Download RC5532AN Datasheet PDF
Fairchild Semiconductor
RC5532AN
RC5532AN is High Performance Dual Low Noise Operational Amplifier manufactured by Fairchild Semiconductor.
Features - - - - - - - - Small signal bandwidth - 10 MHz Output drive capability - 600Ω, 10 VRMS Input noise voltage - 5 n V/ Hz DC voltage gain - 50,000 AC voltage gain - 2200 at 10 KHz Power bandwidth - 140 KHz Slew rate - 8 V/µS Large supply voltage range - ±3V to ±20V Description The RC5532 is a high performance, dual low noise operational amplifier. pared to standard dual operational amplifiers, such as the RC747, it shows better noise performance, improved output drive capability, and considerably higher small-signal and power bandwidths. This makes the device especially suitable for application in high quality and professional audio equipment, instrumentation, control circuits, and telephone channel amplifiers. The op amp is internally pensated for gains equal to one. If very low noise is of prime importance, it is remended that the RC5532A version be used which has guaranteed noise specifications. Block Diagram Output A - Input A +VS Output B +Input A - VS - Input B +Input B 65-5532-01 REV. 1.1.3 6/14/01 RC5532/RC5532A PRODUCT SPECIFICATION Pin Assignments 8 PIN PDIP Output (A) - Input (A) +Input (A) - VS 1 2 3 4 8 7 6 5 +VS Output (B) - Input (B) +Input (B) Absolute Maximum Ratings (beyond which the device may be damaged)1 Parameter Supply Voltage Input Voltage Differential Input Voltage PDTA < 50°C Junction Temperature Storage Temperature Operating Temperature Lead Soldering Temperature (10 sec) RC5532/A PDIP PDIP -65 0 Min. Typ. Max. ±22 ±VS 0.5 468 125 150 70 300 Units V V V m W °C °C °C °C Notes: 1. Functional operation under any of these conditions is NOT implied. 2. For supply voltages less than ±15V, the absolute maximum input voltage is equal to the supply voltage. 3. Short circuit to ground on one amplifier only. Operating Conditions Parameter θJA Thermal resistance PDIP PDIP For TA > 50°C Derate at Min. Typ. 160 6.25 Max. Units °C/W m W/°C REV. 1.1.3...