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AD5258BRMZ1-R71 データシート(PDF) 20 Page - Analog Devices |
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AD5258BRMZ1-R71 データシート(HTML) 20 Page - Analog Devices |
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20 / 24 page ![]() AD5258 Rev. 0 | Page 20 of 24 DISPLAY APPLICATIONS CIRCUITRY A special feature of the AD5258 is its unique separation of the VLOGIC and VDD supply pins. The reason for doing this is to provide greater flexibility in applications that do not always provide needed supply voltages. In particular, LCD panels often require a VCOM voltage in the range of 3 V to 5 V. The circuit in Figure 45 is the rare exception in which a 5 V supply is available to power the digital potentiometer. A B W R2 10k Ω R1 70k Ω R3 25k Ω VDD VLOGIC SCL SDA GND – + U1 AD8565 3.5V < VCOM < 4.5V 14.4V VCC (~3.3V) 5V AD5258 MCU C1 1 µF R5 10k Ω R6 10k Ω Figure 45. VCOM Adjustment Application In the more common case shown in Figure 46, only analog 14.4 V and digital logic 3.3 V supplies are available. By placing discrete resistors above and below the digital pot, VDD can now be tapped off the resistor string itself. Based on the chosen resistor values, the voltage at VDD in this case equals 4.8 V, allowing the wiper to be safely operated all the way up to 4.8 V. The current draw of VDD will not affect that node’s bias because it is only on the order of microamps. VLOGIC is tied to the MCU’s 3.3 V digital supply because VLOGIC will draw the 35 mA which is needed when writing to the EEPROM. It would be impractical to try and source 35 mA through the 70 kΩ resistor, therefore, VLOGIC is not connected to the same node as VDD. For this reason, VLOGIC and VDD are provided as two separate supply pins that can either be tied together or treated inde- pendently; VLOGIC supplying the logic/EEPROM with power, and VDD biasing up the A, B, and W terminals for added flexibility. A B W R2 10k Ω R1 70k Ω R3 25k Ω VDD VLOGIC SCL SDA GND – + U1 AD8565 3.5V < VCOM < 4.5V 14.4V VCC (~3.3V) AD5258 MCU C1 1 µF R5 10k Ω R6 10k Ω SUPPLIES POWER TO BOTH THE MICRO AND THE LOGIC SUPPLY OF THE DIGITAL POT Figure 46. Circuitry When a Separate Supply is Not Available for VDD For a more detailed look at this application, refer to the article, “Simple VCOM Adjustment uses any Logic Supply Voltage” in the September 30, 2004, issue of EDN magazine. |
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