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TPA3244 Arkusz danych(PDF) 10 Page - Texas Instruments |
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TPA3244 Arkusz danych(HTML) 10 Page - Texas Instruments |
10 / 31 page 10 TPA3244 SLASEC6 – APRIL 2016 www.ti.com Product Folder Links: TPA3244 Submit Documentation Feedback Copyright © 2016, Texas Instruments Incorporated Table 5. Device Protection OC_ADJ Resistor Value Protection Mode OC Threshold 22k Ω CB3C 16.3A 24k Ω CB3C 15.1A 27k Ω CB3C 13.5A 30k Ω CB3C 12.3A 47k Ω Latched OC 16.3A 51k Ω Latched OC 15.1A 56k Ω Latched OC 13.5A 64k Ω Latched OC 12.3A 7.4.1.2 DC Speaker Protection The output DC protection scheme protects a connected speaker from excess DC current caused by a speaker wire accidentally shorted to chassis ground. Such a short circuit results in a DC voltage of PVDD/2 across the speaker, which potentially can result in destructive current levels. The output DC protection detects any unbalance of the output and input current of a BTL output, and in the event of the unbalance exceeding a programmed threshold, the overload counter increments until its maximum value and the affected output channel is shut down. DC Speaker Protection is disabled in PBTL and SE mode operation. 7.4.1.3 Pin-to-Pin Short Circuit Protection (PPSC) The PPSC detection system protects the device from permanent damage in the case that a power output pin (OUT_X) is shorted to GND_X or PVDD_X. For comparison, the OC protection system detects an overcurrent after the demodulation filter where PPSC detects shorts directly at the pin before the filter. PPSC detection is performed at startup that is, when VDD is supplied, consequently a short to either GND_X or PVDD_X after system startup does not activate the PPSC detection system. When PPSC detection is activated by a short on the output, all half bridges are kept in a Hi-Z state until the short is removed; the device then continues the startup sequence and starts switching. The detection is controlled globally by a two step sequence. The first step ensures that there are no shorts from OUT_X to GND_X, the second step tests that there are no shorts from OUT_X to PVDD_X. The total duration of this process is roughly proportional to the capacitance of the output LC filter. The typical duration is < 15 ms/ μF. While the PPSC detection is in progress, FAULT is kept low, and the device will not react to changes applied to the RESET pin. If no shorts are present the PPSC detection passes, and FAULT is released. A device reset will not start a new PPSC detection. PPSC detection is enabled in BTL and PBTL output configurations, the detection is not performed in SE mode. To make sure not to trip the PPSC detection system it is recommended not to insert a resistive load to GND_X or PVDD_X. 7.4.1.4 Overtemperature Protection OTW and OTE The TPA3244 device has a two-level temperature-protection system that asserts an active-low warning signal (CLIP_OTW) when the device junction temperature exceeds 125°C (typical) and, if the device junction temperature exceeds 155°C (typical), the device is put into thermal shutdown, resulting in all half-bridge outputs being set in the high-impedance (Hi-Z) state and FAULT being asserted low. OTE is latched in this case. To clear the OTE latch, RESET must be asserted. Thereafter, the device resumes normal operation. 7.4.1.5 Undervoltage Protection (UVP) and Power-on Reset (POR) The UVP and POR circuits of the TPA3244 device fully protect the device in any power-up/down and brownout situation. While powering up, the POR circuit resets the overload circuit (OLP) and ensures that all circuits are fully operational when the GVDD_X and VDD supply voltages reach stated in the Electrical Characteristics table. Although GVDD_X and VDD are independently monitored, a supply voltage drop below the UVP threshold on any VDD or GVDD_X pin results in all half-bridge outputs immediately being set in the high-impedance (Hi-Z) state and FAULT being asserted low. The device automatically resumes operation when all supply voltages have increased above the UVP threshold. |
Podobny numer części - TPA3244 |
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Podobny opis - TPA3244 |
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