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AD5290YRMZ50-R7 Datasheet(PDF) 17 Page - Analog Devices |
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AD5290YRMZ50-R7 Datasheet(HTML) 17 Page - Analog Devices |
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17 / 20 page ![]() Data Sheet AD5290 Rev. C | Page 17 of 20 ESD PROTECTION All digital inputs are protected with a series input resistor and a Zener ESD structure, as shown in Figure 30. These structures apply to digital input pins, Pin CS, Pin CLK, Pin SDI, and Pin SDO. LOGIC 340 Ω GND Figure 30. Equivalent ESD Protection Circuit All analog terminals are also protected by Zener ESD protection diodes, as shown in Figure 31. VSS VDD A W B Figure 31. Equivalent ESD Protection Analog Pins TERMINAL VOLTAGE OPERATING RANGE The AD5290 VDD and VSS power supplies define the boundary conditions for proper 3-terminal digital potentiometer opera- tion. The AD5290 can operate in single supply from +4.5 V to +33 V or dual supply from ±4.5 V to ±16.5 V. The AD5290 is functional at low supply voltages such as 4.5 V, but the performance parameters are not guaranteed. The voltages present on Terminal A, Terminal B, and Terminal W that are more positive than VDD or more negative than VSS are clamped by the internal forward-biased diodes (Figure 31). POWER-UP AND POWER-DOWN SEQUENCES Because of the ESD protection diodes that limit the voltage compliance at Terminal A, Terminal B, and Terminal W (Figure 31), it is important to power VDD/VSS before applying any voltage to Terminal A, Terminal B, and Terminal W. Otherwise, the diodes are forward-biased such that VDD/VSS are powered unintentionally and affect the system. Similarly, VDD/VSS should be powered down last. The ideal power-up sequence is as follows: GND, VDD, VSS, digital inputs, and VA/VB/VW. The order of powering VA, VB, VW, and the digital inputs is not important, as long as they are powered after VDD/VSS. LAYOUT AND POWER SUPPLY BIASING It is good practice to use a compact, minimum lead-length layout design. The leads to the input should be as direct as possible, with a minimum conductor length. Ground paths should have low resistance and low inductance. Similarly, it is also good practice to bypass the power supplies with quality capacitors. Low equivalent series resistance (ESR), 1 µF to 10 µF tantalum or electrolytic capacitors, should be applied at the supplies to minimize any transient disturbance and to filter low frequency ripple. Figure 32 illustrates the basic supply-bypassing configuration for the AD5290. The ground pin of the AD5290 is a digital ground reference. To minimize the digital ground bounce, the AD5290 digital ground terminal should be joined remotely to the analog ground (Figure 32). VDD VDD VSS VSS GND C3 AD5290 C4 C1 + + C2 10 µF 10 µF 0.1 µF 0.1 µF Figure 32. Power Supply Bypassing |
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