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DLA - SMD-5962-89447 REV A

MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH

inactive
Organization: DLA
Publication Date: 8 April 1994
Status: inactive
Page Count: 22
scope:

This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-H-38534.

The PIN shall be as shown in the following example:

Device classes H and K RHA marked devices shall meet the MIL-H-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 identify the circuit function as follows:

Coupling transformer turns ratio Device types Generic number Circuit function Transformer Direct 01 ARX3416 Dual channel, driver-receiver, 1.4:1 2:1 receiver idle normally high 02 NHI-1501 1.4:1 2:1 03 FC1553622 2:1 2:1 04 BUS63135II, BUS63136II 1.4:1 2:1 05 CT1487-DI 1.4:1 2:1 06 CT1892-500 1.4:1 2:1 07 CT1487-DFI

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

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

Outline letter Descriptive designator Terminals Package style U See figure 1 28 Dual-in-line X See figure 1 36 Dual-in-line Y See figure 1 36 Flat package Z See figure 1 28 Flat package

The lead finish shall be as specified in MIL-H-38534. Finish letter "X" shall not be marked on the microcircuit or its packaging. The "X" designation is for use in specifications when lead finishes A, B, and C are considered acceptable and interchangeable without preference.

Supply voltage range: VCC (devices 01, 02, 05, 06, and 07) - - - - - - - −0.3 V dc to +18 V dc VEE (devices 01, 03, 04, 05, 06, and 07) - - - - - +0.3 V dc to −18 V dc VCC1 (all devices) - - - - - - - - - - - - - - - - −0.3 V dc to +7 V dc Logic input voltage - - - - - - - - - - - - - - - - −0.3 V dc to VCC1 Receiver differential voltage - - - - - - - - - - - 40 VP-P Receiver common mode voltage range - - - - - - - - - −10 V dc to +10 V dc Driver peak output current - - - - - - - - - - - - - 200 mA Power dissipation (PD) at TC = +125°C: (device 01) - - - - - - - - - - - - - - - - - - - 2 W (device 02) - - - - - - - - - - - - - - - - - - - 0.96 W (device 03) - - - - - - - - - - - - - - - - - - - 1.65 W 2/ (device 04) - - - - - - - - - - - - - - - - - - - 3 W 2/ (devices 05, 06, and 07) - - - - - - - - - - - - - 3.8 W 2/ Storage temperature range - - - - - - - - - - - - - −65°C to +150°C Lead temperature (soldering, 10 seconds) - - - - - - +300°C Junction temperature (TJ): (devices 01 and 03) - - - - - - - - - - - - - - - +167°C 3/ 4/ (device 02) - - - - - - - - - - - - - - - - - - - +145°C 3/ 5/ (device 04) - - - - - - - - - - - - - - - - - - - +160°C 3/ 6/ (devices 05, 06, and 07) - - - - - - - - - - - - - +150°C 3/ Thermal resistance, junction-to-case (ΘJC): (device 01) - - - - - - - - - - - - - - - - - - - 88°C/W (device 02) - - - - - - - - - - - - - - - - - - - 8.8°C/W (device 03) - - - - - - - - - - - - - - - - - - - 18°C/W (device 04) - - - - - - - - - - - - - - - - - - - 7.0°C/W (devices 05, 06, and 07) - - - - - - - - - - - - - 60°C/W

Supply voltage range: VCC (devices 01, 02, 05, 06, and 07) - - - - - - - +14.25 V dc to +15.75 V dc VEE (devices 01, 03, 04, 05, 06, and 07) - - - - - −14.25 V dc to −15.75 V dc VCC1 (all devices) - - - - - - - - - - - - - - - - +4.5 V dc to +5.5 V dc Logic input voltage - - - - - - - - - - - - - - - - 0 V dc to +5 V dc Receiver differential voltage: (devices 01, 02, 05, 06, and 07) - - - - - - - - - 40 VP-P (devices 03 and 04) - - - - - - - - - - - - - - - 30 VP-P Receiver common mode voltage range: (devices 01, 03, and 04) - - - - - - - - - - - - - −5 V dc to +5 V dc (devices 02, 05, 06, and 07) - - - - - - - - - - - −10 V dc to +10 V dc Driver peak output current (all devices) - - - - - - 180 mA Serial data rate - - - - - - - - - - - - - - - - - - 1.0 MHz maximum Case operating temperature range (TC) - - - - - - - −55°C to +125°C

intended Use:

Microcircuits conforming to this drawing are intended for original equipment design applications and logistic support of existing equipment.

Document History

December 12, 2019
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...
June 24, 2014
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...
May 7, 2007
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...
February 22, 2005
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...
May 18, 2001
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
A description is not available for this item.
June 5, 1998
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...
June 2, 1995
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
This drawing forms a part of a one part - one part number documentation system (see 6.6 herein). This drawing describes device requirements for hybrid microcircuits to be processed in accordance with...
SMD-5962-89447 REV A
April 8, 1994
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-H-38534. The PIN shall be as shown in the following example: Device classes H and...
November 26, 1990
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY HIGH
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...

References

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