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LTC2921IGN датащи(PDF) 10 Page - Linear Technology |
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LTC2921IGN датащи(HTML) 10 Page - Linear Technology |
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10 / 20 page ![]() LTC2921/LTC2922 Series 10 29212fa The timing of a circuit breaker trip and reset, and a subsequent regular turn-on are shown in Figure 4. Prior to time 1, a successful turn-on sequence had completed. At time 1, excessive current pulls SENSE more than 50mV below VCC. The GATE pin, PG pin, and the remote sense switches fall at rates determined by the pull-down currents and loading conditions of each (times 2, 3, 4). Note that the excessive current condition ceases at time 4. A circuit breaker reset pulse is initiated at time 5. The latch resets at time 6 since the V1 pulse is wide enough. A normal turn- on begins when V1 rises above the monitor threshold (time 7 onward). Multiple supply systems have become common to accom- modate circuits on the same board with different voltage requirements. Desktop PC motherboards, instrumenta- tion circuits and plug-in boards of all kinds often require tracking and control of several supply voltages. The LTC2921 and LTC2922 ramp and monitor up to five supply voltages in such systems. External resistive volt- age dividers independently program four monitor levels, while an internal divider sets the VCC pin supply monitor level. Time delays in the monitoring sequence are set by an external capacitor at the TIMER pin. The GATE pin provides a high side drive voltage appropri- ate to logic-level and sublogic-level N-channel power TI I G DIAGRA S V1 V2 V3 V4 0.7V 0.5V 0.7V 0.5V 0.7V 0.5V 0.7V 0.5V VCC VCC VCC-50mV VCC VCC-50mV 1.2V 1.2V 12 3 4 6 7 5 VCC SENSE TIMER GATE PG REMOTE SENSE SWITCH GATE INTERNAL CIRCUIT BREAKER LATCH UNDERVOLTAGE LOCKOUT LEVEL APPLICATIO S I FOR ATIO Figure 4. Circuit Breaker Trip, Reset and Start-Up Sequence Timing MOSFETs. The external RC network on GATE programs the supply ramp rate and eliminates possible high fre- quency oscillations in the power path. Featured in the LTC2921/LTC2922 series are sub-10 Ω internal remote sense switches to compensate for voltage drops between the supplies and the loads. At the end of a successful power-on sequence, the LTC2921/ LTC2922 asserts the PG output. A typical application uses an external pull-up resistor between PG and the load side of a supply. In applications where supply power-on se- quencing is required, the PG pin can function as a second, separate high side driver. |
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