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TDF8590TH Datasheet(PDF) 9 Page - NXP Semiconductors |
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TDF8590TH Datasheet(HTML) 9 Page - NXP Semiconductors |
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9 / 30 page ![]() TDF8590TH_2 © NXP B.V. 2007. All rights reserved. Product data sheet Rev. 02 — 23 April 2007 9 of 30 NXP Semiconductors TDF8590TH 2 × 80 W SE (4 Ω) or 1 × 160 W BTL (8 Ω) class-D amplifier [3] Only complete shut down of amplifier in case of a short-circuit. In all other cases current limiting resulting in clipping output signal. [4] Fault condition detected during (every) transition between standby-to-mute and during restart after activation of OCP (short to one of the supply lines). 6.5 Diagnostic output Pin DIAG is pulled LOW when the OCP is triggered. With a continuous shorted load a switching pattern in the voltage on pin DIAG is observed (see Figure 6). A permanent LOW on pin DIAG indicates a short to the supply lines whereas a shorted load causes a switching DIAG pin (see Section 6.4.3). The pin DIAG reference voltage is VSSA. Pin DIAG should not be connected to an external pull-up. An example of a circuit to read out and level shift the diagnostic data is given in Figure 7. V5V represents a logic supply that is used in the application by the microprocessor that reads out the DIAG data. 6.6 Differential inputs For a high Common Mode Rejection Ratio (CMRR) and a maximum of flexibility in the application, the audio inputs are fully differential. By connecting the inputs anti-parallel the phase of one of the channels can be inverted, so that a load can be connected between the two output filters. In this case the system operates as a mono BTL amplifier. The input configuration for a mono BTL application is illustrated in Figure 8. In the stereo SE configuration it is also recommended to connect the two differential inputs in anti-phase. This has advantages for the current handling of the power supply at low signal frequencies (supply pumping). Fig 7. DIAG readout circuit with level shift 001aad840 100 k Ω 100 k Ω 27 k Ω 5.6 V 10 k Ω VDDA VSSA DIAG DIAG out SGND M2 V5V M1 |
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