Untitled
Abstract: No abstract text available
Text: QKT - HC49S QUARTZ CRYSTAL PICTURE FEATURES Low cost, Good aging Wide frequency range, Pb-free & RoHS Compliance SPECIFICATIONS Holder Type Frequency Range Operating Temperature Range Storage Temperature Range Drive Level Load Capacitance Frequency Tolerance
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HC49S
HC-49S
200MHz
000MHz
100uW
8pF-32pF
30ppm
50ppm
250max
150max
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OP4012B
Abstract: OP4005B
Text: • • • • • OP4012B Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 644.53125 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4012B
2002/95/EC
OP4012B
SMC-08
OP4005B
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B-041003
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OP4012B
Abstract: No abstract text available
Text: OP4012B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 644.53125 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4012B
OP4012B
OP4012B-041003
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4008B • • • • Quartz SAW Stabilized and Filtered “Diff Sine” Technology Fundamental-Mode Oscillation at 669.327 MHz Voltage Tunable for Phase Lock Loop Operations Optical Timing Reference for Forward Error Correction Applications
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OP4008B
OP4008B-032403
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B-092501
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B
OP4005B-091101
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B-032403
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4046 application note pll
Abstract: 4046 pll
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B-082901
4046 application note pll
4046 pll
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Untitled
Abstract: No abstract text available
Text: • • • • • OP4012B Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 644.53125 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4012B
2002/95/EC
OP4012B
SMC-08
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58MGW300A
Abstract: TC40H004P colpitts oscillator construction design CST3.58MGW Colpitts circuit design hcmos TOSHIBA Quartz resonator 12 Mhz hartley oscillator 4mhz resonator datasheet CSA3.58MG300B
Text: Piezoelectric Resonators Introduction Ceramic resonators are piezoelectric ceramic devices that are designed to oscillate at certain frequencies. They are highly stable, small, inexpensive, and do not require tuning or adjusting. Other common resonant devices are quartz
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comC20
01MHz
00MHz
58MGW300A
TC40H004P
colpitts oscillator construction design
CST3.58MGW
Colpitts circuit design
hcmos TOSHIBA
Quartz resonator 12 Mhz
hartley oscillator
4mhz resonator datasheet
CSA3.58MG300B
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OP4005B
Abstract: OP4008B
Text: Preliminary OP4008B • • • • Quartz SAW Stabilized and Filtered “Diff Sine” Technology Fundamental-Mode Oscillation at 669.327 MHz Voltage Tunable for Phase Lock Loop Operations Optical Timing Reference for Forward Error Correction Applications
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OP4008B
OP4008B-041003
OP4005B
OP4008B
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B-010702
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4005B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 622.08 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for Optical Data Communications Systems
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OP4005B
OP4005B
OP4005B-092501
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4004B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 625.00 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4004B
OP4004B-010702
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Untitled
Abstract: No abstract text available
Text: OP4008B • • • • Quartz SAW Stabilized and Filtered “Diff Sine” Technology Fundamental-Mode Oscillation at 669.327 MHz Voltage Tunable for Phase Lock Loop Operations Optical Timing Reference for Forward Error Correction Applications 669.327 MHz
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OP4008B
OP4008B-041003
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Precision Monolithics
Abstract: OP4004B 1kilohm
Text: Preliminary OP4004B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 625.00 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4004B
OP4004B
OP4004B-041003
Precision Monolithics
1kilohm
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4012B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 644.3125 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4012B
OP4012B-010702
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Untitled
Abstract: No abstract text available
Text: Preliminary OP4012B • • • • Quartz SAW Stabilized Differential Output Technology Very Low Jitter Fundamental-Mode Operation at 644.53125 MHz Voltage Tunable for Phase Locked Loop Applications Timing Reference for 10G Optical Ethernet Communications Systems
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OP4012B
OP4012B
OP4012B-011802
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Cordless Phone circuit diagram
Abstract: Cordless Phone block diagram AK2357 50mhz crystal oscillator DIP Scrambler high frequency pll board
Text: AKM — C O M M U NIC ATION PRODUCTS Frequency Inverter Scrambler 3 @ © © ® High quality decoded voice: S /N > 45dB Four inversion frequencies are selectable Scrambler/Descrambler bypass mode On chip oscillator circuit for 3.58MHz quartz crystal
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58MHz
24MHz
24pin
AK2356E
50MHz.
16MHz
44pin
10x10x1
AK2357
AKD2357
Cordless Phone circuit diagram
Cordless Phone block diagram
50mhz crystal oscillator DIP
Scrambler
high frequency pll board
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AK2366
Abstract: frequency inverter scrambler MICROPHONE 3.6864MHz crystal Scrambler inversion
Text: AKM ► COM M UNIC ATION PRODUCTS Frequency Inverter Scrambler for Cordless Telephone Sets High quality decoded voice: S / N > 4 5 d B <D Four inversion frequencies are selectable @ Scrambler/Descrambler full bypass mode @ On chip oscillator circuit for 3.58MHz quartz crystal
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58MHz
24MHz
24pin
AK2366
1200/2400bps
frequency inverter
scrambler
MICROPHONE
3.6864MHz crystal
Scrambler inversion
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cm8870 dtmf decoder circuit diagram
Abstract: pin diagram of CM8870 CM8870 16DTMF
Text: A om d C M 8870 Microcircuits_ CMOS DTMF Integrated Receivers FEATURES GENERAL DESCRIPTION • Full DTMF receiver • Less than 35 mW power consumption • Industrial temperature range • Uses quartz crystal or ceramic resonators
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18-pin
CM8870
20pin
CM8870
CM8870C
cm8870 dtmf decoder circuit diagram
pin diagram of CM8870
16DTMF
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Untitled
Abstract: No abstract text available
Text: A CM8870C/CM8871C/CM8872C CMD Microcircuits CMOS DTMF Integrated Receivers GENERAL DESCRIPTION FEATURES Full DTMF receiver Less than 35 mW power consumption Industrial temperature range Uses quartz crystal or ceramic resonators Adjustable acquisition and release times
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CM8870C/CM8871C/CM8872C
18-pin
CM8870C
CM8871C
CM8872C
CM8870
20pin
08C2C
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cm8870 dtmf decoder circuit diagram
Abstract: cm8870decoder CM8870 08C3 CM8870C
Text: A CM8870C/CM8871C/CM8872C CMD Microcircuits CMOS DTMF Integrated Receivers GENERAL DESCRIPTION FEATURES Full DTMF receiver Less than 35 mW power consumption Industrial temperature range Uses quartz crystal or ceramic resonators Adjustable acquisition and release times
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CM8870C/CM8871C/CM8872C
18-pin
CM8870C
CM8871C
CM8872C
CM8870
20-pin
cm8870 dtmf decoder circuit diagram
cm8870decoder
08C3
CM8870C
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