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User Guide | EVAL-ADN4693E-1

UG-1924

Evaluating the ADN4693E-1 3.3 V, 200 Mbps, Full-Duplex, High Speed M-LVDS Transceiver

PLEASE SEE THE LAST PAGE FOR AN IMPORTANT
WARNING AND LEGAL TERMS AND CONDITIONS.

Rev. 0 | 1 of 9

FEATURES

Easy evaluation of the 

ADN4693E-1

 200 Mbps, full-duplex, M-

LVDS transceiver

Board layout optimized for high speed signaling

Matched track lengths on M-LVDS differential pairs with control-

led 100 Ω differential impedance

Matched track lengths on high speed DI and RO logic signals

with controlled 50 Ω impedance to GND

SMA jacks for connecting to high speed DI and RO logic signals

and the M-LVDS A, B, Y, and Z signals

Optional screw terminal connectors for accessing the RO, RE,

DE, and DI logic signals

Power and ground connections through screw terminal blocks

Jumper-selectable driver enable and receiver enable via the RE

and DE pins

Test points for measuring all signals and multiple ground points

to facilitate probing of multiple signals

100 Ω termination resistors across A and B signals and Y and Z

signals to simulate a terminated bus

EQUIPMENT NEEDED

A 4 channel oscilloscope

A signal generator

A 3.0 V to 3.6 V power supply

EVALUATION KIT CONTENTS

EVAL-ADN4693E-1EBZ

GENERAL DESCRIPTION

The EVAL-ADN4693E-1EBZ allows quick and easy evaluation

of the ADN4693E-1 200 Mbps, full-duplex, multipoint, low

voltage differential signaling (M-LVDS) transceiver. The EVAL-

ADN4693E-1EBZ allows the input and output functions of the trans-

ceiver to be exercised without the need for external components.

Subminiature A (SMA) connectors provide convenient connections

for high speed logic and the M-LVDS bus signals. Screw terminal

blocks are available to access power, ground, and digital signals.

Jumper options allow control of the driver and receiver enable pins

of the transceiver.

The EVAL-ADN4693E-1EBZ is optimized for high speed signal-

ing. The differential M-LVDS signal traces on the board are

routed as length matched 100 Ω differential pairs. The EVAL-

ADN4693E-1EBZ features a solid ground and power plane for

optimum power integrity.

The EVAL-ADN4693E-1EBZ has a footprint for the ADN4693E-1

full-duplex transceiver in a 4 mm × 4 mm, 16-lead, lead frame chip

scale package (LFCSP).

For full details on the ADN4693E-1, see the ADN4693E-1 data

sheet, which must be used in conjunction with this user guide when

using the EVAL-ADN4693E-1EBZ.

Summary of Contents for EVAL-ADN4693E-1

Page 1: ... NEEDED A 4 channel oscilloscope A signal generator A 3 0 V to 3 6 V power supply EVALUATION KIT CONTENTS EVAL ADN4693E 1EBZ GENERAL DESCRIPTION The EVAL ADN4693E 1EBZ allows quick and easy evaluation of the ADN4693E 1 200 Mbps full duplex multipoint low voltage differential signaling M LVDS transceiver The EVAL ADN4693E 1EBZ allows the input and output functions of the trans ceiver to be exercise...

Page 2: ...1 General Description 1 EVAL ADN4693E 1EBZ Evaluation Board Photograph 3 Evaluation Board Configuration 4 Setting Up the Evaluation Board 4 Input and Output Connections 5 Jumper Connections 5 Evaluation Board Schematic and Layout 6 Ordering Information 9 Bill of Materials 9 REVISION HISTORY 3 2022 Revision 0 Initial Version ...

Page 3: ...User Guide EVAL ADN4693E 1 EVAL ADN4693E 1EBZ EVALUATION BOARD PHOTOGRAPH analog com Rev 0 3 of 9 Figure 1 ...

Page 4: ...nnectors can be used to access the DI and RO signals for easy wire connections to a microprocessor The connections to the J1 4 screw terminal block are made via 0 Ω resistors which can be removed to eliminate any stub lengths along the interconnect The DI input is terminated to GND with a 50 Ω resistor R3 The RO trace includes an optional placeholder for a load capacitor at C2 The M LVDS input sig...

Page 5: ... Table 3 Jumper Configurations Jumper Position Description LK1 A Connects the RE pin of the ADN4693E 1 to VCC which disables the receiver This places the RO output into a high impedance state B Connects the RE pin of the ADN4693E 1 to the RE connection on the J1 4 screw terminal connector C Connects the RE pin of the ADN4693E 1 to GND which enables the receiver LK2 A Connects the DE pin of the ADN...

Page 6: ...User Guide EVAL ADN4693E 1 EVALUATION BOARD SCHEMATIC AND LAYOUT analog com Rev 0 6 of 9 Figure 3 EVAL ADN4693E 1EBZ Schematic ...

Page 7: ...TION BOARD SCHEMATIC AND LAYOUT analog com Rev 0 7 of 9 Figure 4 EVAL ADN4693E 1EBZ Silkscreen Figure 5 EVAL ADN4693E 1EBZ Component Side Figure 6 EVAL ADN4693E 1EBZ Internal Layer 2 GND Figure 7 EVAL ADN4693E 1EBZ Internal Layer 3 VCC ...

Page 8: ...User Guide EVAL ADN4693E 1 EVALUATION BOARD SCHEMATIC AND LAYOUT analog com Rev 0 8 of 9 Figure 8 EVAL ADN4693E 1EBZ Solder Side ...

Page 9: ...uation Board Modifications to the Evaluation Board must comply with applicable law including but not limited to the RoHS Directive TERMINATION ADI may terminate this Agreement at any time upon giving written notice to Customer Customer agrees to return to ADI the Evaluation Board at that time LIMITATION OF LIABILITY THE EVALUATION BOARD PROVIDED HEREUNDER IS PROVIDED AS IS AND ADI MAKES NO WARRANT...

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