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EVAL-ADM2867EEBZ

 User Guide 

UG-1677

 

Rev. 0 | Page 7 of 12 

Insert the LK8 jumper into Position A to bypass the regulator 
and power of th

ADM2867E

 directly from the VREG_IN input 

on the P1 connector. In this configuration, the VREG_IN input 
on the P1 connector supports a voltage range of 3 V to 5.5 V. 

Table 3 lists the supported power supply configurations and the 
associated jumper configurations.  

FULL DUPLEX RS-485 TRANSCEIVERS 
LOOPBACK TEST 

To set up a loopback test with the EVAL-ADM2867EEBZ, close 
the LK6 and LK7 jumpers. The test details are shown in Table 3 
and in Figure 5. A signal generator is connected to the TxD pin, 
which allows verification of the bus signals and the receiver output. 
Note that the jumper position for LK1 is Position C, LK2 is 
Position A, LK4 is Position C, and LK5 is Position C on the 
EVAL-ADM2867EEBZ. See Table 3 for the jumper configurations 
required for different power supply configurations. The LK11 
and LK12 jumpers can be inserted to terminate the transmitter 
and the receiver with 120 Ω resistors. Connect both these jumpers 
while the EVAL-ADM2867EEBZ is configured for the loopback 
test to ensure that the driver is terminated with a standard RS-485 
load of 60 Ω (bus terminated at both ends by 120 Ω).  

IEC 61000-4-2 ELECTROSTATIC DISCHARGE 
(ESD) PROTECTION  

The EVAL-ADM2867EEBZ is tested to achieve protection 
against IEC 61000-4-2 ESD to ±12 kV (contact) and ±15 kV (air) 
on Pin A, Pin B, Pin Y, and Pin Z of th

ADM2867E

The IEC 61000-4-2 ESD standard describes testing using two 
coupling methods known as contact discharge and air discharge. 
Contact discharge implies direct contact between the discharge gun 
and the equipment under test (EUT).  

During air discharge testing, the charged electrode of the discharge 
gun is moved toward the EUT until a discharge occurs as an arc 
across the air gap. The discharge gun does not make direct 
contact with the EUT. 

During testing, Pin A, Pin B, Pin Y, and Pin Z of the 

ADM2867E

 

are subjected to at least 10 positive and 10 negative single 
discharges with a 1 sec interval between each pulse. The highest 
specified IEC 61000-4-2 ESD test is Level 4, which defines a contact 
discharge voltage of ±8 kV and an air discharge voltage of ±15 kV. 

Figure 4 shows the 8 kV contact discharge current waveform, as 
described in th

ADM2867E

 data sheet, which has a peak current 

(I

PEAK

) of 30 A. The IEC 61000-4-2 waveform parameters include 

rise times (t

R

) of <1 ns and pulse widths of ~60 ns. 

 

Figure 4. IEC 61000-4-2 ESD Waveform (8 kV) 

 

 

Figure 5. Full Duplex RS-485 Loopback Test 

I

PEAK

30A

30ns

60ns

16A

I

30ns

I

60ns

8A

10%

t

R

 = 0.7ns TO 1ns

t

90%

22

060

-0

03

220

60-

004

OSCILLOSCOPE

GND

2

A

RxD

RE
DE

TxD

B

Z

Y

GND

2

RxD

LK

12

LK

7

A
B
Z
Y

P1

P7

EVAL-ADM2867EEBZ

4V TO 20V

POWER

SUPPLY

SIGNAL

GENERATOR

LK

6

LK

11

P8

INVD
INVR

TxD

LK

1

LK

2

LK

4

LK

5

LK

8

LK10

LK9

Summary of Contents for EVAL-ADM2867EEBZ

Page 1: ...lated RS 485 transceiver The ADM2867E features an integrated isolated dc to dc converter that provides power to the isolated side of the device with no additional ICs required An on board ADP7104 low dropout LDO regulator accepts an input voltage of 3 3 V to 20 V and regulates the voltage to a selectable 3 3 V or 5 V supply for the VCC pin of the ADM2867E The LDO regulator can be bypassed to power...

Page 2: ...Evaluation Board Hardware 4 Setting Up the Evaluation Board 4 Input and Output Connections 4 Radiated Emissions 4 EN 55032 Radiated Emissions Test Results 5 Other Board Components 6 Full Duplex RS 485 Transceivers Loopback Test 7 IEC 61000 4 2 Electrostatic Discharge ESD Protection 7 Evaluation Board Schematic and Artwork 9 Ordering Information 11 Bill of Materials 11 REVISION HISTORY 5 2020 Revis...

Page 3: ...EVAL ADM2867EEBZ User Guide UG 1677 Rev 0 Page 3 of 12 EVALUATION BOARD PHOTOGRAPH Figure 1 22060 001 ...

Page 4: ...her because this connection shorts the power and ground pins together See Table 2 and Table 3 for more details on the jumper and power supply connections The corresponding labeled test points allow power supply monitoring on the EVAL ADM2867EEBZ with the probe referenced to ground INPUT AND OUTPUT CONNECTIONS Digital input and output signals are connected via the P2 and P3 screw terminal blocks to...

Page 5: ...tion LK1 A Connects the RE input of the ADM2867E to theVIO pin This setting disables the receiver B Connects the RE input of the ADM2867E to the RE terminal on the P2 connector C Connects the RE input of the ADM2867E to the GND1 pins This setting enables the receiver LK2 A Connects the DE input of the ADM2867E to the VIO pin This setting enables the driver B Connects the DE input of the ADM2867E t...

Page 6: ... Resistors for Bus Idle Fail Safe The ADM2867E has a built in receiver fail safe for the bus idle condition but there are footprints on the EVAL ADM2867EEBZ for fitting the R10 and R11 pull up resistors to the VISO supply on Pin A and Pin Y of the ADM2867E as well as the R12 and R13 pull down resistors to the GND2 supply pins on Pin B and Pin Z These resistors can be fitted if the user is connecti...

Page 7: ...The EVAL ADM2867EEBZ is tested to achieve protection against IEC 61000 4 2 ESD to 12 kV contact and 15 kV air on Pin A Pin B Pin Y and Pin Z of the ADM2867E The IEC 61000 4 2 ESD standard describes testing using two coupling methods known as contact discharge and air discharge Contact discharge implies direct contact between the discharge gun and the equipment under test EUT During air discharge t...

Page 8: ...d 5 5 V 3 3 V isolated output High Not used PowerVCC directly on connector P1 with a supply voltage between 4 5V and 5 5V 5 V isolated output B Low 6 V to 20 V Regulator provides 5 V supply to VCC 3 3 V isolated output High Invalid condition 5V isolated output is not supported withVCC 4 5V B High C Low 4 V to 20 V Regulator provides 3 3 V supply to VCC 3 3 V isolated output High 6 V to 20 V Regula...

Page 9: ...1 P3 P2 P1 LK5 LK4 R13 R12 RT2 RT1 P7 P8 E2 E1 LK7 LK6 LK2 LK1 U2 U1 U3 INVR_1 TxD_1 VREG VCC GND1 VREG_IN RE_1 DE_1 VCC TxD_1 VIO VREG VREG_IN VIO A Z GND VIO INVD_1 VIO RxD DE TxD INVD INVR Y VIO VIO VIO B VISO VISO VISO 2 1 1 2 2 2 2 1 1 3 2 1 2 1 3 2 1 3 1 2 3 1 6 4 2 5 3 1 5 3 1 6 4 2 3 2 1 3 2 1 2 2 1 1 2 2 1 1 8 6 4 2 7 5 3 1 6 4 2 5 3 1 1 8 2 7 PAD 4 6 3 5 1 3 5 2 4 18 17 27 25 23 7 4 11 8...

Page 10: ... 1677 EVAL ADM2867EEBZ User Guide Rev 0 Page 10 of 12 Figure 7 EVAL ADM2867EEBZ Component Side Layer 1 Figure 8 EVAL ADM2867EEBZ Layer 2 Figure 9 EVAL ADM2867EEBZ Silkscreen 22060 006 22060 007 22060 008 ...

Page 11: ...n 3 2 0 1 inch headers and shorting block Multicomp 2213S 06G 1 LK2 8 pin 4 2 0 1 inch header and shorting block Multicomp 2213S 08G 1 LK3 3 pin 3 1 0 1 inch header and shorting block Molex 22 28 4033 5 LK6 LK7 LK9 to LK11 2 pin 1 2 0 1 inch headers and shorting block Harwin M20 9990246 5 P1 to P3 P7 P8 Three way terminal blocks Wurth Elektronik 691131710003 3 R1 R3 R7 R8 Resistors 0 Ω 0603 Vishay...

Page 12: ...he EvaluationBoard or termination of this Agreement Customer agrees to promptly return the Evaluation Board to ADI ADDITIONAL RESTRICTIONS Customer may not disassemble decompile or reverse engineer chips on the Evaluation Board Customer shall inform ADI of any occurred damages or any modifications or alterations it makes to the Evaluation Board including but not limited to soldering or any other a...

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