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www.sii-ic.com HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR © SII Semiconductor Corporation, 2003-2015 Rev.5.1_01 The S-1200 Series, developed by using CMOS technology, is a positive voltage regulator with a low dropout voltage, high accuracy output voltage. A 0.1 μF small ceramic capacitor can be used. It operates with low current consumption of 18 μA typ. The built-in output current protection circuit prevents the load current from exceeding the current capacity of the output transistor. Compared with the voltage regulators using the convent ional CMOS technology, small ceramic capacitors are also available. Furthermore, the small HSNT-6A package realizes high-density mounting.  Features

  • Output voltage: 1.5 V to 5.5 V, selectable in 0.1 V step
  • Input voltage: 2.0 V to 10.0 V
  • Output voltage accuracy: ±1.0%
  • Dropout voltage: 140 mV typ. (3.0 V output product, I OUT = 100 mA)
  • Current consumption: During operation: 18 μA typ., 40 μA max. During power-off: 0.01 μA typ., 1.0 μA max.
  • Output current: Possible to output 150 mA (V IN ≥ VOUT(S) + 1.0 V)*1
  • Input and output capacitors: A ceramic capacitor of 0.1 μF or more can be used.
  • Ripple rejection: 70 dB typ. (f = 1.0 kHz, 1.5 V ≤ VOUT ≤ 3.0 V) 65 dB typ. (f = 1.0 kHz, 3.1 V ≤ VOUT ≤ 5.5 V)
  • Built-in overcurrent protection circuit: Limits overcurrent of output transistor.
  • Built-in ON/OFF circuit: Ensures long battery life.
  • 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
  • Power supply for battery-powered device
  • Power supply for personal communication device
  • Power supply for home electric/electronic appliance
  • Power supply for cellular phone  Packages
  • SNT-6A(H)
  • SOT-23-5
  • HSNT-6A

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01  Block Diagram VIN VSS VOUT Overcurrent protection circuit Reference voltage circuit ON/OFF *1. Parasitic diode ON/OFF circuit Figure 1

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  Product Name Structure Users can select the product type, output voltage, and package type for the S-1200 Series. Refer to "1. Product name " regarding the contents of product name, " 2. Packages " regarding the package drawings, "3. Product name list " regarding details of the product name. 1. Product name 1. 1 SNT-6A(H) S - 1 2 0 0 x x x - I 6 T 2 U Environmental code U : Lead-free (Sn 100%), halogen-free Package abbreviation and packing specifications *1 I6T2 : SNT-6A(H), Tape Output voltage 15 to 55 (e.g. When output voltage is 1.5 V, it is expressed as 15.) Product type *2 A : ON/OFF pin negative logic B : ON/OFF pin positive logic *1. Refer to the tape drawing. *2. Refer to “3. ON/OFF pin ” in “ Operation”. 1. 2 SOT-23-5 S - 1 2 0 0 x x x - M 5 T 1 x Environmental code U : Lead-free (Sn 100%), halogen-free G : Lead-free (for details, please contact our sales office) Package abbreviation and packing specifications *1 M5T1 : SOT-23-5, Tape Output voltage 15 to 55 (e.g. When output voltage is 1.5 V, it is expressed as 15.) Product type *2 A : ON/OFF pin negative logic B : ON/OFF pin positive logic

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01 1. 3 HSNT-6A S - 1 2 0 0 x x x - A 6 T 1 U Environmental code U : Lead-free (Sn 100%), halogen-free Package abbreviation and packing specifications *1 A6T1 : HSNT-6A, Tape Output voltage 15 to 55 (e.g. When output voltage is 1.5 V, it is expressed as 15.) Product type *2 A : ON/OFF pin negative logic B : ON/OFF pin positive logic *1. Refer to the tape drawing. *2. Refer to “3. ON/OFF pin ” in “ Operation”. 2. Packages Package Name Drawing Code Package Tape Reel Land Stencil Opening SNT-6A(H) PI006-A-P-SD PI006-A-C- SD PI006-A-R-SD PI006-A-L-SD ⎯ SOT-23-5 MP005-A-P-SD MP 005-A-C-SD MP005-A-R-SD ⎯ ⎯ HSNT-6A PJ006-A-P-SD PJ006- A-C-SD PJ006-A-R-SD PJ 006-A-LM-SD PJ006-A-LM-SD

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series 3. Product name list Table 1 Output Voltage SNT-6A(H) SOT-23-5 HSNT-6A 1.5 V ±1.0% S-1200B15-I6T2U S-1200B15-M5T1x S-1200B15-A6T1U 1.6 V ±1.0% S-1200B16-I6T2U S-1200B16-M5T1x S-1200B16-A6T1U 1.7 V ±1.0% S-1200B17-I6T2U S-1200B17-M5T1x S-1200B17-A6T1U 1.8 V ±1.0% S-1200B18-I6T2U S-1200B18-M5T1x S-1200B18-A6T1U 1.9 V ±1.0% S-1200B19-I6T2U S-1200B19-M5T1x S-1200B19-A6T1U 2.0 V ±1.0% S-1200B20-I6T2U S-1200B20-M5T1x S-1200B20-A6T1U 2.1 V ±1.0% S-1200B21-I6T2U S-1200B21-M5T1x S-1200B21-A6T1U 2.2 V ±1.0% S-1200B22-I6T2U S-1200B22-M5T1x S-1200B22-A6T1U 2.3 V ±1.0% S-1200B23-I6T2U S-1200B23-M5T1x S-1200B23-A6T1U 2.4 V ±1.0% S-1200B24-I6T2U S-1200B24-M5T1x S-1200B24-A6T1U 2.5 V ±1.0% S-1200B25-I6T2U S-1200B25-M5T1x S-1200B25-A6T1U 2.6 V ±1.0% S-1200B26-I6T2U S-1200B26-M5T1x S-1200B26-A6T1U 2.7 V ±1.0% S-1200B27-I6T2U S-1200B27-M5T1x S-1200B27-A6T1U 2.8 V ±1.0% S-1200B28-I6T2U S-1200B28-M5T1x S-1200B28-A6T1U 2.9 V ±1.0% S-1200B29-I6T2U S-1200B29-M5T1x S-1200B29-A6T1U 3.0 V ±1.0% S-1200B30-I6T2U S-1200B30-M5T1x S-1200B30-A6T1U 3.1 V ±1.0% S-1200B31-I6T2U S-1200B31-M5T1x S-1200B31-A6T1U 3.2 V ±1.0% S-1200B32-I6T2U S-1200B32-M5T1x S-1200B32-A6T1U 3.3 V ±1.0% S-1200B33-I6T2U S-1200B33-M5T1x S-1200B33-A6T1U 3.4 V ±1.0% S-1200B34-I6T2U S-1200B34-M5T1x S-1200B34-A6T1U 3.5 V ±1.0% S-1200B35-I6T2U S-1200B35-M5T1x S-1200B35-A6T1U 3.6 V ±1.0% S-1200B36-I6T2U S-1200B36-M5T1x S-1200B36-A6T1U 3.7 V ±1.0% S-1200B37-I6T2U S-1200B37-M5T1x S-1200B37-A6T1U 3.8 V ±1.0% S-1200B38-I6T2U S-1200B38-M5T1x S-1200B38-A6T1U 3.9 V ±1.0% S-1200B39-I6T2U S-1200B39-M5T1x S-1200B39-A6T1U 4.0 V ±1.0% S-1200B40-I6T2U S-1200B40-M5T1x S-1200B40-A6T1U 4.1 V ±1.0% S-1200B41-I6T2U S-1200B41-M5T1x S-1200B41-A6T1U 4.2 V ±1.0% S-1200B42-I6T2U S-1200B42-M5T1x S-1200B42-A6T1U 4.3 V ±1.0% S-1200B43-I6T2U S-1200B43-M5T1x S-1200B43-A6T1U 4.4 V ±1.0% S-1200B44-I6T2U S-1200B44-M5T1x S-1200B44-A6T1U 4.5 V ±1.0% S-1200B45-I6T2U S-1200B45-M5T1x S-1200B45-A6T1U 4.6 V ±1.0% S-1200B46-I6T2U S-1200B46-M5T1x S-1200B46-A6T1U 4.7 V ±1.0% S-1200B47-I6T2U S-1200B47-M5T1x S-1200B47-A6T1U 4.8 V ±1.0% S-1200B48-I6T2U S-1200B48-M5T1x S-1200B48-A6T1U 4.9 V ±1.0% S-1200B49-I6T2U S-1200B49-M5T1x S-1200B49-A6T1U 5.0 V ±1.0% S-1200B50-I6T2U S-1200B50-M5T1x S-1200B50-A6T1U 5.1 V ±1.0% S-1200B51-I6T2U S-1200B51-M5T1x S-1200B51-A6T1U 5.2 V ±1.0% S-1200B52-I6T2U S-1200B52-M5T1x S-1200B52-A6T1U 5.3 V ±1.0% S-1200B53-I6T2U S-1200B53-M5T1x S-1200B53-A6T1U 5.4 V ±1.0% S-1200B54-I6T2U S-1200B54-M5T1x S-1200B54-A6T1U 5.5 V ±1.0% S-1200B55-I6T2U S-1200B55-M5T1x S-1200B55-A6T1U Remark 1. Please contact our sales office for produc ts with an output voltage other than those specified above or type A products. 2. x: G or U 3. Please select products of environmental code = U for Sn 100%, halogen-free products.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01  Pin Configurations SNT-6A(H) Top view 3 4 Figure 2 Table 2 Pin No. Symbol Pin Description

1 VOUT Output voltage pin

2 VSS GND pin

3 NC *1 No connection

4 ON/OFF ON/OFF pin

5 VSS GND pin

6 VIN Input voltage pin

*1. The NC pin is electrically open. The NC pin can be connected to the VIN pin or the VSS pin. 5 4 1 3 2 SOT-23-5 Top view Figure 3 Table 3 Pin No. Symbol Description

1 VIN Input voltage pin

3 ON/OFF ON/OFF pin

4 NC *1 No connection

5 VOUT Output voltage pin

*1. The NC pin is electrically open. The NC pin can be connected to the VIN pin or the VSS pin. HSNT-6A Top view 3 4 3 4 Bottom view *1. Connect the heatsink of backside at shadowed area to the board, and set electric potential open or GND. However, do not use it as the function of electrode. Figure 4 Table 4 Pin No. Symbol Description

2 NC *1 No connection

3 VSS GND pin

5 NC *1 No connection

*1. The NC pin is electrically open. The NC pin can be connected to the VIN pin or the VSS pin.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  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 + 12 V VON/OFF VSS − 0.3 to VIN + 0.3 V Output voltage V OUT VSS − 0.3 to VIN + 0.3 V Power dissipation SNT-6A(H) PD 500*1 mW SOT-23-5 300 (When not mounted on board) mW 600*1 mW HSNT-6A 1000 2 mW Operation ambient temperature T opr −40 to + 85 °C Storage temperature T stg −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 *2. When mounted on board [Mounted board] (1) Board size : 50 mm × 50 mm × t1.6 mm (2) Wiring ratio : 50% 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 1500 Power Dissipation (PD) [mW] Ambient Temperature (Ta) [°C] 400 200 600 1000 800 1200 SNT-6A(H) HSNT-6A SOT-23-5 Figure 5 Power Dissipation of The Package (When Mounted on Board)

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01  Electrical Characteristics Table 6 (Ta = +25°C unless otherwise specified) Item Symbol Conditions Min. Typ. Max. Unit Test Circuit Output voltage*1 VOUT(E) V IN = VOUT(S) + 1.0 V, IOUT = 30 mA VOUT(S) × 0.99 VOUT(S) VOUT(S) × 1.01 V 1 Output current*2 IOUT V IN ≥ VOUT(S) + 1.0 V 150*5 ⎯ ⎯ mA 3 2.0 V ≤ VOUT(S) ≤ 2.4 V ⎯ 0.08 0.12 V 1 2.5 V ≤ VOUT(S) ≤ 2.9 V ⎯ 0.06 0.08 V 1 3.0 V ≤ VOUT(S) ≤ 3.2 V ⎯ 0.05 0.07 V 1 3.3 V ≤ VOUT(S) ≤ 5.5 V ⎯ 0.04 0.06 V 1 2.0 V ≤ VOUT(S) ≤ 2.4 V ⎯ 0.24 0.31 V 1 2.5 V ≤ VOUT(S) ≤ 2.9 V ⎯ 0.16 0.23 V 1 3.0 V ≤ VOUT(S) ≤ 3.2 V ⎯ 0.14 0.21 V 1 3.3 V ≤ VOUT(S) ≤ 5.5 V ⎯ 0.13 0.19 V 1 Line regulation OUTIN OUT1 VV V Δ VOUT(S) + 0.5 V ≤ VIN ≤ 10 V, IOUT = 30 mA ⎯ 0.01 0.2 % / V 1 Load regulation ΔVOUT2 VIN = VOUT(S) + 1.0 V, 1.0 mA ≤ IOUT ≤ 80 mA ⎯ 15 50 mV 1 Output voltage temperature coefficient*4 OUT OUT VTa V Δ VIN = VOUT(S) + 1.0 V, IOUT = 30 mA, °C 1 Current consumption during operation ISS1 VIN = VOUT(S) + 1.0 V, ON/OFF pin = ON, no load ⎯ 18 40 μA 2 Current consumption during power-off ISS2 VIN = VOUT(S) + 1.0 V, ON/OFF pin = OFF, no load ⎯ 0.01 1.0 μA 2 Input voltage V IN ⎯ 2.0 ⎯ 10 V ⎯ ON/OFF pin input voltage “H” VSH V IN = VOUT(S) + 1.0 V, RL = 1.0 kΩ 1.5 ⎯ ⎯ V 4 ON/OFF pin input voltage “L” VSL V IN = VOUT(S) + 1.0 V, RL = 1.0 kΩ ⎯ ⎯ 0.25 V 4 ON/OFF pin input current “H” ISH V IN = 6.5 V, VON/OFF = 6.5 V −0.1 ⎯ 0.1 μA 4 ON/OFF pin input current “L” ISL V IN = 6.5 V, VON/OFF = 0 V −0.1 ⎯ 0.1 μA 4 Ripple rejection RR VIN = VOUT(S) + 1.0 V, f = 1.0 kHz, 1.5 V ≤ VOUT(S) ≤ 3.0 V ⎯ 70 ⎯ dB 5 ΔVrip = 0.5 Vrms, IOUT = 50 mA 3.1 V ≤ VOUT(S) ≤ 5.5 V ⎯ 65 ⎯ dB 5 Short-circuit current I short VIN = VOUT(S) + 1.0 V, ON/OFF pin = ON, VOUT = 0 V ⎯ 250 ⎯ mA 3

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series *1. VOUT(S): Set output voltage VOUT(E): Actual output voltage Output voltage when fixing I OUT(= 30 mA) and inputting VOUT(S) + 1.0 V *2. The output current at which t he output voltage becomes 95% of V OUT(E) after gradually increasing the output current. *3. Vdrop = VIN1 − (VOUT3 × 0.98) V OUT3 is the output voltage when VIN = VOUT(S) + 1.0 V and IOUT = 30 mA or 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. ΔVOUT ΔTa []mV/°C *1 = VOUT(S) []V *2 × ΔVOUT ΔTa • 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.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  Standard Circuit ON/OFF VSS VOUTVIN CIN *1 CL Input Output GNDSingle GND *1. CIN is a capacitor for stabilizing the input. *2. A ceramic capacitor of 0.1 μF or more can be used for CL. Figure 11 Caution The above connection diagram and c onstant will not guarantee successful operation. Perform thorough evaluation using the actual application to set the constant.  Condition of Application Input capacitor (CIN): 0.1 μF or more Output capacitor (CL): 0.1 μF or more ESR of output capacitor: 1.0 Ω or less Caution Generally a series regulator may cause o scillation, depending on the selection of external parts. Check that no oscillation occurs with the application using the above capacitor.  Selection of Input and Output Capacitors (CIN, CL) The S-1200 Series requires an output capacitor between the VOUT pin and the VSS pin for phase compensation. Operation is stabilized by a ceramic capacitor with an output capacitance of 0.1 μF 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 μF or more, and the ESR must be 1.0 Ω or less. The value of the output overshoot or undershoot tr ansient 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 C IN ≥ 0.1 μF, CL ≥ 0.1 μF; however, when selecting the output capacitor, perform sufficient evaluati on, including evaluation of temperatur e characteristics, on the actual device.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01  Explanation of Terms 1. Low dropout voltage regulator This voltage regulator has the low dropout voltage due to its built-in low on-resistance transistor. 2. Low ESR A capacitor whose ESR (Equivalent Series Resistanc e) is low. The S-1200 Series enables use of a low ESR capacitor, such as a ceramic capacitor, for the output capacitor (CL). A capacitor whose ESR is 1.0 Ω or less can be used. 3. Output voltage (V OUT) The accuracy of the out put voltage is ensured at ±1.0% under the specified c onditions of fixed input voltage*1, fixed output current, and fixed temperature. *1. Differs depending on the product. Caution If the above conditions change, the output voltage value may vary and exceed the accuracy range of the output voltage. Refer to “ Electrical Characteristics ” and “ Characteristics (Typical Data)” for details. 4. Line regulation 

  • OUTIN OUT1 V∆V Indicates the dependency of the output voltage on the input voltage. That is, the values show how much the output voltage changes due to a change in the i nput voltage with the output current remaining unchanged. 5. Load regulation ( ΔVOUT2) Indicates the dependency of the output voltage on the output current. That is, the values show how much the output voltage changes due to a change in the output current with the input voltage remaining unchanged. 6. Dropout voltage (V drop) Indicates the difference between input voltage (V IN1) and the output voltage when; decreasing input voltage (VIN) gradually until the output voltage has dropped out to the value of 98% of output voltage (VOUT3), which is at VIN = VOUT(S) + 1.0 V. Vdrop = VIN1 − (VOUT3 × 0.98)

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series 7. Output voltage temperature coefficient 

  • OUT OUT V∆Ta The shaded area in Figure 12 is the range where V OUT varies in the operation temperature range when the output voltage temperature coefficient is ±100 ppm/°C. VOUT(E) Example of S-1200B28 typ. product −40 +25 +0.28 mV/°C VOUT [V] *1. V OUT(E) is the value of the output voltage measured at Ta = +25°C. +85 Ta [°C] −0.28 mV/°C Figure 12 A change in the temperature of the output voltage [mV/°C] is calculated using the following equation. ΔVOUT ΔTa []mV/°C *1 = VOUT(S) []V *2 × ΔVOUT ΔTa • VOUT []ppm/°C *3 ÷ 1000 *1. Change in temperature of output voltage *2. Set output voltage *3. Output voltage temperature coefficient

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series 3. ON/OFF pin This pin starts and stops the regulator. When the ON/OFF pin is set to OFF level, the entire internal circuit stops operating, and the built-in P-channel MOS FET output transistor between the VI N pin and the VOUT pin is turned off, reducing current consumption significantly . The VOUT pin becomes the V SS level due to the internally divided resistance of several hundreds kΩ between the VOUT pin and the VSS pin. The structure of the ON/OFF pin is as shown in Figure 14. Since the ON/OFF pin is neither pulled down nor pulled up internally, do not use it in the floating status. In addition, note that the current consumption increases if a voltage of 0.3 V to V IN – 0.3 V is applied to the ON/OFF pin. When not using the ON/OFF pin, connect it to the VSS pin in the product A type, and connect it to the VIN pin in B type. Table 7 Product Type ON/OFF Pin Internal Circuit VOUT Pin Voltage Current Consumption A “L”: ON Operate Set value I SS1 A “H”: OFF Stop V SS level I SS2 B “L”: OFF Stop V SS level I SS2 B “H”: ON Operate Set value I SS1 VSS ON/OFF VIN Figure 14

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01  Precautions

  • Wiring patterns for the VIN pin, the VOUT pi n and GND should be designed so that the impedance is low. When mounting an output capacitor between the VOUT pin and the VSS pin (C L) and a capacitor for stabilizing the input betw een the VIN pin and the VSS pin (C IN), the distance from the capacitors to these pins should be as short as possible.
  • Note that generally the output voltage may increase w hen a series regulator is used at low load current (1.0 mA or less).
  • Note that generally the output voltage may increas e due to the leakage current from an output driver when a series regulator is used at high temperature.
  • Generally a series regulator may cause oscillati on, depending on the selection of external parts. The following conditions are recommended for the S-1200 Series. However, be sure to perform sufficient evaluation under the actual usage conditions for se lection, including evaluation of temperature characteristics. Input capacitor (C IN): 0.1 μF or more Output capacitor (C L): 0.1 μF or more Equivalent series resistance (ESR): 1.0 Ω or less
  • The voltage regulator may oscillate when the im pedance of the power supply is high and the input capacitance is small or an input capacitor is not connected.
  • If the output capacitance is small, power supply's fl uctuation and the characteri stics of load fluctuation become worse. Sufficiently evaluate the output voltage's fluctuation with the actual device.
  • Overshoot may occur in the output voltage momentarily if the voltage is rapidly raised at power-on or when the power supply fluctuates. Sufficiently evaluat e the output voltage at power-on with the actual device.
  • The application conditions for the input voltage, the output voltage, and the load current should not exceed the package power dissipation.
  • Do not apply an electrostatic discharge to this IC that exceeds the performanc e ratings of the built-in electrostatic protection circuit.
  • In determining the output current, attention should be paid to the output current value specified in Table 6 in “ Electrical Characteristics” and footnote *5 of the table.
  • SII Semiconductor Corporation claims no responsibility for any disputes arising out of or in connection with any infringement by products including this IC of patents owned by a third party.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  Characteristics (Typical Data) 1. Output Voltage vs. Output Current (When load current increases) VOUT [V] 0 100 200 300 400 500 1.8 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 2.0 V 1.8 V VIN = 10 V 3.0 V 2.5 V VOUT [V] 200 300 400 500 1000 600 VIN = 10 V 5.0 V 4.0 V 3.5 V 3.3 V 3.5 3.0 2.5 2.0 1.5 1.0 0.5 IOUT [mA] IOUT [mA] VOUT [V] 200 300 400 100 0 500 VIN = 5.3 V 5.5 V 6.0 V 10 V 7.0 V 600 Remark In determining the output current, attention should be paid to the following. 1. The minimum output current value and footnote *5 in Table 6 in “  Electrical Characteristics” 2. The package power dissipation IOUT [mA] 2. Output voltage vs. Input voltage VOUT [V] 1.6 1.5 1.4 1.3 1.2 1.1 1.0 IOUT = 1.0 mA 30 mA 50 mA VOUT [V] 3.1 3.0 2.9 2.8 2.7 2.6 2.5 30 mA 50 mA IOUT =1.0 mA VIN [V] VIN [V] VOUT [V] 5.5 5.0 4.5 4.0 3.5 3.0 2.5 IOUT = 1.0 mA 30 mA 50 mA VIN [V]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01 3. Dropout voltage vs. Output current S-1200B15 S-1200B30 Vdrop [V] 20050 100 150 0 0.50 0.45 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 –40°C 25°C 85°C Vdrop [V] 20050 100 150 0 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 25°C –40°C 85°C IOUT [mA] IOUT [mA] S-1200B50 Vdrop [V] 20050 100 150 0 0.30 0.25 0.20 0.15 0.10 0.05 85°C 25°C –40°C IOUT [mA] 4. Dropout voltage vs. Set output voltage Vdrop [V] 1 2 3 4 5 0 6 50 mA 30 mA 10 mA 100 mA 80 mA 150 mA 0.40 0.35 0.30 0.25 0.20 0.15 0.10 0.05 VOUT(S) [V]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series 5. Current consumption during power-off vs. Ambient temperature S-1200B15 (VIN = 2.5 V) ISS2 [μA] 8525 50 –40 0.5 0.4 0.3 0.2 0.1 –25 0 75 Ta [°C] 6. Output voltage vs. Ambient temperature S-1200B15 S-1200B30 VOUT [V] 1.60 1.55 1.50 1.45 1.40 25 –25 85–40 0 50 75 VOUT [V] 0 25 –40 –25 50 75 3.20 3.15 3.10 3.05 3.00 2.95 2.90 2.85 2.80 Ta [°C] Ta [°C] S-1200B50 VOUT [V] 857550 250 –25 –40 5.3 5.2 5.1 5.0 4.9 4.8 4.7 Ta [°C]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01 7. Current consumption vs. Input voltage S-1200B15 S-1200B30 ISS1 [μA] 9 8 7 6 54 3 2 1 0 –40°C 25°C 85°C ISS1 [μA] –40°C 25°C 85°C 9 8 7 6 5 43210 VIN [V] VIN [V] S-1200B50 ISS1 [μA] –40°C 25°C 85°C 9 8 7 6 54 3 2 1 0 VIN [V] 8. Ripple rejection VIN = 2.5 V, COUT = 0.1 μF VIN = 4.0 V, COUT = 0.1 μF Ripple Rejection [dB] 100 1k 10k 100k 10 IOUT = 1 mA 50 mA Ripple Rejection [dB] 100 1k 10k 100k 10 IOUT = 1 mA 50 mA Frequency [Hz] Frequency [Hz] VIN = 6.0 V, COUT = 0.1 μF Ripple Rejection [dB] 100 1k 10k 100k 10 IOUT = 1 mA 50 mA Frequency [Hz]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  Reference Data 1. Input transient response characteristics VOUT [V] 1.62 1.60 1.58 1.56 1.54 1.52 1.50 1.48 1.46 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 VOUT VIN -40 -20 0 20 40 60 80 100 120 140 160 VIN [V] VOUT [V] -40 -20 0 20 40 60 80 100 120 140 160 VIN VOUT 3.08 3.06 3.04 3.02 3.00 2.98 2.96 VIN [V] t [μs] t [μs] IOUT = 30 mA, tr = tf = 5.0 μs, COUT = 0.1 μF, CIN = 0.1 μF VOUT [V] 5.12 5.10 5.08 5.06 5.04 5.02 5.00 4.98 4.96 VIN VOUT -40 -20 0 20 40 60 80 100 120 140 160 VIN [V] t [μs] 2. Load transient response characteristics VOUT [V] 0 20 40 60 80 100 120 140 -40 -20 160 IOUT VOUT 1.70 1.65 1.60 1.55 1.50 1.45 1.40 150 100 –50 –100 –150 IOUT [mA] VOUT [V] 0 20 40 60 80 100 120 140 -40 -20 160 IOUT VOUT 150 100 –50 –100 –150 3.20 3.15 3.10 3.05 3.00 2.95 2.90 IOUT [mA] t [μs] t [μs] VIN = 6.0 V, COUT = 0.1 μF, CIN = 0.1 μF, IOUT = 50 mA↔100 mA VOUT [V] 0 20 40 60 80 100 120 140 -40 -20 160 VOUT IOUT 5.20 5.15 5.10 5.05 5.00 4.95 4.90 150 100 –50 –100 –150 IOUT [mA] t [μs]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01 3. ON/OFF pin transient response characteristics VOUT [V] VON/OFF VOUT VON/OFF [V] VOUT [V] VON/OFF VOUT VON/OFF [V] t [ms] VON/OFF [V] VIN = 6.0 V, C OUT = 0.1 μF, C IN = 0.1 μF, I OUT = 30 mA VOUT [V] VON/OFF VOUT VON/OFF [V] t [ms] 4. Input transient response characteristics ⎯ Capacity Value characteristics VIN = 2.5 V → 4.5 V, t r = 5 μs, I OUT = 50 mA V IN = 4.5 V → 2.5 V, t r = 5 μs, I OUT = 50 mA VOUT [V] 1.8 1.7 1.6 1.5 1.4 1.3 1.2 0 20 40 60 80 100 120 140 -40 -20 160 VIN COU T = 1.0 μF COU T = 0.1 μF VOUT VIN [V] VOUT [V] 2.0 1.8 1.6 1.4 1.2 1.0 0.8 0 20 40 60 80 100 120 140 -40 -20 160 VIN COU T = 0.1 μF COU T = 1.0 μF VOUT VIN [V] t [ μs] t [ μs] 5. Load transient response characteristics ⎯ Capacity Value characteristics VIN = 2.5 V, IOUT = 1 mA →50 mA VIN = 2.5 V , IOUT = 50 mA→1 mA VOUT [V] 2.0 1.8 1.6 1.4 1.2 1.0 0.8 100 0 20 40 60 80 100 120 140 -40 -20 160 IOUT COU T = 0.1 μF COU T = 1.0 μF VOUT IOUT [mA] VOUT [V] 2.2 2.0 1.8 1.6 1.4 1.2 1.0 100 0 20 40 60 80 100 120 140 -40 -20 160 IOUT COU T = 0.1 μF COU T = 1.0 μF VOUT IOUT [mA] t [ μs] t [ μs]

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series  Marking Specifications 1. SNT-6A(H) Top view 13 2 64 5 (1) (2) (3) (4) (5) (6) (1) to (3) : Product code (Refer to Product name vs. Product code ) (4) to (6) : Lot number Product name vs. Product code Product name Product code Product name Product code S-1200B15-I6T2U P O A S-1200B36-I6T2U P O V S-1200B16-I6T2U P O B S-1200B37-I6T2U P O W S-1200B17-I6T2U P O C S-1200B38-I6T2U P O X S-1200B18-I6T2U P O D S-1200B39-I6T2U P O Y S-1200B19-I6T2U P O E S-1200B40-I6T2U P O Z S-1200B20-I6T2U P O F S-1200B41-I6T2U P P A S-1200B21-I6T2U P O G S-1200B42-I6T2U P P B S-1200B22-I6T2U P O H S-1200B43-I6T2U P P C S-1200B23-I6T2U P O I S-1200B44-I6T2U P P D S-1200B24-I6T2U P O J S-1200B45-I6T2U P P E S-1200B25-I6T2U P O K S-1200B46-I6T2U P P F S-1200B26-I6T2U P O L S-1200B47-I6T2U P P G S-1200B27-I6T2U P O M S-1200B48-I6T2U P P H S-1200B28-I6T2U P O N S-1200B49-I6T2U P P I S-1200B29-I6T2U P O O S-1200B50-I6T2U P P J S-1200B30-I6T2U P O P S-1200B51-I6T2U P P K S-1200B31-I6T2U P O Q S-1200B52-I6T2U P P L S-1200B32-I6T2U P O R S-1200B53-I6T2U P P M S-1200B33-I6T2U P O S S-1200B54-I6T2U P P N S-1200B34-I6T2U P O T S-1200B55-I6T2U P P O S-1200B35-I6T2U P O U

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR S-1200 Series Rev.5.1_01 2. SOT-23-5 123 Top view (1) (2) (3) (4) (1) to (3) : Product code (Refer to Product name vs. Product code ) (4) : Lot number Product name vs. Product code Product name Product code Product name Product code S-1200B15-M5T1x P O A S-1200B36-M5T1x P O V S-1200B16-M5T1x P O B S-1200B37-M5T1x P O W S-1200B17-M5T1x P O C S-1200B38-M5T1x P O X S-1200B18-M5T1x P O D S-1200B39-M5T1x P O Y S-1200B19-M5T1x P O E S-1200B40-M5T1x P O Z S-1200B20-M5T1x P O F S-1200B41-M5T1x P P A S-1200B21-M5T1x P O G S-1200B42-M5T1x P P B S-1200B22-M5T1x P O H S-1200B43-M5T1x P P C S-1200B23-M5T1x P O I S-1200B44-M5T1x P P D S-1200B24-M5T1x P O J S-1200B45-M5T1x P P E S-1200B25-M5T1x P O K S-1200B46-M5T1x P P F S-1200B26-M5T1x P O L S-1200B47-M5T1x P P G S-1200B27-M5T1x P O M S-1200B48-M5T1x P P H S-1200B28-M5T1x P O N S-1200B49-M5T1x P P I S-1200B29-M5T1x P O O S-1200B50-M5T1x P P J S-1200B30-M5T1x P O P S-1200B51-M5T1x P P K S-1200B31-M5T1x P O Q S-1200B52-M5T1x P P L S-1200B32-M5T1x P O R S-1200B53-M5T1x P P M S-1200B33-M5T1x P O S S-1200B54-M5T1x P P N S-1200B34-M5T1x P O T S-1200B55-M5T1x P P O S-1200B35-M5T1x P O U Remark 1. x: G or U 2. Please select products of environmental code = U for Sn 100%, halogen-free products.

HIGH RIPPLE-REJECTION LOW DROPOUT LOW INPUT-AND-OUTPUT CAPACITANCE CMOS VOLTAGE REGULATOR Rev.5.1_01 S-1200 Series 3. HSNT-6A Top view 13 2 64 5 (1) (2) (3) (4) (5) (6) (7) (8) (9) (1) to (3) : Product code (Refer to Product name vs. Product code ) (4) : Blank (5) to (9) : Lot number Product name vs. Product code Product name Product code Product name Product code S-1200B15-A6T1U P O A S-1200B36-A6T1U P O V S-1200B16-A6T1U P O B S-1200B37-A6T1U P O W S-1200B17-A6T1U P O C S-1200B38-A6T1U P O X S-1200B18-A6T1U P O D S-1200B39-A6T1U P O Y S-1200B19-A6T1U P O E S-1200B40-A6T1U P O Z S-1200B20-A6T1U P O F S-1200B41-A6T1U P P A S-1200B21-A6T1U P O G S-1200B42-A6T1U P P B S-1200B22-A6T1U P O H S-1200B43-A6T1U P P C S-1200B23-A6T1U P O I S-1200B44-A6T1U P P D S-1200B24-A6T1U P O J S-1200B45-A6T1U P P E S-1200B25-A6T1U P O K S-1200B46-A6T1U P P F S-1200B26-A6T1U P O L S-1200B47-A6T1U P P G S-1200B27-A6T1U P O M S-1200B48-A6T1U P P H S-1200B28-A6T1U P O N S-1200B49-A6T1U P P I S-1200B29-A6T1U P O O S-1200B50-A6T1U P P J S-1200B30-A6T1U P O P S-1200B51-A6T1U P P K S-1200B31-A6T1U P O Q S-1200B52-A6T1U P P L S-1200B32-A6T1U P O R S-1200B53-A6T1U P P M S-1200B33-A6T1U P O S S-1200B54-A6T1U P P N S-1200B34-A6T1U P O T S-1200B55-A6T1U P P O S-1200B35-A6T1U P O U

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