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L9780 Datasheet(PDF) 25 Page - STMicroelectronics |
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L9780 Datasheet(HTML) 25 Page - STMicroelectronics |
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25 / 56 page ![]() DocID026356 Rev 3 25/56 L9780 Main functionalities 55 4.13 Pin HD, HG functionalities: heater FET driver and diagnostic As shown in the block diagram of Figure 2, HG pin is externally connected to the gate of the external heater FET (an NMOS in low-side configuration, with the drain directly connected to the heater element), while HD is connected to the drain through the external resistance RHD (possible range for this resistor is specified in Table 19). The heater is necessary in order to make the sensor work at a correct temperature. The sensor can only operate in high temperature conditions, but as it is not able to reach the desired range of temperature passively, an active heater is usually incorporated into the sensor structure. This heater is normally composed by an ohmic resistor through which the heater FET current is forced. The μP is able to obtain information regarding the sensor temperature from the results of the impedance test performed into the device and communicated to the μP via SPI (the higher is the sensor temperature, the lower is its impedance); consequently, the μP can intervene on sensor temperature acting on PW pin. PW is a digital input pin of the device and can be driven with a PWM signal by the μP. PW pin signal is then internally inverted by the logic and the consequent signal is then applied on HG pin, conditioning the activation/deactivation of the external heater FET (and so the power consumption necessary to heat the sensor). Capacitive coupling due to heater commutations can cause undesired signals on the reference cell; in order to avoid it, the logic freezes the current state of HG signal during the measurement cycle. HG status will be driven again by PW signal once the measurement cycle is completed. In order to avoid that the external FET switches on when VIGN voltage is present but the device is un-powered, a 100 kΩ pull-down resistor is permanently connected to HG pin. A diagnostic circuitry is also present into the heater driver, in order to detect open circuit, short to ground or short to battery fault conditions; the logic into the device can communicate via SPI to the μP the fault detection through OCH, STGH, STBH bit status. The actions related to the diagnostic fault detection are described in Section 5.4, while all the heater diagnostic thresholds are specified in Table 13. More details about the heater diagnostic bits can be found in Section 6.4. The ranges of the electrical parameters of the heater FET driver are specified in Table 12 and Table 15. |
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