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DLA - SMD-5962-89531 REV H

MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER

inactive
Organization: DLA
Publication Date: 10 September 1997
Status: inactive
Page Count: 16
scope:

This drawing documents five product assurance classes, class D (lowest reliability), class E, (exceptions), class G (lowest high reliability), class H (high reliability), and class K, (highest reliability) and 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 levels are reflected in the PIN.

The PIN shall be as shown in the following example:

Device class H and K RHA marked devices shall meet the MIL-PRF-38534 specified RHA levels and shall be marked with the appropriate RHA designator. A dash(-) indicates a non-RHA device.

The device type(s) shall identity the circuit function as follows:

Device type Generic number Circuit function 01 DAC-HPB 16-bit D/A converter; 0 to +10 V and ±5V output 02 DAC-HPB-1, MN3292T/B-V 16-bit D/A converter; ±10 V output 03 MN3290T/B-V 16-bit D/A converter; 0 to +10 V output 04 MN3291T/B-V 16-bit D/A converter; ±5 V output

This device class designator shall be a single letter identifying the product assurance level as follows:

Device class Device performance documentation D, E, G, H, or K Certification and qualification to MIL-PRF-38534

The case outline(s) shall be designated in MIL-STD-1835 and as follows:

Outline letter Descriptive designator Terminals Package style X See figure 1 24 Dual-in-line Y See figure 1 24 Dual-in-line

The lead finish shall be as specified in MIL-PRF-38534.

Positive supply voltage (VCC) ................... −0.3 to +18 V dc Negative supply voltage (VEE) ................... +0.3 to −18 V dc Digital inputs (pins 1 through 16) .............. +5.5 V Output current .................................. ±20 mA Analog output voltage ........................... ±18 V(supply voltage) Junction temperature (TJ) ....................... +175°C Storage temperature ............................. −65° C to +150°C Lead temperature (soldering, 10 seconds0 ........ +300° C Power dissipation (PD) .......................... 1.35 W Thermal resistance: Junction-to-case (θJC) ........................ 13°C/W Junction-to-ambient (θJA) ..................... 49°C/W

Supply voltage ranges: Positive supply voltage (VCC) ................. +14.5 V to +15.5 V dc Negative supply voltage (VEE) ................. −14.5 V to −15.5 V dc Ambient operating temperature range (TA) ........ −55°C to +125° C

intended Use:

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

Document History

January 24, 2024
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
Scope. This drawing documents five product assurance classes as defined in paragraph 1.2.3 and MIL-PRF-38534. A choice of case outlines and lead finishes are available and are reflected in the Part...
November 14, 2019
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
Scope. This drawing documents five product assurance classes as defined in paragraph 1.2.3 and MIL-PRF-38534. A choice of case outlines and lead finishes which are available and are reflected in the...
March 12, 2014
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
This drawing documents five product assurance classes as defined in paragraph 1.2.3 and MIL-PRF-38534. A choice of case outlines and lead finishes which are available and are reflected in the Part or...
January 16, 2008
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
This drawing documents five product assurance classes as defined in paragraph 1.2.3 and MIL-PRF-38534. A choice of case outlines and lead finishes which are available and are reflected in the Part or...
April 9, 2002
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
January 22, 1998
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
This drawing documents five product assurance classes, class D (lowest reliability), class E, (exceptions), class G (lowest high reliability), class H (high reliability), and class K, (highest...
SMD-5962-89531 REV H
September 10, 1997
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
This drawing documents five product assurance classes, class D (lowest reliability), class E, (exceptions), class G (lowest high reliability), class H (high reliability), and class K, (highest...
September 29, 1995
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
May 31, 1994
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
March 15, 1994
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
February 4, 1994
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
This drawing forms a part of a one part - one part number documentation system (see 6.6). This drawing describes device requirements for hybrid microcircuits to be processed in accordance with...
March 12, 1992
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
October 7, 1991
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
January 25, 1991
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
July 11, 1990
MICROCIRCUIT, HYBRID, LINEAR, 16-BIT, DIGITAL TO ANALOG CONVERTER
A description is not available for this item.
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