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TSM102 Fiches technique(PDF) 8 Page - STMicroelectronics |
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TSM102 Fiches technique(HTML) 8 Page - STMicroelectronics |
8 / 10 page Vaux TS M102 Vref Vcc + 9 Vaux 13 8 + Figure 3 : A precise power supply for the TSM102A and other components = 2.5 / [ 56 / (131.5 + 56 + 0.68 ) ] = 8.400V Vout = 8.400V Low Battery signal : If R5 = 0 Ω and R6 = open : Vout(LoBatt) = Vref / [ R19 / ( R17 + R19 ) ] = 2.5 / [ 10 / (12.4 + 10) ] = 5.6V Vout(LoBatt) = 5.6V End of Charge signal : Vout(EOC) = Vref / [ (R2 + R3 ) / (R1 + R2 + R3) ] = 2.5 / [ (56 + 0.68) / (131.5 + 56 + 0.68) ] = 8.300V Vout (EOC)= 8.300V Notes: The current control values must be chosen in ac- cordance with the elements of the primary side. The performances of the battery charger in their global- ity are highly dependent on the adequation of the primary and the secondary elements. The addition of the diode D9 is necessary to avoid dramatic discharge of the battery cells in case of the charger disconnection from the mains voltage, and therefore, the voltage measurement is to be operated on the cathode side of the diode not to take its voltage drop into account. The total bridge value of R1, R2, R3 must ensure low battery dis- charge if the charger is disconnected from main, but remains connected to the battery by mistake. The chosen values impose a 44 µA discharge cur- rent max. R12 and R13 are the equivalent resistors seen from the opamp and from the comparator. A hysteresis resistor can be connected to the ”End Of Charge” comparator to ensureproper hysteresis to this signal, but this resistor must be chosen carefully not to degrade the output voltage preci- sion. It might be needed to impose unidirectionnal hysteresis (by inserting a diode on the positive feedback of the comparator). Figure 3 shows how to use the integrated Voltage Reference to build a precise Power Supply for the TSM102 8/10 |
Numéro de pièce similaire - TSM102 |
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Description similaire - TSM102 |
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