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LTM4676A датащи(PDF) 4 Page - Linear Technology |
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LTM4676A датащи(HTML) 4 Page - Linear Technology |
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4 / 22 page ![]() LTC3874-1 4 38741f For more information www.linear.com/LTC3874-1 Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: The LTC3874-1 is tested under pulsed load conditions such that TJ ≈ TA. The LTC3874E-1 is guaranteed to meet specifications from 0°C to 85°C junction temperature. Specifications over the –40°Ç to 125°C operating junction temperature range are assured by design, characterization and correlation with statistical process controls. The LTC3874I-1 is guaranteed over the –40°C to 125°C operating junction temperature range. Note that the maximum ambient temperature consistent with these specifications is determined by specific operating conditions in conjunction with board layout, the related package thermal impedance and other environmental factors. The junction temperature TJ is calculated from the ambient temperature TA and power dissipation PD according to the following formula: TJ = TA + (PD • 46.9°C/W) Note 3: Output voltage is set and controlled by master controller in multiphase operations. Note 4: The minimum on-time condition corresponds to an inductor peak-to-peak ripple current ≥40% of IMAX (see Minimum On-Time Considerations in the Applications Information section). Note 5: EXTVCC is enabled only if VIN is higher than 6.5V. elecTrical characTerisTics Typical perForMance characTerisTics Load Step (Discontinuous Conduction Mode) 4-Phase with Master Controller LTC3884-1 Efficiency and Power Loss vs Output Current (4-Phase with Master Controller LTC3884-1) Load Step (Forced Continuous Mode) 4-Phase with Master Controller LTC3884-1 Efficiency vs Output Current and Mode (4-Phase with Master Controller LTC3884-1) Efficiency vs Output Current and Mode (4-Phase with Master Controller LTC3884-1) (TA = 25°C unless otherwise specified) VIN = 12V VOUT = 1.8V fSW = 425kHz CCM DCM LOAD CURRENT (A) 0 10 20 30 40 50 60 70 80 90 100 110 120 0 10 20 30 40 50 60 70 80 90 100 38741 G1 VIN = 12V VOUT = 1.2V fSW = 425kHz CCM DCM LOAD CURRENT (A) 0 10 20 30 40 50 60 70 80 90 100 110 120 0 10 20 30 40 50 60 70 80 90 100 38741 G2 VIN = 12V VOUT = 1.8V fSW = 425kHz CCM EFFICIENCY POWER LOSS 0.29mΩ 1.5mΩ 0.29mΩ 1.5mΩ LOAD CURRENT (A) 0 10 20 30 40 50 60 70 80 90 100 110 120 70 75 80 85 90 95 100 2 5 8 11 14 17 20 38741 G3 VIN = 12V VOUT = 1.2V ILOAD 0A TO 20A 50µs/DIV ILOAD 50A/DIV VOUT AC-COUPLED 50mV/DIV IL(SLAVE0) 10A/DIV IL(MASTER0) 10A/DIV 38741 G04 VIN = 12V VOUT = 1.2V ILOAD 0A TO 20A 50µs/DIV ILOAD 50A/DIV VOUT AC-COUPLED 50mV/DIV I(SLAVE0) 10A/DIV I(MASTER0) 10A/DIV 38741 G05 |
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