VikMoteController with built-in GSM and data logger. DX4i PRO IODigital input/output. liste

Klemlister og jumperindstillinger for VikMote DX4i PRO.

DX4i PRO

Controller Mounting Supply voltage Digital inputs Digital outputs Analogue inputs Analogue inputs

Model: DX4i PRO

DIN rail mounting 8-36 VDC 8 8 4 4

Status

DX4i PRO has been discontinued and can be replaced by LX4 PRO.

Supply voltage

Supply voltage Terminal Use Note
8-36 VDC

28 - SUPP

29 - SUPP

Plus

Minimum 12 V if 0-10 V outputs are used

Minimum 16 V if S0IEC 62053-31 Class A S0 standard for pulse signals./NPNNPN is a negative signal (minus). inputs are used

27 - PGND Minus

Digital inputs

Digital inputs Terminal Use Note
Input 1 40 - DI1

If jumper 8 is in position 2-3, the signal on DI1 must be 8-40 VDC (PNPPNP is a positive signal (plus).)

If jumper 8 is in position 1-2, the signal must be between SGND and DI1 (S0IEC 62053-31 Class A S0 standard for pulse signals./NPNNPN is a negative signal (minus).)

Use PNPPNP is a positive signal (plus). or NPNNPN is a negative signal (minus). signal

Input 2 41 - DI2

If jumper 9 is in position 2-3, the signal on DI2 must be 8-40 VDC (PNPPNP is a positive signal (plus).)

If jumper 9 is in position 1-2, the signal must be between SGND and DI2 (S0IEC 62053-31 Class A S0 standard for pulse signals./NPNNPN is a negative signal (minus).)

Input 3 42 - DI3

If jumper 10 is in position 2-3, the signal on DI3 must be 8-40 VDC (PNPPNP is a positive signal (plus).)

If jumper 10 is in position 1-2, the signal must be between SGND and DI3 (S0IEC 62053-31 Class A S0 standard for pulse signals./NPNNPN is a negative signal (minus).)

Input 4 43 - DI4

If jumper 11 is in position 2-3, the signal on DI4 must be 8-40 VDC (PNPPNP is a positive signal (plus).)

If jumper 11 is in position 1-2, the signal must be between SGND and DI4 (S0IEC 62053-31 Class A S0 standard for pulse signals./NPNNPN is a negative signal (minus).)

Input 5 44 - DI5 The signal on DI5 must be 8-40 VDC (PNPPNP is a positive signal (plus).) Use only PNPPNP is a positive signal (plus). signal
Input 6 45 - DI6 The signal on DI6 must be 8-40 VDC (PNPPNP is a positive signal (plus).)
Input 7 46 - DI7 The signal on DI7 must be 8-40 VDC (PNPPNP is a positive signal (plus).)
Input 8 47 - DI8 The signal on DI8 must be 8-40 VDC (PNPPNP is a positive signal (plus).)
Ground 1 48 - SGND Ground for inputs 1..4 Must always be connected
Ground 2 49 - SGND Ground for inputs 5..8

Digital outputs

Digital outputs Terminal Use Note
Output 1 30 - DO1 Contact set 1, NONormally open.

Max. load is 1.0 A per output

Max. inductance for switching is 20 mH per output

Output 2 31 - DO2 Contact set 2, NONormally open.
Output 3 32 - DO3 Contact set 3, NONormally open.
Output 4 33 - DO4 Contact set 4, NONormally open.
Output 5 34 - DO5 Contact set 5, NONormally open.
Output 6 35 - DO6 Contact set 6, NONormally open.
Output 7 36 - DO7 Contact set 7, NONormally open.
Output 8 37 - DO8 Contact set 8, NONormally open.

Analogue inputs

Analogue inputs Terminal Use Note
Input 1 17 - AI1

If jumper JP1 is not installed, a 0-10 V signal is used on AI1

If jumper JP1 is installed, a 4-20 mA signal is used on AI1

Connect the transmitter between AINx and AGND using 0-10 V or 4-20 mA
Input 2 18 - AI2

If jumper JP14 is not installed, a 0-10 V signal is used on AI2

If jumper JP14 is installed, a 4-20 mA signal is used on AI2

Input 3 19 - AI3

If jumper JP16 is not installed, a 0-10 V signal is used on AI3

If jumper JP16 is installed, a 4-20 mA signal is used on AI3

Input 4 20 - AI4

If jumper JP17 is not installed, a 0-10 V signal is used on AI4

If jumper JP17 is installed, a 4-20 mA signal is used on AI4

Ground 1 21 - AGND Ground for analogue inputs Must always be connected to the transmitter reference point (ground)
Ground 2 26 - AGND Ground for analogue inputs

Analogue outputs

Analogue outputs Terminal Use Note
Output 1 22 - AO1

If jumper JP2 is in position 2-3, a 0-10 V signal is used on AO1

If jumper JP2 is in position 1-2, a 4-20 mA signal is used on AO1

Connect the equipment between AONx and AGND using 0-10 V or 4-20 mA
Output 2 23 - AO2

If jumper JP3 is in position 2-3, a 0-10 V signal is used on AO2

If jumper JP3 is in position 1-2, a 4-20 mA signal is used on AO2

Output 3 24 - AO3

If jumper JP4 is in position 2-3, a 0-10 V signal is used on AO3

If jumper JP4 is in position 1-2, a 4-20 mA signal is used on AO3

Output 4 25 - AO4

If jumper JP6 is in position 2-3, a 0-10 V signal is used on AO3

If jumper JP6 is in position 1-2, a 4-20 mA signal is used on AO3

Ground 1 21 - AGND Ground for analogue outputs Must always be connected to the transmitter reference point (ground)
Ground 2 26 - AGND Ground for analogue outputs

RS232 port 1

RS232 communication Terminal Use Note
Port 1 1 - TXD

Transmits data

Shared with the device programming port

4 - RXD

Receives data

Ground 5 - SGND Ground for RS232

RS232 port 2

RS232 communication Terminal Use Note
Port 2 (RJ45) RJ45-1 DSR

Data set ready

RS232 port with all signals according to EIA-561

RJ45-2 DCD

Data carrier detect

RJ45-3 DTR Data terminal ready
RJ45-4 SGND Ground
RJ45-5 RD Receives data
RJ45-6 TD Transmits data
RJ45-7 CTS Clear to send
RJ45-8 RTS Request to send

RS485 port 1

RS485 communication Terminal Use Note
Port 1

10 - RSA 1 (+)

RS485 non-inverting signal (A)

Install jumper JP7 to activate a 120 ohm resistor on the bus

Read more about termination here

11 - RSB 1 (-)

RS485 inverting signal (B)

Ground 12 - SGND Ground for RS485

RS485 port 2

RS485 communication Terminal Use Note
Port 2 13 - RSA 2 (+)

RS485 non-inverting signal (A)

Install jumper JP12 to activate a 120 ohm resistor on the bus

Read more about termination here

14 - RSB 2 (-)

RS485 inverting signal (B)

Ground 15 - SGND Ground for RS485

1-Wire

1-Wire communication Terminal Use Note
Port 1 7 - 1Wire 1-Wire bus

Connect the equipment between 1Wire and SGND

8 - 1Wire-LED 1-Wire ID button with LED lamp
Ground 9 - SGND Ground for 1-Wire

 

 


Public revision 21/08/2026