NSN: 5962-01-096-1425

Microcircuits, Electronic

MICROCIRCUIT,DIGITAL

5962 - Microcircuits, Electronic

MICROCIRCUIT,DIGITAL

ACT NOW! SUBMIT A QUICK QUOTE.

Technical Characteristics

  • Special Features

    item must comply with requirements of defense electronics supply center production standard no. l02894; for navy nuclear propulsion plant products only

  • Maximum Power Dissipation Rating

    500.0 milliwatts

  • Features Provided

    low level and monolithic and hermetically sealed and positive outputs

  • Voltage Rating And Type Per Characteristic

    -0.5 volts minimum power source and 15.0 volts maximum power source

  • Inclosure Configuration

    dual-in-line

  • Inclosure Material

    ceramic

  • Terminal Surface Treatment

    solder

  • Time Rating Per Chacteristic

    120.00 nanoseconds maximum propagation delay time, low to high level output and 120.00 nanoseconds maximum propagation delay time, high to low level output

  • Input Circuit Pattern

    triple 3 input

  • Body Height

    0.140 inches maximum

  • Operating Temp Range

    -55.0/+125.0 deg celsius

  • Criticality Code Justification

    feat

  • Body Width

    0.240 inches minimum and 0.260 inches maximum

  • Terminal Type And Quantity

    14 printed circuit

  • Design Function And Quantity

    3 gate, nand

  • Output Logic Form

    complementary-metal oxide-semiconductor logic

  • Storage Temp Range

    -65.0/+150.0 deg celsius

  • Body Length

    0.745 inches minimum and 0.770 inches maximum

Certified to
AS6081 Methods

Implementing Quality Procurement

A rigorous vendor selection process and vendor management system are essential to ensuring quality.
Read more...

Supplying Quality Products

We take every measure to ensure that we supply quality, authentic parts including a strict vendor selection process and rigorous product inspections..
Read more...

Providing Quality People

Our team of dedicated account managers, procurement professionals and specialized inspectors is the most valuable resource we have.
Read more...