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S-1206B33-M3T1G

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S-1206B33-M3T1G

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Part Number S-1206B33-M3T1G
Manufacturer SII Semiconductor Corporation
Description IC REG LINEAR 250MA SOT23-3
Datasheet S-1206B33-M3T1G Datasheet
Package TO-236-3, SC-59, SOT-23-3
In Stock 73,266 piece(s)
Unit Price $ 0.3553 *
Lead Time Can Ship Immediately
Estimated Delivery Time Dec 2 - Dec 7 (Choose Expedited Shipping)
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Part Number # S-1206B33-M3T1G (PMIC - Voltage Regulators - Linear) is manufactured by SII Semiconductor Corporation and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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S-1206B33-M3T1G Specifications

ManufacturerSII Semiconductor Corporation
CategoryIntegrated Circuits (ICs) - PMIC - Voltage Regulators - Linear
Datasheet S-1206B33-M3T1GDatasheet
PackageTO-236-3, SC-59, SOT-23-3
Series-
Output Configuration-
Output Type-
Number of Regulators1
Voltage - Input (Max)-
Voltage - Output (Min/Fixed)-
Voltage - Output (Max)-
Voltage Dropout (Max)-
Current - Output250mA
Current - Quiescent (Iq)-
Current - Supply (Max)-
PSRR-
Control Features-
Protection Features-
Operating Temperature-40°C ~ 85°C
Mounting TypeSurface Mount
Package / CaseTO-236-3, SC-59, SOT-23-3
Supplier Device PackageSOT-23-3

S-1206B33-M3T1G Datasheet

Page 1

Page 2

S-1206 Series www.ablicinc.com ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR © ABLIC Inc., 2006-2015 Rev.3.2_02 1 The S-1206 Series is a positive voltage regulator with ultra low current consumption, low dropout voltage, high-accuracy output voltage, and 250 mA output current developed based on CMOS technology. I/O capacitors are as small as 0.1 F. S-1206 Series operates at ultra low current consumption of 1.0 A (typ.). The built-in low-on-resistance transistor realizes low dropout voltage and a large output current. A built-in overcurrent protection circuit prevents the load current from exceeding the current capacity of the output transistor. Three packages, SOT-23-3, SOT-89-3, and SNT-6A(H) are available. Compared with voltage regulators using a conventional CMOS technology, more types of capacitors, including small I/O capacitors, can be used with the S-1206 Series. The S-1206 Series features ultra low current consumption and comes in a small package, making them most suitable for portable equipment.  Features  Output voltage: 1.2 V to 5.2 V, selectable in 0.05 V step  Input voltage: 1.7 V to 6.5 V  Output voltage accuracy: 1.0% (1.2 V to 1.45 V output product: 15 mV)  Dropout voltage: 150 mV typ. (3.0 V output product, IOUT = 100 mA)  Current consumption: During operation: 1.0 A typ., 1.5 A max.  Output current: Possible to output 250 mA (3.0 V output product, VIN  VOUT(S)  1.0 V) *1  Input and output capacitors: A ceramic capacitor of 0.1 F or more can be used.  Built-in overcurrent protection circuit: Limits overcurrent of output transistor.  Operation temperature range: Ta = 40°C to 85°C  Lead-free, Sn 100%, halogen-free*2 *1. Attention should be paid to the power dissipation of the package when the output current is large. *2. Refer to “ Product Name Structure” for details.  Applications  Constant-voltage power supply for battery-powered device  Constant-voltage power supply for cellular phone  Constant-voltage power supply for portable equipment  Packages  SOT-23-3  SOT-89-3  SNT-6A(H) www.ablic.com

Page 3

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR S-1206 Series Rev.3.2_02 2  Block Diagram VIN VSS VOUT *1 Reference voltage circuit Overcurrent protection circuit   *1. Parasitic diode Figure 1

Page 4

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR Rev.3.2_02 S-1206 Series 3  Product Name Structure The output voltage value and package types for the S-1206 Series can be selected at the user’s request. Refer to “1. Product Name” regarding the contents of product name, “2. Packages” regarding the package drawings and “3. Product Name List” regarding details of the product name. 1. Product Name 1. 1 SOT-23-3, SOT-89-3 S-1206 B xx - xxxx x Environmental code U : Lead-free (Sn 100%), halogen-free G : Lead-free (for details, please contact our sales office) Package name (abbreviation) and packing specifications*1 M3T1 : SOT-23-3, Tape U3T1 : SOT-89-3, Tape Output voltage value 12 to 52 (e.g. When output voltage is 1.2 V, it is expressed as 12.) *1. Refer to the tape drawing. 1. 2 SNT-6A(H) S-1206 B xx - I6T2 U Environmental code U : Lead-free (Sn 100%), halogen-free Package name (abbreviation) and packing specifications*1 I6T2 : SNT-6A(H), Tape Output voltage value 12 to 52 (e.g. When output voltage is 1.2 V, it is expressed as 12.) *1. Refer to the tape drawing. 2. Packages Package Name Drawing Code Package Tape Reel Land SOT-23-3 MP003-C-P-SD MP003-C-C-SD MP003-Z-R-SD  SOT-89-3 UP003-A-P-SD UP003-A-C-SD UP003-A-R-SD  SNT-6A(H) PI006-A-P-SD PI006-A-C-SD PI006-A-R-SD PI006-A-L-SD

Page 5

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR S-1206 Series Rev.3.2_02 4 3. Product Name List Table 1 Output Voltage SOT-23-3 SOT-89-3 SNT-6A(H) 1.2 V 15 mV S-1206B12-M3T1x S-1206B12-U3T1x S-1206B12-I6T2U 1.3 V 15 mV S-1206B13-M3T1x S-1206B13-U3T1x S-1206B13-I6T2U 1.4 V 15 mV S-1206B14-M3T1x S-1206B14-U3T1x S-1206B14-I6T2U 1.5 V 1.0% S-1206B15-M3T1x S-1206B15-U3T1x S-1206B15-I6T2U 1.6 V 1.0% S-1206B16-M3T1x S-1206B16-U3T1x S-1206B16-I6T2U 1.7 V 1.0% S-1206B17-M3T1x S-1206B17-U3T1x S-1206B17-I6T2U 1.8 V 1.0% S-1206B18-M3T1x S-1206B18-U3T1x S-1206B18-I6T2U 1.85 V 1.0% S-1206B1J-M3T1x S-1206B1J-U3T1x S-1206B1J-I6T2U 1.9 V 1.0% S-1206B19-M3T1x S-1206B19-U3T1x S-1206B19-I6T2U 2.0 V 1.0% S-1206B20-M3T1x S-1206B20-U3T1x S-1206B20-I6T2U 2.1 V 1.0% S-1206B21-M3T1x S-1206B21-U3T1x S-1206B21-I6T2U 2.2 V 1.0% S-1206B22-M3T1x S-1206B22-U3T1x S-1206B22-I6T2U 2.3 V 1.0% S-1206B23-M3T1x S-1206B23-U3T1x S-1206B23-I6T2U 2.4 V 1.0% S-1206B24-M3T1x S-1206B24-U3T1x S-1206B24-I6T2U 2.5 V 1.0% S-1206B25-M3T1x S-1206B25-U3T1x S-1206B25-I6T2U 2.6 V 1.0% S-1206B26-M3T1x S-1206B26-U3T1x S-1206B26-I6T2U 2.7 V 1.0% S-1206B27-M3T1x S-1206B27-U3T1x S-1206B27-I6T2U 2.8 V 1.0% S-1206B28-M3T1x S-1206B28-U3T1x S-1206B28-I6T2U 2.85 V 1.0% S-1206B2J-M3T1x S-1206B2J-U3T1x S-1206B2J-I6T2U 2.9 V 1.0% S-1206B29-M3T1x S-1206B29-U3T1x S-1206B29-I6T2U 3.0 V 1.0% S-1206B30-M3T1x S-1206B30-U3T1x S-1206B30-I6T2U 3.1 V 1.0% S-1206B31-M3T1x S-1206B31-U3T1x S-1206B31-I6T2U 3.2 V 1.0% S-1206B32-M3T1x S-1206B32-U3T1x S-1206B32-I6T2U 3.3 V 1.0% S-1206B33-M3T1x S-1206B33-U3T1x S-1206B33-I6T2U 3.4 V 1.0% S-1206B34-M3T1x S-1206B34-U3T1x S-1206B34-I6T2U 3.5 V 1.0% S-1206B35-M3T1x S-1206B35-U3T1x S-1206B35-I6T2U 3.6 V 1.0% S-1206B36-M3T1x S-1206B36-U3T1x S-1206B36-I6T2U 3.7 V 1.0% S-1206B37-M3T1x S-1206B37-U3T1x S-1206B37-I6T2U 3.8 V 1.0% S-1206B38-M3T1x S-1206B38-U3T1x S-1206B38-I6T2U 3.9 V 1.0% S-1206B39-M3T1x S-1206B39-U3T1x S-1206B39-I6T2U 4.0 V 1.0% S-1206B40-M3T1x S-1206B40-U3T1x S-1206B40-I6T2U 4.1 V 1.0% S-1206B41-M3T1x S-1206B41-U3T1x S-1206B41-I6T2U 4.2 V 1.0% S-1206B42-M3T1x S-1206B42-U3T1x S-1206B42-I6T2U 4.3 V 1.0% S-1206B43-M3T1x S-1206B43-U3T1x S-1206B43-I6T2U 4.4 V 1.0% S-1206B44-M3T1x S-1206B44-U3T1x S-1206B44-I6T2U 4.5 V 1.0% S-1206B45-M3T1x S-1206B45-U3T1x S-1206B45-I6T2U 4.6 V 1.0% S-1206B46-M3T1x S-1206B46-U3T1x S-1206B46-I6T2U 4.7 V 1.0% S-1206B47-M3T1x S-1206B47-U3T1x S-1206B47-I6T2U 4.8 V 1.0% S-1206B48-M3T1x S-1206B48-U3T1x S-1206B48-I6T2U 4.9 V 1.0% S-1206B49-M3T1x S-1206B49-U3T1x S-1206B49-I6T2U 5.0 V 1.0% S-1206B50-M3T1x S-1206B50-U3T1x S-1206B50-I6T2U 5.1 V 1.0% S-1206B51-M3T1x S-1206B51-U3T1x S-1206B51-I6T2U 5.2 V 1.0% S-1206B52-M3T1x S-1206B52-U3T1x S-1206B52-I6T2U Remark 1. Please contact our sales office for products with output voltage values other than the above. 2. x: G or U 3. Please select products of environmental code = U for Sn 100%, halogen-free products.

Page 6

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR Rev.3.2_02 S-1206 Series 5  Pin Configurations 1 2 3 SOT-23-3 Top view Figure 2 Table 2 Pin No. Symbol Description 1 VIN Input voltage pin 2 VSS GND pin 3 VOUT Output voltage pin SOT-89-3 Top view 3 2 1 Figure 3 Table 3 Pin No. Symbol Description 1 VSS GND pin 2 VIN Input voltage pin 3 VOUT Output voltage pin SNT-6A(H) Top view 1 2 3 4 6 5 Figure 4 Table 4 Pin No. Symbol Description 1 VOUT Output voltage pin 2 VIN Input voltage pin 3 VSS GND pin 4 NC*1 No connection 5 VIN Input voltage pin 6 NC*1 No connection *1. The NC pin is electrically open. The NC pin can be connected to VIN or VSS.

Page 7

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR S-1206 Series Rev.3.2_02 6  Absolute Maximum Ratings Table 5 (Ta = 25C unless otherwise specified) Item Symbol Absolute Maximum Rating Unit Input voltage VIN VSS  0.3 to VSS  7 V Output voltage VOUT VSS  0.3 to VIN  0.3 V Power dissipation SOT-23-3 PD 430*1 mW SOT-89-3 1000*1 mW SNT-6A(H) 500*1 mW Operation ambient temperature Topr 40 to 85 C Storage temperature Tstg 40 to 125 C *1. When mounted on board [Mounted board] (1) Board size : 114.3 mm  76.2 mm  t1.6 mm (2) Board name : JEDEC STANDARD51-7 Caution The absolute maximum ratings are rated values exceeding which the product could suffer physical damage. These values must therefore not be exceeded under any conditions. 0 50 100 150 1200 800 0 P ow er D is si pa tio n (P D ) [m W ] Ambient Temperature (Ta) [C] SOT-89-3 400 1000 600 200 SNT-6A(H) SOT-23-3 Figure 5 Power Dissipation of Package (When Mounted on Board)

Page 8

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR Rev.3.2_02 S-1206 Series 7  Electrical Characteristics Table 6 (Ta = 25C unless otherwise specified) Item Symbol Conditions Min. Typ. Max. Unit Test Circuit Output voltage*1 VOUT(E) VIN = VOUT(S)  1.0 V, IOUT = 30 mA, 1.2 V  VOUT(S) < 1.5 V VOUT(S) 15 mV VOUT(S) VOUT(S) 15 mV V 1 VIN = VOUT(S)  1.0 V, IOUT = 30 mA, 1.5 V  VOUT(S) VOUT(S)  0.99 VOUT(S) VOUT(S)  1.01 V 1 Output current*2 IOUT VIN  VOUT(S)  1.0 V, 1.2 V  VOUT(S) < 1.5 V 150 *5   mA 3 VIN  VOUT(S)  1.0 V, 1.5 V  VOUT(S) 250 *5   mA 3 Dropout voltage*3 Vdrop IOUT = 100 mA 1.2 V  VOUT(S) < 1.3 V 0.5 0.54 0.81 V 1 1.3 V  VOUT(S) < 1.4 V  0.50 0.73 V 1 1.4 V  VOUT(S) < 1.5 V  0.43 0.66 V 1 1.5 V  VOUT(S) < 1.7 V  0.35 0.53 V 1 1.7 V  VOUT(S) < 1.9 V  0.33 0.50 V 1 1.9 V  VOUT(S) < 2.1 V  0.26 0.43 V 1 2.1 V  VOUT(S) < 3.0 V  0.23 0.36 V 1 3.0 V  VOUT(S)  5.2 V  0.15 0.23 V 1 Line regulation OUTIN 1OUT VV V   VOUT(S)  0.5 V  VIN  6.5 V IOUT = 1 A  0.05 0.2 %/V 1 IOUT = 30 mA  0.05 0.2 %/V 1 Load regulation VOUT2 VIN = VOUT(S)  1.0 V, 1 A  IOUT  100 mA  20 40 mV 1 Output voltage temperature coefficient*4 OUT OUT VTa V   VIN = VOUT(S)  1.0 V, IOUT = 30 mA, 40°C  Ta  85°C  120  ppm/C 1 Current consumption during operation ISS1 VIN = VOUT(S)  1.0 V, no load  1.0 1.5 A 2 Input voltage VIN  1.7  6.5 V  Short-circuit current ISHORT VIN = VOUT(S)  1.0 V, VOUT = 0 V 1.2 V  VOUT < 2.3 V  130  mA 3 2.3 V  VOUT  5.2 V  100  mA 3 *1. VOUT(S) : Set output voltage VOUT(E) : Actual output voltage Output voltage when fixing IOUT (= 30 mA) and inputting VOUT(S)  1.0 V *2. The output current at which the output voltage becomes 95% of VOUT(E) after gradually increasing the output current. *3. Vdrop = VIN1  (VOUT3  0.98) VOUT3 is the output voltage when VIN = VOUT(S)  1.0 V and IOUT = 100 mA. VIN1 is the input voltage at which the output voltage becomes 98% of VOUT3 after gradually decreasing the input voltage. *4. A change in the temperature of the output voltage [mV/°C] is calculated using the following equation. VOUT Ta [ ]mV/°C *1 = VOUT(S) [ ]V *2  VOUT Ta  VOUT [ ]ppm/°C *3  1000 *1. Change in temperature of output voltage *2. Set output voltage *3. Output voltage temperature coefficient *5. The output current can be at least this value. Due to restrictions on the package power dissipation, this value may not be satisfied. Attention should be paid to the power dissipation of the package when the output current is large. This specification is guaranteed by design.

Page 9

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR S-1206 Series Rev.3.2_02 8  Test Circuits 1.  VOUTVIN VSS  V A Figure 6 2. VOUTVIN VSS A  Figure 7 3. VOUTVIN VSS  V  A Figure 8

Page 10

ULTRA LOW CURRENT CONSUMPTION AND LOW DROPOUT CMOS VOLTAGE REGULATOR Rev.3.2_02 S-1206 Series 9  Standard Circuit CIN *1 CL *2 Input Output GNDSingle GND VOUTVIN VSS *1. A capacitor for stabilizing the input. *2. A ceramic capacitor of 0.1 F or more can be used. Figure 9 Caution The above connection diagram and constant will not guarantee successful operation. Perform thorough evaluation using the actual application to set the constant.  Condition of Application Input capacitor (CIN): 0.1 F or more Output capacitor (CL): 0.1 F or more Caution Generally a series regulator may cause oscillation, depending on the selection of external parts. Confirm that no oscillation occurs in the application for which the above capacitors are used.  Selection of Input and Output Capacitors (CIN, CL) The S-1206 Series requires an output capacitor between the VOUT pin and VSS pin for phase compensation. Operation is stabilized by a ceramic capacitor with an output capacitance of 0.1 F or more in the entire temperature range. When using an OS capacitor, a tantalum capacitor, or an aluminum electrolytic capacitor, the capacitance must be 0.1 F or more. The value of the output overshoot or undershoot transient response varies depending on the value of the output capacitor. The required capacitance of the input capacitor differs depending on the application. The recommended value for an application is CIN  0.1 F, CL  0.1 F; however, when selecting these capacitors, perform sufficient evaluation, including evaluation of temperature characteristics, on the actual device.

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November 21, 2020

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November 15, 2020

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November 14, 2020

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November 6, 2020

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November 3, 2020

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October 31, 2020

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