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National Semiconductor
LM3189
LM3189 is LM3189 FM IF System manufactured by National Semiconductor.
Description The LM3189N is a monolithic integrated circuit that provides all the functions of a prehensive FM IF system The block diagram of the LM3189N includes a three stage FM IF amplifier limiter configuration with level detectors for each stage a doubly balanced quadrature FM detector and an audio amplifier that features the optional use of a muting (squelch) circuit The advanced circuit design of the IF system includes desirable deluxe features such as programmable delayed AGC for the RF tuner an AFC drive circuit and an output signal to drive a tuning meter and or provide stereo switching logic In addition internal power supply regulators maintain a nearly constant current drain over the voltage supply range of a 8 5V to a 16V The LM3189N is ideal for high fidelity operation Distortion in an LM3189N FM IF system is primarily a function of the phase linearity characteristic of the outboard detector coil The LM3189N has all the features of the LM3089N plus additions The LM3189N utilizes the 16-lead dual-in-line plastic package and can operate over the ambient temperature range of b 40 C to a 85 C Features Y Y Y Y Y Y Y Y Y Y Y Exceptional limiting sensitivity 12 m V typ at b3 d B point Low distortion 0 1% typ (with double-tuned coil) Single-coil tuning capability Improved (S a N) N ratio Externally programmable recovered audio level Provides specific signal for control of inter-channel muting (squelch) Provides specific signal for direct drive of a tuning meter On channel step for search control Provides programmable AGC voltage for RF amplifier Provides a specific circuit for flexible audio output Internal supply voltage regulators Externally programmable ON channel step width and deviation at which muting occurs Block Diagram TL H 7960 - 1 All resistance values are in X L tunes with 100 p F (C) at 10 7 MHz Q0 j 75 (Toko No KACS K586HM or equivalent) C1995 National Semiconductor Corporation TL H 7960 RRD-B30M115 Printed in U S A Absolute Maximum...