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DOD - SMD 5962-78011

MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON

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Organization: DOD
Publication Date: 20 April 2020
Status: active
Page Count: 12
scope:

Scope.

This drawing documents two product assurance class levels consisting of high reliability (device classes Q and M) and space application (device class V). A choice of case outlines and lead finishes are available and are reflected in the Part or Identifying Number (PIN). When available, a choice of Radiation Hardness Assurance (RHA) levels is reflected in the PIN.

intended Use:

Microcircuits conforming to this drawing are intended for use for Government microcircuit applications (original equipment), design applications, and logistics purposes.

Document History

SMD 5962-78011
April 20, 2020
MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON
Scope. This drawing documents two product assurance class levels consisting of high reliability (device classes Q and M) and space application (device class V). A choice of case outlines and lead...
September 3, 2015
MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON
This drawing documents two product assurance class levels consisting of high reliability (device classes Q and M) and space application (device class V). A choice of case outlines and lead finishes...
September 3, 2009
MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON
iThis drawing documents two product assurance class levels consisting of high reliability (device classes Q and M) and space application (device class V). A choice of case outlines and lead finishes...
December 15, 2003
MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON
A description is not available for this item.
July 10, 1996
MICROCIRCUIT, DIGITAL, LOW POWER SCHOTTKY, TTL, OCTAL FLIP-FLOP, MONOLITHIC SILICON
Microcircuits conforming to this drawing are intended for use for Government microcircuit applications (original equipment), design applications, and logistics purposes.

References

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