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ADIN1110CCPZ-R7 数据表(PDF) 25 Page - Analog Devices |
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ADIN1110CCPZ-R7 数据表(HTML) 25 Page - Analog Devices |
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25 / 104 page ![]() Data Sheet ADIN1110 APPLICATIONS INFORMATION analog.com Rev. 0 | 25 of 104 3.3 V. For higher current requirements, consider using the circuit described in Transistor Controlled LED. Active High LED Polarity In the active high configuration, the LED_x pin can drive an external LED from the anode side. Select the R0 and R1 resistors to control the LED current (refer to the selected LED specifications in Table 2 for information). External pull-down resistors (RPD0, RPD1) with a value of 4.7 kΩ are recommended. Figure 15. Recommended Active High LED Circuit Active Low LED Polarity In active low configuration, the LED_x pin can drive an external LED from the cathode side. Select the R0 and R1 resistors to control the LED current (refer to the selected LED specifications in Table 2 for information). External pull-up resistors (RPU0, RPU1) with a value of 4.7 kΩ are recommended. Figure 16. Recommended Active Low LED Circuit Transistor Controlled LED Figure 17 displays a typical configuration where the LED current required is higher than what the LED_0 and LED_1 pins can supply. The circuit operates using the active high LED mode. An external transistor such as an N-channel metal-oxide semiconductor field effect transistor (MOSFET) can be used. The transistor must be selected so the gate input capacitance is not sinking current above the maximum rating of the LED during the actuation (refer to the transistor technical specifications for information). If required, the inrush current can be reduced by placing a resistance between the transistor gate and the ADIN1110 pin, and/or adding a parallel capacitor between the GND and the LED_x pin. The additional re- sistor and capacitor values must be defined based on the transistor selection. Select the R0 and R1 resistors to control the LED current. External pull-down resistors (RPD0, RPD1) with a value of 4.7 kΩ are recom- mended. VCC can be set to match the LED power requirements. Figure 17. Recommended Transistor Controlled LED Circuit Autosense Polarity In autosense mode, the polarity of the LED is automatically detect- ed during power-up, hardware reset, or software reset. LED_0 (internal pull-up) and LED_1 (internal pull-down) have differ- ent autosense behaviors due to their internal pull-up and pull-down configurations. Use one of the configurations described in the Active High LED Polarity, Active Low LED Polarity, and Transistor Controlled LED sections so that the two LED_x pins can be control- led the same way. COMPONENT RECOMMENDATIONS Crystal The typical connection for an external crystal (XTAL) is shown in Figure 18. To ensure minimum current consumption and minimize stray capacitances, make connections between the crystal, capaci- tors, and ground as close to the ADIN1110 as possible. Consult individual crystal vendors for recommended load information and crystal performance specifications. The crystal specification defines CL. CPCB1 and CPCB2 are the parasitic impedances of the PCB between XTAL_I/CLK_IN and ground, and between XTAL_O and ground, respectively. CX1 is the capacitor connected to XTAL_I/CLK_IN, and CX2 is the capacitor connected to XTAL_O. |
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