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STA518 数据表(PDF) 13 Page - STMicroelectronics |
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STA518 数据表(HTML) 13 Page - STMicroelectronics |
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13 / 21 page ![]() DocID010708 Rev 6 13/21 STA518 Technical information 21 temperature exceeds 130 °C, in advance of the thermal shutdown protection. When a fault condition is detected, an internal fault signal acts to immediately disable the output power MOSFETs, placing both H-Bridges in high impedance state. At the same time an open-drain MOSFET connected to the FAULT pin (pin 27) is switched on. There are two possible modes subsequent to activating a fault: 1. SHUTDOWN mode: with FAULT (pull-up resistor) and TRI-STATE pins independent, an activated fault will disable the device, signaling low at the FAULT output. The device may subsequently be reset to normal operation by toggling the TRI-STATE pin from high to low to high using an external logic signal. 2. AUTOMATIC recovery mode: This is shown in the audio application circuit of quad single-ended. The FAULT and TRI-STATE pins are shorted together and connected to a time constant circuit comprising R59 and C58. An activated FAULT will force a reset on the TRI-STATE pin causing normal operation to resume following a delay determined by the time constant of the circuit. If the fault condition is still present, the circuit operation will continue repeating until the fault condition is removed. An increase in the time constant of the circuit will produce a longer recovery interval. Care must be taken in the overall system design as not to exceed the protection thresholds under normal operation. 4.2 Power outputs The STA518 power and output pins are duplicated to provide a low impedance path for the device's bridged outputs. All duplicate power, ground and output pins must be connected for proper operation. The PWRDN or TRI-STATE pins should be used to set all MOSFETS to the Hi-Z state during power-up until the logic power supply, VL, is settled. 4.3 Parallel output / high current operation When using DDX mode output, the STA518 outputs can be connected in parallel in order to increase the output current capability to a load. In this configuration the STA518 can provide 70 W into 8 ohm. This mode of operation is enabled with the CONFIG pin (pin 24) connected to VREG1 and the inputs combined INLA=INLB, INRA=INRB and the outputs combined OUTLA=OTLB, OUTRA=OUTRB. 4.4 Additional information Output Filter: A passive 2nd order passive filter is used on the STA518 power outputs to reconstruct an analog audio signal. System performance can be significantly affected by the output filter design and choice of passive components. A filter design for 6 ohm / 8 ohm loads is shown in the typical application circuit of Figure 9. Quad single-ended circuit (Figure 1) shows a filter for half-bridge mode, 4 ohm loads. |
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