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ISL97635A датащи(PDF) 14 Page - Renesas Technology Corp |
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ISL97635A датащи(HTML) 14 Page - Renesas Technology Corp |
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14 / 29 page ![]() ISL97635A FN6564 Rev.3.00 Page 14 of 29 Sep 26, 2017 Fault/Status Register so that the host processor can interrogate the data for failure monitoring. Short-Circuit Protection (SCP) The short-circuit detection circuit monitors the voltage on each channel and disables faulty channels which are detected above the programmed short-circuit threshold. There are two selectable levels of short-circuit threshold (3.1V and 8.0V) that can be programmed through the Configuration Register 0x08 Bit 0. When an LED becomes shorted, the action taken is described in Table 1. The default short-circuit threshold is 8V. The detection of this failure mode can be disabled via register 0x08 bit 1 if required. Open Circuit Protection (OCP) When one of the LEDs becomes open circuit, it can behave as either an infinite resistance or a gradually increasing finite resistance. The ISL97635A monitors the current in each channel such that any string which reaches at least 75% of the intended output current is considered “good”. Should the current subsequently fall below 50% of the target, the channel will be considered an “open circuit”. Furthermore, should the boost output of the ISL97635A reach the OVP limit or should the lower over-temperature threshold be reached, all channels which are not “good” will immediately be considered as “open circuit”. Detection of an “open circuit” channel will result in a time-out before disabling of the affected channel. This time-out is sped up when the device is above the lower over-temperature threshold in an attempt to prevent the upper over-temperature trip point from being reached. Some users employ some special types of LEDs that have zener diode structure in parallel with the LED for ESD enhancement and enabling open circuit operation. When this type of LED is open circuited, the effect is as if the LED forward voltage has increased but no lighting. Any affected string will not be disabled, unless the failure results in the boost OVP limit being reached, allowing all other LEDs in the string to remain functional. Care should be taken in this case that the boost OVP limit and SCP limit are set properly, so as to make sure that multiple failures on one string do not cause all other good channels to be faulted out. This is due to the increased forward voltage of the faulty channel making all other channels look as if they have LED shorts. See Table 1 for details regarding responses to fault conditions. Overvoltage Protection (OVP) The integrated OVP circuit monitors the output voltage and keeps the voltage at a safe level. The OVP threshold is set as Equation 14: These resistors should be large to minimize the power loss. For example, a 1MΩ RUPPER and 39kΩ RLOWER sets OVP to 32.2V. Large OVP resistors also allow COUT discharges slowly during the PWM off time. Undervoltage Lockout If the input voltage falls below the UVLO level of 2.45V, the device will stop switching and reset. Operation will restart when the voltage comes back into the operating range. Input Overcurrent Protection During normal switching operation, the current through the internal boost power FET is monitored. If the current exceeds the current limit, the internal switch will be turned off. This monitoring happens on a cycle-by-cycle basis in a self protecting way. Additionally, the ISL97635A monitors the voltage at the LX and OVP pins. At start-up, a fixed current is injected out of the LX pins and into the output capacitor. The device will not start-up unless the voltage at LX exceeds 1.2V. Furthermore, should the voltage at LX not rise above this threshold during any subsequent period where the power FET is not switched on, it will immediately disable the input protection FET. The OVP pin is also monitored such that if it rises above and subsequently falls below 20% of the target OVP level, the input protection FET will also be switched off. Over-Temperature Protection (OTP) The ISL97635A includes two over-temperature thresholds. The lower threshold is set to +130°C. When this threshold is reached, any channel which is outputting current at a level significantly below the regulation target will be treated as “open circuit” and disabled after a time-out period. This time-out period is also reduced to 800µs when it is above the lower threshold. The intention of the lower threshold is to allow bad channels to be isolated and disabled before they cause enough power dissipation (as a result of other channels having large voltages across them) to hit the upper temperature threshold. The upper threshold is set to +150°C. Each time this is reached, the boost will stop switching and the output current sources will be switched off. Once the device has cooled to approximately +100°C, the device will restart with the DC LED current level reduced to 77% of the initial setting. If the dissipation problem persists, subsequent hitting of the limit will cause identical behavior, with the current reduced in steps to 53% and finally 30%. Hitting of the upper threshold will also set the thermal fault bit of the Fault/Status register 0x02. Unless disabled via the EN pin, the device stays in an active state throughout, allows the external processor to interrogate the fault condition. OVP 1.21V RUPPER RLOWER + R LOWER = (EQ. 14) |
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