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TDF8599 数据表(PDF) 20 Page - NXP Semiconductors |
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TDF8599 数据表(HTML) 20 Page - NXP Semiconductors |
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20 / 52 page ![]() TDF8599_1 © NXP B.V. 2008. All rights reserved. Product data sheet Rev. 01 — 13 November 2008 20 of 52 NXP Semiconductors TDF8599 Class-D power amplifier with load diagnostics Remark: DC load detection identifies a short circuited speaker as a valid speaker load. OCP detection, using byte DB1[D3] for channel 1 and byte DB2[D3] for channel 2, performs diagnostics on shorted loads. However, the diagnostics are performed after the DC load detection cycle has finished and once the amplifier is in Operating mode. The result of the DC load detection is stored in DB1[D4] and DB2[D4]. Remark: After DC load detection has been performed, the DC load valid bit DB1[D6] must be set. The DC load data bits are only valid when bit DB1[D6] = 1. When DC load detection is interrupted by a sudden large change in supply voltage (triggered by UVP or OVP) or if the amplifier hangs up, the DC load valid bit is reset to DB1[D6] = 0. The DC load enable bit DB2[D2] must be reset after the DC load protection cycle to release any amplifier hang-up. Once the DC load detection cycle has finished, DC load detection can be restarted by toggling the DC load detection enable bit IB2[D2]. However, this can only be used if both amplifier channels have not been enabled with bit IB1[D1] or bit IB2[D1]. See Section 8.6.2.2 “Recommended start-up sequence with DC load detection enabled” for detailed information. 8.6.2.2 Recommended start-up sequence with DC load detection enabled The flow diagram (Figure 20) illustrates the TDF8599’s ability to perform a DC load detection without starting the amplifiers. After a DC load detection cycle finishes without setting the DC load valid bit DB1[D6], DC load detection is repeated (when bit IB2[D2] is toggled). To limit the maximum number of DC load detection cycle loops, a counter and limit have been added. The loop exits after the predefined number of cycles (COUNTMAX), if the DC load detection cycle finishes with an invalid detection. Depending on the application needs the invalid DC load detection cycle can be handled as follows: • the amplifier can be started without DC load detection • the DC load detection loop can be executed again A valid DC load detection cycle does not affect the normal amplifier start-up timing. Table 12. Interpretation of DC load detection bits DC load bits DB1[D4] and DB2[D4] OCP bits DB1[D3] and DB2[D3] Meaning 0 0 speaker load 0 1 shorted load 1 0 open load |
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