TA48L018F TOSHIBA | Alldatasheet
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Technical content
Features
z Maximum output current: 0.15 A z Output voltage accuracy: VOUT ± 3% (@Tj = 25°C) z Low standby current: 400 µA (typ.) (@IOUT = 0 A) z Low-dropout voltage: VD = 0.5 V (max) (@IOUT = 100 mA) z Protection function: overheat/overcurrent z Package type: PW-MINI (SOT-89) package Pin Assignment/Marking Part No. (or abbreviation code) Part No. AI TA48L018F BI TA48L02F CI TA48L025F DI TA48L03F EI TA48L033F FI TA48L05F Weight: 0.05 g (typ.) A I Part No. (or abbreviation code) *1 A line indicates lead (Pb)-free package or lead (Pb)-free finish. Lot No. (weekly code) 2 3 1 1: IN 2: OUT 3: GND
TA48L018,02,025,03,033,05F 2004-07-01 2 How to Order Product No. Package Packing Type and Unit for Orders TA48LF On cut tape (TE12L): 100/tape section TA48LF (TE12L) PW-MINI (SOT-89) Surface-mount package Embossed tape: 1000 pcs/tape Block Diagram Maximum Ratings (Ta = 25°C) Characteristics Symbol Rating Unit Input voltage V IN 16 V Output current I OUT 0.15 A Operating temperature T opr −40~85 °C Junction temperature T j 150 °C Storage temperature T stg −55~150 °C Power dissipation P D 0.5 W Thermal resistance (Junction to ambient) Rth(j-a) 250 °C/W Note 1: External current and voltage (including negative voltage) should not be applied to pins not specified. Protection Function (reference) Characteristics Symbol Test Condition Min Typ. Max Unit Thermal shutdown T SD (Tj) ⎯ ⎯ 160 ⎯ °C Peak circuit current I PEAK V IN = VOUT + 2 V, Tj = 25°C ⎯ 0.27 ⎯ A Short circuit current I SC V IN = VOUT + 2 V, Tj = 25°C ⎯ 0.27 ⎯ A Note 2: Note 2: The maximum ratings should not be exceeded when the IC is actually used. 1I N 2O U T 3G N D Reference voltage Over current protection Thermal shut down protection
TA48L018,02,025,03,033,05F 2004-07-01 3 TA48L018F
Electrical Characteristics
(CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 3.8 V, IOUT = 40 mA 1.746 1.8 1.854 Output voltage V OUT 2.8 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 2.8 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 3.8 V, 5 mA <= IOUT <= 150 mA ⎯ 18 40 mV 2.8 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 2.8 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 2.1 V, IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 2.1 V, IOUT = 100 mA ⎯ 5 20 mA Output noise voltage V NO VIN = 3.8 V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 45 ⎯ µVrms
Ripple rejection R.R. 2.8 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 54 72 ⎯ dB IOUT = 40 mA ⎯ 0.28 0.4 Dropout voltage V D IOUT = 100 mA ⎯ 0.32 0.5 V Average temperature coefficient of output voltage TCVO VIN = 3.8 V, IOUT = 5 mA, TA48L02F (CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 4.0 V, IOUT = 40 mA 1.94 2.0 2.06 Output voltage V OUT 3.0 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 3.0 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 4.0 V, 5 mA <= IOUT <= 150 mA ⎯ 18 40 mV 3.0 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 3.0 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 2.1 V, IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 2.1 V, IOUT = 100 mA ⎯ 5 20 mA Output noise voltage V NO VIN = 4.0 V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 55 ⎯ µVrms
Ripple rejection R.R. 3.0 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 52 70 ⎯ dB IOUT = 40 mA ⎯ 0.2 0.35 Dropout voltage V D IOUT = 100 mA ⎯ 0.3 0.5 V Average temperature coefficient of output voltage TCVO VIN = 4.0 V, IOUT = 5 mA,
TA48L018,02,025,03,033,05F 2004-07-01 4 TA48L025F (CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 4.5 V, IOUT = 40 mA 2.425 2.5 2.575 Output voltage V OUT 3.5 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 3.5 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 4.5 V, 5 mA <= IOUT <= 150 mA ⎯ 18 40 mV 3.5 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 3.5 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 2.4 V, IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 2.4 V, IOUT = 100 mA ⎯ 7 20 mA Output noise voltage V NO VIN = 4.5 V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 65 ⎯ µVrms
Ripple rejection R.R. 3.5 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 52 70 ⎯ dB IOUT = 40 mA ⎯ 0.16 0.35 Dropout voltage V D IOUT = 100 mA ⎯ 0.27 0.5 V Average temperature coefficient of output voltage TCVO VIN = 4.5 V, IOUT = 5 mA, TA48L03F (CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 5.0 V, IOUT = 40 mA 2.91 3.0 3.09 Output voltage V OUT 4.0 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 4.0 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 5.0 V, 5 mA <= IOUT <= 150 mA ⎯ 18 40 mV 4.0 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 4.0 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 2.8 V, IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 2.8 V, IOUT = 100 mA ⎯ 7 20 mA Output noise voltage V NO VIN = 5.0 V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 80 ⎯ µVrms
Ripple rejection R.R. 4.0 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 50 68 ⎯ dB IOUT = 40 mA ⎯ 0.16 0.35 Dropout voltage V D IOUT = 100 mA ⎯ 0.27 0.5 V Average temperature coefficient of output voltage TCVO VIN = 5 V, IOUT = 5 mA,
TA48L018,02,025,03,033,05F 2004-07-01 5 TA48L033F (CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 5.3 V, IOUT = 40 mA 3.2 3.3 3.4 Output voltage V OUT 4.3 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 4.3 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 5.3 V, 5 mA <= IOUT <= 150 mA ⎯ 18 40 mV 4.3 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 4.3 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 3.0 V, IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 3.0 V, IOUT = 100 mA ⎯ 7 20 mA Output noise voltage V NO VIN = 5.3 V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 85 ⎯ µVrms
Ripple rejection R.R. 4.3 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 50 68 ⎯ dB IOUT = 40 mA ⎯ 0.16 0.35 Dropout voltage V D IOUT = 100 mA ⎯ 0.27 0.5 V Average temperature coefficient of output voltage TCVO VIN = 5.3 V, IOUT = 5 mA, TA48L05F (CIN = 0.33 µF, COUT = 3.3 µF, Tj = 25°C, unless otherwise specified) Characteristics Symbol Test Conditions Min Typ. Max Unit VIN = 7.0 V, IOUT = 40 mA 4.85 5.0 5.15 Output voltage V OUT 6.0 V <= VIN <= 12 V, 5 mA <= IOUT <= 100 V Line regulation Reg · line 6.0 V <= VIN <= 12 V, IOUT = 40 mA ⎯ 2 20 mV Load regulation Reg · load V IN = 7.0 V, 5 mA <= IOUT <= 150 mA ⎯ 18 45 mV 6.0 V <= VIN <= 12 V, IOUT = 0 A ⎯ 0.4 0.8 Quiescent current I B 6.0 V <= VIN <= 12 V, IOUT = 100 mA ⎯ 1 5 mA VIN = 4.5V,IOUT = 0 A ⎯ 0.5 1.5 Starting quiescent current I Bstart VIN = 4.5 V, IOUT = 100 mA ⎯ 7 20 mA Output noise voltage V NO VIN = 7.0V, IOUT = 40 mA,
10 Hz <= f <= 100 kHz ⎯ 135 ⎯ µVrms
Ripple rejection R.R. 6.0 V <= VIN <= 12 V, IOUT = 40 mA, f = 120 Hz 50 64 ⎯ dB IOUT = 40 mA ⎯ 0.16 0.35 Dropout voltage V D IOUT = 100 mA ⎯ 0.27 0.5 V Average temperature coefficient of output voltage TCVO VIN = 7.0 V, IOUT = 5 mA,
TA48L018,02,025,03,033,05F 2004-07-01 6 Electrical Characteristics for All Products Generally, the characteristics of power supply ICs change according to temperature fluctuations. The specification Tj = 25℃ is based on a state where temperature increase has no effect (assuming no fluctuation in the characteristics) as ascertained by pulse tests. Standard Application Circuit Be sure to connect a capacitor near the input terminal and output terminal between both terminals and GND. The capacitances should be determined experimentally. In particular, adequate investigation should be made so that there is no problem even in high or low temperatures. 1 2 TA48LxxF VOUT COUTCIN 0.33 µF 3.3 µF
TA48L018,02,025,03,033,05F 2004-07-01 7 PDmax – Ta VOUT – Tj VOUT – VIN IB – VIN VD – IOUT VD – Tj Ambient temperature Ta (°C) Junction temperature T j (°C) Input voltage V IN ( V ) Input voltage V IN ( V ) Output current I OUT ( m A ) Junction temperature T j (°C) Output voltage V OUT (V) Allowable power dissipation PDmax (W) Quiescent current I B (mA) Output voltage V OUT (V) Dropout voltage V D (V) Dropout voltage V D (V) 3.0 −50 TA48L033F VIN = 5.3 V IOUT = 5 mA 3.2 3.4 3.6 0 50 100 150 TA48L033F 0.2 0.3 0.5 150 0.1 100 50 25°C 125°C 85°C Tj = −40°C 0.4 TA48L033F −50 0.2 0.3 0.5 150 0.1 100 0 40 mA 0.1 A IOUT = 5 mA 0.4 IOUT = 5 mA 4 6 10 40 mA 0.1 A 8 2 Tj = 25°C IOUT = 5 mA 46 1 0 40 mA 0.1 A 8 2 Tj = 25°C Condition: Number of IC = 1 Reflow soldering on a ceramic substrate Single 0.4 0.8 1.2 1.6 2.4 40 80 120 160 40 × 40 × 0.8 mmt 20 × 30 × 0.8 mmt 15 × 15 × 0.8 mmt
TA48L018,02,025,03,033,05F 2004-07-01 8 Tj = 40°C TA48L033F VIN = 5.3 V 150 100 50 25°C 125°C 85°C IB – Tj IB – IOUT VOUT – IOUT ISC – Tj Junction temperature T j (°C) Output current I OUT ( m A ) Output current I OUT ( m A ) Junction temperature T j (°C) Quiescent current I B (mA) Quiescent current I B (mA) Short circuit current I SC ( m A ) Output voltage V OUT (V) ISC – VD R.R. – f Dropout voltage V D (V) Frequency f (kHz) Ripple rejection R.R. (dB) Short circuit current I SC ( m A ) IOUT = 0.1 A TA48L033F VIN = 5.3 V −50 150 100 0 40 mA 0 A TA48L033F VIN = 5.3 V −50 200 300 400 150 100 100 0 TA48L033F Tj = 25°C 200 300 400 100 9 3 12 200 TA48L033F VIN = 5.3 V Tj = 25°C 400 300 100 TA48L033F VIN = 5.3 V IOUT = 40 mA 0.01 100 10 0.1
TA48L018,02,025,03,033,05F 2004-07-01 9 Package Dimensions Weight: 0.05 g (typ.)
TA48L018,02,025,03,033,05F 2004-07-01 10 y The information contained herein is subject to change without notice. y The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA for any infringements of patents or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of TOSHIBA or others. y TOSHIBA is continually working to improve the quality an d reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA products, to comply with the standards of safety in making a safe design for the entire system, and to avoid situations in which a malfunction or failure of such TOSHIBA products could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified operating ranges as set forth in the most recent TOSHIBA products specifications. Also, please keep in mind the precautions and conditions set forth in the “Handling Guide for Semiconductor Devices,” or “TOSHIBA Semiconductor Reliability Handbook” etc.. y The TOSHIBA products listed in this document are intended for usage in general electronics applications (computer, personal equipment, office equipment, measuring equipment, industrial robotics, domestic appliances, etc.). These TOSHIBA products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and/or reliability or a malfuncti on or failure of which may cause loss of human life or bodily injury (“Unintended Usage”). Unintended Usage include atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, etc.. Unintended Usage of TOSHIBA products listed in this document shall be made at the customer’s own risk. y The products described in this document are subject to the foreign exchange and foreign trade laws. y TOSHIBA products should not be embedded to the downstream products which are prohibited to be produced and sold, under any law and regulations. 030619EBARESTRICTIONS ON PRODUCT USE