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LT1376CS Datasheet(PDF) 4 Page - Linear Technology |
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LT1376CS Datasheet(HTML) 4 Page - Linear Technology |
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4 / 28 page ![]() 4 LT1375/LT1376 Kool M µ is a registered trademark of Magnetics, Inc. ELECTRICAL CHARACTERISTICS Note 1: Absolute Maximum Ratings are those values beyond which the life of a device may be impaired. Note 2: Gain is measured with a VC swing equal to 200mV above the low clamp level to 200mV below the upper clamp level. Note 3: Minimum input voltage is not measured directly, but is guaranteed by other tests. It is defined as the voltage where internal bias lines are still regulated so that the reference voltage and oscillator frequency remain constant. Actual minimum input voltage to maintain a regulated output will depend on output voltage and load current. See Applications Information. Note 4: This is the minimum voltage across the boost capacitor needed to guarantee full saturation of the internal power switch. Note 5: Boost current is the current flowing into the BOOST pin with the pin held 5V above input voltage. It flows only during switch-on time. Note 6: Input supply current is the bias current drawn by the input pin when the BIAS pin is held at 5V with switching disabled. Output supply current is the current drawn by the BIAS pin when the bias pin is held at 5V. Total input referred supply current is calculated by summing input supply current (ISI) with a fraction of output supply current (ISO): ITOT = ISI + (ISO)(VOUT/VIN)(1.15) With VIN = 15V, VOUT = 5V, ISI = 0.9mA, ISO = 3.6mA, ITOT = 2.28mA. For the LT1375, quiescent current is equal to: ITOT = ISI + ISO(1.15) because the BIAS pin is internally connected to VIN. Note 7: Switch-on resistance is calculated by dividing VIN to VSW voltage by the forced current (1.5A). See Typical Performance Characteristics for the graph of switch voltage at other currents. Note 8: Transconductance and voltage gain refer to the internal amplifier exclusive of the voltage divider. To calculate gain and transconductance refer to sense pin on fixed voltage parts. Divide values shown by the ratio VOUT/2.42. The q denotes specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. TJ = 25°C, VIN = 15V, VC = 1.5V, boost open, switch open, unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX UNITS Shutdown Thresholds VC Open Device Shutting Down q 0.15 0.37 0.60 V Device Starting Up q 0.25 0.45 0.60 V VC Open LT1375HV/LT1376HV Device Shutting Down q 0.15 0.37 0.70 V LT1375HV/LT1376HV Device Starting Up q 0.25 0.45 0.70 V Minimum Synchronizing Amplitude (LT1375 Only) VIN = 5V q 1.5 2.2 V Synchronizing Range (LT1375 Only) 580 900 kHz SYNC Pin Input Resistance 40 k Ω INDUCTANCE ( µH) 05 1.0 0.1 0.01 0.001 10 15 20 20 12 8 4 2 1.2 0.8 0.4 0.2 0.12 0.08 0.04 0.02 25 1375/76 G01 TYPE 52 POWDERED IRON Kool M µ® PERMALLOY µ = 125 VOUT = 5V, VIN = 10V, IOUT = 1A CORE LOSS IS INDEPENDENT OF LOAD CURRENT UNTIL LOAD CURRENT FALLS LOW ENOUGH FOR CIRCUIT TO GO INTO DISCONTINUOUS MODE Inductor Core Loss TYPICAL PERFORMANCE CHARACTERISTICS DUTY CYCLE (%) 0 2.5 2.0 1.5 1.0 0.5 0 80 1375/76 G08 20 40 60 100 TYPICAL GUARANTEED MINIMUM Switch Peak Current Limit JUNCTION TEMPERATURE ( °C) –50 2.44 2.43 2.42 2.41 2.40 100 1375/76 G09 –25 0 25 50 75 125 2.0 1.5 1.0 0.5 0 VOLTAGE CURRENT Feedback Pin Voltage and Current |
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