply Voltage

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-38-

Frequency Switchable Crystal Oscillators [ 10 ~ 1,500 MHz ]

HCTQF HCPQF HCDQF Q family Frequency SMD 2.5 V 3.3 V Min. Max.
F series Switchable
CMOS waveform PECL Differential LVDS Differential 10 1,500
MHz MHz

Features Switchable output Oscillators 1.5 pS Phase Jitter ( typical )

Mercury’s Q-Family crystal oscillators that can be delivered in days

Low current consumption (44 mA for LVPECL 622.080 MHz at 3.3V ) and an integrated phase jitter

performance of 1.5 pS RMS. Gaining its precision frequency control market position by providing
engineers with next-day samples for prototypes.

Oscillators General specifications , at Ta = + 25°C , CL = 15 pF

Model HCTQF HCPQF HCDQF
Output Logic
Supply Voltage VDD ( code ) LVCMOS / LVTTL LVPECL LVDS
Available Frequency Range
Load + 2.5 VDD ± 5% ( voltage code " 25 " ) + 2.5 VDD ± 5% ( voltage code " 25 " ) + 2.5 VDD ± 5% ( voltage code " 25 " )
Output Logic " High " , " 1 "
Output Logic " Low " , " 0 " + 3.3 VDD ± 5% ( voltage code " 33 " ) + 3.3 VDD ± 5% ( voltage code " 33 " ) + 3.3 VDD ± 5% ( voltage code " 33 " )
Current Consumption ( VDD = + 2.5 V ) 10 ~ 250 MHz 10 ~ 1,500 MHz 10 ~ 1,500 MHz
Current with Output Disabie
Current Consumption ( VDD = + 3.3 V ) 15 pF 50 Ω into Vcc - 2V or Thevenin equivalent 100 Ω between output and complimentary output

Rise Time / Fall Time 90 % VDD VDD - 1.03 ( min.) , VDD - 0.6 ( max.) 1.4 V Typical , 1.6 V max.
Phase Jitter , rms ( typical ) 10 % VDD VDD - 1.85 ( min.) , VDD - 1.6 ( max.) 1.1 V Typical , 0.9 V min.
400 MHz : 40 mA ; 600 MHz : 45 mA 400 MHz : 30 mA ; 600 MHz : 30 mA
( 12 KHz to 20 MHz ) 100 MHz : 30 mA ; 250 MHz : 40 mA 1000 MHz : 35 mA ; 1,500 MHz : 35 mA
1,000 MHz : 50 mA ; 1,500 MHz : 55 mA
Frequency Stability Codes
18 mA typical 18 mA typical 18 mA typical

100 MHz : 35 mA ; 250 MHz : 40 mA 400 MHz : 45 mA ; 600 MHz : 45 mA 400 MHz : 30 mA ; 600 MHz : 30 mA
1,000 MHz : 50 mA ; 1,500 MHz : 60 mA 1,000 MHz : 35 mA ; 1,500 MHz : 40 mA

10.0 nS. ( max. ) 0.5 nS. ( max. ) 0.4 nS. ( max. )

Tr / Tf : 10% ↔ 90% waveform Tr / Tf : 20% ↔ 80% waveform Tr / Tf : 20% ↔ 80% waveform

100 MHz : 0.8 ps ; 250 MHz : 0.8 ps < 400 MHz: 0.8 ps ; 600 MHz : 1.0 ps < 400 MHz: 0.8 ps ; 600 MHz : 0.8 ps
1,000 MHz : 1.3 ps ; 1,500 MHz : 1.7 ps 1,000 MHz: 1.1 ps ; 1,500 MHz : 1.3 ps

Frequency Stability ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
over Operating Temperature Range stability after the " C " or " I " represents .

Commercial ( -10°C to +70°C ) A B C For example :
Industrial ( -40°C to +85°C ) " C20 " ± 20 ppm over -10°C to +70°C ;

D E F " I20 " ± 20 ppm over -40°C to +85°C

Duty Cycle 50 % ± 5% Aging at Ta = +25°C ± 5 ppm max. for first year at 25°C
Start-up Time
10 m sec. ( max.) Storage Temperature -55°C to + 150°C
OE Control on Pad 1
Output Enable Time / Disable Time Output Enable Function

Frequency Selection ( FSEL ) 70% of VDD (min.) to enable output. (Open connection prohibit.)
FSEL on Pad 2 30% of VDD (max.) to disable output
200 nS. Max. / 50 nS. Max.

Frequency Selection Function on Pad 2

When FSEL = 0 ( 0 V or GND ) , Output frequency is Freq.1 ( f 1 ) Default FSEL pin has internal pull-up resistor

When FSEL = 1 ( VDD ) , Output frequency is Freq.2 ( f 2 )
70% of VDD ( min. ) For FSEL = 1 , Output frequency is Freq.2 ( f2 )
30% of VDD ( max.) For FSEL = 0 , Output frequency is Freq.1 ( f1 )

Output OE Function on pad 1

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HC_QF326 HC_QF536 HC_QF576

Pad Connections
Pad 1 : OE - High Enable ; Pad 2 : Frequency Selection [ FSEL = 0 ( f 1 ) , FSEL =1 ( f 2 ) ] ; Pad 3 : Ground
Pad 4 : [ CMOS : Output , LVPECL or LVDS : Differential ] ; Pad 5 : [ CMOS : NC , LVPECL or LVDS : Complementary ] ; Pad 6 : Supply Voltage

Mercury www .mercury-crystal.com ■Taiwan : Tel (886)-2-2406-2779 / [email protected]

■U.S.A: Tel: (1)-909-466-0427 / [email protected]■n C: Theinl:a(+: 8T8e6l:)(-826-2)-450162--25777693-/8s1a0l0es/ -stwal@[email protected]

USA: Tel: (+1)-909-466-0427 / [email protected] 39China: Tel: (+86)-512-5763-8100 / [email protected]

-39-

Frequency Switchable Crystal Oscillators [ 10 ~ 1,500 MHz ]

HCTQF HCPQF HCDQF Q family Frequency SMD 2.5 V 3.3 V Min. Max.
F series Switchable 10 1,500
CMOS waveform PECL Differential LVDS Differential MHz MHz

Part Number Format and Example

Example : 3HCTQF576 - E - 30.000 / 120.000

3 HCTQN 576 - E - 30 / 120
Supply Voltage HCTQF : CMOS Custom
Package Size Frequency Stability Code “ E ”: Custom Frequency 2
“ 3 ” for 3.3V HCPQF : LVPECL FSEL = 1
“ 25 ” for 2.5V HCDQF : LVDS “ 576 ”: 7 x 5 mm ±50 ppm over -40 to +85°C. Frequency 1 ( MHz ) Oscillators

“ 536 ”: 5 x 3.2 mm Other frequency stabilities are available. FSEL = 0

“ 326 ”: 3 x 2.5 mm ( MHz )

Test Circuits and Output Waveforms

CMOS LVPECL LVDS

Phase Noise and Phase Jitter Data 3HCTQF576-E-30.000/120.000 (typical) , VDD=+3.3V , FSEL=1 ( 3.3V )

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4 Frequencies Switchable Crystal Oscillators [ 15 ~ 2,100 MHz ]

HC_JF 4 Frequencies 150 fs Phase Jitter ( typ. ) SMD 1.8 V 2.5 V 3.3 V Min. Max.
Switchable
CMOS / Differential 15 2,100
MHz MHz

Oscillators Features

Mercury’s 4 Frequencies switchable crystal oscillators that can be delivered in days
An integrated phase jitter performance of 150 fs RMS.
Supports all popular formats: CMOS, LVPECL, LVDS, HCSL and CML
Gaining its precision frequency control market position by providing engineers with
next-day samples for prototypes.

General specifications , at Ta = + 25°C

Model HCTJF HCPJF HCDJF HCCJF HCQJF
Output Logic
LVCMOS LVPECL LVDS HCSL CML
Supply Voltage VDD ( code ) + 1.8 VDD ± 5% -- -- + 1.8 VDD ± 5% + 1.8 VDD ± 5%

Available Frequency Range + 2.5 VDD ± 10% + 2.5 VDD ± 10% + 2.5 VDD ± 10% + 2.5 VDD ± 10% + 2.5 VDD ± 10%
Load + 3.3 VDD ± 10% + 3.3 VDD ± 10%
+ 3.3 VDD ± 10% + 3.3 VDD ± 10% + 3.3 VDD ± 10%
Output Logic " High " , " 1 " 15 ~ 2,100 MHz 15 ~ 2,100 MHz
15 ~ 250 MHz 15 ~ 700 MHz 15 ~ 2,100 MHz
Output Logic " Low " , " 0 "
Current Consumption 15pF 50 Ω into VDD - 2V or 100 Ω between output and 50 Ω to GND 50 Ω to VDD
( VDD = + 3.3 V ) Thevenin equivalent complimentary output
Current with Output Disabie
Rise Time / Fall Time 90% VDD min. VDD - 1.03 V min. 1.4 V Typical VDD : 0.66V min. VDD - 0.085V min.
Phase Jitter , rms ( typical ) 10% VDD max. VDD - 0.6 V max. 1.6 V max. VDD : 1.15V max. VDD = max.
( 12 KHz to 20 MHz ) VDD - 1.85 V min. 1.1 V Typical VDD : 0.0V min.
VDD - 1.6 V max. 0.9 V min. VDD : 0.15V max. VDD - 0.6V min.
Frequency Stability Codes VDD - 0.32V max.

Duty Cycle 75 mA typ. 100 mA typ. 75 mA typ. 94 mA typ. 70 mA typ.
Start-up Time 90 mA max. 120 mA max. 90 mA max. 115 mA max. 85 mA max.
Aging at Ta = +25°C
Storage Temperature 62 mA typical 99 mA typical 74 mA typical 93 mA typical 69 mA typical

FS0 Control on Pad 1 5.0 nS max. 0.4 nS max. 0.4 nS max. 0.4 nS max. 0.4 nS max.

FS1 Control on Pad 2 ( 10% to 90% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform ) ( 20% to 80% Waveform )
Frequency Select Timing ; tFS
Frequency Configurations 156.250 MHz : 148 fs ; 312.500 MHz : 147 fs ; 644.530 MHz : 141 fs ; 1,500 MHz : 147 fs ; 2,000 MHz : 155 fs

Frequency Stability ± 25 ppm ± 50 ppm ± 100 ppm If non-standard , please enter the desired
Over Operating Temperature Range A B C stability after the " C " or " I " represents .
Commercial ( -10°C to +70°C ) D E F For example :
" C20 " ± 20 ppm over -10°C to +70°C ;
Industrial ( -40°C to +85°C ) " I40 " ± 40 ppm over -40°C to +85°C

50 % ± 5%
5 m sec ( typ. ) ; 10 m sec. ( max.)
± 3 ppm max. for first year at 25°C
-55°C to + 150°C

Frequency Selection Function
70% VDD min. to logic Level " 1 "
30% VDD max. to logic Level " 0 "
70% VDD min. to logic Level " 1 "
30% VDD max. to logic Level " 0 "
2.5 m sec ( max. )
The frequency output 1 ~ 4 setting is done based on the logic levels in the Table 1.

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

HC_JF5781

Pad Connection : Frequency selection configurations

Pad 1 : FS0 Control FS1 FS0 Freq. output

Pad 2 : FS1 Control 0 0 Freq. 1

Pad 3 : Ground 0 1 Freq. 2

Pad 4 : CMOS : Output 1 0 Freq. 3

Differential : Output 1 1 Freq. 4

Pad 5 : CMOS : No Used For CMOS Table 1

Differential : Complementary Output

Pad 6 : Supply Voltage

Pad 7 : Do Not Connect

Pad 8 : Do Not Connect

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4 Frequencies Switchable Crystal Oscillators [ 15 ~ 2,100 MHz ]

HC_JF 4 Frequencies 150 fs Phase Jitter ( typ. ) SMD 1.8 V 2.5 V 3.3 V Min. Max.
Switchable
CMOS / Differential 15 2,100
MHz MHz

Part Number Format and Example

Example : 3HCTJF578 - E - 156 / 250 / 622 / 1024

3 HCTJF 578 - E - 156 / 250 / 622 / 1024

Supply Voltage HCTJF : CMOS Package Size Freq. Stability Code 156.250 250.000 622.080 1,024.00 Oscillators
“ 3 ” for 3.3V HCPJF : LVPECL “ 578 ”: 7 x 5 mm E : ±50 ppm Freq. 1 Freq. 2 Freq. 3 Freq. 4
“ 25 ” for 2.5V HCDJF : LVDS ( MHz ) ( MHz ) ( MHz ) ( MHz )
“ 18 ” for 1.8V HCCJF : HCSL over -40 to +85℃
HCQJF : CML Other temperature
stabilities are available.

Voltage and Timing Definitions

Output Enable / Disable Frequency Select Timing

Test Circuits and Output Waveforms LVPECL , LVDS , HCSL , CML Output Waveforms
CMOS Output Waveforms

HCSL CML

CMOS LVPECL LVDS

VDD = 3.3 V : R1 = R3 = 127 Ω ; R2 = R4 = 82.5 Ω
VDD = 2.5 V : R1 = R3 = 250 Ω ; R2 = R4 = 62.5 Ω

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True Sine Wave Clock Oscillators [ HS series ]

HS _ _ True Sine Wave Thru-Hole 3.3V 5.0V Min. Max.
10 MHz 200 MHz
50Ω load

Features

● High purity and low total harmonic distortion. Ideal for audio modulation applications.
● For VCXOs with a Sine Wave output, please refer to "GS" series

General specifications of all available packages , at Ta=+25°C

Oscillators Output Wave Form True Sine Wave
Model
" HS " series
Load
Package 50Ω. ( Internally AC coupled )
Dimensionss , unit : mm
Input Voltage ( VDD) Thru-Hole HS14 ( 20.2 * 12.8 * 6.0 )
Frequency Range Gull - Wing
HS24 ( 20.2 * 12.8 * 7.3 )
Output Level
+3.3V D.C.±5% +5.0V D.C.±10%
Current Consumption
10.0 ~ 200 MHz 10.0 ~ 156.250 MHz
Harmonics
Start -up Time Standard: +3.0 dBm min. Standard: +5.0 dBm min.
Storage Temperature
Pin 1 option Tolerance: ± 1 dBm Tolerance: ± 1 dBm

Maximum Power: +7 dBm Maximum Power: +13 dBm

( User to specify ) ( User to specify )

10 MHz : 9 mA ( typ.) 10 MHz : 18 mA ( typ.)

100 MHz : 18 mA ( typ.) 100 MHz : 34 mA ( typ.)

150 MHz : 19 mA ( typ.) 150 MHz : 36 mA ( typ.)

< - 30dBc (frequency dependent) < - 25dBc (frequency dependent)

6.0 m Sec.( typ.) 2.0 m Sec.( typ.)

- 50°C to 125°C - 55°C to 125°C

Tri-state , Output disable when taken low No Tri-state option

Frequency Stability over ± 25 ppm ± 50 ppm If non-standard please enter the desired
Operating Temperature Range ± 100 ppm

stability after the " C "or " I " represents .

Frequency Stability Codes Commercial -10°C to +70°C A BC
For example :
Industrial -40°C to +85°C D
" C20 " : ± 20 ppm over -10°C to +70°C
Sub-Harmonics EF
Aging
" I30 " : ± 30 ppm over -40°C to +85°C
Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs None
[ HS14 ] ± 5 ppm per year (max.)

[ HS24 ]

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True Sine Wave Clock Oscillators [ HS series ]

Part Number Format and Example

[1] [2] [3] [4] [5]

Supply Holder – Frequency – Center – Output Power
Voltage Type
Stability Frequency [ HS series only ]

Example (1) 3 HS14 – A – 100.000 – 5

Ex (1) : 3HS14 - A - 100.000 - 5 [ +3.3V , True Sine wave , 50 Ω load , RoHS , ±25ppm from -10°C to 70°C , 100.000MHz , Output power is 5dBm ±1dB ] Oscillators

[ 1 ] Supply voltage , " 28 " for +2.8V ; " 3 " for +3.3V ; " 5 " for +5.0V
[ 2 ] Holder Type

" A " ± 25ppm ; " B " ± 50ppm ; " C " ± 100ppm ;
-10°C ~ 70 °C

If non-standard please enter the desired stability after " C " , for example " C15 " : represents ±15ppm over -10 to +70°C
[3]

" D " ± 25ppm ; " E " ± 50ppm ; " F " ± 100ppm ;
-40°C ~ 85 °C If non-standard please enter the desired stability after " I " , for example " I20 " : represents ±20ppm over -40 to +85°C
[ 4 ] Frequency in MHz
[ 5 ] Output power in dBm ( HS series only )

50 Ω Load Test Circuit : For " HS " series

Output Wave Form

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Mercury Crystal Oscillator Products Lineup

General VCXOs Selection Guide [ Square Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series

G 1.8 / 3.3 / 5.0 General purpose VCXOs. 1 ~ 50.0 MHz .

CMOS GTQN 2.5 / 3.3 50 ~ 250 MHz , 0.6 pS Phase Jitter ( typical )

GTJF 1.8 / 2.5 / 3.3 50 ~ 250 MHz , 200 fsec Phase Jitter ( typical )

PECL GPQN 2.5 / 3.3 10 MHz ~ 1,500 MHz , 0.6 pS Phase Jitter ( typical )

LVDS GDQN 2.5 / 3.3 10 MHz ~ 1,500 MHz , 0.6 pS Phase Jitter ( typical )

PECL GPJF 2.5 / 3.3 15 ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )

VCXOs LVDS GDJF 2.5 / 3.3 15 ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )

CML GQJF 2.5 / 3.3 15 ~ 2,100 MHz , 150 fsec Phase Jitter ( typical )

HCSL GCJF 2.5 / 3.3 15 ~ 700 MHz , 150 fsec Phase Jitter ( typical )

Clock Oscillators Selection Guide [ Sine Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series

3.3 10 MHz to 250.0 MHz , Output level is greater than 0 dBm into 50 Ω load .

Sine Wave GS

5.0 10 MHz to 156 MHz , Output level is greater than 0 dBm into 50 Ω load .

Frequency Switchable VCXOs [ Select f1 or f2 by Toggling Pin 1 ] [ Square Wave output ]

Output Wave Product Supply Voltage Product Description / Features
Output Logic Series 2.5 / 3.3 50 MHz ~ 250 MHz , QuikXO™ Switchable output Oscillators

CMOS GCTQF 1.5 pS Phase Jitter ( typical )

PECL GCPQF 2.5 / 3.3 10 MHz ~ 1,500 MHz , QuikXO™ Switchable output Oscillators

LVDS 1.5 pS Phase Jitter ( typical )

GCDQF 2.5 / 3.3 10 MHz ~ 1,500 MHz , QuikXO™ Switchable output Oscillators

1.5 pS Phase Jitter ( typical )

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45

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Voltage Controlled Crystal Oscillators CMOS output

VCXO " G " CMOS Thru-Hole SMD 1.8 V 3.3 V Min. Max.
2.5 V 5.0 V 1.25 MHz 50.0 MHz

Unlike regular clock oscillators that have a fixed output frequency, the output frequency of VCXOs
( also known as " frequency modulators " ) can be tuned ± 50 ~ ± 200ppm up or down
from the nominal frequency, by varying the control voltage on the voltage control pin.
A varactor and a voltage variable capacitance tuning diode, is used to achieve this function.

Applications include ( PLL ) phase lock loop, SONET / ATM, set -top boxes, MPEG,
audio -video modulations, video game consoles and HDTV sets, ONET, 10GbE, Fibre Channel,
wireless repeaters, transponders, HDTV, FPGAs, data acquisition.

General Specifications of " G " series , [ TA = +25°C , VDD= at specified voltage , Load : 15 pF ]

Model " G " series
Output Wave Form
Type CMOS
Pads / Pins
SMD Type Thru - Hole Type
Models ( Dimensions ) , Unit : mm 4 pins
4 pads 6 pads
G14 ( 20.2 * 12.8 * 6.0 )
G324 ( 3.2 * 2.5 * 1.0 ) G534 ( 5.0 * 3.2 * 1.2 ) G326 ( 3.2 * 2.5 * 1.0 ) VCXOs
G42 ( 11.4 * 9.6 * 2.5 ) G43 ( 11.4 * 9.6 * 3.0 ) G536 ( 5.0 * 3.2 * 1.2 ) G8 ( 12.8 * 12.8 * 5.5 )
G576 ( 7.0 * 5.0 * 1.8 )

Input Voltage ( VDD) VDD = +1.8V ± 5% VDD = +2.5V ± 5% VDD = +3.3V ± 5% VDD = +5.0V ± 10%
Frequency Range 16.0 MHz ~ 50.0 MHz 1.25 MHz ~ 50.0 MHz 1.25 MHz ~ 50.0 MHz 1.25 MHz ~ 50.0 MHz
Initial Freq. Accuracy ( at 25 °C )
Output Logic High " 1 " with Vc = 0.9V ± 0.15V with Vc = 1.25V ± 0.2V with Vc = 1.65V ± 0.2V with Vc = 2.5V ± 0.2V
Output Logic Low " 0 "
Frequency Deviation Range 1.62 V ( min.) 2.25 V ( min.) 2.97 V ( min.) 4.5 V ( min.)
Control Voltage Center
Control Voltage Range 0.183 V ( max.) 0.25 V ( max.) 0.33 V ( max.) 0.5 V ( max.)
Standard : ± 80 ppm ( min. ) ;
Frequency Stability Codes Standard : ± 80 ppm ( min. ) Standard : ± 80 ppm ( min. ) Standard : ± 80 ppm ( min. ) ± 200 ppm ( min. ) available

0.9 VDC 1.25 VDC 1.65 VDC 2.5 VDC
0.0V to 1.8V 0.25 V to 2.25 V 0.3V to 3.0V
0.5V to 4.5V

Frequency Stability over ± 25 ppm ± 50 ppm If non-standard please enter the
Operating Temperature Range ± 100 ppm

desired stability after the " C " or " I "

Commercial " C " ( -10°C to +70°C ) A B C For example :

" C20 " : ± 20 ppm over -10°C to +70°C ;

Industrial " I " ( -40°C to +85°C ) D E F " I30 " : ± 30 ppm over -40°C to +85°C

Output Load 15 pF

Rise Time ( Tr ) / Fall Time ( Tf ) 6 nSec.(max.) ; 4 nSec.(typical) . Measured between 10% to 90% of wave form ( CL=15pF )
Duty Cycle 50% ± 10% (standard) , 50% ± 5% ( optional, add " - S " as suffix to part number )

Integrated Phase Jitter 1 ps max. ( 12 KHz to 20 MHz ) .

Phase Noise [ typical of 27.0 MHz ] 10 Hz 100 Hz 1k Hz 10K Hz 100K Hz 1 MHz
[ at 3.3V ] -40 dBc/Hz -104 dBc/Hz -132 dBc/Hz -147 dBc/Hz -152 dBc/Hz -150 dBc/Hz

Start-up Time (Ts) 10 mSec. (max.)

Current Consumption 10 ~ 45 mA ( Frequency dependent). For 27 MHz: 10 mA typical at +3.3 VDD and 20 mA typical. at 5.0 VDD.

Linearity 6% typical ; 10% max.

Modulation Bandwidth 10 KHz min. Measured at -3 dB

Input Impedance 5 MΩ typical

Slope Polarity (Transfer Function) Monotonic and Positive : Increasing control voltage always increases output frequency ,

Aging ± 3 ppm per year (max.)

OE Control 70% of VDD min. is applied to output enable . ; Output enable time : 2 ms max.

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46

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Voltage Controlled Crystal Oscillators CMOS output

Outline Dimensions ( Unit : mm ) , Suggested pad Layout for SMDs

[ G324 ] [ G326 ]

[ G534 ] [ G536 ]

VCXOs

[ G576 ] [ G43 ]

[ G14 ] [ G8 ]

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Voltage Controlled Crystal Oscillators CMOS output

Part Number Format and Examples

[1] [2] [3] [4] [5] [6]

Supply Holder – Frequency – Pulling Range – Center
Voltage Type Stability Range Code
Frequency

(1) 5 G14 – B – 100 N – 35.328
Examples 3 T – 27.000
G576 – D – 80
(2)

Ex (1) : 5G14 - B - 100N - 35.328 [ +5.0V , full size 4 pin Dip type , ±50ppm ( -10°C to 70°C) , pulling : ±100 ppm ( min.) , 35.328 MHz ]

Ex (1) : 3G576 - D - 80T - 27.000 [ +3.3V , G576 type , ±25ppm ( -40°C to 85°C) , pulling : ±80 ppm ( typical ) , 27.000 MHz ]

[ 1 ] Supply voltage , " 18 " for +1.8V ; " 25 " for +2.5V ; " 3 " for +3.3V ; " 5 " for +5.0V

[ 2 ] Holder Type

-10°C ~ 70 °C " A " ± 25ppm ; " B " ± 50ppm ; " C " ± 100ppm ; VCXOs
[3] If non-standard please enter the desired stability after " C " ,for example " C15 ": represents ±15ppm over -10 to +70°C
" D " ± 25ppm ; " E " ± 50ppm ; " F " ± 100ppm ;
-40°C ~ 85 °C If non-standard please enter the desired stability after " I " ,for example " I20 ": represents ±20ppm over -40 to +85°C
3.3V From ±30ppm ~ ±150ppm , control Voltage range : 0.3V ~ 3.0 ; control voltage center : ± 1.65 V
[ 4 ] Freqency Pulling Range 5.0V From ±70ppm ~ ±200ppm , control Voltage range : 0.5V ~ 4.5V ; control voltage center : ± 2.5 V

[ 5 ] Pulling Range Code " M " stands for maximum ; " N " stands for minimum ; " T " stands for typical ( tolerance is ± 20% )

[ 6 ] Center Frequency in MHz

CMOS Output Wave Form Transfer Function

[ 4 pads ] CMOS Square Wave Test Circuit [ 6 pads ] CMOS Square Wave Test Circuit

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