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MIC5021 датащи(PDF) 9 Page - Micrel Semiconductor |
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MIC5021 датащи(HTML) 9 Page - Micrel Semiconductor |
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9 / 9 page ![]() October 1998 5-177 MIC5021 Micrel 5 Remote Overcurrent Limiting Reset In circuit breaker applications where the MIC5021 maintains an off condition after an overcurrent condition is sensed, the C T pin can be used to reset the MIC5021. VDD Input CT Gnd VBOOST Gate Sense Sense TTL Input RSENSE N-Channel Power MOSFET +12V to +20V MIC5021 1 2 3 4 8 7 6 5 10µF 0.01 µF 74HC04 (example) 2N3904 Q1 10k to 100k Retry (H) Maintained (L) Figure 11. Remote Control Circuit Switching Q1 on pulls C T low which keeps the MIC5021 GATE output off when an overcurrent is sensed. Switching Q1 off causes C T to appear open. The MIC5021 retries in about 20 µs and continues to retry until the overcurrent condition is removed. For demonstration purposes, a 680 Ω load resistor and 3Ω sense resistor will produce an overcurrent condition when the load’s supply (V+) is approximately 12V or greater. Low-Temperature Operation As the temperature of the MIC5021AJB (extended tempera- ture range version—no longer available) approaches –55 °C, the driver’s off-state, gate-output offset from ground in- creases. If the operating environment of the MIC5021AJB includes low temperatures (–40 °C to –55°C), add an external 2.2M Ω resistor as shown in Figures 12a or 12b. This assures that the driver’s gate-to-source voltage is far below the external MOSFET’s gate threshold voltage, forcing the MOSFET fully off. VDD Input CT Gnd VBOOST Gate Sense Sense TTL Input RSENSE +12V to +36V MIC5021AJB 1 2 3 4 8 7 6 5 10µF 2.7 nF 2.2M add resistor for –40 °C to –55°C operation Figure 12a. Gate-to-Source Pull Down The gate-to-source configuration (refer to Figure 12a) is appropriate for resistive and inductive loads. This also causes the smallest decrease in gate output voltage. VDD Input CT Gnd VBOOST Gate Sense Sense TTL Input RSENSE +12V to +36V MIC5021AJB 1 2 3 4 8 7 6 5 10µF 2.7 nF 2.2M add resistor for –40 °C to –55°C operation Figure 12b. Gate-to-Ground Pull Down The gate-to-ground configuration (refer to Figure 12b) is appropriate for resistive, inductive, or capacitive loads. This configuration will decrease the gate output voltage slightly more than the circuit shown in Figure 12a. |
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