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OP07 Datasheet, PDF (1/12 Pages) Analog Devices – Ultralow Offset Voltage Dual Operational Amplifier
Product specification
OP07
GENERAL DESCRIPTION
The OP07 has very low input offset voltage (75
µV max for OP07E) which is obtained by trimming
at the wafer stage. These low offset voltages
generally eliminate any need for external null-ing.
The OP07 also features low input bias current (±
4 nA for OP07E) and high open-loop gain (200
V/mV for OP07E). The low offsets and high
open-loop gain make the OP07 particularly useful
for high-gain instrumentation applications.
The wide input voltage range of ± 13 V minimum
combined with high CMRR of 106 dB (OP07E)
and high input impedace pro-vides high accuracy
in the noninverting circuit configuration. Excellent
linearity and gain accuracy can be maintained
even at high closed-loop gains. Stability of offsets
and gain with time or Variations in temperature is
excellent. The Accuracy and stability of the OP07,
even at high Gain, combined with the freedom
from external Nulling have made the OP07 an
industry Standard for instrumentation applications.
The OP07 is available in two standard
performance Grades. The OP07E is specified for
operation Over the 0°C to 70°C range, and
OP07C over The –40°C to +85°C temperature
range. The OP07 is available in epoxy 8-lead
Mini-DIP and 8-lead SOIC. It is a direct
replacement for 725,108A, and OP05 amplifiers;
741-types may Be directly replaced by removing
the 741’s Nulling potentiometer. For improved
Specifications, see the OP177 or OP1177. For
Ceramic DIP and TO-99 packages and standard
Micro circuit (SMD) versions, see the OP77.
FEATURES
‹ Low VOS: 75µV Max
‹ Low VOS Drift: 1.3µV /℃ Max
‹ Ultra-Stable vs. Time: 1.5µV /Month Max
‹ Low Noise: 0.6µV p-p Max
‹ Wide Input Voltage Range: ±14 V
‹ Wide Supply Voltage Range: 3 V to 18 V
‹ Fits 725,108A/308A, 741, AD510 Sockets
125℃ Temperature-Tested Dice
APPLICATIONS
‹ Wireless Base Station Control Circuits
‹ Optical Network Control Circuits
‹ Instrumentation
‹ Sensors and Controls
‹ Thermocouples
‹ RTDs
‹ Strain Bridges
‹ Shunt Current Measurements Precision
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