Product Information

AP9211SA-AD-HAC-7

AP9211SA-AD-HAC-7 electronic component of Diodes Incorporated

Datasheet
Diodes Incorporated Battery Management Multicell Batt MGR PMIC Protection Int

Manufacturer: Diodes Incorporated
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Price (USD)

1: USD 1.1034 ea
Line Total: USD 1.1

17109 - Global Stock
Ships to you between
Tue. 07 May to Thu. 09 May
MOQ: 1  Multiples: 1
Pack Size: 1
Availability Price Quantity
15925 - Global Stock


Ships to you between Tue. 07 May to Thu. 09 May

MOQ : 1
Multiples : 1

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AP9211SA-AD-HAC-7
Diodes Incorporated

1 : USD 0.6555
10 : USD 0.5957
100 : USD 0.475
500 : USD 0.4048
1000 : USD 0.3231
3000 : USD 0.2921
6000 : USD 0.2863
9000 : USD 0.2852

     
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Product
Product Type
Battery Type
Package / Case
Minimum Operating Temperature
Maximum Operating Temperature
Mounting Style
Series
Packaging
Brand
Cnhts
Hts Code
Mxhts
Operating Supply Current
Operating Supply Voltage
Pd - Power Dissipation
Factory Pack Quantity :
Subcategory
Taric
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AP9211 SINGLE CHIP SOLUTION FOR 1-CELL Li+ BATTERY PACK Description Pin Assignments The AP9211 is a single chip protection solution specially designed for 1-cell Li+ rechargeable battery pack application. (Top View) The AP9211 includes a 1-cell Lithium ion battery protection chip and dual N-CH MOSFET with common drain. 1 S2 6 S1 The AP9211 provides rich battery protection features and can turn-off EP the N-CH MOSFET by detecting overcharge voltage/current, over VSS 2 5 VM discharge voltage/current, or load short circuit. The AP9211 has built- in fixed delay time to save external components. 4 NC VDD 3 The AP9211 is available in U-DFN2030-6 (Type C) package. U-DFN2030-6 (Type C) Features Applications High Voltage CMOS Process, up to 30V (VDD to VM) Li+ Rechargeable Battery Pack Low Quiescent Current (+25C ) In Normal Mode, 3.0A (Typ.), 4.5A (Max.) V = 3.5V DD In Power-Down Mode, 0.1A (Max.) High-Accuracy Voltage Detection Circuit (+25C) Overcharge Detection Voltage: 3.5V to 4.5V (5mV Steps) Accuracy 25mV Overcharge Hysteresis Voltage Range: 0.1V to 0.4V (50mV Steps) Accuracy 50mV Overdischarge Detection Voltage: 2.0V to 3.4V (10mV Steps) Accuracy 35mV Overdischarge Hysteresis Voltage Range: 0V to 0.7V (40mV Steps) Accuracy 65mV Discharge Overcurrent Detection Voltage: 0.05V to 0.32V (10mV Steps) Accuracy 15mV Short Current Detection Voltage: 0.45V to 0.7V (50mV Steps) Accuracy 100mV Charge Overcurrent Detection Voltage: -0.2V to -0.05V (10mV Steps) Accuracy 15mV Overcharger Detection Voltage: 8.0V (Fixed) Accuracy 2V Overcharger Release Voltage: 7.3V (Fixed) Accuracy 2V Built-in Fixed Detection Delay Time (+25C ), Accuracy 20% Power-Down Mode Selectable (Yes or No) 0V Battery Charge Selectable (Permission or Inhibition) Overcharge Protection Mode Selectable (Auto Release or Latch) Totally Lead-Free & Fully RoHS Compliant (Notes 1 & 2) Halogen and Antimony Free. Green Device (Note 3) Notes: 1. No purposely added lead. Fully EU Directive 2002/95/EC (RoHS) & 2011/65/EU (RoHS 2) compliant. 2. See AP9211 Typical Applications Circuit (Note 4) P+ R1 330 to 470 3 VDD 5 U1 VM AP9211 C1 BAT 100n (U-DFN2030-6) R2 2.7k 2 VSS S1 S2 1 6 P- Note: 4. R1 and C1 are used to stabilize the supply voltage of the AP9211. The recommended range of R1 value is 330 to 470 and C1 value is 10nF to 1000nF, typical value is 100nF. R2 should be connected between P- to V sense terminal to monitor the status of charger and the M charge/discharge current. The R2 should be between 300 and 4k, typical value is 2.7k. R1 and R2 are also used as current limit resistors if the battery or charger is connected reversely. Polarity reversing may cause the power consumption of R1 and R2 to go over their power dissipation rating, therefore R1 and R2 values should be selected appropriately for the actual application. If R2 is more than 4k resistor, charge may not be off due to the voltage drop on R2. For power down mode, when first connecting AP9211 system board to the battery, it is necessary to use charger or to short P- to the battery negative polarity. Once the AP9211 is activated, the charger or connection can be removed, otherwise the battery cannot discharge current through system board. The values selected should follow the recommended typical range mentioned above. It has not been confirmed whether the operation is normal or not in circuits other than the above example of connection. In addition, the example of connection shown above and the typical value do not exactly guarantee proper operation. Please perform the actual application to set the suitable value through your complete evaluation. Pin Descriptions Pin Number Pin Name Function 1 S1 Source pin of discharging MOSFET, connecting this pin to battery negative pole. 2 VSS Negative power supply pin 3 VDD Positive power supply pin, connecting this pin to battery positive pole through R1 4 NC Not connected, leave this pin floating 5 VM Charger negative input pin, short this pin to S2 pin through R2 6 S2 Source pin of charging MOSFET, connecting this pin to charge negative input. Thermal PAD is common drain of charge and discharge MOSFET, so in PCB layout, prefer to use EP D large copper area to cover this pad for better thermal dissipation, then leave it open. 2 of 18 AP9211 July 2017 Diodes Incorporated www.diodes.com Document number: DS37596 Rev. 4 - 2

Tariff Desc

8542.31.00 51 No ..Application Specific (Digital) Integrated Circuits (ASIC)

Electronic integrated circuits: Processors and controllers, whether or not combined with memories, converters, logic circuits, amplifiers, clock and timing circuits, or other circuits
Monolithic integrated circuits:
DIO
Diodes
DIODES INC
DIODES INC / ZETEX
DIODES INC.
Diodes Inc. / Pericom
Diodes Zetex
DiodesZetex
PAM(Diodes Inc)
PER
Pericom
PERICOM SEMI
Pericom Semiconductor
Pericom Technology
Pericom/Diodes
ZTX

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