Troubleshooting communication loops, Sat iii controller, Wcc iii technical guide 20-5 – WattMaster WM-WCC3-TGD-01B User Manual

Page 763: Sat ii controller, Wcc ii to wcc iii global bridge, 1st condition, Sat iii, Wattmaster

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WCC III Technical Guide

20-5

20. GLOBAL BRIDGE BOARD INSTALLATION

Troubleshooting the WCC III RS-485

Communications Loop

What is the WCC III RS-485 communications loop

voltage measurement on a SAT III controller or on a

WCC II to WCC III Global Bridge board?

There are two conditions for Voltage measurements of the WCC
III RS-485 communications loop.

1st Condition:

The WCC III RS-485 communications loop

is plugged into a SAT III controller or on a WCC II to WCC
III Global Bridge board, and you are measuring the voltage
at the SAT III controller or on a WCC II to WCC III Global
Bridge board.

8

7

SAT ADDRESS

2

1

4

8

A 3 WIRE ROOM SENSOR WILL NOT
REQUIRE A LOAD RESISTOR WHEN SET
FOR A 1 VOLT INPUT.

WattMaster Controls Inc.

BINARY
INPUTS

BINARY
INPUTS

L8

ON OFF

128

32

16

64

L4

L3

L2

L1

L6

L5

L7

L11

L12

ON OFF

L10

L9

ON OFF

L15

L16

L14

L13

C

H

4

3

5
6

2

1

LOCAL SET

STATUS 2

STATUS 3

STATUS 1

HSS XMIT

LOCAL SET

LOCAL SET DISABLE

BATT ON/ OFF

PULSE INPUT

OPTION 1

TEST

OPTION 3

OPTION 2

ON OFF

STATUS

HSS REC

SAT XMIT

SAT REC

ANALOG INPUT

JUMPER SELECTION

A 2 WIRE ROOM SENSOR WILL REQUIRE
A 300 OHM LOAD RESISTOR WHEN SET
FOR A 1 VOLT INPUT.

A 4 TO 20 mA SENSOR WILL REQUIRE A
50 OHM LOAD RESISTOR WHEN SET FOR
A 1 VOLT INPUT, OR A 250 OHM LOAD
RESISTOR WHEN SET FOR A 5 VOLT INPUT.

CURRENT
INPUT

THERMISTOR
INPUT

0 - 1V

0 - 5V

0 - 10V

THERM

0 - 1V

0 - 5V

0 - 10V

THERM

0 TO 10V
INPUT

0 TO 5V
INPUT

0 TO 1V
INPUT

0 - 10V

0 - 1V

0 - 5V

0 - 10V

THERM

0 - 1V

0 - 5V

THERM

0 - 1V

0 - 5V

0 - 10V

THERM

PROGRAMMABLE CONTROLLER

SAT III

TO HSS EXPANSION BOARDS.
UP TO TWO BINARY INPUT
BOARDS, AND UP TO TWO
BINARY OUTPUT BOARDS
MAY BE CONNECTED TO A
SAT III CONTROLLER.

SAT III CONTROLLER

24VAC

24

V

A

C

GND

GROUND

WARNING:

OBSERVE POLARITY

BETWEEN THE SAT III AND THE WCC II
TO WCC III GLOBAL BRIDGE BOARD -
GROUND CONNECTIONS MUST BE THE
SAME.

TO OTHER
SAT III OR TO
WCC III - MCD

24VAC

120VAC

TO OTHER SAT III
CONTROLLERS OR TO
WCC III - MCD
WIRE "T" TO "T"
"R" TO "R"
"SHD" TO "SHD"

GND

24VAC

C

R/T

SHLD

COMM T

COMM R

DRIVER

485

EEPROM

VBAT

COMM

CHASSIS GND

POWER

SAT II STAT

SAT II

SAT III

PROGRAM SOCKET

YS102210 REV 1

GLOBAL BRIDGE

MADE IN USA

ADDRESS

24C128

PCF8583

LT1785

WATTMASTER CONTROLS INC

8

SAT

2

1

4

BINARY

INPUTS

BINARY

INPUTS

L8

ON OFF

128
32

16

64

L4

L3

L2

L1

L6

L5

L7

L11

L12

ON OFF

L10

L9

ON OFF

L15

L16
L14

L13

LOCAL SET

LOCAL SET DISABLE

BATT ON/ OFF

PULSE INPUT

TEST

ON OFF

SAT II

H

C

COM

CHANNEL

2

1

3 4

2

1

3 4

5 6 7 8

5 6 7 8

V

OUT

GND

L

O

A

D

+V

ATI

EACH CONTACT

IS RATED FOR

24VAC OR VDC
@ .5 AMP MAX

0-15VDC

OUTPUT

MIN LOAD
IS 1K OHM

RESISTIVE
VDC ONLY

WATTMASTER

CONTROLS GROUP

24 VAC ONLY

POWER CONSUMPTION

15VA / 625mA

NUMBER

POWER ---

SAT II CONTROLLER

WARNING:

OBSERVE POLARITY BETWEEN THE

SAT II AND THE WCC II TO WCC III GLOBAL
BRIDGE BOARD.
THE GROUND CONNECTIONS MUST BE THE
SAME. DAMAGE TO THE SAT II CONTROLLER
OR TO THE WCC II TO WCC III GLOBAL BRIDGE
BINARY BOARD CAN RESULT IN VOIDING THE
WARRANTY

24

V

A

C

GND

120VAC WIRING IS BY OTHERS

THE VA RATING FOR THE SAT II CONTROLLER IS 15VA.
THE VA RATING FOR THE SAT III CONTROLLER IS 15VA.
THE VA RATING FOR THE WCC II TO WCC II GLOBAL BRIDGE
BOARD IS 7.5 VA.

TO OTHER
SAT II OR TO
THE WCC II
COMPUTER

WIRE NUT

24VAC

GROUND

24VAC

120VAC

TO OTHER SAT II
CONTROLLERS OR
TO THE WCC II
COMPUTER
WIRE "RT" TO "RT"
"C" TO "C"
TIE THE "SHIELD"
WIRES TOGETHER

120VAC WIRING IS BY OTHERS

WCC II TO WCC III
GLOBAL BRIDGE

WIRE NUT

Figure 20-4: Wiring diagram showing how to connect the WCC III to WCC II systems using the WCC II to WCC III

Global Bridge board.

On the RS-485 loop for a SAT III controller or on a WCC
II to WCC III Global Bridge board, the “T” (+) and ”R” (-)
terminals should measure “T”(+) @ 2.7VDC and “R”(-) @
3.0VDC voltages. These are approximate values, but should
be used as base line measurements.

Troubleshooting Communication Loops

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