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OP295 Datasheet

Part Number OP295
Manufacturers Analog Devices
Logo Analog Devices
Description DUAL/QUAD RAIL-TO-RAIL OPERATIONAL AMPLIFIERS
Datasheet OP295 DatasheetOP295 Datasheet (PDF)

a FEATURES Rail-to-Rail Output Swing Single-Supply Operation: +3 V to +36 V Low Offset Voltage: 300 ␮V Gain Bandwidth Product: 75 kHz High Open-Loop Gain: 1000 V/mV Unity-Gain Stable Low Supply Current/Per Amplifier: 150 ␮A max APPLICATIONS Battery Operated Instrumentation Servo Amplifiers Actuator Drives Sensor Conditioners Power Supply Control OUT A –IN A +IN A V+ +IN B OUT A –IN A +IN A V– 1 2 3 4 Dual/Quad Rail-to-Rail Operational Amplifiers OP295/OP495 PIN CONNECTIONS 8-Lead Narrow-Body SO.

  OP295   OP295






Part Number OP299
Manufacturers ETC
Logo ETC
Description GaAlAs Plastic Infrared Emitting Diode
Datasheet OP295 DatasheetOP299 Datasheet (PDF)

Product Bulletin OP294 June 1996 GaAlAs Plastic Infrared Emitting Diode Types OP294, OP299 Features • Characterized at 5mA for battery operated systems or other low drive current systems • Wide irradiance pattern (OP294) or narrow irradiance pattern (OP299) • Significantly higher power output than GaAs at equivalent drive currents • Wavelength matched to silicon’ s peak response • T-1 3/4 package Absolute Maximum Ratings (TA = 25o C unless otherwise noted) Reverse Voltage . . . . . . . . . . .

  OP295   OP295







Part Number OP298
Manufacturers OPTEK Technologies
Logo OPTEK Technologies
Description (OP293 / OP298) GaAlAs Plastic Infrared Emitting Diodes
Datasheet OP295 DatasheetOP298 Datasheet (PDF)

www.DataSheet4U.com .

  OP295   OP295







Part Number OP297
Manufacturers Analog Devices
Logo Analog Devices
Description Dual Low Bias Current Precision Operational Amplifier
Datasheet OP295 DatasheetOP297 Datasheet (PDF)

8/21/97 4:00 PM a FEATURES Precision Performance in Standard SO-8 Pinout Low Offset Voltage: 50 ␮V max Low Offset Voltage Drift: 0.6 ␮V/؇ C max Very Low Bias Current: ␣ ␣ +25؇ C (100 pA max) ␣ ␣ –55 ؇C to +125 ؇C (450 pA max) Very High Open-Loop Gain (2000 V/mV min) Low Supply Current (Per Amplifier): 625 ␮A max Operates From 62 V to 620 V Supplies High Common-Mode Rejection: 120 dB min Pin Compatible to LT1013, AD706, AD708, OP221, ␣ ␣ LM158, and MC1458/1558 with Improved Performance APPLICATI.

  OP295   OP295







Part Number OP296
Manufacturers Analog Devices
Logo Analog Devices
Description Micropower / Rail-to-Rail Input and Output Operational Amplifiers
Datasheet OP295 DatasheetOP296 Datasheet (PDF)

a FEATURES Rail-to-Rail Input and Output Swing Low Power: 60 ␮A/Amplifier Gain Bandwidth Product: 450 kHz Single-Supply Operation: 3 V to 12 V Low Offset Voltage: 300 ␮V max High Open-Loop Gain: 500 V/mV Unity-Gain Stable No Phase Reversal APPLICATIONS Battery Monitoring Sensor Conditioners Portable Power Supply Control Portable Instrumentation GENERAL DESCRIPTION The OP196 family of CBCMOS operational amplifiers features micropower operation and rail-to-rail input and output ranges. The extreme.

  OP295   OP295







DUAL/QUAD RAIL-TO-RAIL OPERATIONAL AMPLIFIERS

a FEATURES Rail-to-Rail Output Swing Single-Supply Operation: +3 V to +36 V Low Offset Voltage: 300 ␮V Gain Bandwidth Product: 75 kHz High Open-Loop Gain: 1000 V/mV Unity-Gain Stable Low Supply Current/Per Amplifier: 150 ␮A max APPLICATIONS Battery Operated Instrumentation Servo Amplifiers Actuator Drives Sensor Conditioners Power Supply Control OUT A –IN A +IN A V+ +IN B OUT A –IN A +IN A V– 1 2 3 4 Dual/Quad Rail-to-Rail Operational Amplifiers OP295/OP495 PIN CONNECTIONS 8-Lead Narrow-Body SO (S Suffix) 8 7 V+ OUT B –IN B +IN B +IN A V– 3 4 6 –IN B +IN B OUT A –IN A 8-Lead Epoxy DIP (P Suffix) 1 2 8 7 V+ OUT B OP295 6 5 OP295 5 14-Lead Epoxy DIP (P Suffix) 1 2 3 4 5 6 7 14 OUT D 13 –IN D 12 +IN D 16-Lead SO (300 Mil) (S Suffix) OUT A –IN A +IN A V+ +IN B –IN B OUT B NC 1 2 3 4 5 6 7 8 16 OUT D 15 –IN D 14 +IN D 13 V– OP495 11 V– OP495 12 +IN C 11 –IN C 10 +IN C 9 8 –IN C OUT C GENERAL DESCRIPTION –IN B OUT B 10 OUT C 9 NC 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 that of CMOS designs has been achieved. Both input and output ranges include the negative supply, providing the user “zero-in/zero-out” capability. For users of 3.3 volt systems such as lithium batteries, the OP295/OP495 is specified for three volt operation. Maximum offset voltage is specified at 300 µV for +5 volt operation, and the op.


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