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59628856501CA Datasheet (PDF) - Analog Devices

59628856501CA Datasheet PDF - Analog Devices
Part No. 59628856501CA
Download  59628856501CA Click to view

File Size   3194.05 Kbytes
Page   16 Pages
Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices
Description Very Low Noise Quad Operational Amplifier

59628856501CA Datasheet (PDF)

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59628856501CA Datasheet PDF - Analog Devices

Part No. 59628856501CA
Download  59628856501CA Click to view

File Size   3194.05 Kbytes
Page   16 Pages
Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices
Description Very Low Noise Quad Operational Amplifier

59628856501CA Datasheet (HTML) - Analog Devices

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59628856501CA Product details

GENERAL DESCRIPTION
The OP470 is a high-performance monolithic quad operational amplifier with exceptionally low voltage noise, 5 nV/√Hz at 1 kHz max, offering comparable performance to ADI’s industry standard OP27.
The OP470 features an input offset voltage below 0.4 mV, excellent for a quad op amp, and an offset drift under 2 μV/°C, guaranteed over the full military temperature range. Open loop gain of the OP470 is over 1,000,000 into a 10 kΩ load ensuring excellent gain accuracy and linearity, even in high gain applications. Input bias current is under 25 nA, which reduces errors due to signal source resistance. The OP470’s CMR of over 110 dB and PSRR of less than 1.8 μV/V significantly reduce errors due to ground noise and power supply fluctuations. Power consumption of the quad OP470 is half that of four OP27s, a significant advantage for power conscious applications. The OP470 is unity-gain stable with a gain bandwidth product of 6 MHz and a slew rate of 2 V/μs.

FEATURES
   Very Low-Noise, 5 nV/√Hz @ 1 kHz Max
   Excellent Input Offset Voltage, 0.4 mV Max
   Low Offset Voltage Drift, 2 μV/°C Max
   Very High Gain, 1000 V/mV Min
   Outstanding CMR, 110 dB Min
   Slew Rate, 2 V/μs Typ
   Gain-Bandwidth Product, 6 MHz Typ
   Industry Standard Quad Pinouts
   Available in Die Form



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