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TSH512CF 数据表(PDF) 15 Page - STMicroelectronics |
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TSH512CF 数据表(HTML) 15 Page - STMicroelectronics |
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15 / 19 page ![]() TSH512 15/19 Electret Condenser Microphone source When a Electret Condenser Microphone (ECM) is used, a high gain LNA is recommanded, but low frequencies have to be attenuated. The ECM has to be biased with a stable and clean reference voltage.The TSH512 offers you the LNA and the MIC-BIAS sections to perform this functions. (see MIC-BIAS chapter). Figure 3 : Electret Condenser Microphone source The capacitor C in serie with the microphone stops the DC coming from MIC-BIAS. The resistor R provides the DC from MIC-BIAS to supply the ECM. Thanks to the ALC (Automatic Level control), the great variations of amplitude will not overmodulate the transmitter (refer to the chapter on ALC). The self-adaptative VOX (Voice Operated Trans- mit) offers an automatic transmitting with a good discrimination of the background noise (see the chapter on VOX). MIC-BIAS section: microphone bias voltage The MIC-BIAS bias voltages are dedicated to the bias of Electret Condenser Microphones. These bias voltages on pin 10 for TX1 and pin 2 for TX2, exhibit a low voltage noise density of 22nV/ SQR(Hz). This allows more than 55 dB S/N con- sidering a bandwith of 7 kHz. (see the figure in the ’Electret Condenser Microphone source’ chapter). The MIC-BIAS voltage is related with VCC as fol- low (with I MIC-BIAS= 2.5 mA): VMIC-BIAS = 0.844.VCC-0.140 (Volts) Moreover, the supply rejection ratio is guaranteed better than 50 dB without any decoupling capaci- tor. To address biasing of most of the micro- phones, the current drive capability is 2.5 mA. The MIC-BIAS voltage depend linearly on the supply voltage Vcc (refer to the curve ’MIC-BIAS vs. VCC’). ALC section: Automatic Level Control Both transmitters of the TSH512 are including Au- tomatic Level Control (ALC). When the level of the audio signal is too high, the ALC compress the signal in order to avoid overmodulation of the FM VCO. Therefore, the ALC reduces the distorsion and keep a reduced transmit spectrum with very high amplitude signals. Figure 4 : Automatic Level Control Schematic The ALC features a 20dB gain and an output sig- nal regulated to 700 mVpp in compression. The attack time is the response time of the ALC to go from the linear amplification to the compression region. The attack time mainly depends on CALC capacitor value. A typical value of CALC is 1µF with music as audio signal (refer to the ’application schematic’). The decay time is the response time of the ALC to recover a full gain amplifying mode from a com- pression mode. The decay time depends mainly on the RALC resistor value. A typical value of RALC is 470k with music as audio signal (refer to the ’ap- plication schematic’). |
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