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IX9915 Datasheet(PDF) 7 Page - IXYS Corporation |
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IX9915 Datasheet(HTML) 7 Page - IXYS Corporation |
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7 / 10 page ![]() INTEGRATED CIRCUITS DIVISION IX9915 R01 www.ixysic.com 7 2. Functional Description IX9915 is the functional equivalent of a 4-terminal 431 type precision shunt regulator and a high voltage Darlington transistor in the same package. The typical application for IX9915 is shown in Figure 5. Figure 5 IX9915 Application Diagram This is a simplified application circuit that shows how the IX9915 can be used in an LED lamp control circuit. The high voltage Darlington transistor will bleed the current when VLINE is lower than the predetermined voltage. The 4-terminal 431 type shunt regulator is used to monitor VLINE voltage and control the Darlington transistor bleeding the current (ON) or not (OFF). When VLINE reaches the predetermined voltage, the shunt regulator starts to regulate to drive VOC going low, and turns off the Darlington transistor to make sure this bleeder circuitry only burns a little power at the higher VLINE voltage. Maximum bleeding current IH can be controlled by properly choosing RE and VREG. Regulation of VREG is made possible by applying a scaled sample of its voltage to pin FB, the error amplifier's non-inverting input. The error amplifier compares this scaled voltage against an internal high accuracy reference voltage and generates an output current which in turn regulate VREG through the resistor R3. As VREG increases, the error amplifier's input voltage VFB will also increase. Ramping of VFB beyond the internal reference voltage causes the error amplifier to sink more IOC, which in turn decreases VREG. Likewise, a reduction of VREG results in a lessoning of IOC causing VREG to increase. 2.1 Regulation Voltage When connected as shown in the application circuit above and properly configured, the IX9915 will regulate VREG such that VFB is equal to VREF(1.299V). To achieve this, the values of the voltage divider resistors, R1 and R2, must be set in the following manner: Because VREG regulation occurs when VFB=VREF any change in bias current through R2 at the desired regulated voltage level will cause a regulation error. As shown in the Electrical Characteristics table the error amplifier input at pin FB has an input bias current (IIB) specification that reduces the current into R2. (IIB is + _ + _ OC FB V CC C E B V SS I OC I Q R 2 R 1 R E I 1 I H V REG R 3 I 3 R 0 V REF +V LINE Rectifier Dimmer Switch AC Supply - R 1 R 2 ------ V REG V REF ------------- 1 – = |
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