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MIC2299 データシート(PDF) 9 Page - Micrel Semiconductor |
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MIC2299 データシート(HTML) 9 Page - Micrel Semiconductor |
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9 / 14 page ![]() Micrel, Inc. MIC2299 October 2007 9 M9999-101907-B Over-Voltage Protection The MIC2299 offers over-voltage protection functionality. If an LED is disconnected from the circuit or the feedback pin is shorted to ground, the feedback pin will fall to ground potential. This will cause the MIC2299 to switch at full duty cycle in an attempt to maintain the feedback voltage. As a result, the output voltage will climb out of control. This may cause the switch node voltage to exceed its maximum voltage rating, possibly damaging the IC and the external components. To ensure the highest level of protection, the MIC2299 OVP pin will shut the switch off when an over-voltage condition is detected, saving itself and the output capacitor from damage. OVP threshold can be increase by adding a resistor divider between the output and ground. Be careful not to exceed the 30V rating of the switch. Figure 4. Adjustable OVP circuit Brightness Control Pin Brightness Functionality BRT Pin VFB (V) OPEN 200mV or VSS/DIM GND 40mV ≥20kΩ to 100kΩ [RBRT] to GND (10µA × RBRT)/5 SS/DIM VFB (V) OPEN 200mV VSS/DIM VSS/DIM Table 1. BRT and SS/DIM Brightness Control Functionality The MIC2299 has built in brightness/dimming functionally for white LED applications. The BRT and SS/DIM pins are available for brightness/dimming control functionality. The table in Table 1 illustrates the different modes of dimming offered by the BRT and SS/DIM pins. The resulting LED current is then calculated as: ILED = VFB/RSENSE Hence, a 200m Ω sense resistor will achieve nominally 1A when both DIM and BRT pins are left open. PWM control of brightness A control signal can be driven into the enable pin to vary average current through the LED for applications not sensitive to low frequency (~100Hz) light modulation. For such applications, the SS/DIM pin capacitance should be minimized to achieve a fast turn on time. An absent capacitor at the SS pin will achieve a soft start period of approximately 1ms with a CCOMP value of 33nF. For other applications, where no analog control voltage is available, the BRT pin can be driven through a low pass filter (18kΩ and 470nF) at a PWM frequency of >5kHz to set the FB voltage, and therefore, the LED current from 20% to 100% of Nominal LED current (Figure 5). Figure 5. High Frequency PWM Programming Via BRT Pin Since the DIM pin is typically utilized for soft start, it is recommended to use the enable and BRT pins for the PWM method of adjusting the average LED current. Figures 6 and 7 below show typical results for this method. Figure 6. Enable Pin PWM Freq = 100Hz Enable Pin Programming |
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