| Datenblatt-Suchmaschine für elektronische Bauteile |
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ICS1712M Datenblatt(PDF) 15 Page - Galaxy Power, Inc. |
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ICS1712M Datenblatt(HTML) 15 Page - Galaxy Power, Inc. |
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15 / 28 page ![]() 15 ICS1712 •Using no temperature sensor: If a temperature sensor is not used, the THERM pin must be grounded. Termination Selection: DTSEL Pin The ICS1712 has the capability of either temperature slope termination, voltage slope termination or both methods simultaneously. The DTSEL pin has an internal 75k Ω pull-down resistor that enables voltage slope termination as the primary method and is the default condition. Tying the pin high enables both temperature slope and voltage slope termination methods. Temperature slope termination as the primary method is enabled by tying the DTSEL pin to the CMN output (pin 4). CMN must have an external 15k Ω or lower value pull-up resistor to V DD for proper activation of temperature slope termination. The ICS1702 must be reset if a new termination method is desired. Table 6 summarizes the DTSEL pin settings. NOTE: Maximum temperature and fast charge timer termination methods are always enabled when using temperature slope termination. Refer to the sections on Fast Charge Timer Termination and Maximum Temperature Termination for more information. Table 6: Termination Select List Tie DTSEL Pin to ... Result Low (No Connect) Voltage slope termination only High Voltage slope and temperature slope termination CMN Temperature slope termination only (CMN with external pull-up to VDD) Voltage Input: VIN Pin The battery voltage must be normalized by an external resistor divider network to one cell. The electrochemical potential of one cell is about 1.2V. For example, if the battery consists of six cells in series, the voltage at the VIN pin must be equal to the total battery voltage divided by six. This can be accomplished with two resistors, as shown in Figure 13. To determine the correct resistor values, count the number of cells to be charged in series. Then choose either R1 or R2 and solve for the other resistor using: R1 = R2 * (# of cells -1) or R2 = R1 (# of cells -1) Figure 13: Resistor divider network at the VIN pin Power: VDD Pin The power supply for the device must be connected to the VDD pin. The voltage should be +5 VDC and should be supplied to the part through a regulator that has good noise rejection and an adequate current rating. The controller requires up to a maximum of 11mA with VDD=5.00V. Grounding: VSS, AVSS Pins There are two ground pins. Both pins must be connected together at the device. This point must have a direct connection to a solid ground plane. R1 R2 VIN pin # of cells |
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