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TEA7092 数据表(PDF) 51 Page - STMicroelectronics |
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TEA7092 数据表(HTML) 51 Page - STMicroelectronics |
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51 / 57 page ![]() I E0 RL1 L1 I E IS RL I S0 V LS I SRL C1 D7 V E1 C5 I Et V E SW1 Figure 67 VI - RINGER FEATURES (continued) VI.3 - Ring Frequency Generator The ring frequency values which can be generated are those given Page 45 of this application note. On the Table given at Page 45, only the frequency values for n > 15 are given, the frequency values from n = 1 (1000000) to n = 15 (1001111) are also accessible, if it is neccessary to generate a fre- quency higher than 1645Hz. VI.4 - Output Power Optimization The power available on Pin LSOUT (Pin 44) de- pends on : - The country requires : • Minimum input ac level in test conditions. • Ring impedance. Taking in account these main requests the power on Pin LSOUT (Pin 44) is optimized through the resistor R40 connected on Pin RCO (Pin 41). - The yield of the switch mode power supply. The principal parameters which influence the yield are : • D7 VBE value. • T1 VCEsat and base current values (the maxi- mum IC PEAK value is 100mA). • L1 serial resistor value. • Current consumption on Pin VZP (Pin 38) and on Pin RSU (Pin 40). • Bias current consumption on Pin VLS This paragraph gives information on : - The switch mode power supply concept. - The switch mode power supply yield. - The ring output power optimization on Pin LSOUT (Pin 44). VI.4.1 - Switch Mode Power Supply Concept After the ring bridge, the switch mode power supply concept is represented in Figure 67. VE Input voltage equivalent to VRING1 VE1 Input voltage after the switch SW1 IE Mean input current VS Output voltage at Pin VLS (Pin 1) IS Mean output current VD Voltage across D7 when it is in forward mode IE0 Primary bias current IS0 Secondary bias current RL1 Resistive part of the coil L1 Switch SW1 - VCEsat of T1 PNP -IB1, T1 base current -tD, T1 desaturation time -VE1 =VE -VCEsat(T1) Figure 68 gives the voltage,VE1, the current in the coil, ISELF, the current in D7, IDIODE and the current in the switch SW1 given by C6, ICAPA. The value of the maximum current in the coil is fixed by tON and tOFF depends on RL. When RL de- creases, tON increases. The coil value should be calculated so that the current in the coil reaches the zero value with the minimum charge. IMax. = tON ⋅ VE1 − VLS L (1) L is the value of the coil L1. The ratio between tON and tOFF is : tON tOFF = VD + VLS VE1 − VLS (2) The output current IS is : IS = IMax. 2 ⋅ tON + tOFF t (3) TEA7092 - TELEPHONE SET INTEGRATED CIRCUIT 51/57 |
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