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TDF8553J 数据表(PDF) 13 Page - NXP Semiconductors |
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TDF8553J 数据表(HTML) 13 Page - NXP Semiconductors |
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13 / 47 page ![]() TDF8553J_1 © NXP B.V. 2008. All rights reserved. Objective data sheet Rev. 01 — 3 December 2008 13 of 47 NXP Semiconductors TDF8553J 4 × 50 Watt power amplifier and multiple voltage regulator 8.6.3 Backup function The backup function is implemented by a switch function, which behaves like an ideal diode between pins VP and BUCAP; the forward voltage of this ideal diode depends on the current flowing through it. The backup function supplies regulator 2 during brief periods when no supply voltage is present on pin VP. It requires an external capacitor to be connected to pin BUCAP and ground. When the supply voltage is present on pin VP this capacitor will be charged to a level of VP − 0.3 V. When the supply voltage is absent from pin VP, this charge can then be used to supply regulator 2 for a brief period (tbackup) calculated using the formula: Example: VP = 14.4 V, VREG2 (voltage on pin REG2) = 3.3 V, RL =1kΩ and Cbackup = 100 µF provides a tbackup of 321 ms. When an overvoltage condition occurs, the voltage on pin BUCAP is limited to approximately 24 V; see Figure 5. 8.6.4 Power switches There are two power switches that provide an unregulated DC voltage output for amplifiers and an aerial motor respectively. The switches have internal protection for over-temperature conditions and are activated by setting bits D2 and D3 of instruction byte IB1 to logic 1. In the ON state, the switches have a low impedance to the battery voltage. When the battery voltage is higher than 22 V, the switches are switched off. When the battery voltage is below 22 V the switches are set to their original condition. The power switches have built-in surge protection to be able to absorb energy from switching inductive or capacitive external loads. This surge protection is implemented in such a way that in case no supply (VP) is present the supply line will not be charged from a possible external source connected to a power switch output. Fig 5. Backup capacitor function t backup C backup R L V P V REG2 0.5 – () – V REG2 ----------------------------------------------- × × = V (V) t (s) tbackup out of regulation VREG2 VBUCAP VP 001aai693 t backup C backup V P V REG2 0.5 – () – I load ------------------------------------------------ × = |
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