GB5101 GRENERGY | Alldatasheet
Document overview
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Technical content
Features
/circle6 Low supply current /circle6 Normal operation: 3uA typ. @ VCC = 3.9V /circle6 Power-down mode: 0.1uA max. @ VCC = 2.0V /circle6 Over-charge detection voltage (V CU ) 4.25~4.3V, accuracy: ±50mV /circle6 Over-charge release voltage (V CR ) 4.05~4.1V, accuracy: ±50mV /circle6 Over-discharge detection voltage (V DL ) 2.4V, accuracy: ±100mV /circle6 Over-discharge release voltage (V DR ) 3.0V, accuracy: ±100mV /circle6 Over-current detection voltage (V IOV ) 0.15V, accuracy: ±30mV /circle6 Short circuit detection voltage (V SHORT ) 1.0V /circle6 Reset resistance for over current protection > 500 KΩ /circle6 Delay time clock is generated with internal circuit
Applications
/circle6 Lithium-ion/Lithium polymer protector of over-charge, over-discharge, excess-current for battery pack /circle6 High precision protector for cell-phones and any other gadgets using on board Lithium-ion/ Lithium polymer battery
Description
The GB5101 series are protection ICs for over-charge/discharge of rechargeable one-cell Lithium-ion/Lithium polymer excess load current, further include a short circuit protector for preventing large external short circuit and excess charge/discharge-current. Ordering and Marking Information SOT-26 Code 1 8 9 A B
- ● ● G H I J Year 200 8 200 9 201 0 201 1 201 6 201 7 201 8 201 9 Code 2 1 2 3 4 9 A B C Grenergy OPTO Inc. reserves the right to make chang es to improve reliability or manufacture ability wi thout notice, and advise customers to obtain the latest v ersion of relevant information to verify before pla cing orders. Battery Protection IC for Single-cell Pack
V CU (V) Over-charge Release Voltage V CR (V) Over-discharge Detection Voltage V DL (V) Over-discharge Release Voltage V DR (V) Over-current Detection Voltage V IOV (mV) Pin Configuration TOP VIEW Pin Description Pin No. Symbol Description
1 OD Output of over-discharge detection, CMOS outpu t
2 CS Voltage detection pin between CS and VSS
3 OC Output of over-charge detection, CMOS output
4 TD Test pin for delay time measurement
5 VCC Power supply pin
6 VSS Ground pin for the IC
Electrical Characteristics (TA = 25 ℃ ) Parameter Conditions Symbol Min. Typ. Max. Unit CURRENT CONSUMPTION Supply current VCC = 3.9V IOPE 3.0 6.0 µA Power-down current VCC = 2.0V IPDN 0.1 µA DETECTION VOLTAGE Over-charge detection voltage V CU VCU -0.050 VCU VCU +0.050 V Over-charge release voltage V CR VCR -0.050 VCR VCR +0.050 V Over-discharge detection voltage V DL VDL -0.100 VDL VDL +0.100 V Over-discharge release voltage V DR VDR -0.100 VDR VDR +0.100 V Over-current detection voltage V IOV VIOV -0.030 VIOV VIOV +0.030 V Short current detection voltage V SHORT 0.7 1.0 1.7 V Charger detection voltage V CHA -0.3 -0.1 -0.05 V DELAY TIME Overcharge detection delay time T CU 80 200 mS Over discharge detection delay time T DL 40 100 mS Over-current detection delay time T IOV 10 20 mS Short current detection delay time T SHORT 10 50 µS OUTPUT THRESHOLD OC Output High Voltage VCC = 3.5V, Io = -5uA VOCH 3.0 3.4 V OC Output Low Voltage VCC = 4.5V, CS = 0V, Io = 5uA VOCL 0.1 0.5 V OD Output High Voltage VCC = 3.5V, Io = -5uA VODH 3.0 3.4 V OD Output Low Voltage VCC = 2.0V, Io = 5uA VODL 0.1 0.5 V
Timing Chart (Cont.)
Abnormal Charge Current Detection TCU VCC VCC VCR VDR Description of Operation Normal Status This IC monitors the voltage of the battery connected between the VCC pin and VSS pin and the voltage difference between the CS pin and VSS pin to control charging and discharging. When the battery voltage is in the range from over-discharge detection voltage (V DL ) to over-charge detection voltage (V CU ), the CS pin voltage is no more than the discharge over-current detection voltage (V IOV ), the IC turns both the charging and discharging control FETs on. This condition is called the norma l status. Under this condition, charging and discharging can be carried out freely. The resistance (R VMD) between the CS pin and VCC pin, and the resistance (R VMS) between the CS pin and VSS pin are not connected in the normal status. Caution when the battery is connected for the first time, discharging pin may not be able to function. Please short the CS pin and VSS pin or connect the charger to restore the normal status. Over-charge Status When the battery voltage becomes higher than over-charge detection voltage (V CU ) during charging in the normal status and detection continues for th e over-charge detection delay time (T CU ) or longer, the GB5101 turns the charging control FET off to stop charging. This condition is called the over-charge status. The resistance (R VMD) between the CS pin and VCC pin, and the resistance (R VMS) between the CS pin and VSS pin are not connected in the over-charge status. The over-charge status i s released in the following two cases: (1) In the case that the CS pin voltage is higher than or equal to charger detection voltage (V CHA ), and is lower than the discharge over-current detection voltage (V IOV ), GB5101 releases the over-charge status when the battery voltage falls below the over-charge release voltage (V CR ). (2) In the case that the CS pin voltage is higher than
or equal to the discharge over-current detection voltage (V IOV ), GB5101 releases the over-charge status when the battery voltage falls below the over-charge detection voltage (V CU ). When the discharge is started by connecting a load after the over-charge detection, the CS pin voltage rises higher than the voltage at VSS pin due to the voltage of the parasitic diode. This is because the discharge current flows through the parasitic diode in the charging control FET. If this CS pin voltage is higher than or equal to the discharge over-current detection voltage (V IOV ), the GB5101 releases the over-charge status when the battery voltage is lower than or equal to the over-charge detection voltage (V CU ). Over-discharge Status When the battery voltage falls below discharge detection voltage (V DL ) during discharging in the normal status and the detection continues for the over-discharge detection delay time (T DL ) or longer, the GB5101 turns the discharging control FET off to stop discharging. This condition is called the over-discharge status. Under the over discharge status, the CS pin voltage is pulled up by the resistor between the CS pin and VCC pin in the IC VMD). When voltage difference between the CS pin and VSS pin is 1.0V (Typ.) or higher, the current consumption is reduced to the power-down current consumption (I PDN ). This condition is called the power-down status. The resistance (R VMS) between the CS pin and VSS pin is not connected in the power-down status and the over-discharge status. The power-down status is released when a charger is connected and the voltage difference between the CS pin and VSS pin becomes 1.0V (typ.) or lower. When a battery in the over-discharge status is connected to a charger and provided that the CS pin voltage is lower than charger detection voltage CHA ), the GB5101 releases the over-discharge status and turns the discharging FET on when the battery voltage reaches over-discharge detection voltage (V DL ) or higher. When a battery in the over-discharge status is connected to a charger and provided that the CS pin voltage is not lower than charger detection voltage (V CHA ), the GB5101 releases the over-discharge status when the battery voltage reaches over-discharge release voltage DR) or higher. Discharge Over-current Status (Discharge Over- current or Short-circuiting) When a battery is in the normal status, the voltage of the CS pin is equal to or higher than the discharge over-current detection voltage because the discharge current is higher than the specified value and the status lasts for the discharge over-current detection delay time, the discharge control FET is turned off and discharging is stopped. This status is called the discharge over-current status. In the discharge over-current status, the C S pin and VSS pin are shorted by the resistor between CS pin and VSS pin (R VMS) in the IC. However, the voltage of the CS pin is at the VCC potential due t o the load as long as the load is connected. When the load is disconnected, the CS pin returns to the VSS potential. This IC detects the status when the impedance between the Bat+ pin and Bat- pin increases and is equal to the impedance that enables automatic restoration and the voltage at the CS pin returns to discharge over-current detection voltage (V IOV ) or lower, the discharge over-current status is restored to the normal status. Even if th e connected impedance is smaller than automatic restoration level, the GB5101 will be restored to t he normal status from discharge over-current detection status when the voltage at the CS pin becomes the discharge over-current detection voltage (V IOV ) or lower by connecting the charger. The resistance VMD) between the CS pin and VCC pin is not
connected in the discharge over-current detection status. Detection for Abnormal Charging Current During charging a battery which is in the normal status, if the CS pin voltage becomes lower than the charger detection voltage (V CHA ) and this status is held longer than the over-charge detection delay time (T CU ), the GB5101 turns off the charge-control FET to stop charging. This is detection for abnormal charging current. This function works in the case that the OD pin voltage is high, and the CS pin voltage becomes lower than the charger detection voltage (V CHA ). Thus if the abnormal charger current flows in the battery in the over-discharge status, GB5101 turns off the charge-control FET to stop charging; the OD pin voltage goes high that the battery voltage becomes higher than the over-discharge detection voltage, and after the over-charge detection delay time (T CU ). The status irregular charging current detection is released by the lower potential difference between the CS and VSS pin than the charger detection voltage (V CHA ).
Typical Application Circuit Constant for External Components Symbol Part Purpose Min. Typ. Max. Remarks N-channel MOSFET Threshold voltage ≤ Over-discharge detection voltage gate to source withstanding voltage ≥ charger voltage N-channel MOSFET Threshold voltage ≤ Over-discharge detection voltage gate to source withstanding voltage ≥ charger voltage R1 Resistor ESD protection, for power fluctuation 47 Ω 100 Ω 1K Ω Resistance should be as small as possible to avoid lowering of the overcharge detection accuracy caused by VCC pin current C1 Capacitor For power fluctuation 0.022uF 0.1uF 1.0uF Install a capacitor of 0.022uF or higher between VCC and VSS R2 Resistor Protection for reverse connection of a charger 300 Ω 1K Ω 4K Ω Select a resistance as large as possible to prevent large current when a charger is connected in reverse
Package Information
MIN. MAX. MIN. MAX. A 1.45 0.057 A1 0.00 0.15 0.000 0.006 A2 0.90 1.30 0.035 0.051 b 0.30 0.50 0.012 0.020 c 0.08 0.22 0.003 0.009 D 2.70 3.10 0.106 0.122 E 2.60 3.00 0.102 0.118 E1 1.40 1.80 0.055 0.071 e 0.95 BSC 0.037 BSC e1 1.90 BSC 0.075 BSC L 0.30 0.60 0.012 0.024 θ 0 o 8 o 0 o 8 o Note : 1. Followed from JEDEC TO-178 AB. 2. Dimension D and E1 do not include mold flash, protrusions or gate burrs. Mold flash, protrusions or gate burrs shall not exceed 10 mil per side.
Carrier Tape & Reel Dimensions SOT-26 Application A H T1 C d D W E1 F SOT-26 -0.00 13.0+0.50 -0.20 P0 P1 P2 D0 D1 T A0 B0 K0 (mm) Application Carrier Width Cover Tape Width Devices Per Reel SOT -26 8 5.3 3000
Tape and Reel Specification SOT-26 Grenergy OPTO, Inc. reserves the right to make corr ections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. Direction of feed