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X9C303 Datasheet(PDF) 2 Page - Xicor Inc. |
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X9C303 Datasheet(HTML) 2 Page - Xicor Inc. |
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2 / 10 page ![]() X9C303 Characteristics subject to change without notice. 2 of 10 REV 1.1 4/27/01 www.xicor.com PIN DESCRIPTIONS VH and VL The high (VH) and low (VL) terminals of the device are equivalent to the fixed terminals of a mechanical potentiometer. The minimum voltage is –5V and the maximum is +5V. It should be noted that the terminol- ogy of VL and VH references the relative position of the terminal in relation to wiper movement direction selected by the U/D input and not the voltage potential on the terminal. VW VW is the wiper terminal, equivalent to the movable ter- minal of a mechanical potentiometer. The position of the wiper within the array is determined by the control inputs. The wiper terminal series resistance is typically 40 Ω. Up/Down (U/D) The U/D input controls the direction of the wiper move- ment and whether the counter is incriminated or decre- mented. Increment (INC) The INC input is negative-edge triggered. Toggling INC will move the wiper and either increment or decrement the counter in the direction indicated by the logic level on the U/D input. Chip Select (CS) The device is selected when the CS input is LOW. The current counter value is stored in nonvolatile memory when CS is returned HIGH while the INC input is also HIGH. After the store operation is complete the device will be placed in the low power standby mode until the device is selected once again. PIN CONFIGURATION PIN NAMES POTENTIOMETER RELATIONSHIPS VCC CS VL VW INC U/D VH VSS 1 2 3 4 8 7 6 5 X9C303 DIP/SOIC/(TSSOP) (CS) (VCC) (INC) (U/D) (VL) (VW) (VSS) (VH) Symbol Description VH High Terminal (Potentiometer) VW Wiper Terminal (Potentiometer) VL Low Terminal (Potentiometer) VSS Ground VCC Supply Voltage U/D Up/Down Control Input INC Increment Control Input CS Chip Select Control Input NC No Connection VL VH (VS) R99 R98 R2 R1 S100 S99 S98 S3 S2 S1 VW G i 20Log R 1 R 2 . . . R i ++ + R TOTAL ------------------------------------------------- V W V S --------- V L 0V = () == R 1 R 2 . . . R 99 ++ + 33K Ω @R TOTAL = (Refer Test Circuit 1) |
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