Features: ACT4435N Transceiver meets H009 data bus specificationsTransmitter can be used to drive clock signal lineOperates with ±15 Volts to ±12 Volts power suppliesDirect replacement for CT1641 and CT1816 devicesVoltage source output for higher bus drive power Plug-in and flat package availableM...
ACT4435NFP: Features: ACT4435N Transceiver meets H009 data bus specificationsTransmitter can be used to drive clock signal lineOperates with ±15 Volts to ±12 Volts power suppliesDirect replacement for CT1641 an...
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Operating Case Temperature | -55°C to +125°C | |
Storage Case Temperature | -65°C to +150°C | |
Power Supply Voltages | ±15VDC P.S. to ±1 8VDC MAX | +5VDC P.S. to +7VDC |
Logic Input Voltage | -0.3 V to +5.5 V | |
Receiver Differential Input | ±40 V | |
Receiver Input Voltage (Common Mode) | ±10V | |
Driver Peak Output Current | 150 mA | |
Total Package Power Dissipation over the Full Operating Case Temperature Range | 3.25 Watts | |
Maximum Junction to Case Temperature (100% duty cycle) | 16.25°C | |
Junction-Case, Thermal Resistance | 5°C/W |
The Aeroflex Laboratories transceiver model ACT4435N is a new generation monolithic transceiver which provide full compliance with Macair and MIL-STD-1553 data bus requirements
The model ACT4435N performs the front-end analog function of inputting and outputting data through a transformer to a H009 data bus.
The Design of these transceivers ACT4435NFP reflects particular attention to active filter performance. This results in low bit and word error rate with superior waveform purity and minimal zero crossover distortion. The ACT4435N active filter design has additional high frequency roll-off to provide the required low harmonic distortion waveform without increasing the pulse delay characteristics significantly.
Efficient transmitter electrical and thermal design of ACT4435NFP provides low internal power dissipation and heat rise at high and well as low duty cycles. An optional receiver input threshold adjustment can be accomplished by the use of the "External Threshold" terminals.