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www.sii-ic.com VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER © SII Semiconductor Corporation, 2002-2017 Rev.5.1_02 The S-8821 series is a CMOS boost charge pump DC-DC converter with a voltage regulation function. The S-8821 series consists of an osc illation circuit, a controller, a reference voltage circuit, an error amplifier circuit, and an output switching transistor, and can regulate the output voltage by PFM control. Since small ceramic capacitors can be used for the pump ca pacitor, input capacitor, and output capacitor, the mounting area can be minimized. Features
- PFM control CMOS boost charge pump
- Power supply voltage: 1.6 to 5.0 V
- Output voltage: 2.5 to 5.5 V, selectable in 0.1 V steps.
- Output voltage accuracy: ±2 % max.
- Built-in soft start circuit: 1.0 ms typ.
- Output current 25 mA (V IN=(VOUT(S) × 0.80) V)
- Oscillation frequency: 1.0 MHz typ.
- ON/OFF function: During standby: 1 μA max.
- Lead-free, Sn 100%, halogen-free*1 *1. Refer to “ Product Name Structure” for details. Applications
- Lithium ion battery driven applications
- Local power supply
- Power supply for white LED display backlights Packages
- SOT-23-6W
- SNT-8A
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 Block Diagram VIN Switch control circuit SW1 SW2 SW3 SW4 CPUMP=0.10 μF Soft start circuit ON/OFF circuit ON/OFF PFM control oscillator circuit (1.0 MHz) Reference voltage VOUT GND COUT=10 μF Rs Rf CIN=4.7 μF Figure 1
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series Product Name Structure
- The output voltage and packages for the S-8821 Series can be selected at the user’s request. Refer to the “Product name” for the meanings of the characters in the produ ct name, “Package” regarding the package drawings and “Product name list” for the full product names. 1. Product name (1) SOT-23-6W S-8821 xx A MH - xxx TF x Output voltage 25 to 55 (E.g., when the output voltage is 2.5 V, it is expressed as 25.) IC direction in tape specifications*1 Package name (abbreviation) MH: SOT-23-6W Environmental code S: Lead-free, halogen-free G: Lead-free (for details, please contact our sales office) Product name (abbreviation)*2 *1. Refer to the tape specifications at the end of this book. *2. Refer to the product name list. (2) SNT-8A S-8821 xx A PH - xxx TF U Output voltage 25 to 55 (E.g., when the output voltage is 2.5 V, it is expressed as 25.) IC direction in tape specifications Package name (abbreviation) PH: SNT-8A Environmental code U: Lead-free (Sn 100%), halogen-free Product name (abbreviation)*2 *1. Refer to the tape specifications at the end of this book. *2. Refer to the product name list. 2. Package Package Name Drawing Code Package Tape Reel Land SOT-23-6W MP006-B-P-SD MP006-B-C-SD MP006-B-R-SD ⎯ SNT-8A PH008-A-P-SD PH008-A-C-SD PH008-A-R-SD PH008-A-L-SD
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 3. Product name list Table 1 Output Voltage SOT-23-6W SNT-8A
2.5 V S-882125AMH-M2ATFz S-882125APH-M2ATFU
3.0 V S-882130 AMH-M2FTFz ⎯
3.3 V S-882133AMH-M2ITFz ⎯
3.5 V S-882135AMH-M2KTFz ⎯
3.6 V S-882136AMH-M2LTFz ⎯
4.0 V S-882140AMH-M2PTFz ⎯
4.5 V S-882145AMH-M2UTFz ⎯
5.0 V S-882150AMH-M2ZTFz S-882150 APH-M2ZTFU
5.2 V S-882152AMH-M3BTFz ⎯
5.5 V S-882155 AMH-M3ETFz ⎯
Remark 1. Contact the SII Semiconductor Corporati on sales department for products with an output voltage other than those specified above. 2. z: G or S 3. Please select products of environmental code = U for Sn 100%, halogen-free products.
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series Pin Configurations 6 4 1 3 2 SOT-23-6W Top view Table 2 Pin No. Symbol Pin Description
1 VIN Voltage input pin
2 C+ Charge-pump pump capacitor connection pin
(positive pin)
3 C− Charge-pump pump capacitor connection pin
(negative pin)
4 ON/OFF
High level (H) : normal operation (boost) Low level (L) : boost halt (all circuit halt)
5 GND GND pin
6 VOUT Voltage output pin
Pin No. Symbol Pin Description
1 C+ Charge-pump pump capacitor connection pin
(positive pin)
2 VIN Voltage input pin
3 NC *1 No connection
4 VOUT Voltage output pin
5 ON/OFF
High level (H) : normal operation (boost) Low level (L) : boost halt (all circuit halt)
6 GND GND pin
7 NC *1 No connection
8 C− Charge-pump pump capacitor connection pin
(negative pin) *1. The NC pin is electrically open. The NC pin can be connected to VIN or GND.
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 Absolute Maximum Ratings Table 4 (Ta=25°C unless otherwise specified) Items Symbols Absolute Maximum Ratings Units C+ pin voltage V C+ V GND−0.3 to VGND+7.5 V C− pin voltage V C− V GND−0.3 to VGND+7 V VIN pin voltage VIN VGND−0.3 to VGND+5.5 V VOUT pin voltage VOUT VGND−0.3 to VGND+7 V ON/OFF pin voltage VON/OFF VGND−0.3 to VIN+0.3 V Power dissipation SOT-23-6W PD 300 (When not mounted on board) mW 650*1 mW SNT-8A 450 *1 mW Operating ambient temperature T opr −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. (1) When mounted on board (2) When not mounted on board 0 50 100 150 600 400 200 Power Dissipation PD (mW) Ambient Temperature Ta (°C) 500 300 100 700 800 SOT-23-6W SNT-8A 0 50 100 150 300 200 100 Power Dissipation PD (mW) Ambient Temperature Ta (°C) 250 150 350 400 Figure 4 Power Dissipation of Package
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series Electrical Characteristics Table 5 (VIN=(VOUT(S) × 0.60) V*1, Ta=25°C unless otherwise specified) Items Symbols Conditions Min. Typ. Max. Units Test circuits Operation input voltage V IN VOUT(S) ≤ 2.9 V 1.6 ⎯ 5.0 V 2 VOUT(S) > 2.9 V VOUT(S) × 0.54 ⎯ 5.0 V 2 Output voltage*2 V OUT(E) IOUT=10 mA VOUT(S) ×
0.98 VOUT(S) VOUT(S) ×
1.02 V 2
Output current*3 I OUT VIN=(VOUT(S) × 0.54) V*6 5 ⎯ ⎯ mA 2 VIN=(VOUT(S) × 0.60) V*1 15 ⎯ ⎯ mA 2 VIN=(VOUT(S) × 0.80) V 25 ⎯ ⎯ mA 2 Line regulation ΔVOUT1 VIN=(VOUT(S) × 0.60) V*1 to (VOUT(S) − 0.10) V, IOUT=10 mA ⎯ 50 100 mV 2 Load regulation ΔVOUT2 IOUT=0.1 mA to 10 mA ⎯ 40 80 mV 2 Ripple voltage*4 V RIP IOUT=10 mA ⎯ 70 ⎯ mV p−p 2 Maximum oscillation frequency fosc VOUT=(VOUT(S) × 0.60) V, Measure waveform at C− pin 800 1000 1200 kHz 2 Efficiency*5 η VIN=(VOUT(S) × 0.54) V, VOUT(S) ≥ 3.0 V, IOUT=5 mA ⎯ 90 ⎯ % 1 Operation consumption current I SS1 VIN=VOUT(S), VOUT=(VOUT(S) + 0.5) V ⎯ 35 60 μA 2 Standby consumption current I SSS VIN=(VOUT(S) × 0.54) V*6 to 5.0 V, VON/OFF=0 V ⎯ 0.3 1.0 μA 1 ON/OFF pin input voltage (high level) V SH VIN=(VOUT(S) × 0.54) V*6 to 5.0 V 1.5 ⎯ ⎯ V 1 ON/OFF pin input voltage (low level) V SL VIN=(VOUT(S) × 0.54) V*6 to 5.0 V ⎯ ⎯ 0.3 V 1 ON/OFF pin input current (high level) I SH VIN=(VOUT(S) × 0.54) V*6 to 5.0 V −0.1 ⎯ 0.1 μA 1 ON/OFF pin input current (low level) I SL VIN=(VOUT(S) × 0.54) V*6 to 5.0 V −0.1 ⎯ 0.1 μA 1 Soft start time t SS IOUT=10 mA 0.2 1.0 4.0 ms 1 *1. In case of V OUT ≤ 3.3 V, VIN=2.0 V *2. V OUT(E): Actual output voltage VOUT(S): Specified output voltage *3. The output current at which t he output voltage becomes 97 % of VOUT(E) after gradually increasing the output current. *4. Design assurance *5. The ideal efficiency is indica ted by the following expression. Efficiency ( η)=(VOUT × IOUT) / (2.0 × VIN × IOUT) *6. In case of V OUT ≤ 2.9 V, VIN=1.6 V
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series 3. Shutdown Pin (ON/OFF Pin) Setting the ON/OFF pin to the Low level ("L") causes the voltage of the VOUT pin to change to the GND level and simultaneously the operation of all the internal circuit to stop. At this time, the consumption current is largely reduced, to a level of approximately 0.3 μA. The structure of the ON/OFF pin is as shown in Figure 10. Since the ON/OFF pin is neither pulled down nor pulled up internally, do not use it in the floating state. When the ON/OFF pin is not used, connect it to the VIN pin. Table 6 ON/OFF pin Internal circuit VOUT pin voltage “H”: Power on Operating Set value “L”: Power off Stop VGND level GND ON/OFF VIN VIN Figure 10 4. Soft Start Function The S-8821 Series features a built-in soft start circuit. Upon power application or when the OFF ON/pin is switched from "L" to "H", the output voltage gradually rises over the soft start time, and the output current is gradually output as a result. This soft start function reduces the input current rush.
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 External Capacitor Selection 1. Input and Output Capacitors (CIN, COUT) The input capacitor (CIN) lowers the power supply impedance and averages the input current. The CIN value is selected according to the impedance of the power supply that is used. Select a ceramic capacitor with a small equivalent series resistance (ESR). Although this figure varies according to the impedance of the power supply that is used as well as the load current value, it is generally in the range of 4.7 μF to 10 μF. For the output capacitor (COUT), select a ceramic capacitor with a small ESR for smoothing the ripple voltage. A value of 10 μF is recommended for the capacitance value. Use of a capacitor with a capacitance lower than 10 μF results in a larger ripple voltage. Conversely, use of a capacitor with a capacitance greater than 10 μF results in the output voltage not being able to rise up to setting value and the impossibility to obtain the desired output current. 2. Pump Capacitor (CPUMP) The pump capacitor (CPUMP) is required for boosting the voltage. Select a ceramic capacitor with a small ESR. A capacitance value of 0.10 μF is recommended. Use of a capacitor with a capacitance greater than 0.10 μF results in a larger ripple voltage. Conversely, use of a capacitor with a capacitance lower than 0.10 μF results in the output voltage not being able to raise up to setting value and the impossibility to obtain the desired output current.
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series Precautions
- Regarding the wiring to the VIN pin, VOUT pin, C+ pin, C− pin and GND pin, be careful to perform pattern wiring so as to obtain low impedance.
- Always connect a capacitor to the VOUT pin, C+ pin, and C− pin.
- Connect C IN and COUT in the vicinity of the IC and sufficiently strengthen the wiring for GND pin and VIN pin in order to lower the impedance of the wiring resistance, etc. High impedance may cause unstable operation. Moreover, in selecting CIN and COUT, perform a full evaluation of the actual usage conditions.
- Connect CPUMP in the vicinity of the IC and sufficiently strengthen the wiring for the C+ pin and C− pin in order to lower the impedance of the wiring resistance, etc. High impedance may cause instable operation. Moreover, in selecting C PUMP, perform a full evaluation of the actual usage conditions.
- The ON/OFF pin is configured as shown in Figure 9 and is neither pulled up or down internally, so do not use this pin in a floating state. When not using the ON/OFF pin, connect it to the VIN pin. Moreover, please do not apply voltage higher than VIN + 0.3 V to an ON/OFF pin. Current flows for a VIN pin through the protection diode inside IC.
- Since this IC consists of double boost circuits, it cannot set more than twice voltage of V IN to VOUT(S).
- Be careful about the usage conditions for the input/output voltages and output current to make sure that dissipation within the IC does not exceed the allowable power dissipation of the package. For reference, the calculation of the power consumption in this IC is shown below. P D=(VIN × 2.0 − VOUT) × (IOUT) Reference: V IN=4.2 V, VOUT=5.5 V, IOUT=10 mA
- Since the information described herein is subject to change without notice, confirm that this is the latest one before using.
- Do not apply an electrostatic discharge to this IC that exceeds the performance ratings of the built-in electrostatic protection circuit.
- SII Semiconductor Corporation claims no responsibility for any and all disputes arising out of or in connection with any infringement of the products including this IC upon patents owned by a third party.
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 Characteristics (Typical Data) (1) Output voltage vs. Operation input voltage S-882133A S-882150A IOUT=10 mA, Ta=25°C IOUT=10 mA, Ta=25°C VOUT [V] 3.15 3.10 3.50 3.20 3.25 3.35 3.30 3.40 3.45 4.0 4.5 5.0 VOUT [V] 4.80 4.70 5.30 5.20 5.10 5.00 4.90 2.0 4.0 4.5 5.0 VIN [V] VIN [V] (2) Output voltage vs. Output current S-882133A S-882150A VIN=2.0 V, Ta=25°C VIN=3.0 V, Ta=25°C VOUT [V] 0 5 10 20 30 3.15 3.10 3.50 3.40 3.35 3.30 3.25 3.20 25 15 3.45 VOUT [V] 0 10 15 20 304.70 5.30 5.20 5.10 5.00 4.90 4.80 5 25 IOUT [mA] IOUT [mA] (3) Operation consumption vs. Operation input voltage S-882133A S-882150A Ta=25°C Ta=25°C ISS1 [μA] 1.5 3.5 4.0 5.5 5.0 4.5 2.0 2.5 3.0 ISS1 [μA] 1.5 2.5 5.510 3.5 VIN [V] VIN [V]
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER Rev.5.1_02 S-8821 Series (4) Ripple voltage vs. Operation input voltage S-882133A S-882150A IOUT=10 mA, Ta=25°C IOUT=10 mA, Ta=25°C VRIP [mVp-p] 100 4.5 2.0 2.5 VRIP [mVp-p] 100 4.5 4.0 2.0 VIN [V] VIN [V] (5) Efficiency*1 vs. Operation input voltage S-882133A S-882150A IOUT=10 mA, Ta=25°C IOUT=10 mA, Ta=25°C η [%] 100 4.0 5.0 3.0 2.5 η [%] 1.5 2.5 3.5 5.520 100 VIN [V] VIN [V] *1. The ideal efficiency is indica ted by the following expression. Efficiency ( η)=(VOUT × IOUT) / (2.0 × VIN × IOUT) (6) Maximum oscillation frequency vs. Operation input voltage S-882133A S-882150A Ta=25°C Ta=25°C fOSC [kHz] 800 900 1000 1100 1200 1300 4.0 4.5 3.0 fOSC [kHz] 800 900 1000 1100 1200 1300 4.5 3.5 3.0 VIN [V] VIN [V]
VOLTAGE REGULATION BOOST CHARGE PUMP DC-DC CONVERTER S-8821 Series Rev.5.1_02 (7) Load fluctuation S-882133A S-882150A VIN=2.0 V VIN=3.0 V CH1 CH2 1 mA 10 mA CH1 CH2 1 mA 10 mA [1 ms/div.] [1 ms/div.] CH1: VOUT [20 mV/div.] CH2: IOUT [2 mA/div.] CH1: VOUT [20 mV/div.] CH2: IOUT [2 mA/div.] (8) Input voltage fluctuation S-882133A S-882150A IOUT=10 mA IOUT=10 mA CH1 CH2 1.8 V 3.3 V CH1 CH2 3.0 V 5.0 V [1 ms/div.] [1 ms/div.] CH1: V OUT [20 mV/div.] CH2: VIN [1 V/div.] CH1: VOUT [20 mV/div.] CH2: VIN [1 V/div.]
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