Part Metadata Review and Update

I’ll update the ADN4624BRNZ terminal metadata in place, using the datasheet pin table for pin type, section, package, IC classification, and mount, then verify the edits.
Updated and verified the ADN4624BRNZ metadata.
Changes made:
  • Set all VDD pins to Power In
  • Set all GND pins to Ground
  • Set all DIN pins to Input
  • Set all DOUT pins to Output
  • Set ~REFRESH1 / ~REFRESH2 to Input
  • Added Section metadata for every terminal: Power, Data, or Control
  • Added concise datasheet-based Pin Description values for every terminal
  • Updated package/classification metadata:
    • Package or Case Code: 28-SOIC
    • Integrated Circuit Type: Logic
    • Logic Function: Buffer
    • Mount: Surface Mount
    • Role: Isolation
Note: the available IC-type options do not include “Digital Isolator” or “Interface,” so I used the closest supported classification: Logic + Buffer, with Role: Isolation and role details identifying it as a quad-channel LVDS galvanic isolator.
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Verify footprint dimensions
Add controlled impedance
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    Assets

    stp

    ADN4624BRNZ

    ADN4624BRNZ.stp3D Model
    ADN4624BRNZ-thumb.png

    ADN4624BRNZ-thumb.png

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    kicad_mod

    ADN4624BRNZ

    SOP65P1030X265-28N.kicad_modFootprint
    ADN4624BRNZ

    ADN4624BRNZ

    ADN4624BRNZ Symbol.svgDefault

    ADN4624BRNZ

    ADN4624BRNZ thumbnail
    5.7 kV RMS/1.5 kV RMS, Quad-Channel LVDS 2.5 Gigabit Isolator (0 Reverse Channels)
    LVDS Digital Isolator 5700Vrms 4 Channel 2.5Gbps 40kV/µs CMTI 28-BSSOP (0.295", 7.50mm Width)
    The ADN4624 is a quad-channel, signal isolated, low voltage differential signaling (LVDS) buffer that operates at up to 2.5 Gbps with very low jitter. The device integrates Analog Devices, Inc., iCoupler® technology, enhanced for high speed operation to provide drop-in galvanic isolation of LVDS signal chains. AC coupling and/or level shifting to the LVDS receivers and from the LVDS drivers allows isolation of other high speed signals such as current mode logic (CML). The ADN4624 includes a refresh mechanism to monitor the input and output states and ensure they remain the same in the absence of data transitions (for example, at power-on). For lower power consumption and high speed operation with low jitter, the LVDS and isolator circuits rely on 1.8 V supplies. The ADN4624 is fully specified over a wide industrial temperature range and is available in a 28-lead, wide-body, finer pitch SOIC_W_FP package with 8.3 mm creepage and clearance (for 5.7 kV rms or 8 kVPEAK surge and impulse voltages and reinforced insulation at ac mains voltages) or 6 mm × 6 mm LFCSP package with 1.27 mm creepage and clearance (for basic/functional isolation).
    FEATURES ► 5.7 kV rms and 1.5 kV rms LVDS isolators ► Complies with TIA/EIA-644-A LVDS signal levels ► Quad-channel configuration ► Any data rate up to 2.5 Gbps switching with low jitter ► 10 Gbps total bandwidth across four channels ► 2.15 ns typical propagation delay ► Typical jitter: 0.82 ps rms random, 40 ps total peak ► Lower power 1.8 V supplies ► ±8 kV IEC 61000-4-2 ESD protection across isolation barrier ► High common-mode transient immunity: 100 kV/μs typical ► Safety and regulatory approvals (28-lead SOIC_W_FP package) ► UL (pending): 5700 V rms for 1 minute per UL 1577 ► CSA Component Acceptance Notice 5A (pending) ► VDE certificate of conformity (pending) ► DIN V VDE V 0884-11 (VDE V 0884-11):2017-01 ► VIORM = 849 VPEAK (working voltage) ► Enable or disable refresh (low speed output correctness check) ► Operating temperature range: −40°C to +125°C ► 28-lead, wide-body, finer pitch SOIC_W_FP package with 8.3 mm creepage and clearance or 6 mm × 6 mm LFCSP package with 1.27 mm creepage and clearance APPLICATIONS ► Isolated video and imaging data ► Analog front-end isolation ► Data plane isolation ► Isolated high speed clock and data links ► Multi-gigabit serialization/deserialization (SERDES) ► Board-to-board optical replacement (for example, short reach fiber)

    Properties

    ADN4624BRNZ

    Analog Devices

    Integrated Circuits

    IC

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