UNLIMITED FREE
ACCESS
TO THE WORLD'S BEST IDEAS

SUBMIT
Already a GlobalSpec user? Log in.

This is embarrasing...

An error occurred while processing the form. Please try again in a few minutes.

Customize Your GlobalSpec Experience

Finish!
Privacy Policy

This is embarrasing...

An error occurred while processing the form. Please try again in a few minutes.

DLA - SMD-5962-87579 REV L

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

inactive
Organization: DLA
Publication Date: 20 June 1996
Status: inactive
Page Count: 19
scope:

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

The complete PIN shall be as shown in the following example:

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

Device types Generic number Circuit function 1/ 01 BUS-63125, BUS-63126 Dual channel, driver-receiver 02 BUS-6312511, BUS-63126II Low power, dual channel, driver-receiver 03 ARX2411 Dual channel, driver-receiver 04 ARX3411 Low power, dual channel, driver-receiver 05 NHI-1500 Low power, dual channel, driver-receiver 06 FC1553623 Low power, dual channel, driver-receiver 2/ with thermal protection 07 CT1487D Low power, dual channel, driver-receiver 08 MR63125M Low power, dual channel, driver-receiver 09 FC1553621 Low power, dual channel, driver-receiver

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-PRF-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, 03, 04, 05, 07, and 08)----------- −0.3 V dc to +18 V dc VEE (devices 01-04, 06, 07, 08, and 09) ----------- +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: (devices 01 and 08)--------------------------------- 4 W (device 02) ---------------------------------------- 3 W (device 03) ---------------------------------------- 3.3 W 1/ (device 04) ---------------------------------------- 2 W 1/ (device 05) ---------------------------------------- 0.96 W 1/ (devices 06 and 09)--------------------------------- 1.65 W 1/ (device 07) ---------------------------------------- 3 W Storage temperature range −65°C to +150°C Lead temperature (soldering, 10 seconds)------------- +300°C Junction temperature (TJ): (devices 01-04, 06, 07, 08, and 09)----------------- +160°C (device 05) ---------------------------------------- +150°C Thermal resistance, junction-to-case (ΘJC): (devices 01 and 05) ------------------------------- 8.8°C/W (devices 02 and 08) ------------------------------- 7.0°C/W (device 03) ---------------------------------------- 47.2°C/W (device 04) ---------------------------------------- 88°C/W (devices 06 and 09) -------------------------------- 18°C/W (device 07) ---------------------------------------- 60°C/W Thermal resistance, junction-to-ambient (ΘJA): (devices 01 and 05) ------------------------------- 28.8°C/W (devices 02 and 08) ------------------------------- 27.0°C/W (device 03) ---------------------------------------- 67.2°C/W (device 04) ---------------------------------------- 108°C/W (devices 06 and 09)--------------------------------- 35°C/W (device 07)----------------------------------------- 80°C/W

Supply voltage range: VCC (devices 01, 03, 04, 05, and 07) ---------------- +14.25 V dc to + 15.75 V dc VCC (device 08) ------------------------------------- +11.25 V dc to +15.75 V dc VEE (devices 01-04, 06, 07, and 09)------------------ −14.25 V dc to −15.75 V dc VEE (device 08) ------------------------------------- −11.25 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, 03, 06, and 09) -------------------- 30 VP-P (devices 04, 05, 07, and 08) ------------------------ 40 VP-P Receiver common mode voltage range: (devices 01, 02, 03, 04, 06, and 09) ---------------- −5 V dc to +5 V dc (devices 05, 07, and 08) --------------------------- −10 V dc to +10 V dc Driver peak output current (all devices) ------------- 180 mA Serial data rate ------------------------------------- 1.0 MHz maximum

Junction temperature (TJ): (devices 01, 02, 03, 05, 06, 08, and 09) ------------ +150°C (devices 04 and 07) -------------------------------- +160°C 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

November 18, 2020
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
Scope. This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-PRF-38534 and a choice of case outlines and lead finishes are available and...
November 8, 2010
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-PRF-38534 and a choice of case outlines and lead finishes are available and are...
May 10, 2007
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-PRF-38534 and a choice of case outlines and lead finishes are available and are...
November 5, 2004
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
January 28, 1998
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
Microcircuits conforming to this drawing are intended for use for Government microcircuit applications (original equipment), design applications, and logistics purposes.
SMD-5962-87579 REV L
June 20, 1996
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-PRF-38534. The complete PIN shall be as shown in the following example: The device...
December 15, 1995
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
February 17, 1994
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
November 11, 1992
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
This drawing describes device requirements for class H hybrid microcircuits to be processed in accordance with MIL-H-38534. The complete PIN shall be as shown in the following example: The device...
April 27, 1992
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
March 3, 1992
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
January 16, 1991
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
December 4, 1989
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
September 20, 1988
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.
August 6, 1987
MICROCIRCUIT, HYBRID, DIGITAL, DUAL CHANNEL, 15 VOLT, DRIVER-RECEIVER, RECEIVER IDLE NORMALLY LOW
A description is not available for this item.

References

Advertisement