ADN4624

RECOMMENDED FOR NEW DESIGNS

5.7 kV RMS/1.5 kV RMS, Quad-Channel LVDS 2.5 Gigabit Isolator (0 Reverse Channels)

Part Models
4
1ku List Price
Starting From $15.89

Part Details

  • 5.7 kV rms and 1.5 kV rms LVDS isolators
  • Complies with TIA/EIA-644-A LVDS signal levels
  • Quad-channel configuration (ADN4622: 2 + 2, ADN4624: 4 + 0)
  • 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
  • 28-lead, wide-body, finer pitch SOIC_W_FP package with 8.3 mm creepage and clearance
    • UL 1577:
      • VISO= 5700 V rms for 1 minute
    • IEC/EN/CSA 62368-1 (pending)
    • IEC/CSA 60601-1 (pending)
    • IEC/CSA 61010-1 (pending)
    • CQC GB4943.1 (pending)
    • VDE certificate of conformity (pending)
      • DIN EN IEC 60747-17 (VDE 0884-17) (pending)
      • VIORM = 849 V peak
  • 32-lead LFCSP package with 1.27 mm creepage and clearance
    • UL 1577:
      • VISO= 1500 V rms for 1 minute
    • IEC/EN/CSA 62368-1 (pending)
    • IEC/CSA 60601-1 (pending)
    • IEC/CSA 61010-1 (pending)
    • CQC GB4943.1 (pending)
    • DIN EN IEC 60747-17 (VDE 0884-17) (pending):
      • VIORM = 560 V peak
  • Enable or disable refresh (low-speed output correctness check)
  • Operating temperature range: −40°C to +125°C
ADN4624
5.7 kV RMS/1.5 kV RMS, Quad-Channel LVDS 2.5 Gigabit Isolator (0 Reverse Channels)
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Evaluation Kits

eval board
EVAL-ADN4622/EVAL-ADN4624

Evaluating the ADN4622/ADN4624 5.7 kV rms/1.5 kV rms, Quad-Channel LVDS 2.5 Gigabit Isolators

Features and Benefits

  • Isolated ground planes (logic side and bus side)
  • High speed layout supports 2.5 Gigabit operation and precision jitter measurements (<1 ps rms for random jitter)
  • Convenient connections through SMA terminals
    • 1.8 V power on Side 1 (VDD1) and Side 2 (VDD2)
    • ADN4622: 3.3 V power for LVDS receivers on Side 1 (VIO1) and Side 2 (VIO2)
    • Ground on Side 1 (GND1) and ground on Side 2 (GND2)
    • LVDS input signals: DIN1+, DIN1−, DIN2+, DIN2−, DIN3+, DIN3−, DIN4+, DIN4−
    • LVDS output signals: DOUT1+, DOUT1−, DOUT2+, DOUT2−, DOUT3+, DOUT3−, DOUT4+, DOUT4−
  • Jumper-selectable refresh mode
  • Termination resistors on all LVDS receivers

Product Details

The EVAL-ADN4622EB1Z and EVAL-ADN4624EB1Z allow quick and simple evaluation of the ADN4622 and ADN4624 low-voltage differential signaling (LVDS) isolators respectively, without the need for external components. The ADN4622/ADN4624 employ Analog Devices, Inc., iCoupler® technology to combine a 4-channel isolator with LVDS receivers and drivers into a single, 28-lead wide-body SOIC package with finer pitch. The devices are capable of running at data rates of up to 2.5 Gbps with low jitter.

The EVAL-ADN4622EB1Z and EVAL-ADN4624EB1Z have a separate ground and power plane for each side of the isolator. This separation enables the evaluation of the ADN4622/ADN4624 with galvanic isolation between both sides of the device. 1.8 V power supplies are required on each side of the ADN4622/ADN4624 device, and the ADN4622 additionally requires a 3.3 V power supply on each side.

For full details on the ADN4622/ADN4624, see the ADN4622/ADN4624 data sheet, which must be consulted in conjunction with the user guide when using the EVAL-ADN4622EB1Z or EVALADN4624EB1Z.

EVAL-ADN4622/EVAL-ADN4624
Evaluating the ADN4622/ADN4624 5.7 kV rms/1.5 kV rms, Quad-Channel LVDS 2.5 Gigabit Isolators

Reference Designs

Electronic Board - Angle View
CN0571 Circuits from the lab

Galvanically Isolated Full HD 1080p/60Hz HDMI PHY Using iCoupler Isolation Technology

Features and Benefits

  • Circuit Evaluation Boards
    • CN-0571 Circuit Evaluation Board (EVAL-CN0571-EBZ)
  • Design and Integration Files
    • Schematics, Layout Files, Bill of Materials
CN0571
Galvanically Isolated Full HD 1080p/60Hz HDMI PHY Using iCoupler Isolation Technology

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