Frequency Generator 1MHz
Abstract: sine wave generator square waves to sine waves filter MAX292 AN1999 1953Hz sinewave generator 3906Hz IC Generator to 2MHz square Sine Wave Generator circuit design 2mhz
Text: Maxim > App Notes > SIGNAL GENERATION CIRCUITS Keywords: Sine Wave Generator Is Crystal Accurate Jul 25, 1994 APPLICATION NOTE 1999 Sine Wave Generator Is Crystal Accurate Servos, test equipment, and telecommunications systems are among the applications that require stable, frequencyaccurate sine-wave sources. Many such sine-wave oscillators are available, but finding one with a satisfactory level
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com/an1999
MAX292:
AN1999,
APP1999,
Appnote1999,
Frequency Generator 1MHz
sine wave generator
square waves to sine waves filter
MAX292
AN1999
1953Hz
sinewave generator
3906Hz
IC Generator to 2MHz square
Sine Wave Generator circuit design 2mhz
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HSR14
Abstract: low frequency sine oscillator HS14
Text: EURO QUARTZ HS14 and HSR14 Sine Wave Oscillators 14 pin Dual-in-line Sine Wave Clock Oscillators FEATURES Sine Wave output in industry-standard 14 DIL package Choice of output loads Harmonics -25dBc maximum Very low current consumption <1.0mA for HSR14 OUTLINE & DIMENSIONS
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HSR14
-25dBc
HSR14
HSR14:
3HSR14G-B-T-25
000-X
25ppm
50ppm
low frequency sine oscillator
HS14
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low frequency sine oscillator
Abstract: sine oscillator SMD DIL OSCILLATOR
Text: EURO QUARTZ HSR8 Sine Wave Oscillators 8 pin Dual-in-line Sine Wave Clock Oscillator FEATURES Sine Wave output in miniature SMD package Output 10k //10pF load, level 1.0V peak to peak Harmonics -25dBc maximum Very low current consumption <1.0mA at 2.8V supply
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//10pF
-25dBc
3HSR8-B-T-25
000-X
25ppm
50ppm
100ppm
low frequency sine oscillator
sine oscillator
SMD DIL OSCILLATOR
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low frequency sine oscillator
Abstract: sine oscillator
Text: EURO QUARTZ HSR53 Sine Wave Oscillators 5 x 3.2mm SMD Sine Wave Clock Oscillator FEATURES Sine Wave output in miniature SMD package Output 10k //10pF load, level 1.0V peak to peak Harmonics -25dBc maximum Very low current consumption <1.0mA at 2.8V supply
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HSR53
//10pF
-25dBc
3HSR53-B-T-25
000-X
HSR53
25ppm
50ppm
100ppm
low frequency sine oscillator
sine oscillator
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low frequency sine oscillator
Abstract: sine oscillator HSR57 Quartz oscillator 300MHz
Text: EURO QUARTZ HSR57 Sine Wave Oscillators 7 x 5mm SMD Sine Wave Clock Oscillator FEATURES Sine Wave output in small SMD package Output 10k //10pF load, level 1.0V peak to peak Harmonics -25dBc maximum Very low current consumption <1.0mA at 2.8V supply OUTLINE & DIMENSIONS
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HSR57
//10pF
-25dBc
3HSR57-B-T-25
000-X
HSR57
25ppm
50ppm
100ppm
low frequency sine oscillator
sine oscillator
Quartz oscillator 300MHz
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easily tuned oscillator
Abstract: wein bridge circuit square wave generating from sine low frequency sine oscillator national semiconductor Linear Amplifier With Active Output Clipping square waves to sine waves filter Widlar Reference sine wave LB-16
Text: National Semiconductor Linear Brief 16 March 1971 One approach to generating sine waves is to filter a square wave This leaves only the sine wave fundamental as the output Since a square wave is easily amplitude stabilized by clipping the sine wave output is also amplitude stabilized A
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alternative of LM386
Abstract: LM386 FIXED LOW GAIN AUDIO POWER AMPLIFIER 2N3819 NATIONAL SEMICONDUCTOR 2N3810 NATIONAL SEMICONDUCTOR 2n3819 equivalent ic LM3900 VCO sine wave Oscillator jfet circuit pin diagram for IC 7483 IC LM386 12V supply LM386 circuit with capacitors
Text: National Semiconductor Application Note 263 Rereleased May 26, 2009 October 21, 1999 Producing and manipulating the sine wave function is a common problem encountered by circuit designers. Sine wave circuits pose a significant design challenge because they represent a constantly controlled linear oscillator. Sine wave
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AN-263
alternative of LM386
LM386 FIXED LOW GAIN AUDIO POWER AMPLIFIER
2N3819 NATIONAL SEMICONDUCTOR
2N3810 NATIONAL SEMICONDUCTOR
2n3819 equivalent ic
LM3900 VCO
sine wave Oscillator jfet circuit
pin diagram for IC 7483
IC LM386
12V supply LM386 circuit with capacitors
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sine wave pwm circuit
Abstract: 3 phase sine wave pwm c source code 3 phase sine wave pwm circuit 3 phase analog controller sine wave Sine Wave Generator pwm sinewave timing sine wave ups designing UBICOM 3 phase controller sine wave 3 phase sine wave pwm GENERATOR
Text: Artificial Sine Wave Generation Using SX Communications Controller Application Note11 Chris Fogelklou November 2000 1.0 Introduciton 2.0 Description of Sine Wave Virtual Peripheral Sine waves are used extensively in the telecommunications industry, and are traditionally difficult to implement
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Note11
AN11-03
sine wave pwm circuit
3 phase sine wave pwm c source code
3 phase sine wave pwm circuit
3 phase analog controller sine wave
Sine Wave Generator
pwm sinewave timing
sine wave ups designing
UBICOM
3 phase controller sine wave
3 phase sine wave pwm GENERATOR
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1025C
Abstract: No abstract text available
Text: EUROQUARTZ GENERAL PRODUCT SPECIFICATION OSCILLATORS - SINE WAVE OUTPUT EQCXO-1000 SERIES CLIPPED SINE WAVE 14 pin DIL General Specification Frequency range: Input Voltages: Frequency stability Commercial*: Industrial*: Output type: Output Level: Output load:
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EQCXO-1000
160MHz
25ppm
50ppm
100ppm
60MHz:
160MHz:
1025C
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7483 IC
Abstract: ic 7483 pin configuration of IC 7483 ic 7483 pin diagram for IC 7483 applications of IC 7483 7483 IC APPLICATIONS 7483 comparator Datasheet of IC 7483 data sheet ic 7483
Text: National Semiconductor Application Note 263 March 1981 Producing and manipulating the sine wave function is a common problem encountered by circuit designers Sine wave circuits pose a significant design challenge because they represent a constantly controlled linear oscillator Sine
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ic LM386 wein bridge
Abstract: sine wave crystal controlled oscillator 2N3819 fet lm311 lm386 controlling ic lm311 2n3819 equivalent ic Sine Wave Generation Techniques alternative of LM386 100 khz crystal mm74193
Text: National Semiconductor Application Note 263 October 1999 Producing and manipulating the sine wave function is a common problem encountered by circuit designers. Sine wave circuits pose a significant design challenge because they represent a constantly controlled linear oscillator. Sine
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lm328 datasheet
Abstract: Wien Bridge Oscillator AGC two diodes lm328 op amp LM328 Wien Bridge Oscillator jfet circuit Wien Bridge Oscillator AGC wein bridge circuit amplitude controlled Wien Bridge Oscillator bubba oscillator Wien Bridge Oscillator
Text: Chapter 15 Sine Wave Oscillators Literature Number SLOA087 Excerpted from Op Amps for Everyone Literature Number: SLOD006A Chapter 15 Sine Wave Oscillators Ron Mancini and Richard Palmer 15.1 What is a Sine Wave Oscillator? Op amp oscillators are circuits that are unstable — not the type that are sometimes unintentionally designed or created in the lab — but circuits intentionally designed to remain
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SLOA087
SLOD006A
lm328 datasheet
Wien Bridge Oscillator AGC two diodes
lm328
op amp LM328
Wien Bridge Oscillator jfet circuit
Wien Bridge Oscillator AGC
wein bridge circuit
amplitude controlled Wien Bridge Oscillator
bubba oscillator
Wien Bridge Oscillator
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Untitled
Abstract: No abstract text available
Text: Temperature Compensated Crystal Oscillators TRUE SINEWAVE SMD 11.4x9.6 mm TCXO/VCTCXO IN LEADLESS PACKAGE - TCLS Series FEATURES RoHS Compliant (Pb-Free), True Sine Wave or Clipped Sine Wave Output Voltage Control Option for Electric Frequency Adjustments
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10KHz
TCLS-12M800-A:
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1025C
Abstract: No abstract text available
Text: EUROQUARTZ GENERAL PRODUCT SPECIFICATION OSCILLATORS - SINE WAVE OUTPUT EQSXO-1000 SERIES SINE WAVE OUTPUT 14 pin DIL •Low harmonic distortion •Hermetically sealed enclosure •Frequency range 1MHz to 160MHz •3.3V and 5V versions •Commercial and Industrial temp. Ranges
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EQSXO-1000
160MHz
25ppm
50ppm
100ppm
EQSXO-1100C
-20dBc
1025C
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1Mhz oscillator sine wave
Abstract: tcxo 10mhz dbc sw 357 TCXO 10MHZ 4 lead
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0542D Rev. C Sine Wave TCXO SW-AA22X Series PATENT PENDING Description The SW-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 10MHz to 1.7GHz
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0542D
SW-AA22X
10MHz
1000g
12kHz
20MHz
AA22X
14x17mm
10ppm
1Mhz oscillator sine wave
tcxo 10mhz dbc
sw 357
TCXO 10MHZ 4 lead
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tcxo 10mhz dbc
Abstract: Quartz Crystal 10mhz
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0542D Rev. B Sine Wave TCXO SW-AA22X Series PATENT PENDING Description The SW-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 10MHz to 1.7GHz
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0542D
SW-AA22X
10MHz
1000g
12kHz
20MHz
AA22X
14x17mm
10ppm
tcxo 10mhz dbc
Quartz Crystal 10mhz
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tcxo 10mhz dbc
Abstract: 2.1Ghz oscillator 1Mhz oscillator sine wave
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0551B Rev. B Sine Wave TCXO S3-AA22X Series PATENT PENDING Description The S3-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 200.0MHz to 2.1GHz
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0551B
S3-AA22X
12kHz
20MHz
AA22X
14x17mm
10ppm
tcxo 10mhz dbc
2.1Ghz oscillator
1Mhz oscillator sine wave
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Untitled
Abstract: No abstract text available
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0551B Rev. - Sine Wave TCXO S3-AA22X Series PATENT PENDING Description The S3-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 10MHz to 1.7GHz
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0551B
S3-AA22X
10MHz
1000g
12kHz
20MHz
AA22X
14x17mm
10ppm
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Untitled
Abstract: No abstract text available
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0542D Rev. A Sine Wave TCXO SW-AA22X Series PATENT PENDING Description The SW-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 10MHz to 1.7GHz
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0542D
SW-AA22X
10MHz
1000g
12kHz
20MHz
AA22X
14x17mm
10ppm
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Untitled
Abstract: No abstract text available
Text: EURO QUARTZ HS14 and HSR14 Sine Wave Oscillators 10.0MHz to 800.0MHz 14 pin Dual-in-line Oscillators FEATURES Sine Wave output in industry-standard 14 DIL package Choice of output loads Harmonics -25dBc maximum Very low current consumption <1.0mA for HSR14
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HSR14
-25dBc
HSR14
HSR14:
10MHz
100MHz
150MHz
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Untitled
Abstract: No abstract text available
Text: CRYSTAL CLOCK OSCILLATORS Data Sheet 0542D Rev. B Sine Wave TCXO SW-AA22X Series PATENT PENDING Description The SW-AA22X Series of temperature compensated quartz crystal oscillators provide a Sine Wave signal. Features • Wide frequency range – 10MHz to 1.7GHz
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0542D
SW-AA22X
10MHz
183/C
1000g
300/C
12kHz
20MHz
AA22X
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Untitled
Abstract: No abstract text available
Text: CRYSTAL OSCILLATORS “HSR57” series 5x7 mm MERCURY Wave Form: True Sine Wave Since 1973 PRELIMINARY Clock Oscillator with true sine wave output has never been offered in such a small package in the industry – the HSR57 5x7x1.8 mm . HSR57 features low phase noise (<130 dBc / Hz at 1 KHz), low power
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HSR57â
HSR57
HSR57
2x10-8
MIL-STD-202F
1000GG
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D45Q
Abstract: No abstract text available
Text: D45Q Series 100 Hz to 100 kHz Quadrature Sine Wave Oscillator Description: The D45Q Oscillators are fixed frequency sine wave oscillators that deliver two high purity sinusoidal outputs that are 90 degrees out of phase. These fully finished devices can be user
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D45Q
Abstract: No abstract text available
Text: D45Q Series 100 Hz to 100 kHz Quadrature Sine Wave Oscillator Description: The D45Q Oscillators are fixed frequency sine wave oscillators that deliver two high purity sinusoidal outputs that are 90 degrees out of phase. These fully finished devices can be user
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