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Overview

Description

The HA-5320 was designed for use in precision, High-Speed data acquisition systems. The circuit consists of an input transconductance amplifier capable of providing large amounts of charging current, a low leakage analog switch, and an output integrating amplifier. The analog switch sees virtual ground as its load; therefore, charge injection on the hold capacitor is constant over the entire input/output voltage range. The pedestal voltage resulting from this charge injection can be adjusted to zero by use of the offset adjust inputs. The device includes a hold capacitor. However, if improved droop rate is required at the expense of acquisition time, additional hold capacitance may be added externally. This monolithic device is manufactured using the Intersil Dielectric Isolation Process, minimizing stray capacitance and eliminating SCRs. This allows higher speed and latchfree operation. For further information, please see Application Note AN538.

Features

  • Gain, DC: 2 x 106 V/V
  • Acquisition Time: 1.0µs (0.01%)
  • Droop Rate: 0.08µV/µs (+25°C) 17µV/µs (Full Temperature)
  • Aperture Time: 25ns
  • Hold Step Error (See Glossary): 5mV
  • Internal Hold Capacitor
  • Fully Differential Input
  • TTL Compatible
  • Pb-Free Available (RoHS Compliant)

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Schematic symbols, PCB footprints, and 3D CAD models from SamacSys can be found by clicking on the CAD Model links in the Product Options table. If a symbol or model isn't available, it can be requested directly from SamacSys.

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FAQs

  1. Where can I find application note AN538 which is referenced on the HA-5320 datasheet?

    Question:The data sheet for the HA-5320 references AN538 for further information. I couldn't find it on your website. Can I get a copy of it?   Answer:Attached is the application note you are requesting.

    Jan 1, 1970
  2. What is the minimum power supply voltage for the HA-5320?

    Question:What is the minimum power supply voltage? Will it work with ±12V power supplies?   Answer:HA-5320 minimum Vcc is ±13.5V.  It definitely will not work at ±12V or less.

    Jan 1, 1970