TCR5SB15 TOSHIBA | Alldatasheet
Document overview
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Technical content
Features
- Low quiescent current ( I B = 40 μA (typ.) at IOUT = 0 mA )
- Low stand-by current ( I B(OFF) = 0.1 μA (typ.) @ Stand-by mode )
- Low-dropout voltage ( V IN - VOUT = 85 mV (typ.) at TCR5SB30, IOUT = 50 mA )
- High current output ( I OUT = 200 mA (max) )
- High ripple rejection ( R.R = 80 dB (typ) @ I OUT = 10 mA, f =1kHz )
- Low output noise voltage ( V NO = 30 μVrms (typ.) @ TCR5SB30, IOUT = 10 mA, 10 Hz ≦ f ≦ 100 kHz )
- Control voltage can be allowed from -0.3 to 6 V regardless of V IN voltage.
- Overcurrent protection
- Ceramic capacitors can be used ( C IN = 0.1μF, COUT =1.0 μF )
- Wide range voltage listing (Please see Output Voltage A ccuracy at page 4 for variety of the output voltage )
- Small package, SMV (SOT23-5) (SC-74A)
- RoHS compatible Pin Assignment (top view) Weight: 0.014 g (typ.) VOUT CONTROL GND NC VIN 1 2 3
TCR5SB15~TCR5SB50 2007-11-01 2 List of Products Number and Marking Marking Products No. Marking Products No. Marking TCR5SB15 1E5 TCR5SB33 3E3 TCR5SB16 1E6 TCR5SB34 3E4 TCR5SB17 1E7 TCR5SB35 3E5 TCR5SB18 1E8 TCR5SB36 3E6 TCR5SB19 1B9 TCR5SB37 3E7 TCR5SB20 2E0 TCR5SB38 3E8 TCR5SB21 2E1 TCR5SB39 3E9 TCR5SB22 2E2 TCR5SB40 4E0 TCR5SB23 2E3 TCR5SB41 4E1 TCR5SB24 2E4 TCR5SB42 4E2 TCR5SB25 2E5 TCR5SB43 4E3 TCR5SB26 2E6 TCR5SB44 4E4 TCR5SB27 2E7 TCR5SB45 4E5 TCR5SB28 2E8 TCR5SB46 4E6 TCR5SB29 2E9 TCR5SB47 4E7 TCR5SB30 3E0 TCR5SB48 4E8 TCR5SB31 3E1 TCR5SB49 4E9 TCR5SB32 3E2 TCR5SB50 5E0 Absolute Maximum Ratings (Ta = 25°C) Characteristics Symbol Rating Unit Input voltage VIN 6 V Control voltage VCT -0.3~ 6 V Output voltage VOUT -0.3~ VIN + 0.3 V Output current IOUT 200 mA 2 0 0 ( N o t e 1 ) Power dissipation PD 3 8 0 ( N o t e 2 ) mW Operation temperature range Topr −40~85 °C Junction temperature Tj 150 °C Storage temperature range Tstg −55~150 °C Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum ratings and the operating ranges. Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook (“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test report and estimated failure rate, etc). Note 1: Unit Ratintg Note 2: Rating at mounting on a board (Glass epoxy board dimmention : 30 mm × 30 mm, Copper pad area : 50 mm
3 E 0
Example: TCR5SB30 (3.0 V output)
TCR5SB15~TCR5SB50 2007-11-01 3
Electrical Characteristics
(Unless otherwise specified, VIN =VOUT + 1 V, IOUT = 50 mA, CIN = 0.1 μF, COUT = 1.0 μF, Tj = 25°C) Characteristics Symbol Test Condition Min Typ. Max Unit Output voltage VOUT Please refer to the Output Voltage Accuracy table Line regulation Reg・line VOUT + 0.5 V < = VIN < = 6 V, IOUT = 1 mA ⎯ 3 15 mV Load regulation Reg・load 1 mA < = IOUT < = 150 mA ⎯ 25 75 mV Quiescent current IB IOUT = 0 mA ⎯ 40 75 μA Stand-by current IB (OFF) V CT = 0 V ⎯ 0.1 1.0 μA TCR5SB15~TCR5SB20 ⎯ 25 ⎯ TCR5SB21~TCR5SB30 ⎯ 30 ⎯ TCR5SB31~TCR5SB36 ⎯ 35 ⎯ Output noise voltage VNO VIN = VOUT + 1 V, IOUT = 10 mA,
10 Hz < = f < = 100 kHz,
Ta = 25°C TCR5SB37~TCR5SB50 ⎯ 40 ⎯ μVrms Dropout voltage VIN-VOUT Please refer to the Dropout voltage table. Temperature coefficient TCVO −40°C < = Topr < = 85°C ⎯ 100 ⎯ ppm/°C TCR5SB15~TCR5SB16 VOUT + 0.33 V ⎯ 6.0 TCR5SB17~TCR5SB18 VOUT + 0.31 V ⎯ 6.0 TCR5SB19~TCR5SB23 VOUT + 0.25 V 6.0 TCR5SB24~TCR5SB27 VOUT + 0.20 V 6.0 Input voltage VIN ⎯ TCR5SB28~TCR5SB50 VOUT + 0.19 V ⎯ 6.0 V Ripple rejection ratio R.R. VIN = VOUT + 1 V, IOUT = 10 mA, f = 1 kHz, VRipple = 500 mVp-p, Ta = 25°C ⎯ 80 ⎯ dB Control voltage (ON) VCT (ON) ⎯ 1.5 ⎯ 6.0 V Control voltage (OFF) VCT (OFF) ⎯ 0 ⎯ 0.25 V Control current (ON) ICT (ON) V CT = 6.0 V ⎯ ⎯ 0.1 μA Control current (OFF) ICT (OFF) V CT = 0.25 V ⎯ ⎯ 0.1 μA
TCR5SB15~TCR5SB50 2007-11-01 4 Output Voltage Accuracy (VIN = VOUT + 1 V, IOUT = 50 mA, CIN = 0.1 μF, COUT = 1.0 μF, Tj = 25°C) Product No. Symbol Min Typ. Max Unit TCR5SB15 1.47 1.5 1.53 *TCR5SB16 1.56 1.6 1.64 *TCR5SB17 1.66 1.7 1.74 TCR5SB18 1.76 1.8 1.84 TCR5SB19 1.86 1.9 1.94 *TCR5SB20 1.96 2.0 2.04 *TCR5SB21 2.05 2.1 2.15 *TCR5SB22 2.15 2.2 2.25 *TCR5SB23 2.25 2.3 2.35 *TCR5SB24 2.35 2.4 2.45 TCR5SB25 2.45 2.5 2.55 *TCR5SB26 2.54 2.6 2.66 TCR5SB27 2.64 2.7 2.76 TCR5SB28 2.74 2.8 2.86 TCR5SB29 2.84 2.9 2.96 TCR5SB30 2.94 3.0 3.06 TCR5SB31 3.03 3.1 3.17 *TCR5SB32 3.13 3.2 3.27 TCR5SB33 3.23 3.3 3.37 *TCR5SB34 3.33 3.4 3.47 *TCR5SB35 3.43 3.5 3.57 *TCR5SB36 3.52 3.6 3.68 *TCR5SB37 3.62 3.7 3.78 *TCR5SB38 3.72 3.8 3.88 *TCR5SB39 3.82 3.9 3.98 *TCR5SB40 3.92 4.0 4.08 *TCR5SB41 4.01 4.1 4.19 *TCR5SB42 4.11 4.2 4.29 *TCR5SB43 4.21 4.3 4.39 *TCR5SB44 4.31 4.4 4.49 *TCR5SB45 4.41 4.5 4.59 *TCR5SB46 4.50 4.6 4.70 *TCR5SB47 4.60 4.7 4.80 *TCR5SB48 4.70 4.8 4.90 *TCR5SB49 4.80 4.9 5.00 TCR5SB50 VOUT 4.90 5.0 5.10 V Please contact us if prefer products with * sign from above lists
TCR5SB15~TCR5SB50 2007-11-01 5 Dropout Voltage (IOUT = 50 mA, CIN = 0.1 μF, COUT = 1.0 μF, Tj = 25°C) Product No. Symbol Min Typ. Max Unit TCR5SB15~TCR5SB16 ⎯ 150 330 TCR5SB17~TCR5SB18 ⎯ 130 310 TCR5SB19~TCR5SB23 ⎯ 110 250 TCR5SB24~TCR5SB27 ⎯ 90 200 TCR5SB28~TCR5SB50 VIN-VOUT ⎯ 85 190 mV
TCR5SB15~TCR5SB50 2007-11-01 6 Application Note 1. Recommended Application Circuit The figure above shows the recommended configuration for using a Low-Dropout regulator. Insert a capacitor at Vout and Vin pins for stable input/output operation. (Ceramic capacitors can be used) If the control function is not to be used, Toshiba recommend that the control pin is connected to the V IN pin. 2. Power Dissipation Power dissipation of TCR5SBxx series is independent and shows in Absolute Maximum Ratings when it is mounted on the board. Testing size and pattern shows below. Testing Board of Thermal Resistance 3. Ripple Rejection TCR5SBxx series are designed for superior ripple rejectio n characteristic. Even an output changes with steep Control Level Operation HIGH ON LOW OFF VOUT GND VIN 1.0 μF 0.1 μF CONTROL NC Board material: Glass Epoxy, Board dimension 30 mm × 30 mm Copper area: 50 mm2, t = 0.8 mm COUT VIN VOUT CONTROL GND CIN NC Ambient temperature T a ( ° C ) PD – Ta Power dissipation P D ( m W ) −40 0 40 120 80 100 200 300 400 ① Board dimension 30 mm × 30 mm, t = 0.8 mm Copper area 50 mm 2, mounted on Glass Epoxy Board ② Unit Rating
TCR5SB15~TCR5SB50 2007-11-01 7 resistance rate of the power supply voltage, characteristic of Input Transient Response , the ripple rejection shows an extremely superior characteristics. Therefore these devices are suitable for use as RF block for every cellular phone system. Attention in Use
- Output Capacitors Ceramic capacitors can be used for these devices. However, because of the type of the capacitors, there might be unexpected thermal features. Please consider application condition for selectin g capacitors. And Toshiba recommend the ESR of ceramic capacitor is under 10 Ω.
- Mounting The long distance between IC and output capacitor might affect phase assurance by impedance in wire and inductor. For stable power supply, output capacitor need to mount near IC as much as possible. Also GND pattern need to be large and make the wire impedance small as possible.
- Permissible Loss Please have enough design patterns for expected maximum permissible loss. And under consideration of surrounding temperature, input voltage, and output current etc, we recommend proper dissipation ratings for maximum permissible loss; in general maximum dissipation rating is 70 to 80 percent.
- Overcurrent Protection Circuit Overcurrent protection circuit is designed in these products, but this does not assure for the suppression of uprising device operation. If output pins and GND pins are shorted out, these products might be break down. In use of these products, please read through and understand dissipation idea for absolute maximum ratings from the above mention or our ‘Semicon ductor Reliability Handbook’. Then use these products under absolute maximum ratings in any condition. Furthermore, Toshiba reco mmend inserting failsafe system into the design. Input Transient Response (TCR5SB30) T i m e t ( m s ) 0 1 4 5 8 10 Input Voltage 3.0 V 2 3 6 7 9 Output Voltage 3.1 V 3.4 V Ta = 25°C, CIN = 0.1 μF, Cout = 1μF, VIN: 3.4 V → 3.1 V, Iout = 50 mA Frequency f (Hz) Ripple rejection Ratio (dB) 10 100 1 k 10 k 100 k 300 k VIN = 4.0 V , IOUT = 10 mA Vripple = 500 mVp−p CIN = none, Ta = 25°C COUT = 10 μF COUT = 1 μF COUT = 2.2 μF Ripple rejection Ratio (TCR5SB30)
TCR5SB15~TCR5SB50 2007-11-01 8 Representative Typical Characteristics 1) Output Voltage vs. Input Voltage 2) Output Voltage vs. Output Current Input voltage V IN (V) TCR5SB30 Output voltage V OUT (V) 0 1 4 6 CIN = 0.1 μF, COUT = 1 μF 2 3 5 150 mA 50 mA IOUT = 10 mA Input voltage V IN (V) TCR5SB15 Output voltage V OUT (V) 0 1 4 6 1.5 2.0 0.5 1.0 CIN = 0.1 μF, COUT = 1 μF 2 3 5 150 mA 50 mA IOUT = 10 mA Input voltage V IN (V) TCR5SB50 Output voltage V OUT (V) CIN = 0.1 μF, COUT = 1 μF 0 1 4 6 2 3 5 150 mA 50 mA IOUT = 10 mA TCR5SB15 Output voltage V OUT (V) 1.4 1.5 1.6 VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF 0 60 100 200 Output current I OUT ( m A ) 20 40 80 120 140 160 180 Input voltage V IN (V) TCR5SB18 Output voltage V OUT (V) 0 1 4 6 1.5 0.5 2.5 CIN = 0.1 μF, COUT = 1 μF 2 3 5 150 mA 50 mA IOUT = 10 mA TCR5SB18 Output voltage V OUT (V) 1.7 1.8 1.9 VIN = 2.8 V, CIN = 0.1 μF, COUT = 1 μF 0 60 100 200 Output current I OUT ( m A ) 20 40 80 120 140 160 180
TCR5SB15~TCR5SB50 2007-11-01 9 3) Output Voltage vs. Ambient temperature TCR5SB30 Output voltage V OUT (V) 2.9 3.0 3.1 VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF 0 60 100 200 Output current I OUT ( m A ) 20 40 80 120 140 160 180 TCR5SB50 Output voltage V OUT (V) 4.9 5.0 5.1 VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF 0 60 100 200 Output current I OUT ( m A ) 20 40 80 120 140 160 180 −50 2.96 −25 0 25 75 50 2.98 3.0 3.02 3.04 VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA 100 TCR5SB30 Ambient temperature T a ( ° C ) Output Voltage V OUT (V) −50 1.48 −25 0 25 75 50 1.49 1.5 1.51 1.52 VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA 100 TCR5SB15 Ambient temperature T a ( ° C ) Output Voltage V OUT (V) −50 4.96 −25 0 25 75 50 4.98 5.0 5.02 5.04 VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA 100 TCR5SB50 Ambient temperature T a ( ° C ) Output Voltage V OUT (V) −50 1.78 −25 0 25 75 50 1.79 1.8 1.81 1.82 VIN = 2.8 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA 100 TCR5SB18 Ambient temperature T a ( ° C ) Output Voltage V OUT (V)
TCR5SB15~TCR5SB50 2007-11-01 10 4) Dropout Voltage vs. Output Current 5) Quiessrnt Current vs. InputVoltage TCR5SB30 400 Dropout voltage V IN - VOUT (mV) CIN = 0.1 μF, COUT = 1 μF, 100 200 300 0 40 100 200 Output current I OUT ( m A ) 80 180 120 140 160 60 20 25°C -40°C Ta = 85°C TCR5SB50 Dropout voltage V IN - VOUT (mV) CIN = 0.1 μF, COUT = 1 μF, 100 200 300 400 0 40 100 200 Output current I OUT ( m A ) 80 180 120 140 160 60 20 25°C -40°C Ta = 85°C TCR5SB50 Quiescent current I B ( μA) CIN = 0.1 μF, COUT = 1 μF 100 200 1 4 6 IOUT = 150 mA 2 3 5 Input voltage V IN (V) 0 mA 50 mA 250 150 TCR5SB30 Quiescent current I B ( μA) CIN = 0.1 μF, COUT = 1 μF 100 200 1 4 6 IOUT = 150 mA 2 3 5 Input voltage V IN (V) 0 mA 50 mA Quiescent current I B ( μA) TCR5SB15 CIN = 0.1 μF, COUT = 1 μF 120 1 4 6 IOUT = 150 mA 2 3 5 Input voltage V IN (V) 0 mA 50 mA 100 Quiescent current I B ( μA) TCR5SB18 CIN = 0.1 μF, COUT = 1 μF 120 1 4 6 IOUT = 150 mA 2 3 5 Input voltage VIN (V) 0 mA 50 mA 100
TCR5SB15~TCR5SB50 2007-11-01 11 6) Quiessrnt Current vs. Ambient temperature 7) Overcurrent Protection Characteristics Ambient temperature Ta (°C) TCR5SB30 −50 −25 0 25 100 75 50 100 200 VIN = 4 V, CIN = 0.1 μF, COUT = 1μF, IOUT = 150 mA 50 mA 0 mA Quiescent current I B ( μA) Ambient temperature Ta (°C) TCR5SB15 −50 −25 0 25 100 75 50 100 200 VIN = 2.5 V, CIN = 0.1 μF, COUT = 1μF, IOUT = 150 mA 50 mA 0 mA Quiescent current I B ( μA) Ambient temperature Ta (°C) TCR5SB50 −50 −25 0 25 100 75 50 100 200 VIN = 6 V, CIN = 0.1 μF, COUT = 1μF, IOUT = 150 mA 50 mA 0 mA Quiescent current I B ( μA) Output voltage V OUT (V) Pulse width = 1 ms 2.0 2.5 0 100 400 600 VIN = 2.8 V 200 300 500 Output current I OUT ( m A ) TCR5SB18 1.5 1.0 0.5 VIN = 5.0 V VIN = 6.0 V Ambient temperature Ta (°C) TCR5SB18 −50 −25 0 25 100 75 50 100 200 VIN = 2.8 V, CIN = 0.1 μF, COUT = 1μF, 50 mA 0 mA Quiescent current I B ( μA) IOUT = 150 mA
TCR5SB15~TCR5SB50 2007-11-01 12 8) Ripple rejection Raito vs. Frequency (Dependence of Output current) 9) Ripple rejection Ratio vs. Input Voltage 3.1 3.2 3.3 3.4 f = 1 kHz 3.5 TCR5SB30 Input voltage V IN (V) Ripple Rejection Ratio (dB) IOUT = 10 mA ,Vripple = 500 mVp−p CIN = none, COUT = 1μF Ta = 25°C f = 10 kHz f = 100 kHz 3.1 3.2 3.3 3.4 f = 1 kHz 3.5 TCR5SB30 Input voltage VIN (V) Ripple Rejection Ratio (dB) IOUT = 30 mA ,Vripple = 500 mVp−p CIN = none, COUT = 1μF Ta = 25°C f = 10 kHz f = 100 kHz 3.1 3.2 3.3 3.4 f = 1 kHz 3.5 TCR5SB30 Input voltage V IN (V) Ripple Rejection Ratio (dB) IOUT = 50 mA ,Vripple = 500 mVp−p CIN = none, COUT = 1μF Ta = 25°C f = 10 kHz f = 100 kHz TCR5SB30 Frequency f (Hz) Ripple Rejection Raito (dB) 10 100 1 k 10 k 100 k 300 k VIN = 4.0 V ,Vripple = 500 mVp−p CIN = none, COUT = 1μF Ta = 25°C IOUT = 150 mA IOUT = 50 mA IOUT = 30 mA IOUT = 10 mA
TCR5SB15~TCR5SB50 2007-11-01 13 10) Control Transient Response TCR5SB30 (Turn on wave form) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (ON) (1V/div) Output voltage VOUT (ON) (1V/div) Time t ( 100 μs/div ) TCR5SB30 (Turn off wave form) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (OFF) (1V/div) Output voltage VOUT (OFF) (1V/div) Time t ( 100 μs/div ) TCR5SB50 (Turn on wave form) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (ON) (1V/div) Output voltage VOUT (OFF) (2V/div) Time t ( 100 μs/div ) TCR5SB50 (Turn off wave form) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (OFF) (1V/div) Output voltage VOUT (OFF) (2V/div) Time t ( 100 μs/div ) TCR5SB15 (Turn on wave form) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (ON) (1V/div) Output voltage VOUT (ON) (1V/div) Time t ( 100 μs/div ) TCR5SB15 (Turn off wave form) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF IOUT = 50 mA Control voltage VCT (OFF) (1V/div) Output voltage VOUT (OFF) (1V/div) Time t ( 100 μs/div )
TCR5SB15~TCR5SB50 2007-11-01 14 11) Load Transient Response Output voltage ⊿ V OUT (50mV/div) Output current IOUT (20mA/div) TCR5SB30 (IOUT =1m to 30mA) Time t ( 10 μs/div ) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB30 (IOUT = 30m to 1mA) Output current IOUT (20mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 20 μs/div ) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB15 (IOUT = 50m to 100mA) Output voltage ⊿ V OUT (50mV/div) Output current IOUT (50mA/div) Time t ( 5 μs/div ) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB15 (IOUT = 100m to 50mA) Output current IOUT (50mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 5 μs/div ) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB15 (IOUT = 1m to 30mA) Output voltage ⊿ V OUT (50mV/div) Output current IOUT (20mA/div) Time t ( 5 μs/div ) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB15 (IOUT = 30m to 1mA) Output current IOUT (20mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 20 μs/div ) VIN = 2.5 V, CIN = 0.1 μF, COUT = 1 μF
TCR5SB15~TCR5SB50 2007-11-01 15 TCR5SB30 (IOUT = 50m to 100mA) Output voltage ⊿ V OUT (50mV/div) Output current IOUT (50mA/div) Time t ( 20 μs/div ) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB30 (IOUT = 100m to 50mA) Output current IOUT (50mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 20 μs/div ) VIN = 4 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB50 (IOUT =1m to 30mA) Time t ( 5 μs/div ) Output voltage ⊿ V OUT (50mV/div) Output current IOUT (20mA/div) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB50 (IOUT = 30m to 1mA) Output current IOUT (20mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 20 μs/div ) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB50 (IOUT = 50m to 100mA) Output voltage ⊿ V OUT (50mV/div) Output current IOUT (50mA/div) Time t ( 5 μs/div ) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF TCR5SB50 (IOUT = 100m to 50mA) Output current IOUT (50mA/div) Output voltage ⊿ V OUT (50mV/div) Time t ( 5 μs/div ) VIN = 6 V, CIN = 0.1 μF, COUT = 1 μF
TCR5SB15~TCR5SB50 2007-11-01 16 Package Dimensions Weight: 0.016 g (typ)
TCR5SB15~TCR5SB50 2007-11-01 17 RESTRICTIONS ON PRODUCT USE 20070701-EN GENERAL
- The information contained herein is subject to change without notice.
- TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity an d vulnerability to physical stress. It is the responsibility of the buyer, when utilizing TOSHIBA produc ts, 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 TOSHIB A products specifications. Also, please keep in mind the precautions and conditions set forth in the “Handling Guide for Semiconduct or Devices,” or “TOSHIBA Semiconductor Reliability Handbook” etc.
- The TOSHIBA products listed in this document are in tended 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 incl ude atomic energy control instruments, airplane or spaceship instruments, transportation instruments, traffic signal instruments, combustion control instruments, medical instruments, all types of safety devices, et c.. Unintended Usage of TOSHIBA products listed in his document shall be made at the customer’s own risk.
- The products described in this document shall not be used or embedded to any downstream products of which manufacture, use and/or sale are prohibited under any applicable laws and regulations.
- The information contained herein is presented only as a guide for the applications of our products. No responsibility is assumed by TOSHIBA for any infringement s of patents or other rights of the third parties which may result from its use. No license is granted by implic ation or otherwise under any patents or other rights of TOSHIBA or the third parties.
- Please contact your sales representative for product- by-product details in this document regarding RoHS compatibility. Please use these products in this document in compliance with all applicable laws and regulations that regulate the inclusion or use of controlled substances. Toshiba assumes no liability for damage or losses occurring as a result of noncompliance with applicable laws and regulations.