• Part: RHD5931
  • Description: Digital-to-Analog Converter
  • Manufacturer: Cobham Semiconductor
  • Size: 447.21 KB
Download RHD5931 Datasheet PDF
Cobham Semiconductor
RHD5931
RHD5931 is Digital-to-Analog Converter manufactured by Cobham Semiconductor.
FEATURES  Radiation performance - Total dose: - ELDRS Immune - SEL Immune: - Neutron Displacement Damage: >1 Mrad(Si), Dose rate = 50-300 rad(Si)/s >100 Me V-cm2/mg >1014 neutrons/cm2  11-Bit DAC  Buffered Output  Single power supply operation at +3.3V to +5V  Low Power  CMOS/TTL inputs  Full military temperature range  Designed for aerospace and high reliability space applications  Packaging - Hermetic ceramic SOIC - 16 leads, 0.417"L x 0.300"W x 0.120"Ht - Typical Weight 0.8 grams  Radiation Hardness Assurance Plan: DLA Certified to MIL-PRF-38534, Appendix G. GENERAL DESCRIPTION The 11-Bit DAC is a standard CMOS R/2R Kelvin resistor network with a buffered output. The digital inputs, D10(MSB) through D00(LSB), are buffered to drive single-pole double-throw CMOS switches to apply either the PREF or NREF signals to the 2R legs of the resistor network. PREF and NREF inputs can be any static or dynamic voltage within the power supply range. The nominal values for R and 2R are 5K and 10K respectively. The characteristic impedance of the resistor network is approximately 5K. The voltage-output configuration of the integrated circuit can be thought of as a digitally controlled voltage with a value of PREF-NREF with a high output impedance. The output will swing rail-to-rail if unloaded. Applications include digital potentiometers, programmable voltage sources and a large variety of other circuits that can be found in many industry references. SCD5931 Rev E 1 Cobham Semiconductor Solutions .cobham./Hi Rel ABSOLUTE MAXIMUM RATINGS Parameter Range Units Case Operating Temperature Range -55 to +125 °C Storage Temperature Range -65 to +150 °C Junction Temperature +150 °C Lead Temperature (soldering, 10 seconds) 300 °C Thermal Resistance, Junction to Case,jc 7 °C/W Supply Voltage...