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LTM4627EVPBF 数据表(PDF) 15 Page - Linear Technology |
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LTM4627EVPBF 数据表(HTML) 15 Page - Linear Technology |
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15 / 28 page ![]() LTM4627 15 4627f top feedback resistor of the slave regulator in equal slew rate or coincident tracking, then RTA is equal to RFB with VFB = VTRACK. Therefore RTB = 60.4k, and RTA = 60.4k in Figure 4. In ratiometric tracking, a different slew rate maybe desired for the slave regulator. RTB can be solved for when SR is slower than MR. Make sure that the slave supply slew rate is chosen to be fast enough so that the slave output voltage will reach its final value before the master output. For example, MR = 1.5V/ms, and SR = 1.2V/ms. Then RTB = 75k. Solve for RTA to equal 51.1k. For applications that do not require tracking or sequenc- ing, simply tie the TRACK/SS pin to INTVCC to let RUN control the turn on/off. When the RUN pin is below its threshold or the VIN undervoltage lockout, then TRACK/SS is pulled low. Figure 5. Output Voltage Coincident Tracking APPLICATIONS INFORMATION Overcurrent and Overvoltage Protection The LTM4627 has overcurrent protection (OCP) in a short circuit. The internal current comparator threshold folds back during a short to reduce the output current. An overvoltage condition (OVP) above 10% of the regulated output voltage will force the top MOSFET off and the bot- tom MOSFET on until the condition is cleared. An input 4627 F05 TIME SLAVE OUTPUT MASTER OUTPUT OUTPUT VOLTAGE electronic circuit breaker or fuse can be sized to be tripped or cleared when the bottom MOSFET is turned on to pro- tect against the overvoltage. Foldback current limiting is disabled during soft-start or tracking start-up. Run Enable The RUN pin is used to enable the power module or sequence the power module. The threshold is 1.25V, and the pin has an internal 5.1V Zener to protect the pin. The RUN pin can be used as an undervoltage lockout (UVLO) function by connecting a resistor divider from the input supply to the RUN pin: VUVLO = ((R1+R2)/R2) • 1.25V. See the Block Diagram for the example of use. INTVCC Regulator The LTM4627 has an internal low dropout regulator from VIN called INTVCC. This regulator output has a 4.7μF ceramic capacitor internal. This regulator powers the internal controller and MOSFET drivers. The gate driver current is ~20mA for 750kHz operation. The regulator loss can be calculated as: (VIN–5V)•20mA =PLOSS EXTVCC external voltage source ≥ 4.7V can be applied to this pin to eliminate the internal INTVCC LDO power loss and increase regulator efficiency. A 5V supply can be applied to run the internal circuitry and power MOSFET driver. If unused, leave pin floating. Stability Compensation The module has already been internally compensated for all output voltages. Table 4 is provided for most ap- plication requirements. The Linear Technology μModule Power Design Tool will be provided for other control loop optimization. |
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