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L99MOD53XP 数据表(PDF) 21 Page - STMicroelectronics |
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L99MOD53XP 数据表(HTML) 21 Page - STMicroelectronics |
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21 / 35 page ![]() DS12617 Rev 5 21/35 L99MOD53XP Application information 34 3.10 Current monitor The current monitor output sources a current image at the current monitor output which has a fixed ratio (1/10000) of the instantaneous current of the selected high-side driver. The bits 18 and 19 of the input data register 0 control which of the outputs OUT1, OUT4, OUT5, and OUT8 are multiplexed to the current monitor output. The current monitor output allows a more precise analysis of the actual state of the load rather than the detection of an open- or overload condition. For example this can be used to detect the motor state (starting, free- running, stalled). Moreover, it is possible to regulate the power of the defroster more precisely by measuring the load current. The current monitor output is bidirectional (c.f. PWM inputs). 3.11 PWM inputs Each driver has a corresponding PWM enable bit which can be programmed by the SPI interface. If the PWM enable bit in input data register 1 is set, the output is controlled by the logically AND-combination of the PWM signal and the output control bit in input data register 0. The outputs OUT1-OUT6 and OUT8 are controlled by the PWM1 input and the output OUT7 is controlled by the bidirectional input CM/PMW2. For example, the two PWM inputs can be used to dim two lamps independently by external PWM signals. 3.12 Cross-current protection The six half-bridges of the device are cross-current protected by an internal delay time. If one driver (LS or HS) is turned-off the activation of the other driver of the same half bridge is automatically delayed by the cross-current protection time. After the cross-current protection time is expired the slew-rate limited switch-off phase of the driver is changed to a fast turn- off phase and the opposite driver is turned-on with slew-rate limitation. Due to this behavior it is always guaranteed that the previously activated driver is totally turned-off before the opposite driver starts to conduct. 3.13 Programmable soft start function to drive loads with higher inrush current Loads with start-up currents higher than the over-current limits (e.g. inrush current of lamps, start current of motors and cold resistance of heaters) can be driven by using the programmable soft start function (i.e. overcurrent recovery mode). Each driver has a corresponding over-current recovery bit. If this bit is set, the device switches-on automatically the outputs again after a programmable recovery time. The duty cycle in over- current condition can be programmed by the SPI interface to be about 12% or 25%. The PWM modulated current provides sufficient average current to power up the load (e.g. heat up the bulb) until the load reaches operating condition. The PWM frequency settles at 3 kHz or 6 kHz. The device itself cannot distinguish between a real overload and a non linear load like a light bulb. A real overload condition can only be qualified by time. As an example the microcontroller can switch on light bulbs by setting the over-current recovery bit for the first 50 ms. After clearing the recovery bit the output is automatically disabled if the overload condition still exits. |
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