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SSM2000P 数据表(PDF) 13 Page - Analog Devices |
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SSM2000P 数据表(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() SSM2000 REV. 0 –13– Mute (Pin 17) Applying a +5 V voltage signal to this pin will mute the SSM2000. Potentials applied to this pin should be reference to GND. Standard TTL levels are recommended when using MUTE. Activating MUTE causes maximum attenuation in the VCA on both the L and R channels. If MUTE is being con- trolled by noisy digital logic lines, then use adequate filtering to avoid digital noise interfering with audio signals present in the SSM2000. DO NOT CONNECT/Detector Bandwidth Limit (Pin 18) Pin 18 is connected internally to both the left and right channels though 20 k Ω resistors, as shown in Figure 29. This node al- lows access to the input of the ×3 gain buffer, whose output is SUM OUT (Pin 9). Do not connect this node to ground or an- other potential. Connecting a 470 pF capacitor to this pin will limit the range of the input signal that runs through the VCF and VCA detectors to 35 kHz. This is an inexpensive way to remove fixed-frequency tones of frequencies of greater than 35 kHz. Please refer the Precautions, Limitations, and Observa- tions section under Pre-filtering Out-of-Audio Band Noise for more information. GND (Pin 19) GND is normally connected to V– in single-supply applications and ACOM in dual-supply applications. Please read the MUTE and DEFEAT sections for more information. V– (Pin 20) This pin should be connected to the most negative power poten- tial, typically chassis ground in single-supply applications and the negative power rail in dual-supply applications. R OUT and L OUT (Pin 23 and Pin 24) The outputs of HUSH are buffered and can therefore drive moderate loads. For loads (e.g., speakers or headphones) which exceed 2 k Ω or 300 pF additional buffering may be necessary. OPTIONAL APPLICATION CIRCUITS The SSM2000 has been designed to facilitate numerous addi- tional functions by adding a modest amount of external cir- cuitry. The direct access to the VCA gain control port plus access to the amplitude and frequency detectors allow construc- tion of valuable systems features such as: • DC Volume Control—one dc level controls both audio chan- nels without routing audio signals to the front panel. • Automatic Volume Leveling—constrains long term average volume levels to within a few dB, avoiding constant resetting of volume as one tuner through various stations or switches from radio to tape, etc. • Compression—reduces dynamic range to improve audibility of softer sounds in noisy environments such as when playing CDs in cars. • Volume vs. Road Speed—a speedometer signal can be used to increase audio levels as road speed increases. • Compression vs. Road Speed—see above. Automatic Leveling Automatic leveling is similar to compression, however instead of attempting to attenuate all large amplitude audio signals, the leveling circuit attenuates audio signal when the overall signal amplitude has increased for a considerable amount of time, >1 sec. Attenuating loud TV commercials whose average vol- ume levels are significantly above the program material is an ap- plication were this feature is particularly useful. The circuit shown in Figure 30 is an example of HUSH automatic leveling. Automatic leveling is a signal amplitude operation, therefore, the input of the circuit is derived from Pin 12, VCA TC. This input voltage is gained and level shifted. The volume control is “counter intuitive,” because the higher the gain the lower the re- sulting volume, as the VCA control port attenuates when posi- tive voltage is applied. The level threshold potentiometer sets the volume level, which is a gain range of 1.5 dB to –80 dB. After the op amp, the signal passes through a positive peak detector, and is averaged by a long time constant RC. The sig- nal is now representative of the long term average amplitude of the original audio that is applied to the L/R input of the SSM2000. This signal is then passed to the VCA control port. Audio Compression Audio compression can be thought of as fast automatic leveling. The purpose of audio compression is to attenuate larger ampli- tude signals, such that signals above the adaptive threshold will be scaled by 0.2 dB/dB, while the signals below the externally set level threshold will remain essentially unchanged. A shorter time constant and slight gain change are the only differences be- tween the audio compression circuit and the automatic leveling circuit. Figure 30 illustrates the audio compression circuit. The OP275 is an excellent audio amplifier and is suggested for this application when the power supply rails are greater than or equal to ±5 V. For applications where the power supplies are separated by less than 10 V, then a single-supply op amp like the OP279 is recommended. 3k Ω 100k Ω 7.5k Ω 27k Ω +5V 20k Ω +5V –5V 5k Ω POT VOLUME CONTROL 10k Ω POT LEVEL THRESHOLD 1/2 OP275 0.1µF OFF LEVEL COMPRESS 3.3µF 10M Ω 12 SSM2000 7 6 +5V –5V 19 5 20 SP3T OFF LEVEL COMPRESS Figure 30. An Automatic Leveling/Compression Circuit |
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