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ZXLD1370QESTTC 데이터시트(PDF) 28 Page - Diodes Incorporated |
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ZXLD1370QESTTC 데이터시트(HTML) 28 Page - Diodes Incorporated |
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28 / 39 page ![]() ZXLD1370Q Document number: DS37117 Rev. 4 - 2 28 of 39 www.diodes.com February 2018 © Diodes Incorporated ZXLD1370Q Application Information (Cont.) Thermal Control of LED Current For thermal control of the LEDs, the ZXLD1370Q monitors the voltage on the TADJ pin and reduces output current if the voltage on this pin falls below 625mV. An external NTC thermistor and resistor can therefore be connected as shown below to set the voltage on the TADJ pin to 625mV at the required temperature threshold. This will give 100% LED current below the threshold temperature and a falling current above it as shown in the graph. The temperature threshold can be altered by adjusting the value of RTH and/or the thermistor to suit the requirements of the chosen LED. The Thermal Control feature can be disabled by connecting TADJ directly to REF. Here is a simple procedure to design the thermal feedback circuit: (1) Select the temperature threshold TTHRESHOLD at which the current must start to decrease (2) Select the Thermistor TH1 (both resistive value at +25°C and beta) (3) Select the value of the resistor RTH as RTH = TH at TTHRESHOLD 85 ˚C 70 ˚C ILED 100% 10% TLED Thermal network response in Buck configuration with: Rth = 1.8k Ω and TH1=10kΩ (beta =3900) REF TADJ Rth TH1 Figure 34 Thermal Feedback Network The thermistor resistance, RT, at a temperature of T degrees Kelvin is given by: T e R R R 1 T 1 B R T Where: RR is the thermistor resistance at the reference temperature, TR TR is the reference temperature, in Kelvin, normally 273 + 25 = 298K (+25°C) B is the “beta” value of the thermistor. For example, (1) Temperature threshold TTHRESHOLD = 273 + 70 = 343K (+70°C) (2) TH1 = 10k Ω at +25°C and B = 3900 RT = 1.8kΩ @ +70°C (3) RTH = RT at TTHRESHOLD = 1.8k Ω Overtemperature Shutdown The ZXLD1370Q incorporates an overtemperature shutdown circuit to protect against damage caused by excessive die temperature. A warning signal is generated on the STATUS output when die temperature exceeds +125°C nominal and the output is disabled when die temperature exceeds +150°C nominal. Normal operation resumes when the device cools back down to +125°C. |
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