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Input/Output Jumper Settings

Binary Output (BO) Source Power
Selection Jumpers

Risk of Electric Shock:

Disconnect the supply power

to the controller before attempting to adjust the Binary
Output Source Power Selection Jumpers. Failure to
disconnect the supply power may result in electric shock.

Mise En Garde: Risque de décharge électrique:

Débrancher l'alimentation de l'controller avant tout
réglage du Binary Output Source Power Selection
Jumpers. Le non-respect de cette précaution risque de
provoquer une décharge électrique.

Important:

Do

not

connect an external power source

to a binary output (BO) when the BO power
source jumper is in the internal power (INT)
position. Connecting external power to a
BO that sources internal power can damage
the controller and void any warranties.

The BO source power selection jumpers determine
whether a BO provides internal power (sourced from the
controller) to the output load (INT position) or requires
an external power source (EXT position) for the output
load.

Figure 12

shows an example of a controller BOs

and the associated power selection jumpers to the right
of the BOs terminal block.

Figure 12: Example Binary Outputs and the

Associated Source Power Jumper Positions

UI Current Loop Jumpers

The current loop fail-safe jumpers are on the circuit board
under the controller cover near the UI terminals (

Figure

10

). When a UI is defined (in the system software) as a

4-20 mA Analog Input and the UI’s current loop jumper
is in the Disabled (default) position (

Figure 13

), the 4-20

mA current loop circuit opens whenever power to the
controller is interrupted or off.

Figure 13: Current Loop Jumper Positions

Setting the current loop jumper to the Enabled position
(

Figure 13

) connects an internal 100 ohm resistor across

the UI terminals, which maintains the 4-20 mA current
loop circuit even when power to the controller is
interrupted or off.

Important:

Current Loop jumpers must be in the
Disabled (default) position for all UIs that
are not set up to operate as 4-20 mA analog
inputs.

Table 7

identifies the current loop jumpers associated

with each UI on the FX-PCX47 controller.

Table 7: FX-PCX47 UI Inputs and Jumper Labels

Jumper Label on Circuit Board

Universal Input
Label

J20

IN1

J21

IN2

J22

IN3

J23

IN4

J24

IN5

J25

IN6

Commissioning the Controllers

You commission controllers with the FX-PCT software,
either via a Bluetooth Commissioning Converter, a ZigBee
wireless dongle, or in BACnet

®

router mode when

connected to an FX Supervisory Controller. Refer to the
Controller Tool

Help (LIT-12011147)

for detailed

information on commissioning controllers.

18

FX-PCX47 Expansion Input/Output Module Installation Instructions

Summary of Contents for FX-PCX47

Page 1: ...nstalled and used in accordance with the instruction manual may cause harmful interference to radio communications Operation of this equipment in a residential area may cause harmful interference in w...

Page 2: ...rail channel on the back of the controller Figure 2 and position the controller snugly against the DIN rail 4 Push the bottom mounting clips inward up to secure the controller on the DIN rail To remov...

Page 3: ...le 5 6 Cover Lift Tab One of Two See Removing the Controller Cover 7 Sensor Actuator SA Bus or Field Controller FC Bus Terminal Block See Table 5 8 Binary Input BI Terminal Block 2 Binary Inputs See T...

Page 4: ...figuring and wiring an MS TP Bus FC bus and SA bus refer to the FX PC Series Controllers MS TP Communications Bus Technical Bulletin LIT 12011670 or MS TP Communications Bus for BCM System Technical B...

Page 5: ...on the top right of the controller Wire the 24 VAC supply power wires from the transformer to the HOT and COM terminals on the terminal plug as shown in Figure 7 The middle terminal on the supply powe...

Page 6: ...o the FX ZFR1811 Wireless Field Bus Router Installation Instructions Part No 24 10325 29 Termination Details A set of Johnson Controls termination diagrams provides details for wiring inputs and outpu...

Page 7: ...rrent Input Internal Source 2 wire UI Current Input Internal Source 3 wire UI Current Input External Source in Loop UI Feedback from EPP 1000 UI or BI Dry Contact Binary Input CO or AO 0 20 VDC Output...

Page 8: ...CO or AO 0 10 VDC Output to Actuator Internal Source CO or AO 4 20 mA Output to Actuator CO or AO 4 20 mA Output to Actuator AO Voltage Analog Output AO Analog Output Current CO 24 VAC Triac Output Sw...

Page 9: ...24 VAC Triac Output Switch High Externally Sourced CO Incremental Control to Actuator Switch High Externally Sourced BO Incremental Control to Actuator Switch Low Externally Sourced BO 24 VAC Binary...

Page 10: ...e BO Incremental Control to Actuator Switch High Externally Sourced SA Bus Network Stat with Phone Jack Fixed Address 199 SA Bus Network Stat with Terminals Addressable SA Bus Network Stat with Termin...

Page 11: ...rminal Label Terminal Block Label Same as Universal INn Note Use 3 wire cable for devices that source power from the 15V terminal 15 VDC Power Source for active 3 wire input devices connected to the U...

Page 12: ...greater than 1 000 ohm Devices that drop below 1 000 ohm may not operate as intended for Voltage Mode applications OUTn ANALOG Outputs Analog Output Current Mode 4 20 mA Requires and external load be...

Page 13: ...imum output voltage 10 mA maximum output current Required an external load of 1 000 ohm or more OUTn CONFIGURABLE Outputs See Guideline C in Table 4 Binary Output 24 VAC Triac External Power Source on...

Page 14: ...per 100 mV maximum voltage drop Depending on cable and the connected input or output device you may have to define an offset in the setup software for the input or output point 229 m 750 ft twisted wi...

Page 15: ...cable recommended Note On the SA Bus the and wire are one twisted pair and the COM and SA PWR are the second twisted pair of wires FC or SA Bus Communications FC BUS 2 or SA BUS 2 Signal Reference Co...

Page 16: ...itch 4 ON followed by switch 1 16 4 1 21 See Figure 9 3 Set switch 128 to ON only for controllers on an FX ZFR Series Wireless Field Bus application For all hard wired SA and FC bus applications ensur...

Page 17: ...under the two cover lift tabs Figure 3 on the sides of the housing cover and gently pry the top of the cover away from the base to release the cover from the two upper latches 2 Pivot the top of the...

Page 18: ...Jumpers The current loop fail safe jumpers are on the circuit board under the controller cover near the UI terminals Figure 10 When a UI is defined in the system software as a 4 20 mA Analog Input and...

Page 19: ...For a replacement controller contact your Johnson Controls representative Accessories See Table 9 for controller accessories ordering information Table 9 Accessories Ordering Information Description...

Page 20: ...FX PCG FX PCA FX PCX and FX PCV field controllers Also allows use of the FX ZFR Checkout Tool FX ZCT in FX PCT Note The ZFR USBHA 0 replaces the IA OEM DAUBI_2400 ZigBee USB dongle For additional inf...

Page 21: ...28 KB Random Access Memory RAM Memory 6 Universal Inputs Defined as 0 10 VDC 4 20 mA 0 600k ohm or Binary Dry Contact 2 Binary Inputs Defined as Dry Contact Maintained or Pulse Counter Accumulator Mod...

Page 22: ...erformance specifications are nominal and conform to acceptable industry standard For application at conditions beyond these specifications consult the local Johnson Controls office Johnson Controls I...

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