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ADI OP295GSZRoHS

Manufacturer
MPN
OP295GSZ
LCSC Part #
C209516
Packaging
SOIC-8
Customer #
Key Attributes
Dual/Quad Rail-to-Rail Operational Amplifiers
Datasheetpdf iconADI OP295GSZ
In-Stock: 237
237 In stock, ships now
Add to BOM List
QtyUnit PriceTotal Amount
1+$ 12.7317$ 11.5859$ 11.59
10+$ 11.091$ 10.0929$ 100.93
30+$ 10.09$ 9.1819$ 275.46
98+$ 9.2518$ 8.4192$ 825.08
Standard Packaging98/Full Tube
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Linear/Amplifiers/Instrumentation, Op Amps, Buffer Amps
ManufacturerADI
PackagingSOIC-8
Number of Channels2
Vos - Input Offset Voltage30uV
Slew Rate30V/ms
Input Offset Current(Ios)1nA
Input offset current drift(Ios TC)-
FeaturesBuilt-in compensation
Operating Temperature-40℃~+125℃
Common Mode Rejection Ratio(CMRR)110dB
Ib - Input Bias Current8nA
Output Current18mA
Maximum Power Supply Range (Vdd-Vss)36V
Input Offset Voltage Drift(Vos TC)1uV/℃
Quiescent Current150uA
Gain Bandwidth Product75kHz
Input Voltage Noise Density51nV/√Hz@1kHz
Dual Supply-18V~-1.5V;1.5V~18V
Rail to RailRail-to-rail output
Single Supply3V~36V

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging98
Sales UnitPiece

Introduction

AI Translation

Rail-to-rail output swing combined with dc accuracy are the key features of the OP495 quad and OP295 dual CBCMOS operational amplifiers. By using a bipolar front end, lower noise and higher accuracy than those of CMOS designs have been achieved. Both input and output ranges include the negative supply, providing the user with zero-in/zero-out capability. For users of 3.3 V systems such as lithium batteries, the OP295/OP495 are specified for 3V operation.

Maximum offset voltage is specified at 300 μV for 5 V operation, and the open-loop gain is a minimum of 1000 V/mV. This yields performance that can be used to implement high accuracy systems, even in single-supply designs.

The ability to swing rail-to-rail and supply 15 mA to the load makes the OP295/OP495 ideal drivers for power transistors and H bridges. This allows designs to achieve higher efficiencies and to transfer more power to the load than previously possible without the use of discrete components.

For applications such as transformers that require driving inductive loads, increases in efficiency are also possible. Stability while driving capacitive loads is another benefit of this design over CMOS rail-to-rail amplifiers. This is useful for driving coax cable or large FET transistors. The OP295/OP495 are stable with loads in excess of 300 pF.

The OP295 and OP495 are specified over the extended industrial (-40°C to +125°C) temperature range. The OP295 is available in 8-lead PDIP and 8-lead SOIC_N surface-mount packages. The OP495 is available in 14-lead PDIP and 16-lead SOIC_W surface-mount packages.

Features

AI Translation
  • Rail-to-rail output swing
  • Single-supply operation: 3 V to 36 V
  • Low offset voltage: 300 μV
  • Gain bandwidth product: 75 kHz
  • High open-loop gain: 1000 V/mV
  • Unity-gain stable
  • Low supply current/per amplifier: 150 μA maximum

Applications

AI Translation
  • Battery-operated instrumentation
  • Servo amplifiers
  • Actuator drives
  • Sensor conditioners
  • Power supply control