AD7143

Features: `Programmable capacitance-to-digital converter`25 ms update rate (@ maximum sequence length)`Better than 1 fF resolution`8 capacitance sensor input channels`No external RC tuning components required`Automatic conversion sequencer`On-chip automatic calibration logic`Automatic compensation...

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AD7143 Picture
SeekIC No. : 004269902 Detail

AD7143: Features: `Programmable capacitance-to-digital converter`25 ms update rate (@ maximum sequence length)`Better than 1 fF resolution`8 capacitance sensor input channels`No external RC tuning component...

floor Price/Ceiling Price

Part Number:
AD7143
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2025/12/26

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Product Details

Description



Features:

`Programmable capacitance-to-digital converter
`25 ms update rate (@ maximum sequence length)
`Better than 1 fF resolution
`8 capacitance sensor input channels
`No external RC tuning components required
`Automatic conversion sequencer
`On-chip automatic calibration logic
`Automatic compensation for environmental changes
`Automatic adaptive threshold and sensitivity levels
`On-chip RAM to store calibration data
`I2C®-compatible serial interface
`Separate VDRIVE level for serial interface
`Interrupt output for host controller
`16-lead, 4 mm x 4 mm LFCSP-VQ
`2.6 V to 3.6 V supply voltage
`Low operating current
`Full power mode: less than 1 mA
`Low power mode: 50 A





Application

·Personal music and multimedia players
·Cell phones
·Digital still cameras
·Smart hand-held devices
·Television, A/V, and remote controls
·Gaming consoles





Pinout

AD7143 Diagram




Specifications

VCC to GND
................... −0.3 V to +3.6 V
Analog Input Voltage to GND
................ −0.3 V to VCC + 0.3 V
Digital Input Voltage to GND
...............−0.3 V to VDRIVE + 0.3 V
Digital Output Voltage to GND
.............. −0.3 V to VDRIVE + 0.3 V
Input Current to Any Pin Except Supplies1... 10 mA
ESD Rating (Human Body Model)......... 2.5 kV
Operating Temperature Range... −40°C to +150°C
Storage Temperature Range.... −65°C to +150°C
Junction Temperature................150°C
LFCSP_VQ
Power Dissipation................. 450 mW
JA Thermal Impedance............135.7°C/W
IR Reflow Peak Temperature......260°C (±0.5°C)
Lead Temperature (Soldering 10 sec) ......300°C


Resolution (Bits) 16bit
T-Put Rate 43.5SPS
# Chan 8
Supply V Single(+2.6 to +3.6)
Pwr Diss 3.6mW
Interface I2C/Ser 2-Wire,Ser
Ain Range ± 2 pF (Delta C)
SNR (dB) n/a
Pkg Type CSP





Description

The AD7143 is an integrated capacitance-to-digital converter (CDC) with on-chip environmental calibration for use in systems requiring a novel user input method. The AD7143 interfaces to external capacitance sensors implementing functions, such as capacitive buttons, scroll bars, and scroll wheels.
The CDC has eight inputs channeled through a switch matrix to a 16-bit, 250 kHz sigma-delta (-) capacitance-to-digital converter. The CDC is capable of sensing changes in the capacitance of the external sensors and uses this information to register a sensor activation. The external sensors can be arranged as a series of buttons, as a scroll bar or wheel, or as a combination of sensor types. By programming the registers, the user has full control over the CDC setup. High resolution sensors require software to run on the host processor.
The AD7143 has on-chip calibration logic to account for changes in the ambient environment. The calibration sequence is performed automatically and at continuous intervals, while the sensors are not touched. This ensures that there are no false or nonregistering touches on the external sensors due to a changing environment.
The AD7143 has an I2C-compatible serial interface and a separate VDRIVE pin for I2C serial interface operating voltages between 1.65 V and 3.6 V.
The AD7143 is available in a 16-lead, 4 mm * 4 mm LFCSP-VQ and operates from a 2.6 V to 3.6 V supply. The operating current consumption is less than 1 mA, falling to 50 A in low power mode (conversion interval of 400 ms).






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