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CST11.0MTW Dataheets PDF



Part Number CST11.0MTW
Manufacturers muRata
Logo muRata
Description CERAMIC RESONATOR
Datasheet CST11.0MTW DatasheetCST11.0MTW Datasheet (PDF)

This is the PDF file of catalog No.P16E-9. CERAMIC RESONATOR (CERALOCK®) Ceramic Resonator CSU/CST Series (CERALOCK®) P16E9.pdf 97.09.29 CERALOCK R with built in loading capacitors. MURATA's ceramic resonator, CERALOCK R ,has been widely applied as the most suitable component for clock oscillators in a broad range of microprocessors. The CSU series (KHz band) and CST series (MHz band) can be used in the design of oscillation circuits not requiring external load capacitors, enabling both high-.

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This is the PDF file of catalog No.P16E-9. CERAMIC RESONATOR (CERALOCK®) Ceramic Resonator CSU/CST Series (CERALOCK®) P16E9.pdf 97.09.29 CERALOCK R with built in loading capacitors. MURATA's ceramic resonator, CERALOCK R ,has been widely applied as the most suitable component for clock oscillators in a broad range of microprocessors. The CSU series (KHz band) and CST series (MHz band) can be used in the design of oscillation circuits not requiring external load capacitors, enabling both high-density mounting and cost reduction. cFEATURES 1. Oscillation circuits do not require external load capacitors. 2. The series is stable over a wide temperature range. 3. The resonators are compact, light weight and exhibit superior shock resistance performance. 4. They enable the design of oscillator circuits requiring no adjustment. 5. The series is inexpensive and avaiable in stable supply. 6. There are some variation of built-in capacitance value to apply various of IC. cAPPLICATIONS 1. DTMF generators aRemote control units 2. Clock oscillators for microcomputers 3. Automated office equipment aAutomotive electronics (Suffixed “eA” ex. CSTMMGWA) cSPECIFICATIONS Type Item Frequency Range Oscillation Frequency Initial Tolerance Oscillation Frequency Temperature Stability 21 Aging 2 CSU Series 450e500kHz f2kHz f0.3% f0.5% VDD CSTMMG 1.80e2.44MHz f0.5% CST Series CSTMMGW CSTMMTW 2.45e6.30MHz 6.31e13.0MHz f0.5% f0.5% CSTMMXW040 13.01e60.0MHz f0.5% f0.3% f0.3% f0.3% f0.3% VDD f0.4% f0.3% f0.3% f0.3% Oscillation Frequency Test Circuit IC 1MΩ IC Output X4 (1) (3) IC :1/6CD4069UBEg2 (2) VDD :5V X :Chip CERALOCK® 21 At e20 to d80˚C (Temperture Condition) 22 Room Temperature 10Years. 23 MXW040 Series are used with the TC74HCU04IC. 24 Input terminal (1) shuld be connected to the input of an inverter. 25 If connected with incorrect orientation, the above specification may not be garanteed. IC 1MΩ IC X5 (1) (3) (2) Output IC :1/6CD4069UBEg2 23 VDD :5V (MTW Series:12V) X :CERALOCK® 11 This is the PDF file of catalog No.P16E-9. CERAMIC RESONATOR (CERALOCK®) Ceramic Resonator CSU/CST Series (CERALOCK®) P16E9.pdf 97.09.29 cDIMENSIONS Frequency Part number 450e500MHz CSUMP 1.80e2.44MHz CSTMMG 2.45e6.30MHz CSTMMGW 6.31e13.0MHz CSTMMXW 5.0 8.0 max 1 0.3 3.5 3.5 9.0 Dimensions (Unit : mm) 7.0 U480 P CM V 1.1 (3) (2)(1) 3 12.0 max C2.00 M V ( 3 )( 2 )( 1 ) 5.0 10.0max 10.0max C4.00 M V ( 3 )( 2 )( 1 ) 5.0 6.0max 10.0 max 8.00 CM V ( 3 )( 2 )( 1 ) 5.0max 0.3 5.0max 0.3 5.0max 0.3 2.5 2.5 2.5 2.5 2.5 2.5 21 6.01e7.99MHz: 9.0mm max. 22 13.01e14.99MHz: 9.0mm max., 33.00e60.00MHz:7.0mm max. 23 Terminals have directionality : (1)Input (2)Ground (3)Output 24 The CSUMP is not washable. cTHE STABILITY OF OSCILLATION FREQUENCY WITH TEMPERATURE VARIATION 0.3 13.01e60.00MHz CSTMMXW 10.0 max 16.00X CM V (3)(2)(1) 2.5 2.5 5.0max 5.0 8.0 max 2 CSU480P d0.5 CST11.0MTW d0.5 Frequency Drift ( % ) Frequency Drift ( % ) 0 e40 0 40 80 120 Temperature (˚C) e0.5 0 e40 0 40 80 120 Temperature (˚C) e0.5 Frequency Drift ( % ) CST3.58MGW d0.5 0 e40 0 40 80 120 Temperature (˚C) e0.5 Frequency Drift ( % ) CST16.00MXW040 d0.5 0 e40 0 40 80 120 Temperature (˚C) e0.5 12 This is the PDF file of catalog No.P16E-9. P16E9.pdf 97.09.29 cAPPLICATION CIRCUITS UTILIZING THE CERALOCK® Application to 80C49 (8-bit Microcomputer) d5V 40 26 VC C VD D 80C49 X1 X 2 EA ALE VSS 2 3 7 11 20 CSA4.00MG (4MHz) CSA6.00MG (6MHz) CSA11.0MT (11MHz) Can be applied 30pF 30pF R CERALOCK 1 15 Fosc (1)80C49(INTEL) (2)µPD80C49(NEC) (3)TMP80C49(TOSHIBA) (4)MSM80C49(OKI) (5)M5L80C49(MITSUBISHI) Application to M38063E6FP (MITSUBISHI) (8-bit Microcomputer) VC C(+5V) 73 IC:M38063E6FP 30 31 26,27,32,75 R CERALOCK C1 C2 V1 V2 Recommendable Value CERALOCK R : CST4.00MGW C1=30pFf20% C2=30pFf20% Application to HD64F3434 (HITACHI) (8-bit Microcomputer) VC C(+5V) H IC:HD64F3434 32 R CERALOCK L C1 C2 V1 V2 H:1,4,8,9,37,59 L:5,6,7,15,46,70,71,100 Recommendable Value CERALOCK R : CSA16.00MXZ040 C1=22pF C2=22pF Application to MSM65344A (8-bit Microcomputer) VD D(+3V) H IC:MSM65344A 62 61 L R CERALOCK V1 C1 C2 V2 H:25,52,73-75 L:18,63 Recommendable Value CERALOCKR : CSA5.00MG C1=30pF C2=30pF Application to 8085 (8-bit Microcomputer) d5V 1 2 Fosc 30pF 30pF 40 30 VCC CLK(OUT) 8085A X1 X 2 12 CSA4.00MG VSS 20 (1)8085A(INTEL) (2)µPD8085A(NEC) (3)TMP8085A(TOSHIBA) (4)MSM8085A(MITSUBISHI) Application to M34550M4 (MITSUBISHI) (Remote Control Unit) VC C(+3.0V) 33,36 IC:M34550M4 30 31 R CERALOCK L C1 C2 V1 V2 L:13-27,29,32,37-40 Recommendable Value CERALOCK R : CSB455E C1=220pF C2=220pF Application to MC68HC05P6 (MOTOROLA) (8-bit Microcomputer) VD D(+5V) H IC:MC68HC05P6 27 26 Rf R CERALOCK C1 C2 V1 V2 L H:2,15-18,23,25,28 L:11-14 Recommendable Value CERALOCK R : CSA4.00MG C1=30pF C2=30pF Rf =1MΩ Application to TC88402F (TOSHIBAI) (Speech Synthesizer) VD D=+5V H IC:TC88402F 12 GND R CERALOCK C1 C2 V1 V.


CSU480P CST11.0MTW CST3.58MGW


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