Posts Tagged ‘op amp’

AD820 Datasheet – Rail to Rail Op Amp

February 20th, 2011

AD820 Single-Supply, Rail-to-Rail, Low Power, FET Input Op Amp

AD820 General Description

The AD820 is a precision, low power FET input op amp that can operate from a single supply of 5 V to 36 V, or dual supplies of ±2.5 V to ±18 V. It has true single-supply capability, with an input voltage range extending below the negative rail, allowing the AD820 to accommodate input signals below ground in the single-supply mode. Output voltage swing extends to within 10 mV of each rail, providing the maximum output dynamic range.
Offset voltage of 800 μV maximum, offset voltage drift of 2 μV/°C, typical input bias currents below 25 pA, and low input voltage noise provide dc precision with source impedances up to 1 GΩ. 1.8 MHz unity gain bandwidth, −93 dB THD at 10 kHz, and 3 V/μs slew rate are provided for a low supply current of 800 μA. The AD820 drives up to 350 pF of direct capacitive load and provides a minimum output current of 15 mA. This allows the amplifier to handle a wide range of load conditions. This combination of ac and dc performance, plus the outstanding load drive capability, results in an exceptionally versatile amplifier for the single-supply user. » Read more: AD820 Datasheet – Rail to Rail Op Amp

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MCP6281/2/3/4/5 Datasheet: Rail to Rail Op Amp

January 30th, 2011

MCP6281/2/3/4/5 450 μA, 5 MHz Rail to Rail Op Amp

MCP6281/2/3/4/5 General Description

The Microchip Technology Inc. MCP6281/2/3/4/5 family of operational amplifiers (op amps) provide wide bandwidth for the current. This family has a 5 MHz Gain Bandwidth Product (GBWP) and a 65° phase margin. This family also operates from a single supply voltage as low as 2.2V, while drawing 450 μA (typ.) quiescent current. Additionally, the MCP6281/2/3/4/5 supports rail-to-rail input and output swing, with a common mode input voltage range of VDD + 300 mV to VSS – 300 mV. This family of operational amplifiers is designed with Microchip’s advanced CMOS process.

The MCP6285 has a Chip Select (CS) input for dual op amps in an 8-pin package. This device is manufactured by cascading the two op amps (the output of op amp A connected to the non-inverting input of op amp B). The CS input puts the device in Low-power mode.

The MCP6281/2/3/4/5 family operates over the Extended Temperature Range of -40°C to +125°C. It also has a power supply range of 2.2V to 5.5V.

MCP6281/2/3/4/5 Rail to Rail Op Amp Features

  • Gain Bandwidth Product: 5 MHz (typ.)
  • Supply Current: IQ = 450 μA (typ.)
  • Supply Voltage: 2.2V to 5.5V
  • Rail-to-Rail Input/Output
  • Extended Temperature Range: -40°C to +125°C
  • Available in Single, Dual and Quad Packages
  • Single with Chip Select (CS) (MCP6283)
  • Dual with Chip Select (CS) (MCP6285)

MCP6281/2/3/4/5 Rail to Rail Op Amp Pin Connection Diagram

 

MCP6281/2/3/4/5 Rail to Rail Op Amp Pin Connection Diagram
MCP6281/2/3/4/5 Pin Connection Diagram

 

MCP6281/2/3/4/5 Rail to Rail Op Amp Typical Electronic Circuit Application

 

MCP6281/2/3/4/5 Rail to Rail Op Amp Electronic Circuit Application - Shallen-key High-Pass Filter
MCP6281/2/3/4/5 Shallen-key High-Pass Filter

 

MCP6281/2/3/4/5 Rail to Rail Op Amp Datasheet Download

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LM358 Datasheet

December 9th, 2009

LM158 / LM258 / LM358 / LM2904
Low Power Dual Operational Amplifiers

LM358 General Description

The LM358 series consists of two independent, high gain, internally frequency compensated operational amplifiers which were designed specifically to operate from a single power supply over a wide range of voltages. Operation from split power supplies is also possible and the low power supply current drain is independent of the magnitude of the power supply  voltage.

Application areas include transducer amplifiers, dc gain blocks and all the conventional op amp circuits which now can be more easily implemented in single power supply systems. For example, the LM158 series can be directly operated off of the standard +5V power supply voltage which is used in digital systems and will easily provide the required interface electronics without requiring the additional ±15V power supplies. » Read more: LM358 Datasheet

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