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Part Manufacturer Description PDF & SAMPLES
ISL21080-EVALZ Intersil Corporation 300nA NanoPower Voltage References; Package: Eval Board
ISL21010CFH330Z-TK Intersil Corporation Micropower Voltage Reference; SOT3; Temp Range: -40° to 125°C
ISL21010CFH341Z-T7A Intersil Corporation Micropower Voltage Reference; SOT3; Temp Range: -40° to 125°C
ISL21010CFH320Z-TK Intersil Corporation Micropower Voltage Reference; SOT3; Temp Range: -40° to 125°C
ISL21010CFH315Z-TK Intersil Corporation Micropower Voltage Reference; SOT3; Temp Range: -40° to 125°C
ISL21010DFH310Z-T7A Intersil Corporation Micropower Voltage Reference; SOT3; Temp Range: -40° to 125°C

"current reference"

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: terminal. With no load applied, the shunt reference sinks just enough current so that the voltage drop , I R1, because load current (I L ) produces part of the voltage drop across R1. The reference , name "shunt reference." A shunt reference regulates the output voltage by adjusting its sink current to oppose changes in load current. Three-terminal (series) reference The series reference , series reference draws a small amount of current (I Q ) through the internal resistance (R) to drop a Maxim Integrated Products
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LM4040 LM4050 LM4051 MAX6012 MAX6034 MAX6138 MAX6164 MAX6165 MAX6166 MAX6167 MAX6168 MAX6190
Abstract: Reference amplifier inputs _VCC, VEE VREF (D , (All bits high) IOL Output current (All bits low) VO Output voltage compliance Reference amplifier slew rate ST IREF Reference amplifier settling time Output current power supply , Output current range PSRR(-) p.p.m./°C TA = 25°C Reference input bias current (Pin 15 , current steering for speed. An on-chip high-slew reference current amplifier drives the R/2R ladder and RS Components
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Abstract: reference. IREF no longer equals IR1, because load current (IL) produces part of the voltage drop across R1. The reference automatically reduces its sink current by the amount IL. Thus, the total current , current to oppose changes in load current. Three-Terminal (Series) Reference The series reference , reference draws a small amount of current (IQ) through the internal resistance (R) to drop a voltage , regulating part) is connected in series with its load. As load current increases, the reference maintains Maxim Integrated Products
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AN719 APP719 AN-719
Abstract: reference voltage at VOUT. Because current flow is necessary to generate a voltage drop, the device draws a , source of power dissipation is the reference IC's quiescent current. Series references generally have a , voltage VREF = reference output voltage IL = load current IQ = reference quiescent current WC_P_SER = worst-case power in series reference VMAX = maximum power-supply voltage ILMAX = maximum load current , reference maintains a constant voltage at OUT by forcing the sum of load current and current through the Maxim Integrated Products
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MAX6008 AN4003 APP4003 high current powersupply MAX6029
Abstract: is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate Hirose Electric
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catalog
Abstract: _+15V VO Applied output voltage _0.5, -5.0V IREF Reference current , Output current (All bits low) VO Output voltage compliance Reference amplifier slew rate ST IREF Reference amplifier settling time Output current power supply sensitivity 5.0 mA , current range PSRR(-) p.p.m./°C TA = 25°C Reference input bias current (Pin 15) IOR % , current steering for speed. An on-chip high-slew reference current amplifier drives the R/2R ladder and RS Components
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D 3410 A
Abstract: information in this catalog is for reference only. Please request the Engineering Drawing for the most current , reference only. Please request the Engineering Drawing for the most current and accurate design information , information in this catalog is for reference only. Please request the Engineering Drawing for the most current , reference only. Please request the Engineering Drawing for the most current and accurate design information , information in this catalog is for reference only. Please request the Engineering Drawing for the most current Hirose Electric
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Abstract: ). You can view this type of reference as a voltage-controlled current sink in which the controlling voltage drives the input terminal. With no load, the shunt reference sinks just enough current so that , example, VIN = 6V and the desired VREF is 5V, the reference current, IREF, creates a 1V drop across R1 , , because load current IL produces part of the voltage drop across R1. The reference automatically reduces , "shunt reference." Thus, a shunt reference regulates the output voltage by adjusting its sink current to Maxim Integrated Products
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AN1182 APP1182
Abstract: available: ± 0.6% n Wide operating current range: 17 uA to 20 mA n Reference floats above ground n , - = 0V, unless otherwise noted (Continued) Reference Voltage vs Current and Temperature Reference Voltage vs Current and Temperature DS009221-36 Reference Voltage vs Reference Current Reference Voltage vs Reference Current DS009221-37 Reference AC Stability Range DS009221-38 Feedback , Voltage with Feedback Voltage Step Reference Power-Up Time Reference Voltage with 10012 uA Current National Semiconductor
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LM611 LM611M LM611AI LM611AM LM611BI
Abstract: otherwise noted (Continued) Accelerated Reference Voltage Drift vs. Time Reference Voltage vs. Current and Temperature 00932649 00932650 Reference Voltage vs. Current and Temperature Reference Voltage vs. Reference Current 00932652 00932651 Reference Voltage vs. Reference Current , . FEEDBACK-to-Anode Voltage FEEDBACK Current vs. FEEDBACK-to-Anode Voltage 00932655 00932656 Reference , ) Reference Step Response for 100 uA 10 mA Current Step Reference Voltage with 10012 uA Current Step National Semiconductor
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LM614 LM614 8 pin LM134 LM614 application LM614CWM LM614CWMX
Abstract: BIAS CIRCUITRY REFERENCE CURRENT AMPLIFIER 14 VCC 1 VEE 2 GND ORDERING INFORMATION , VDC IREF(16) Reference current 2.5 mA VREF Reference amplifier inputs VCC, VEE , -0.4 -0.05 +.04 -0.4 IREF(15) Reference input bias current (Pin 15) -1.0 -5.0 , ­3.0 0 25 50 75 An on-chip high-slew reference current amplifier drives the R-2R ladder and , is two times 1023/1024 of the reference amplifier current, or nominally 3.996mA for a 2.000mA Philips Semiconductors
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MC3410 MC3410C LS373 MC3410CF MC3410F 10-BIT LS375
Abstract: REFERENCE CURRENT AMPLIFIER BIAS CIRCUITRY 3 Vcc VEE QND November 14, 1986 5-129 853-0936 86554 i , Digital input voltage + 15 Vdc Vo Applied output voltage 0.5, -5.0 Vdc IrEF(6) Reference current 2.5 mA , switches. The switches use current steering for speed. An on-chip high-slew reference current amplifier , , the maximum output current Is two times 1023/1024 of the reference amplifier current, or nominally 3.996mA for a 2.000mA reference input current. The reference amplifier allows the user to provide a -
OCR Scan
MG3410 MC3510 TC32I MG-34 mg34 S25PF 0M5772 TC32I30S DM577 MC391W
Abstract: is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate , catalog is for reference only. Please request the Engineering Drawing for the most current and accurate Hirose Electric
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Abstract: Reference amplifier inputs _VCC, VEE VREF (D , (All bits high) IOL Output current (All bits low) VO Output voltage compliance Reference amplifier slew rate ST IREF Reference amplifier settling time Output current power supply , Output current range PSRR(-) p.p.m./°C TA = 25°C Reference input bias current (Pin 15 , current steering for speed. An on-chip high-slew reference current amplifier drives the R/2R ladder and RS Components
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Abstract: _+15V I V Applied output voltage _0.5, -5.0V O I REF Reference current , speed. An on-chip high-slew reference current amplifier drives the R/2R ladder and segment decoder. The , of the reference amplifier current, or nominally 3.996mA for a 2.000mA reference input current. The , ) converts this voltage to a usable current. A current mirror doubles this reference current and feeds it to , reference current into Pin 16. The reference output current with respect to its intended fraction of current RS Components
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H6109
Abstract: current range 17 mA to 20 mA Y Reference floats above ground Y Tolerant of load capacitance , vs Time Reference Voltage vs Current and Temperature Reference Voltage vs Current and Temperature Reference Voltage vs Reference Current Reference Voltage vs Reference Current Reference , Reference Voltage with Feedback Voltage Step Reference Step Response for 100 mA E 10 mA Current Step Reference Voltage with 100 E 12 mA Current Step Reference Voltage Change with Supply Voltage Step TL National Semiconductor
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9221 op-amp 9221 LM611MN LM611IM LM611CN LM611CM
Abstract: Cathode Current IK Reference Input Current IREF Power Dissipation PD Operating Temperature Range , Voltage Change Reference Input Current Minimum Input Current Cathode Current (Off Cond.) Dynamic , Reference Voltage Change Reference Input Current Change VREF VKA=VREF (*1) IREF R1=10k,R2 , , NJM2822 Reference Voltage vs. Cathode Current (VKA=VREF,Ta=25°C) 1260 Reference Voltage VREF (mV) 1255 1250 1245 1240 0 10 20 Reference Voltage vs. Cathode Current (VKA=VREF,Ta New Japan Radio
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NJM2820 NJM2821 NJM2820F NJM2821F NJM2822F NJM2820/
Abstract: PARAMETER Cathode Voltage Continuous Cathode Current Reference Input Current Power Dissipation , VREF/VREF Reference Input Current IREF Minimum Input Current Cathode Current (Off Cond , TEMPERATURE CHARACTERISTICS PARAMETER Reference Voltage Change Reference Input Current Change (Ta , Ambient Temperature [°C] 20 40 60 80 100 Reference Voltage VS. Cathode Current VKA=VREF,Ta=25°C Reference Voltage VS. Cathode Current VKA=VREF,Ta=25°C 1255 1400 Reference Voltage New Japan Radio
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NJM2376 NJM2376F NJM2373U NJM2376U NJM2373 loda NJM2373/73A/76 NJM2373/73A NJM2373F/AF
Abstract: Voltage VREF to 13V High Precision Voltage Reference NJM2373 NJM2373A/76 Minimum Input Current 80uA , Reference Input Current IREF Power Dissipation PD Operating Temperature Range Storage Temperature , Change Reference Input Current Change UNIT VKA=VREF R1=10k, R2= VKA=VREF, VREF=±1% Reference , Temperature Ta (°C) 100 -3- NJM2373/73A/76 Reference Voltage vs. Cathode Current (VKA=VREF,Ta , Current (Off Cond.) vs. Cathode Voltage (VREF=0V,Ta=25°C) 1 Cathode Current IOFF (nA) Reference New Japan Radio
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NJM2373A NJM2373AU NJM2373F/73AF
Abstract: operating current range: 17 uA to 20 mA n Reference floats above ground n Tolerant of load capacitance , Accelerated Reference Voltage Drift vs Time Reference Voltage vs Current and Temperature 00922135 00922136 Reference Voltage vs Current and Temperature Reference Voltage vs Reference Current , Reference Current Reference AC Stability Range 00922139 00922140 Feedback Current vs Feedback-to-Anode Voltage Feedback Current vs Feedback-to-Anode Voltage 00922141 00922142 Reference National Semiconductor
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CSP-9-111C2 CSP-9-111S2
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