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LT1684CS Datenblatt(PDF) 11 Page - Linear Technology |
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LT1684CS Datenblatt(HTML) 11 Page - Linear Technology |
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11 / 16 page ![]() 11 LT1684 – + RF3 RF1 + – RF2 VIN CF2 CF1 VOUT 1684 F4a Active Filter Tuned Oscillator Block Diagram The LT1684 can be implemented easily into a telephone ringer circuit based on the active filter tuned oscillator topology, eliminating the need for a user-supplied PWM input signal. The LT1684’s active filter amplifier can be used as a high-Q bandpass filter element by configuring it as an active tracking supply bandpass. The LT1684’s controlled output receiver/buffer is also convenient for use as the hard limiter. Because the LT1684 receiver/ buffer requires a true differential input for proper opera- tion, a dual comparator IC such as the LT1017 must be bootstrapped along with the LT1684 to provide differen- tial control signals. The LT1017 and LT1684 receiver/ buffer combine to create a high gain hard limiter whose output is controlled to ±1.25V. The LT1684 active bandpass filter is then connected as a positive feedback element with the limiter component, which completes the active filter tuned oscillator topology. The active bandpass filter circuit is easily configured using a basic MFB bandpass configuration, however, the active tracking supply technique used by the LT1684 requires “transformation” of this topology. This “transformation” swaps the amplifier signal polarity, references all signals to the output, and references all feedback elements to ground as described previously in the Filter Design and Component Selection section. The design equations for the active tracking bandpass filter are the same as the pretransformation MFB topology, such that if CF1 = CF2 = C: RF1 = Q/(ωO • C •H0) RF2 = Q/(2Q2 –H0)(ωO • C) RF3 = 2Q/(ωO • C) Example: Conditions: Output peak voltage = 95V Ring frequency = 20Hz Bandpass Q = 9.4 A square wave with peak amplitude A has a fundamental component with amplitude 4A/ π, where A = 1.25V. There- fore, the desired filter’s bandpass gain HO = 95/(4 • 1.25/ π) ~ 60. Given capacitor values C = 0.22µF (a conve- nient value) and desired filter characteristics of: Q = 9.4, HO = 60, ωO = 2π(20Hz), then: RF1 = 5.6k, RF2 = 2.7k, RF3 = 680k. The amplitude, frequency and envelope re- sponse time of the output signal can be adjusted by simply changing the values of resistors RF1 to RF3 accordingly. This produces a high voltage, high quality 20Hz sine wave at the filter output with a peak amplitude of 95V. Differen- tial amplitude and frequency characteristics are achieved by simply changing a few resistor values. The output of the LT1684 is internally current limited to a minimum of ±100mA peak, allowing this ring tone generation circuit to be used with loads up to 7 REN with no degradation of the output waveform. – + RF2 + – RF1 VIN CF2 RF3 CF1 VOUT 1684 F5b Bandpass MFB Filter Active Tracking Bandpass MFB Filter 1684 F03 APPLICATIO S I FOR ATIO |
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