LMF380
LMF380 is LMF380 Triple One-Third Octave Switched-Capacitor Active Filter manufactured by National Semiconductor.
Description
The LMF380 is a triple one-third octave filter set designed for use in audio audiological and acoustical test and measurement applications Built using advanced switched-capacitor techniques the LMF380 contains three filters each having a bandwidth equal to one-third of an octave in frequency By bining several LMF380s each covering a frequency range of one octave a filter set can be implemented that enpasses the entire audio frequency range while using only a small fraction of the number of ponents and circuit board area that would be required if a conventional active filter approach were used The center frequency range is not limited to the audio band however Center frequencies as low as 0 125 Hz or as high as 25 k Hz are attainable with the LMF380 The center frequency of each filter is determined by the clock frequency The clock signal can be supplied by an external source or it can be generated by the internal oscillator using an external crystal and two capacitors Since the LMF380 has an internal clock frequency divider ( d 2) and an output pin for the half-frequency clock signal a single clock oscillator for the top-octave LMF380 bees the master clock for the entire array of filters in a multiple LMF380 application Accuracy is enhanced by close matching of the internal ponents the ratio of the clock frequency to the center frequency is typically accurate to g 0 5% and passband gain and stopband attenuation are guaranteed over the full temperature range
Features
Three bandpass filters with one-third octave center frequency spacing Choice of internal or external clock No external ponents other than clock or crystal and two capacitors
Key Specifications
Passband gain accuracy Better than 0 7 d B over temperature Supply voltage range g 2V to g 7 5V or a 4V to a 14V
Applications
Real-Time Audio Analyzers (ANSI Type E Class II) Acoustical Instrumentation Noise Testing
Simplified Block Diagram
TL H 11123
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C1995 National...