|Category||Analog & Mixed-Signal Processing => Amplifiers|
|Description||8mhz, Precision, JFET Input Operational Amplifier|
|Datasheet||Download HA2-5170-5 datasheet
The Intersil is a precision, JFET input, operational amplifier which features low noise, low offset voltage and low offset voltage drift. Constructed using FET/Bipolar technology, the Intersil Dielectric Isolation (DI) process, and laser trimming this amplifier offers low input bias and offset currents. This operational amplifier design also completely eliminates the troublesome errors due to warm-up drift. Complementing these excellent input characteristics are dynamic performance characteristics never before available from precision operational amplifiers. An 8V/µs slew rate and 8MHz bandwidth allow the designer to extend precision instrumentation applications in both speed and bandwidth. These characteristics make the HA-5170 well suited for precision integrator amplifier designs. The superior input characteristics also make the HA-5170 ideally suited for transducer signal amplifiers, precision voltage followers and precision data acquisition systems. For application assistance, please refer to Application Note AN540 addressing specifically this device. Military version (-8) product and data sheets available upon request.Features
Low Offset Voltage. 100µV Low Offset Voltage Drift. 2µV/oC Low Noise. 10nV/ Hz High Open Loop Gain. 600kV/V Wide Bandwidth. 8MHz Unity Gain StableApplications
High Gain Instrumentation Amplifiers Precision Data Acquisition Precision Integrators Precision Threshold Detectors For Further Design Ideas, Refer to Application Note 540
PART NUMBER HA2-5170-5 HA7-5170-5 TEMP. RANGE (oC) to 75 PACKAGE 8 Pin Metal Can 8 Ld CERDIP PKG. NO. T8.C F8.3A
CAUTION: These devices are sensitive to electrostatic discharge; follow proper IC Handling Procedures. 321-724-7143 | Copyright © Intersil Corporation 1999
Voltage Between V+ and V- Terminals. 44V Differential Input Voltage. 30V Output Short Circuit Duration. Indefinite
Thermal Resistance (Typical, Note 1) JA (oC/W) JC (oC/W) CERDIP Package. 135 50 Metal Can Package. 155 67 Maximum Junction Temperature. 175oC Maximum Storage Temperature Range. to 150oC Maximum Lead Temperature (Soldering 10s). 300oC
CAUTION: Stresses above those listed in "Absolute Maximum Ratings" may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied.NOTE: JA is measured with the component mounted on an evaluation PC board in free air.
VSUPPLY = ±15V, Unless Otherwise Specified HA-5170-5 TEST CONDITIONS TEMP. (oC)
Average Offset Voltage Drift (Note 3) Bias Current
Bias Current Average Drift Offset Current
Offset Current Average Drift (Note 3) Common Mode Range
Differential Input Capacitance Differential Input Resistance (Note 3) Input Capacitance (Single Ended) Input Noise Voltage (Note 3) Input Noise Voltage Density (Note = 1000Hz Input Noise Current Density (Note = 1000Hz TRANSFER CHARACTERISTICS Large Signal Voltage Gain VOUT = 2k VCM = ±10V
VSUPPLY = ±15V, Unless Otherwise Specified (Continued) HA-5170-5 PARAMETER Minimum Stable Gain Closed Loop Bandwidth OUTPUT CHARACTERISTICS Output Voltage Swing Full Power Bandwidth (Note 4) Output Current (Note 5) Output Resistance (Note 3) TRANSIENT RESPONSE Rise Time Slew Rate Settling Time (Notes 3, 7) POWER SUPPLY CHARACTERISTICS Supply Current Power Supply Rejection Ratio (Note 8) NOTES: 2. See "Test Circuits and Waveforms" section. 3. Parameter is not 100% tested. 90% of all units meet or exceed these specifications. Slew Rate 4. Full power bandwidth guaranteed based on slew rate measurement using: FPBW 2 V PEAK 5. I turns at 23mA.6. Settling time is measured 0.1% of final value for a 10V output step and to -20V and to +20V.
Tested Offset Adjustment Range is |VOS + 1mV| minimum referred to output. Typical range is ±5mV with = 1k and ±15mV with = 100k. FIGURE 1. VOS ADJUSTMENT FIGURE 2. LARGE AND SMALL SIGNAL RESPONSE CIRCUIT
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