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    0-5v to 4-20mA converter

    Abstract: 4-20ma to 0-10v converter 0-10V to 0-20mA converter 4-20mA to 0-5v converter "Isolation Amplifier" 4-20ma voltage 0-5v to 4-20mA loop converter 0-5A to 4-20ma converter potential transformer 0-10V resistance to Current Converter 0-20mA 24V to 0-10v
    Text: SCM5B33 Isolated True RMS Input Modules FEATURES DESCRIPTION ● INTERFACES RMS VOLTAGE 0 – 300V OR RMS CURRENT (0 – 5A) Each SCM5B33 True RMS input module provides a single channel of AC input which is converted to its True RMS dc value, filtered, isolated,


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    PDF SCM5B33 SCM5B33 1000HZ 20Khz) 0-5v to 4-20mA converter 4-20ma to 0-10v converter 0-10V to 0-20mA converter 4-20mA to 0-5v converter "Isolation Amplifier" 4-20ma voltage 0-5v to 4-20mA loop converter 0-5A to 4-20ma converter potential transformer 0-10V resistance to Current Converter 0-20mA 24V to 0-10v

    ad508j

    Abstract: AD637 5962-8963701CA AD637A AD637B AD637J AD637K AD637S AD845 Absolute Value Circuit
    Text: High Precision, Wideband RMS-to-DC Converter AD637 FEATURES GENERAL DESCRIPTION The AD637 is a complete high accuracy, monolithic rms-to-dc converter that computes the true rms value of any complex waveform. It offers performance that is unprecedented in integrated circuit rms-to-dc converters and comparable to


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    PDF AD637 AD637 16-Lead 14-Lead ad508j 5962-8963701CA AD637A AD637B AD637J AD637K AD637S AD845 Absolute Value Circuit

    TEL LAB Q81

    Abstract: ad508j Absolute Value Circuit AD508 TEL-LAB Q81 TEL LAB Q81 PRECISION RESISTOR AD637 AD637AQ AD637AR AD637BQ
    Text: a FEATURES High Accuracy 0.02% Max Nonlinearity, 0 V to 2 V RMS Input 0.10% Additional Error to Crest Factor of 3 Wide Bandwidth 8 MHz at 2 V RMS Input 600 kHz at 100 mV RMS Computes: True RMS Square Mean Square Absolute Value dB Output 60 dB Range Chip Select/Power-Down Feature Allows:


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    PDF AD637 AD637 C00788 TEL LAB Q81 ad508j Absolute Value Circuit AD508 TEL-LAB Q81 TEL LAB Q81 PRECISION RESISTOR AD637AQ AD637AR AD637BQ

    Untitled

    Abstract: No abstract text available
    Text: LMH2110 LMH2110 8 GHz Logarithmic RMS Power Detector with 45 dB dynamic range Literature Number: SNWS022B LMH2110 8 GHz Logarithmic RMS Power Detector with 45 dB dynamic range General Description Features The LMH2110 is a 45 dB Logarithmic RMS power detector


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    PDF LMH2110 LMH2110 SNWS022B

    LH0091CD

    Abstract: schematic diagram dc converter 10 vdc to 10 mVdc DC to 500 MHz RMS-to-DC Converter rms to dc LH0091 diode 5694 C1995 D16D
    Text: LH0091 True RMS to DC Converter General Description Features The LH0091 rms to dc converter generates a dc output equal to the rms value of any input per the transfer function Y Y Y EOUT DC e 0 1 T EIN2(t) dt T 0 Y Y Y The device provides rms conversion to an accuracy of 0 1%


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    PDF LH0091 LH0091CD schematic diagram dc converter 10 vdc to 10 mVdc DC to 500 MHz RMS-to-DC Converter rms to dc diode 5694 C1995 D16D

    LTAFG

    Abstract: ltc6203 DC to 500 MHz RMS-to-DC Converter 7106 based dvm LTC1966 LTC1967 LTC1968 LTC1968CMS8 LTC1968IMS8 panel meter 7106
    Text: LTC1968 Precision Wide Bandwidth, RMS-to-DC Converter U FEATURES DESCRIPTIO • The LTC 1968 is a true RMS-to-DC converter that uses an innovative delta-sigma computational technique. The benefits of the LTC1968 proprietary architecture, when compared to conventional log-antilog RMS-to-DC converters,


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    PDF LTC1968 LTC1968 500kHz 150kHz LTC1967 LTC2402 24-bit, 10ppm LTC2420 20-bit, LTAFG ltc6203 DC to 500 MHz RMS-to-DC Converter 7106 based dvm LTC1966 LTC1967 LTC1968CMS8 LTC1968IMS8 panel meter 7106

    Untitled

    Abstract: No abstract text available
    Text: Dual PLL Precision Synthesizer AD9578 Data Sheet FEATURES GENERAL DESCRIPTION Any output frequency precision synthesis 11.8 MHz to 919 MHz Better than 0.1 ppb frequency resolution Ultralow rms jitter 12 kHz to 20 MHz <300 fs rms using integer synthesis <405 fs rms using fractional synthesis


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    PDF AD9578 larO-220-WKKD-2 05-10-2012-C 48-Lead CP-48-13) AD9578BCPZ AD9578BCPZ-REEL7 AD9578/PCBZ

    7136 low drop out regulator

    Abstract: LTC1968 LTAFG 50Hz sine wave filter circuit Cookbook LTC1966 LTC1967 LTC1968CMS8 LTC1968IMS8 adc 7106
    Text: LTC1968 Precision Wide Bandwidth, RMS-to-DC Converter U FEATURES DESCRIPTIO • The LTC 1968 is a true RMS-to-DC converter that uses an innovative delta-sigma computational technique. The benefits of the LTC1968 proprietary architecture, when compared to conventional log-antilog RMS-to-DC converters,


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    PDF LTC1968 LTC1968 500kHz 150kHz 350pA LTC1966 LTC1967 LTC2402 24-bit, 10ppm 7136 low drop out regulator LTAFG 50Hz sine wave filter circuit Cookbook LTC1966 LTC1967 LTC1968CMS8 LTC1968IMS8 adc 7106

    AD8436ARQZ

    Abstract: DC to 500 MHz RMS-to-DC Converter package lfcsp-wq 16-Lead Lead Frame Chip Scale Package LFCSP_WQ AD8436
    Text: FEATURES Delivers true rms or average rectified value of an ac waveform Fast settling at all input levels Accuracy: ±10 V ± 0.5% of reading Wide dynamic input range 100 μV rms to 3 V rms 8.5 V p-p full-scale input range Larger inputs with external scaling


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    PDF 20-Lead CP-20-10 AD8436ARQZ DC to 500 MHz RMS-to-DC Converter package lfcsp-wq 16-Lead Lead Frame Chip Scale Package LFCSP_WQ AD8436

    Untitled

    Abstract: No abstract text available
    Text: LMH2120 LMH2120 6 GHz Linear RMS Power Detector with 40 dB Dynamic Range Literature Number: SNWS021B LMH2120 6 GHz Linear RMS Power Detector with 40 dB Dynamic Range General Description Features The LMH2120 is a 40 dB Linear RMS power detector particularly suited for accurate power measurement of modulated


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    PDF LMH2120 LMH2120 SNWS021B

    AD8436

    Abstract: No abstract text available
    Text: FEATURES Delivers true rms or average rectified value of an ac waveform Fast settling at all input levels Accuracy: ±10 V ± 0.5% of reading Wide dynamic input range 100 μV rms to 3 V rms 8.5 V p-p full-scale input range Larger inputs with external scaling


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    PDF 20-Lead D10033-0-7/12 AD8436

    TEL LAB Q81

    Abstract: AD508J TEL LAB Q81 PRECISION RESISTOR AD637 AD637J AD508 Absolute Value Circuit AD637A AD637B AD637K
    Text: High Precision, Wideband RMS-to-DC Converter AD637 FEATURES FUNCTIONAL BLOCK DIAGRAM BUFFER IN BUFFER OUT 25kΩ ABSOLUTE VALUE VIN DENOMINATOR IN OUTPUT OFFSET RMS OUT SQUARER/ DIVIDER 25kΩ CAV BIAS COM CS 00788-001 High accuracy 0.02% max nonlinearity, 0 V to 2 V rms input


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    PDF AD637 14-lead 16-lead TEL LAB Q81 AD508J TEL LAB Q81 PRECISION RESISTOR AD637 AD637J AD508 Absolute Value Circuit AD637A AD637B AD637K

    AD508J

    Abstract: TEL LAB Q81 AD637JR AD508
    Text: High Precision, Wideband RMS-to-DC Converter AD637 FEATURES FUNCTIONAL BLOCK DIAGRAM BUFFER IN BUFFER OUT 25kΩ ABSOLUTE VALUE VIN DENOMINATOR IN OUTPUT OFFSET RMS OUT SQUARER/ DIVIDER 25kΩ CAV BIAS COM CS 00788-001 High accuracy 0.02% max nonlinearity, 0 V to 2 V rms input


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    PDF AD637 14-lead 16-lead AD637 AD508J TEL LAB Q81 AD637JR AD508

    AD8436-EVALZ

    Abstract: RMS-Dc converters 20-lead lfcsp ad8436 DC to 500 MHz RMS-to-DC Converter AD8436
    Text: Low Cost, Low Power, True RMS-to-DC Converter AD8436 Data Sheet FEATURES FUNCTIONAL BLOCK DIAGRAM CAVG CCF VCC AD8436 100kΩ SUM RMS IGND 8kΩ 100kΩ RMS CORE VEE OGND 16kΩ OUT 10pF IBUFGN 10kΩ 10kΩ IBUFIN– – IBUFIN+ + FET OP AMP + DC BUFFER IBUFOUT


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    PDF 20-Lead CP-20-10 AD8436-EVALZ RMS-Dc converters 20-lead lfcsp ad8436 DC to 500 MHz RMS-to-DC Converter AD8436

    LMK0480X

    Abstract: lmk04800
    Text: LMK04800 www.ti.com SNAS489I – MARCH 2011 – REVISED MARCH 2012 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 FEATURES 1 • Ultra-Low RMS Jitter Performance – 111 fs RMS jitter 12 kHz to 20 MHz – 123 fs RMS jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489I LMK04800 LMK0480X

    Untitled

    Abstract: No abstract text available
    Text: LMK04800 www.ti.com SNAS489J – MARCH 2011 – REVISED MARCH 2013 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 1 FEATURES 123 • Ultra-Low RMS Jitter Performance – 111 fs RMS Jitter 12 kHz to 20 MHz – 123 fs RMS Jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489J LMK04800

    Untitled

    Abstract: No abstract text available
    Text: LMK04800 www.ti.com SNAS489J – MARCH 2011 – REVISED MARCH 2013 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 1 FEATURES 123 • Ultra-Low RMS Jitter Performance – 111 fs RMS Jitter 12 kHz to 20 MHz – 123 fs RMS Jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489J LMK04800

    Untitled

    Abstract: No abstract text available
    Text: LMK04800 www.ti.com SNAS489J – MARCH 2011 – REVISED MARCH 2013 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 1 FEATURES 123 • Ultra-Low RMS Jitter Performance – 111 fs RMS Jitter 12 kHz to 20 MHz – 123 fs RMS Jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489J LMK04800

    LMK04800

    Abstract: LMK0480X
    Text: LMK04800 www.ti.com SNAS489J – MARCH 2011 – REVISED MARCH 2013 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 1 FEATURES 123 • Ultra-Low RMS Jitter Performance – 111 fs RMS Jitter 12 kHz to 20 MHz – 123 fs RMS Jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489J LMK04800 LMK0480X

    LMK0480X

    Abstract: TCXO 24.576 Dual Varactor Diode with Common Cathode IC HS 8167 a 9514 SNAS489J 79212
    Text: LMK04800 www.ti.com SNAS489J – MARCH 2011 – REVISED MARCH 2013 LMK04800 Family Low-Noise Clock Jitter Cleaner with Dual Loop PLLs Check for Samples: LMK04800 1 FEATURES 123 • Ultra-Low RMS Jitter Performance – 111 fs RMS Jitter 12 kHz to 20 MHz – 123 fs RMS Jitter (100 Hz to 20 MHz)


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    PDF LMK04800 SNAS489J LMK04800 LMK0480X TCXO 24.576 Dual Varactor Diode with Common Cathode IC HS 8167 a 9514 SNAS489J 79212

    precision rectifier

    Abstract: ac voltmeter circuit build ad636 AC digital voltmeter using ad737 FLUKE rms dc converter ac voltmeter circuit build DC to 500 MHz RMS-to-DC Converter RMS-to-DC Converter fluke voltmeter SCR Applications Handbook AD737
    Text: ANALOG DEVICES AN-268 APPLICATION NOTE □ ONE TECHNOLOGY WAY • P.O. BOX 9106 • NORWOOD, MASSACHUSETTS 02062-9106 • 617/329-4700 RMS-to-DC Converters Ease Measurement Tasks RMS-to-DC converters compute the true rms value of a signal without regard to waveform.


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    PDF AN-268 AD536A, AD636, AD637, AD736, AD737. AD637 RN55C precision rectifier ac voltmeter circuit build ad636 AC digital voltmeter using ad737 FLUKE rms dc converter ac voltmeter circuit build DC to 500 MHz RMS-to-DC Converter RMS-to-DC Converter fluke voltmeter SCR Applications Handbook AD737

    fluke 931B

    Abstract: AD694 AC digital voltmeter using ad737 AD536A m7cf fluke voltmeter AD737 Absolute Value Circuit ac voltmeter circuit build ad636 AD636
    Text: rm ANALOG U AN-268 APPLICATION NOTE DEVICES ONE TECHNOLOGY WAY • P.O. BOX 9106 • NORWOOD, MASSACHUSETTS 02062-9106 • 617/329-4700 RMS-to-DC Converters Ease Measurement Tasks RMS-to-DC converters compute the true rms value of a signal without regard to waveform.


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    PDF AN-268 AD536A, AD636, AD637, AD736, AD737. AD637 Edi744 fluke 931B AD694 AC digital voltmeter using ad737 AD536A m7cf fluke voltmeter AD737 Absolute Value Circuit ac voltmeter circuit build ad636 AD636

    AD694

    Abstract: AC digital voltmeter using ad737 fluke 931B ac voltmeter circuit build ad636 FLUKE rms dc converter AD736 AD744 AD636 AD637 AD637K
    Text: ANALOG DEVICES AN-268 APPLICATION NOTE □ ONE TECHNOLOGY WAY • P.O. BOX 9106 • NORWOOD, MASSACHUSETTS 02062-9106 • 617/329-4700 RMS-to-DC Converters Ease Measurement Tasks RMS-to-DC converters compute the true rms value of a signal without regard to waveform.


    OCR Scan
    PDF AN-268 AD536A, AD636, AD637, AD736, AD737. AD637 RN55C AD694 AC digital voltmeter using ad737 fluke 931B ac voltmeter circuit build ad636 FLUKE rms dc converter AD736 AD744 AD636 AD637K

    Untitled

    Abstract: No abstract text available
    Text: S e m i c o n d u c t o r t ß LH0091 True RMS to DC Converter General Description Features The LH00S1, rms to dc converter generates a dc output equal to the rms value of any Input per the transfer function: • ■ ■ ■ ■ ■ ■ EOUT DC = ^ j ^ E | N2(t) dt


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    PDF LH0091 LH00S1, bS01124