HI-1565PSM

HI-1565PSM

HI-1565PSM

Holt Integrated Circuits

HI-1565 Series MIL-STD-1553 Low power CMOS dual transceivers

The Holt HI-1565 and HI-1566 are low power CMOS dual transceivers designed to meet the requirements of MIL-STD-1553/1760 specifications. They also offer superb resistance to electrostatic discharge (ESD) in all modes of operation. The transmitter section of each channel takes complementary CMOS/TTL digital input data and converts it to bi-phase Manchester encoded 1553 signals suitable for driving the bus isolation transformer. Separate transmitter inhibits control signals are provided for each transmitter. The receiver section of each channel converts the 1553 bus bi-phase data to complementary CMOS/TTL data suitable for inputting to a Manchester decoder. Each receiver has a separate enable input which can be used to force the output of the receiver to a logic 0 (HI-1565) or logic 1 (HI-1566). To minimize the package size for this function, the transmitter outputs are internally connected to the receiver inputs, so that only two pins are required for connection to each coupling transformer.
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HI-1565PSM Specifications

  • Compliant to MIL-STD-1553A & B and MIL-STD-1760
  • CMOS Technology For Low Standby Power
  • Smallest Footprint Available in 44-Pin Plastic Chip-scale Package with integral heatsink
  • Less Than 1.0W Maximum Power Dissipation
  • BUS pins ESD protected to greater than 8KV
  • Also Available in DIP, and Small Outline ESOIC Package Options
  • Industrial & Extended Temperature Ranges Available
  • Industry Standard Pin Configurations
More Information
Attribute Value
RoHS No
Product Type MIL-STD-1553 Transceiver ICs
Package Description 20 Pin Plastic ESOIC - WB
Moisture Sensitivity Level 1.0000
Product Longevity > 10 years
Applications
  • MIL-STD-1553 Interfaces
  • Smart Munitions
  • Stores Management
  • Sensor Interfaces
  • Instrumentation
Flow M
Theta JA (°C/W): 24.3
Theta JB (°C/W): 12.8
Temperature Range -55°C to +125°C
More Information
Attribute Value
Data Sheet Click here to view

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