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TLE4971 数据表(PDF) 9 Page - Infineon Technologies AG |
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TLE4971 数据表(HTML) 9 Page - Infineon Technologies AG |
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9 / 23 page ![]() Datasheet 9 Revision 1.02 19-08-2022 TLE4971 Datasheet Fast Over-Current Detection (OCD) The Over-Current Detection (OCD) function allows fast detection of over-current events. The raw analog output of the Hall probes is fed directly into comparators with programmable switching thresholds. A user programmable deglitch filter is implemented to enable the suppression of fast switching transients. The two different open-drain OCD pins are active low and can be directly combined into a wired-AND configuration on board level to have a general over-current detection signal. TLE4971 supports two independent programmable OCD outputs, suited for different application needs. The OCD pins are providing a very fast response, thanks to independence from the main signal path. They can be used as a trap functionality to quickly shut down the current source as well as for precise detection of soft overload conditions. OCD pins external connection The OCD pins can be connected to a logic input pin of the microcontroller and/or the gate-driver to quickly react to over-current events. They are designed as open-drain outputs to easily setup a wired-AND configuration and allow monitoring of several current sensors outputs via only one microcontroller pin. OCD thresholds The symmetric threshold level of the OCD outputs is adjustable and triggers an over-current event in case of a positive or negative over-current. The possible threshold levels are listed in Table 7 and Table 8. The instruction for the settings is documented in the TLI4971 programming guide and the TLE4971 addendum. OCD outputs timing behavior Both output pins feature a deglitch filter to avoid false triggers by noise spikes on the current rail. Deglitch filter settings can be programmed according to application needs. Available options are listed in Table 7 and Table 8. Figure 3 shows the OCD output pin typical behavior during an over-current event. Over-current Pulse 1: duration exceeds the over- current response time tD_OCDx + response time jitter ΔtD_OCDx + deglitch filter time tdeglitch. The OCD output voltage is set low until the current value drops below the OCD threshold. Over-current Pulse 2: duration does not exceed the over-current response time tD_OCDx and therefore no OCD event is generated. Over-current Pulse 3: duration exceeds the response time tD_OCDx + response time jitter ΔtD_OCDx, but does not exceed the glitch filter time tdeglitch and no OCD event is generated. BTHR 2 x BTHR VOCD t t tD_OCDx VDD 0.5 x VDD B ΔtD_OCDx tdeglitch Glitch counter t threshold tOC < (tD_OCDx + ΔtD_OCDx) tD_OCDx ΔtD_OCDx tD_OCDx tdeglitch tOC < (tD_OCDx + ΔtD_OCDx + tdeglitch) ΔtD_OCDx 2 3 1 tOCD_low Figure 3 Fast over-current detection output timing |
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