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LTC7150S Datasheet(PDF) 4 Page - Linear Technology |
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LTC7150S Datasheet(HTML) 4 Page - Linear Technology |
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4 / 22 page ![]() LTC7150S 4 7150sfa For more information www.linear.com/LTC7150S SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS IMODE/SYNC MODE/SYNC Current MODE/SYNC = 0V 6 14 µA VCLKOUT Clock Output High Voltage Clock Output Low Voltage VINTVCC – 0.2 VINTVCC 0 0.2 V V PHMODE PHMODE Threshold 180° (2-Phase) 90° (4-Phase) 120° (3-Phase) VINTVCC – 0.1 1.0 VINTVCC – 1 0.1 V V V VINOV VIN Overvoltage Threshold VIN Rising VIN Falling 22.5 20 24.5 21.5 26.5 23 V V ELECTRICAL CHARACTERISTICS The l denotes the specifications which apply over the specified operating junction temperature range, otherwise specifications are at TA = 25°C (Note 2). VIN = 12V, unless otherwise noted. 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 LTC7150S is tested under pulsed load conditions such that TJ ≈ TA. The LTC7150SE is guaranteed to meet specifications from 0°C to 85°C junction temperature. Specifications over the –40°C to 125°C operating junction temperature range are assured by design, characterization and correlation with statistical process controls. The LTC7150SI 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 rated package thermal impedance and other environmental factors. The junction temperature (TJ, in °C) is calculated from the ambient temperature (TA, in °C) and power dissipation (PD, in Watts) according to the formula: TJ = TA + (PD • θJA), where θJA (in °C/W) is the package thermal impedance. Note 3: The quiescent current in forced continuous mode does not include switching loss of the power FETs. Note 4: The LTC7150S is tested in a feedback loop that servos VITH to a specified voltage and measures the resultant VFB. Note 5: There is additional switch current due to internal resistor to ground. |
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