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Digitally Controlled Potentiometer (XDCP™)

Package Information

Pkg. Code EXA
Pitch (mm) 2.54
Lead Count (#) 8
Pkg. Type PDIP
Pkg. Dimensions (mm) 9.52 x 6.35 x 3.30

Environmental & Export Classifications

Moisture Sensitivity Level (MSL) Not Applicable
ECCN (US) EAR99
RoHS (X9C103PZ) Download
Pb (Lead) Free Yes
HTS (US)

Product Attributes

Carrier Type Tube
Moisture Sensitivity Level (MSL) Not Applicable
Advanced Features Integrated charge pump to allow for single supply to swing -5.5V to 5.5V
Channels (#) 1
End-to-End Temperature Coefficient (ppm/°C) 300
Interface 3-Wire (Up/Down)
Lead Count (#) 8
Length (mm) 9.5
MOQ 800
Memory Type Nonvolatile
Middlepoint Ratiometric Tempco 20
Pb (Lead) Free Yes
Pb Free Category Pb-Free 100% Matte Tin Plate w/Anneal-e3
Pitch (mm) 2.5
Pkg. Dimensions (mm) 9.5 x 6.3 x 3.30
Pkg. Type PDIP
Qualification Level Standard
Resistance Options (kΩ) 10
Resistance Taper Linear
Single Supply Voltage Range (V) 0 - 5.5
Supply Current Icc (µA) 750
Supply Voltage Vcc (Min) (V) 4.5
Supply Voltage Vcc Range 4.5 to 5.5
Taps (#) 100
Temp. Range 0 to +70°C
Thickness (mm) 3.3
VL Terminal Voltage (Max) (V) 5
VL Terminal Voltage (Min) (V) -5
Width (mm) 6.3
Wiper Current (mA) 4.4
Wiper Resistance (ohms) 40

Description

The X9C102, X9C103, X9C104, X9C503 are Intersil's digitally controlled (XDCP) potentiometers. The device consists of a resistor array, wiper switches, a control section, and non-volatile memory. The wiper position is controlled by a three-wire interface. The potentiometer is implemented by a resistor array composed of 99 resistive elements and a wiper switching network. Between each element and at either end are tap points accessible to the wiper terminal. The position of the wiper element is controlled by the CS, U/D, and INC inputs. The position of the wiper can be stored in non-volatile memory and then be recalled upon a subsequent power-up operation. The device can be used as a three-terminal potentiometer or as a two-terminal variable resistor in a wide variety of applications ranging from control to signal processing to parameter adjustment.