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PR2202

PREMA
Part Number PR2202
Manufacturer PREMA
Description High Voltage Operational Amplifier
Published Feb 10, 2014
Detailed Description High Voltage Opamp PR2201 / PR2202 High Voltage Operational Amplifiers PR2201 and PR2202 PR2201 is a monolithic high-vo...
Datasheet PDF File PR2202 PDF File

PR2202
PR2202


Overview
High Voltage Opamp PR2201 / PR2202 High Voltage Operational Amplifiers PR2201 and PR2202 PR2201 is a monolithic high-voltage operational amplifier with JFET input stage and NPN/ PNP output stage.
The wide common mode input range and the large differential input voltage range allow to measure large signals close to the supply lines.
A low quiescent current keeps the heat dissipation low.
PR2202 is a dual operational amplifier based on PR2201.
Features • • • • • • • • • Supply voltage up to 80V or ±40V Wide common mode input range Near rail-to-rail output JFET input stage with very low input bias current Output current up to 6mA Gain bandwidth product >1 MHz Low quiescent current Overtemperature shutdown Offset compensation by external trimming (only PR2201) Block Diagram PR2201 PR2202 © PREMA Semiconductor GmbH 2009 Page 1/4 Rev 2009 Free Datasheet http://www.
datasheet4u.
net/ High Voltage Opamp PR2201 / PR2202 Absolute Maximum Ratings Parameter VCC -VEE (not permanent) In+, InStorage Temperature Range Electrostatic Discharge (ESD) Protection Min -0.
3 Vee -55 1 Typ Max 90 Vcc 150 Units V V °C kV Electrical Characteristics VCC-VEE=80V, TA = 25°C, unless otherwise noted.
Parameter Supply Voltage VCC - VEE Quiescent current VOUT = (VCC-VEE)/2, IOUT=0 for PR2201 (per channel for PR2202) VEE+1.
5V VIN+ - VINVOUT = VEE+2V.
.
.
VCC-2V -60 VEE+1.
0V 5 90 85 RL = 500 W; G = 1 RL = 500 W; G = 1 RL = 500 W 1.
0 n/a -20 140 SOIC 8L package; still air, free convection 160 125 6 ±5 120 110 ±2 0.
8 1.
2 ±10 ±100 500 Conditions Min Typ Max 80 700 Units V µA Common mode input voltage Differential mode input voltage Output voltage Output current Input bias current Common mode rejection ratio Supply voltage rejection ratio Input offset Slew rate low => high Slew rate high => low Gain bandwidth product Open loop gain Junction temperature Overtemperature shutdown Thermal resistance ΘJA All data are preliminary VCC-2.
0V +60 VCC-1.
0V mA pA dB dB mV V/µs V/µs MHz dB °C °C °C/W V © PREMA ...



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