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SI-3240F Datasheet(PDF) 2 Page - Sanken electric |
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SI-3240F Datasheet(HTML) 2 Page - Sanken electric |
2 / 6 page 34 *1: "A" may be indicated to the right of the Sanken logo. *2: VIN(max) and IO(max) are restricted by the relation PD(max)=(VIN-VO)•IO=14(W). *3: Refer to the dropout voltage.(Refer to Setting DC Input Voltage on page 7.) *4: IS1 is specified at –5(%) drop point of output voltage VO on the condition that VIN=VO+3V, IO=0.5A. *5: Output is ON even when output control terminal VC is open. Each input level is equivalent to LS-TTL. Therefore, it may be directly driven by an LS-TTL circuit. *6: When setting output voltage to 5V or less, input voltage needs to be set to 6V or over to operate stably. *7: A foldback type overcurrent protection circuit is built into the IC regulator. Therefore, avoid using it for the following applications as it may cause starting errors: (1) Constant current load (2) Plus/minus power (3) Series power (4) VO adjustment by raising ground voltage sElectrical Characteristics (excluding SI-3025F) (Ta=25 °C unless otherwise specified) Parameter Input Voltage Output Voltage Dropout Voltage Line Regulation Load Regulation Temperature Coefficient of Output Voltage Ripple Rejection Quiescent Circuit Current Overcurrent Protection Starting Current*4,7 ControlVoltage (Output ON) ControlVoltage (Output OFF) Control Current (Output ON) Control Current (Output OFF) VC Terminal*5 Symbol VIN VO Conditions VDIF Conditions Conditions ∆VOLINE Conditions ∆VOLOAD Conditions ∆VO/∆Ta Conditions RREJ Conditions Iq Conditions IS1 Conditions VC. IH VC. IL IC. IH Conditions IC. IL Conditions Unit V V V mV mV mV/ °C dB mA A V µA mA SI-3000F*1 SI-3000FA qSI-3000F Series Ratings SI-3050F SI-3090F SI-3120F SI-3150F SI-3157F SI-3240F min. typ. max. min. typ. max. min. typ. max. min. typ. max. min typ. max. min typ. max. 6*3 15*2 10*3 20*2 13*3 25*2 16*3 27*2 16.7*3 27*2 25*3 40 4.80 5.00 5.20 8.64 9.00 9.36 11.52 12.00 12.48 14.40 15.00 15.60 14.92 15.70 16.48 23.04 24.00 24.96 4.90 5.00 5.10 8.82 9.00 9.18 11.76 12.00 12.24 14.70 15.00 15.30 VIN=8V, IO=0.5A VIN=12V, IO=0.5A VIN=15V, IO=0.5A VIN=18V, IO=0.5A VIN=19V, IO=0.5A VIN=27V, IO=0.5A 0.5 0.5 0.5 0.5 0.5 0.5 IO ≤0.5A 1.0 1.0 1.0 1.0 1.0 1.0 IO ≤1.0A 10 30 18 48 24 64 30 90 30 90 48 128 VIN=6V to 15V, IO=0.5A VIN=10V to 20V, IO=0.5A VIN=13V to 25V, IO=0.5A VIN=16V to 27V, IO=0.5A VIN=17V to 27V, IO=0.5A VIN=25V to 38V, IO=0.5A 40 100 70 180 93 240 120 300 120 300 120 300 VIN=8V, IO=0 to 1.0A VIN=12V, IO=0 to 1.0A VIN=15V, IO=0 to 1.0A VIN=18V, IO=0 to 1.0A VIN=19V, IO=0 to 1.0A VIN=27V, IO=0 to 1.0A ±0.5 ±1.0 ±1.5 ±1.5 ±1.5 ±2.5 VIN=8V, IO=5mA, Tj=0 to 100 °CVIN=12V, IO=5mA,Tj=0 to 100°CVIN=15V, IO=5mA,Tj=0 to 100°CVIN=18V, IO=5mA,Tj=0 to 100°CVIN=19V, IO=5mA,Tj=0 to 100°CVIN=27V, IO=5mA,Tj=0 to 100°C 54 54 54 54 54 54 VIN=8V, f=100 to 120HZ VIN=12V, f=100 to 120HZ VIN=15V, f=100 to 120HZ VIN=18V, f=100 to 120HZ VIN=19V, f=100 to 120HZ VIN=27V, f=100 to 120HZ 3 10 3 10 3 10 3 10 3 10 5 10 VIN=8V, IO=0A VIN=12V, IO=0A VIN=15V, IO=0A VIN=18V, IO=0A VIN=19V, IO=0A VIN=27V, IO=0A 1.2 1.2 1.2 1.2 1.2 1.2 VIN=8V VIN=12V VIN=15V VIN=18V VIN=19V VIN=27V 2.0 2.0 2.0 2.0 2.0 2.0 0.8 0.8 0.8 0.8 0.8 0.8 20 20 20 20 20 20 VC=2.7V –0.3 –0.3 –0.3 –0.3 –0.3 –0.3 VC=0.4V |
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