Untitled
Abstract: No abstract text available
Text: ES5 True RMS-to-DC Converter Features Description True RMS-To-DC Conversion Computes RMS of AC and DC Signals 600mV full scale Wide Response: The ES5 is a true RMS-to-DC converter. It accepts low-level input signals from 0 to 600 mVRMS complex input waveforms. It
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600mV
100mVRMS
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500KHZ
Abstract: pin configuration 500K variable resistor
Text: ES7 True RMS-to-DC Converters Features • True RMS-to-DC Conversion • Input level is specified up to 400mVRMS Description The ES7 series are designed for the true RMS-to-DC conversion. ES7 accept low-level input signals from 0 to 400 mV RMS complex input waveforms. ES7 can be
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400mVRMS
400mV
50KHz
100mV
200KHz
200mV
400mV
500KHZ
500KHZ
pin configuration 500K variable resistor
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AD536AKD
Abstract: AD536A AD536AJ AD536AK AD536AS AD536A-SPECIFICATIONS 1000 microfarad 25v capacitor buf7
Text: Integrated Circuit True RMS-to-DC Converter AD536A True rms-to-dc conversion Laser trimmed to high accuracy ±0.2% maximum error AD536AK ±0.5% maximum error (AD536AJ) Wide response capability Computes rms of ac and dc signals 450 kHz bandwidth: V rms > 100 mV
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AD536A
AD536AK)
AD536AJ)
AD536AS)
AD536A,
14-Lead
20-Terminal
10-Pin
O-100]
AD536AKD
AD536A
AD536AJ
AD536AK
AD536AS
AD536A-SPECIFICATIONS
1000 microfarad 25v capacitor
buf7
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Untitled
Abstract: No abstract text available
Text: Integrated Circuit True RMS-to-DC Converter AD536A Data Sheet FUNCTIONAL BLOCK DIAGRAM FEATURES True rms-to-dc conversion Laser trimmed to high accuracy ±0.2% maximum error AD536AK ±0.5% maximum error (AD536AJ) Wide response capability Computes rms of ac and dc signals
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AD536A
AD536AK)
AD536AJ)
AD536AS)
AD536A
14-Lead
20-Terminal
10-Pin
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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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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
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ES636
Abstract: Absolute Value Circuit
Text: ES636 True RMS-to-DC Converters Features Description • The ES636 is a true RMS-to-DC converter. It accepts low-level input signals from 0 to 400 mV RMS complex input waveforms. It can be operated form either a single supply or dual supplies. The device draws less
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ES636
ES636
100mV
ES636.
400mVrms
200mVrms
100mVrms
35mVrms
Absolute Value Circuit
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0-5A to 4-20ma converter
Abstract: 4-20ma to 0-10v converter 0-5v to 4-20mA converter "Isolation Amplifier" 4-20ma DSCA33-07C Voltage to Current Converter 0-20mA 4-20mA to 0-5v converter 0-10V to 0-20mA converter voltage 0-5v to 4-20mA loop converter Voltage to Current Converter circuit 4-20mA using
Text: DSCA33 Isolated True RMS Input Signal Conditioners FEATURES DESCRIPTION ● INTERFACES RMS VOLTAGE 0 – 300V OR RMS CURRENT (0 – 5A) Each DSCA33 True RMS input module provides a single channel of AC input which is converted to its True RMS DC value, filtered, isolated, amplified, and
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DSCA33
DSCA33
1000HZ
20kHZ)
105mm)
EN50022-35x7
-35x15
0-5A to 4-20ma converter
4-20ma to 0-10v converter
0-5v to 4-20mA converter
"Isolation Amplifier" 4-20ma
DSCA33-07C
Voltage to Current Converter 0-20mA
4-20mA to 0-5v converter
0-10V to 0-20mA converter
voltage 0-5v to 4-20mA loop converter
Voltage to Current Converter circuit 4-20mA using
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Untitled
Abstract: No abstract text available
Text: TRUE RMS TO DC CONVERTER Most current sensors provide outputs that are instantaneous representations of the measured currents. For complex or alternating waveforms there may be a requirement to convert the output to a true rms value. RMS converters available from Maxim are designed to accept complex
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MX536A/MX636.
MX536A
MX636
O-100
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Untitled
Abstract: No abstract text available
Text: TRUE RMS TO DC CONVERTER Most current sensors produce outputs that are instantaneous representations of the measured currents. For complex or ac waveshapes there may be a requirement to convert the outputs to true rms values. RMS converters available from Maxim are designed to accept complex
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-12Vdc
12Vdc
PT78NR112
PT78NR100
SLTS058B
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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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AD637
AD637
16-Lead
14-Lead
ad508j
5962-8963701CA
AD637A
AD637B
AD637J
AD637K
AD637S
AD845
Absolute Value Circuit
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AD736
Abstract: AD7116 FULL WAVE RECTIFIER and waveforms FULL WAVE RECTIFIER CIRCUITS AD736A AD736B AD736J AD736JN AD736K AD737
Text: Low Cost, Low Power, True RMS-to-DC Converter AD736 FEATURES GENERAL DESCRIPTION The AD736 is a low power, precision, monolithic true rms-to-dc converter. It is laser trimmed to provide a maximum error of ±0.3 mV ± 0.3% of reading with sine wave inputs. Furthermore,
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AD736
AD736
C00834
AD7116
FULL WAVE RECTIFIER and waveforms
FULL WAVE RECTIFIER CIRCUITS
AD736A
AD736B
AD736J
AD736JN
AD736K
AD737
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digital voltmeter using IC 7106
Abstract: LXD 7543 uA776 ac voltmeter ad636 AC digital voltmeter using 7106 AC digital voltmeter AD636 DIAGRAM OF IC 7106 1N4148 401F
Text: Low Level, True RMS-to-DC Converter AD636 FEATURES FUNCTIONAL BLOCK DIAGRAM VIN ABSOLUTE VALUE dB SQUARER DIVIDER CAV +VS AD636 CURRENT MIRROR 10kΩ RL IOUT BUF IN BUF OUT 10kΩ 00787-001 True rms-to-dc conversion 200 mV full scale Laser-trimmed to high accuracy
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AD636
AD636K)
AD636J)
AD636
AD636JDZ
AD636KD
AD636KDZ1
AD636JH
AD636JHZ1
digital voltmeter using IC 7106
LXD 7543
uA776
ac voltmeter ad636
AC digital voltmeter using 7106
AC digital voltmeter
DIAGRAM OF IC 7106
1N4148
401F
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AD536A
Abstract: AD536AJ AD536AK AD536AS AD536A-SPECIFICATIONS 45TYP
Text: Integrated Circuit True RMS-to-DC Converter AD536A FUNCTIONAL BLOCK DIAGRAM FEATURES CAV ABSOLUTE VALUE dB SQUARER DIVIDER +VS CURRENT MIRROR AD536A 25kΩ RL IOUT BUF IN BUF OUT 25kΩ 00504-001 True rms-to-dc conversion Laser trimmed to high accuracy 0.2% maximum error AD536AK
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AD536A
AD536AK)
AD536AJ)
AD536AS)
AD536A
14-Lead
20-Terminal
10-Lead
AD536AJ
AD536AK
AD536AS
AD536A-SPECIFICATIONS
45TYP
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DC to 500 MHz RMS-to-DC Converter
Abstract: MX536A MX536AJCWE MX536AJD MX536AJH MX536AJN MX536AJQ MX536AKCWE MX636 MX636JCWE
Text: 19-0824; Rev 2; 3/96 True RMS-to-DC Converters The MX536A and MX636 are true RMS-to-DC converters. They feature low power and are designed to accept low-level input signals from 0 to 7VRMS for the MX536A and 0 to 200mVRMS for the MX636. Both devices accept
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MX536A
MX636
MX536A
200mVRMS
MX636.
O-100
DC to 500 MHz RMS-to-DC Converter
MX536AJCWE
MX536AJD
MX536AJH
MX536AJN
MX536AJQ
MX536AKCWE
MX636JCWE
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digital voltmeter using IC 7106
Abstract: ac voltmeter ad636 uA776 AC digital voltmeter using 7106 AD636 AC digital voltmeter A776 1N6263 401F AD589
Text: Low Level, True RMS-to-DC Converter AD636 FEATURES FUNCTIONAL BLOCK DIAGRAM VIN ABSOLUTE VALUE dB SQUARER DIVIDER CAV +VS AD636 CURRENT MIRROR 10kΩ RL IOUT BUF IN BUF OUT 10kΩ 00787-001 True rms-to-dc conversion 200 mV full scale Laser-trimmed to high accuracy
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AD636
AD636K)
AD636J)
10-Pin
O-100]
AD636JD
AD636KD
AD636JH
AD636KH
digital voltmeter using IC 7106
ac voltmeter ad636
uA776
AC digital voltmeter using 7106
AD636
AC digital voltmeter
A776
1N6263
401F
AD589
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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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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
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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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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
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Untitled
Abstract: No abstract text available
Text: ANALOG DEVICES Integrated Circuit True RMS-to-DC Converter AD536A FEATURES True RMS-to-DC Conversion Laser-Trimmed to High Accuracy 0.2% max Error AD536AK 0.5% max Error (AD536AJ) Wide Response Capability: Computes RMS of AC and DC Signals 450kHz Bandwidth: V „ , > lOOmV
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AD536A
AD536AK)
AD536AJ)
450kHz
AD536AS)
AD536A
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D636 R
Abstract: D636 D-636 D636 b AC digital voltmeter using 7106 1N4148F ac voltmeter ad636 1N4148 diode
Text: Low Level, True RMS-to-DC Converter AD636 ANALOG DEVICES FEATURES True RMS-to-DC Conversion 200 m V Full Scale Laser-Trimmed to High Accuracy 0.5% M ax Error AD636K 1.0% M ax Error (AD636J) W ide Response Capability: Computes RMS of AC and DC Signals 1 MHz -3 dB Bandwidth: V RMS >100 m V
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AD636K)
AD636J)
AD636
3500ppm
O-116)
D636 R
D636
D-636
D636 b
AC digital voltmeter using 7106
1N4148F
ac voltmeter ad636
1N4148 diode
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AD536J
Abstract: AD536 ADS36 AD536K RMS-to-DC Converter Absolute Value Circuit decibel meter AD536 analog
Text: ANALOG DEVICES □ Integrated Circuit True rms-to-dc Converter FEATURES True rms-to-dc Conversion Laser-Trimmed to High Accuracy 0.2% max Error ADE>36K 0.5% max Error (AD£i36J) Wide Response Capability: Computes rms of ac and dc Signals 1 0 0 k H z Bandw idth: V rms > 1 0 0 m V
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AD536K)
AD536J)
100kHz
100mV
AD536
AD536J
ADS36
AD536K
RMS-to-DC Converter
Absolute Value Circuit
decibel meter
AD536 analog
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AD536
Abstract: AD536A 703C AD536AJ AD536AK AD536AS Absolute Value Circuit ADS36A AD536 analog
Text: □ ANALO G DEVICES Integrated Circuit True rms-to-dc Converter FEA TUR ES True rms-to-dc Conversion Laser-Trimmed to High Accuracy 0.2% max Error A D 5 3 6 A K 0.5% max Error (A D 536A J) Wide Response Capability: Computes rms of ac and dc Signals 300kH z Bandwidth: V rms> 1 0 0 m V
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AD536AK)
AD536AJ)
300kHz
100mV
AD536AS)
AD536A
rmsCF-10
100/is
AD536
703C
AD536AJ
AD536AK
AD536AS
Absolute Value Circuit
ADS36A
AD536 analog
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Untitled
Abstract: No abstract text available
Text: ANALOG DEVICES □ Integrated Circuit True RMS-to-DC Converter AD536A 1.1 Scope. This specification covers the detail requirements for a complete monolithic integrated circuit which performs true rms-to-dc conversion with the following transfer function: V
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AD536A
/883B
ADI-M-1000
H-10A
E-20A
14-Pin
10-Pin
20-Pin
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Untitled
Abstract: No abstract text available
Text: Integrated Circuit True RMS-to-DC Converter A N A LO G DEVICES _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ AD536A 1.1 Scope. This specification covers the detail requirements for a complete monolithic integrated circuit which performs true rms-to-dc conversion with the following transfer function:
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AD536A
AD536AS
/883B
ADI-M-1000
E-20A
14-Pin
10-Pin
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Untitled
Abstract: No abstract text available
Text: ANALOG DEVICES □ Integrated Circuit True RMS-to-DC Converter AD536A 1.1 Scope. This specification covers the detail requirements for a complete monolithic integrated circuit which performs true rms-to-dc conversion with the following transfer function: V out = VAVG. Vin 2
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AD536A
AD536AS
/883B
ADI-M-1000
H-10A
E-20A
14-Pin
10-Pin
20-Pin
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