Pin Function Grouping

Looking at the datasheet of this component, can you group together pins by their functions? for example for Power, DVDD, DGND ground etc Also can you place them into their respective sections based on their functions NOTE: If you group them, can you not add the same pin if you already added them in a group? You should know which pin function is common for its function
I’ll extract the AD7714 pinout from the datasheet, verify the existing pin properties, then assign each pin to exactly one functional section/group so there are no duplicates.
Done — I grouped all 24 AD7714 pins into single, non-overlapping functional groups and placed them into matching sections.
Summary:
  • Power: AVDD, DVDD
  • Ground: AGND, DGND
  • Analog: AIN1–AIN6, REFIN(+), REFIN(–)
  • Clock: MCLKIN, MCLKOUT
  • Serial/SPI: SCLK, DIN, DOUT, ~CS, ~DRDY, POL
  • Control: ~RESET, ~SYNC, ~STANDBY, BUFFER
I also set pin types and descriptions for each terminal, then verified every pin has exactly one functional group and one section.
Run ERC check
Show grouped pins
Check decoupling
Add SPI connections
AIN2
AIN5
AIN4
MCLKOUT
~{SYNC}
~{DRDY}
DOUT
~{STANDBY}
DIN
AGND
AIN6
DVDD
MCLKIN
~{RESET}
BUFFER
REFIN(–)
AIN3
~{CS}
SCLK
AVDD
POL
DGND
AIN1
REFIN(+)


AD7714YNZ

AD7714YNZ thumbnail
24 Bit Analog to Digital Converter 3, 5 Input 1 Sigma-Delta 24-PDIP
AD7714 DIP-24
The AD7714 is a complete analog front end for low-frequency measurement applications. The device accepts low level signals directly from a transducer and outputs a serial digital word. It employs a sigma-delta conversion technique to realize up to 24 bits of no missing codes performance. The input signal is applied to a proprietary programmable gain front end based around an analog modulator. The modulator output is processed by an onchip digital filter. The first notch of this digital filter can be programmed via the on-chip control register allowing adjustment of the filter cutoff and settling time. The part features three differential analog inputs (which can also be configured as five pseudo-differential analog inputs) as well as a differential reference input. It operates from a single supply (+3␣ V or +5␣ V). The AD7714 thus performs all signal conditioning and conversion for a system consisting of up to five channels
Charge Balancing ADC 24 Bits No Missing Codes 0.0015% Nonlinearity Five-Channel Programmable Gain Front End Gains from 1 to 128 Can Be Configured as Three Fully Differential Inputs or Five Pseudo-Differential Inputs Three-Wire Serial Interface SPI™, QSPI™, MICROWIRE™ and DSP Compatible 3 V (AD7714-3) or 5 V (AD7714-5) Operation Low Noise (<150 nV rms) Low Current (350␣ mA typ) with Power-Down (5 mA typ) AD7714Y Grade: +2.7 V to 3.3 V or +4.75 V to +5.25 V Operation 0.0010% Linearity Error –408C to +1058C Temperature Range Schmitt Trigger on SCLK and DIN Low Current (226␣ mA typ) with Power-Down (4 mA typ) Lower Power Dissipation than Standard AD7714 Available in 24-Lead TSSOP Package Low-Pass Filter with Programmable Filter Cutoffs Ability to Read/Write Calibration Coefficients APPLICATIONS Portable Industrial Instruments Portable Weigh Scales Loop-Powered Systems Pressure Transducers

Properties

ADI(亚德诺)

U

AD7714YNZ

C651463

PDIP-24_L32.5-W6.5-P2.54-LS7.9-BL

Analog To Digital Converters (ADCs)

Extended Part

parametric-v1

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