• Part: RHD5904
  • Description: Quad Operational Amplifier
  • Category: Operational Amplifier
  • Manufacturer: Aeroflex Circuit Technology
  • Size: 272.99 KB
Download RHD5904 Datasheet PDF
Aeroflex Circuit Technology
RHD5904
RHD5904 is Quad Operational Amplifier manufactured by Aeroflex Circuit Technology.
FEATURES ❑ Single power supply operation (3.3V to 5.0V) or dual power supply operation (±1.65 to ±2.5V) ❑ Radiation performance - Total dose: >1Mrad(Si); Dose rate = 50 - 300 rads(Si)/s - ELDRS Immune - SEL Immune - Neutron Displacement Damage >100 Me V-cm2/mg >1014 neutrons/cm2 ❑ High Speed ❑ Rail-to-Rail input and output range ❑ Enable pin to Enable/Disable amplifiers in pairs. ❑ Short Circuit Tolerant ❑ Full military temperature range ❑ Designed for aerospace and high reliability space applications ❑ Packaging - Hermetic ceramic SOIC - 16-pin, .417"L x .300"W x 0.105"Ht SOIC - Typical Weight 0.8 grams GENERAL DESCRIPTION Aeroflex’s RHD5904 is a radiation hardened, single supply, high speed, quad operational amplifier with enable in a 16-pin SOIC package. The RHD5904 design uses specific circuit topology and layout methods to mitigate total ionizing dose effects and single event latchup. These characteristics make the RHD5904 especially suited for the harsh environment encountered in Deep Space missions. It is guaranteed operational from -55°C to +125°C. Available screened in accordance with MIL-PRF-38534 Class K, the RHD5904 is ideal for demanding military and space applications. ORGANIZATION AND APPLICATION The RHD5904 amplifiers are capable of rail-to-rail input and outputs. Performance characteristics listed are for general purpose operational 5V CMOS amplifier applications. The amplifiers will drive substantial resistive or capacitive loads and are unity gain stable under normal conditions. Resistive loads in the low kohm range can be handled without gain derating and capacitive loads of several n F can be tolerated. CMOS device drive has a negative temperature coefficient and the devices are therefore inherently tolerant to momentary shorts, although on chip thermal shutdown is not provided. All inputs and outputs are diode protected. The devices will not latch with SEU events to above 100 Me V-cm2/mg. Total dose degradation is minimal to above...