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Part Name(s) : M5219FP M5219L M5219P Mitsumi
Mitsumi
Description : DUAL LOW-NOISE OPERATIONAL AMPLIFIERS(DUAL POWER SUPPLY TYPE)

DUAL LOW-NOISE OPERATIONAL AMPLIFIERS(DUAL POWER SUPPLY TYPE)

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Part Name(s) : M5220FP M5220L M5220P Mitsumi
Mitsumi
Description : DUAL LOW-NOISE OPERATIONAL AMPLIFIERS(DUAL POWER SUPPLY TYPE)

DUAL LOW-NOISE OPERATIONAL AMPLIFIERS(DUAL POWER SUPPLY TYPE)

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Part Name(s) : 27L2C ST-Microelectronics
STMicroelectronics
Description : PRECISION VERY LOW POWER CMOS DUAL OPERATIONAL AMPLIFIERS

DESCRIPTION
These devices are low cost, low power DUAL OPERATIONAL AMPLIFIERS designed to operate with single or DUAL supplies. These OPERATIONAL AMPLIFIERS use the ST silicon gate CMOS process allowing an excellent consumption-speed ratio. These series are ideally suited for low consumption applications. Three power consumptions are available allowing to have always the best consumption-speed ratio:
❑ ICC = 10µA/amp.: TS27L2 (very low power)
❑ ICC = 150µA/amp.: TS27M2 (low power)
❑ ICC = 1mA/amp.: TS272 (standard)

■ VERY LOW POWER CONSUMPTION : 10µA/op
■ OUTPUT VOLTAGE CAN SWING TO GROUND
■ EXCELLENT PHASE MARGIN ON CAPACITIVE LOADS
■ STABLE AND LOW OFFSET VOLTAGE
■ THREE INPUT OFFSET VOLTAGE SELECTIONS

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Part Name(s) : MC33172 MC35172 MC33172N MC33172D MC33172DT MC35172N MC35172D MC35172DT ST-Microelectronics
STMicroelectronics
Description : Low power DUAL bipolar OPERATIONAL AMPLIFIERS

Description
The MC3x172 series are DUAL bipolar OPERATIONAL AMPLIFIERS offering both low consumption (200 µA/Amp) and good speed (2.1 MHz, 2 V/µs).
Moreover, the input common mode range extends down to the lower supply rail, allowing single supply operation from +4 V to +44 V.
   
Features
■ Good consumption/speed ratio: only 200 µA for
    2.1 MHz, 2 V/µs
■ Single (or DUAL) supply operation from +4 V to
    +44 V (±2 V to ±22V)
■ Wide input common mode mode voltage range
    including VCC-
■ Low level output voltage close to VCC- :
    100 mV typical
■ Pin-to-pin compatible with standard DUAL
    OPERATIONAL AMPLIFIERS
   

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Part Name(s) : MC3358 MC3358P1 MC3458 MC3458D MC3458P1 Motorola
Motorola => Freescale
Description : DUAL, Low Power OPERATIONAL AMPLIFIERS

Utilizing the circuit designs perfected for the quad OPERATIONAL AMPLIFIERS, these DUAL OPERATIONAL AMPLIFIERS feature: 1) low power drain, 2) a common mode input voltage range extending to ground/VEE, and 3) Single Supply or Split Supply operation.
These AMPLIFIERS have several distinct advantages over standard OPERATIONAL amplifier types in single supply applications. They can operate at supply voltages as low as 3.0 V or as high as 36 V with quiescent currents about one–fifth of those associated with the MC1741C (on a per amplifier basis). The common mode input range includes the negative supply, thereby eliminating the necessity for external biasing components in many
applications. The output voltage range also includes the negative power supply voltage.

• Short Circuit Protected Outputs
• True Differential Input Stage
• Single Supply Operation: 3.0 V to 36 V
• Low Input Bias Currents
• Internally Compensated
• Common Mode Range Extends to Negative Supply
• Class AB Output Stage for Minimum Crossover Distortion
• Single and Split Supply Operations Available
• Similar Performance to the Popular MC1458

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Part Name(s) : NE532NB Philips
Philips Electronics
Description : Low power DUAL OPERATIONAL AMPLIFIERS

DESCRIPTION
The 532/358/LM2904 consists of two independent, high gain, internally frequency-compensated OPERATIONAL AMPLIFIERS internally frequency-compensated OPERATIONAL AMPLIFIERS designed specifically
to operate from a single power supply over a wide range of voltages. Operation from DUAL power supplies is also possible, and the low power supply current drain is independent of the magnitude of the power supply voltage.

FEATURES
•Internally frequency-compensated for unity gain
•Large DC voltage gain: 100 dB
•Wide bandwidth (unity gain): 1 MHz (temperature-compensated)
•Wide power supply range single supply: 3 VDCto 30 VDC, or DUAL supplies: ±1.5 VDC to ±15 VDC
•Very low supply current drain (400 µA)—essentially independent of supply voltage (1 mW/op amp at +5 VDC)
•Low input biasing current: 45 nADC temperature-compensated
•Low input offset voltage: 2 mVDC, and offset current: 5nADC
•Differential input voltage range equal to the power supply voltage
•Large output voltage: 0 VDC to V+ 1.5 VDC swing

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Part Name(s) : MC3358 MC3358D MC3358DR2 MC3358P1 MC3458 MC3458D MC3458DR2 MC3458P1 ON-Semiconductor
ON Semiconductor
Description : DUAL, Low Power OPERATIONAL AMPLIFIERS

Utilizing the circuit designs perfected for the quad OPERATIONAL AMPLIFIERS, these DUAL OPERATIONAL AMPLIFIERS feature: low power drain, a common mode input voltage range extending to ground/VEE, and Single Supply or Split Supply operation.
These AMPLIFIERS have several distinct advantages over standard OPERATIONAL amplifier types in single supply applications. They can operate at supply voltages as low as 3.0 V or as high as 36 V with quiescent currents about one–fifth of those associated with the MC1741C (on a per amplifier basis). The common mode input range includes the negative supply, thereby eliminating the necessity for external biasing components in many applications. The output voltage range also includes the negative power supply voltage.

• Short Circuit Protected Outputs
• True Differential Input Stage
• Single Supply Operation: 3.0 V to 36 V
• Low Input Bias Currents
• Internally Compensated
• Common Mode Range Extends to Negative Supply
• Class AB Output Stage for Minimum Crossover Distortion
• Single and Split Supply Operations Available
• Similar Performance to the Popular MC1458

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Part Name(s) : TS27M2AC TS27M2ACP TS27M2AI TS27M2AIP TS27M2AM TS27M2AMD TS27M2AMN TS27M2AMP TS27M2BC TS27M2BCP TS27M2BI TS27M2BIP TS27M2BM TS27M2BMD TS27M2BMN TS27M2BMP TS27M2C TS27M2CP TS27M2I TS27M2IP TS27M2M TS27M2MD TS27M2MN TS27M2MP ST-Microelectronics
STMicroelectronics
Description : PRECISION LOW POWER CMOS DUAL OPERATIONAL AMPLIFIERS

DESCRIPTION
These devices are low cost, low power DUAL OPERATIONAL AMPLIFIERS designed to operate with single or DUAL supplies. These OPERATIONAL AMPLIFIERS use the ST silicon gate CMOS process allowing an excellent consumption-speed ratio. These series are ideally suited for low consumption applications.

■LOW POWER CONSUMPTION :150µA/op
■OUTPUT VOLTAGE CAN SWING TO GROUND
■EXCELLENT PHASE MARGIN ON CAPACITIVE LOADS
■STABLE AND LOW OFFSET VOLTAGE
■THREE INPUT OFFSET VOLTAGE SELECTIONS

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Part Name(s) : OP282GP OP482GP ADI
Analog Devices
Description : DUAL/Quad Low Power, High Speed JFET OPERATIONAL AMPLIFIERS

GENERAL DESCRIPTION
The OP282/OP482 DUAL and quad OPERATIONAL AMPLIFIERS feature excellent speed at exceptionally low supply currents. Slew rate exceeds 7 V/µs with supply current under 250 µA per amplifier. These unity gain stable AMPLIFIERS have a typical gain bandwidth of 4 MHz.
The JFET input stage of the OP282/OP482 insures bias current is typically a few picoamps and below 500 pA over the full temperature range. Offset voltage is under 3 mV for the DUAL and under 4 mV for the quad.

FEATURES
   High Slew Rate: 9 V/μs
   Wide Bandwidth: 4 MHz
   Low Supply Current: 250 μA/Amplifier
   Low Offset Voltage: 3 mV
   Low Bias Current: 100 pA
   Fast Settling Time
   Common-Mode Range Includes V+
   Unity Gain Stable

APPLICATIONS
   Active Filters
   Fast AMPLIFIERS
   Integrators
   Supply Current Monitoring

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Part Name(s) : TS062ACD ST-Microelectronics
STMicroelectronics
Description : LOW POWER J-FET DUAL OPERATIONAL AMPLIFIERS

DESCRIPTION
The TL062, TL062A and TL062B are high speed J-FET input DUAL OPERATIONALamplifier family. Each of these J-FET input OPERATIONAL AMPLIFIERS incorporates well matched, high voltage J-FET and bipolar transistors in a monolithic integrated circuit.
   
■ VERY LOW POWER CONSUMPTION : 200µA
■ WIDE COMMON-MODE (UP TO VCC+) AND
    DIFFERENTIAL VOLTAGE RANGES
■ LOW INPUT BIAS AND OFFSET CURRENTS
■ OUTPUT SHORT-CIRCUIT PROTECTION
■ HIGH INPUT IMPEDANCE J-FET INPUT
    STAGE
■ INTERNAL FREQUENCY COMPENSATION
■ LATCH UP FREE OPERATION
■ HIGH SLEW RATE : 3.5V/µs
   

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