Scanner instruction manual, 22 relay connections, Switching inductive loads – Precision Digital PD6080 User Manual

Page 22: Rc networks available from precision digital

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PD6080/PD6081 Super Snooper Modbus

Scanner Instruction Manual

22

Relay Connections

Relay connections are made to two six-terminal connectors labeled RELAY1 – RELAY4 on the back of
the scanner. Each relay’s C terminal is common only to the normally open (NO) and normally closed (NC)
contacts of the corresponding relay. The relays’ C terminals should not be confused with the COM
(common) terminal of the INPUT SIGNAL connector.

C

NO

NO

NC

NC

C

RELAY4

RELAY3

4

3

6

5

2

1

C

NO

NO

NC

NC

C

RELAY2

RELAY1

4

3

6

5

2

1

Figure 10. Relay Connections

Switching Inductive Loads

The use of suppressors (snubbers) is strongly recommended when switching inductive loads to prevent
disrupting the microprocessor’s operation. The suppressors also prolong the life of the relay contacts.
Suppression can be obtained with resistor-capacitor (RC) networks assembled by the user or purchased
as complete assemblies. Refer to the following circuits for RC network assembly and installation:

C

R

C

R

Figure 11. AC and DC Loads Protection

Choose R and C as follows:
R: 0.5 to 1

Ω for each volt across the contacts

C: 0.5 to 1 µF for each amp through closed contacts

Notes:
1. Use capacitors rated for 250 VAC.
2. RC networks may affect load release time of solenoid loads. Check to confirm proper operation.
3. Install the RC network at the scanner's relay screw terminals. An RC network may also be installed

across the load. Experiment for best results.

Figure 12. Low Voltage DC Loads Protection

RC Networks Available from Precision Digital

RC networks are available from Precision Digital and should be applied to each relay contact switching an
inductive load. Part number: PDX6901.

Note: Relays are de-rated to 1/14 HP (50 watts) with an inductive load.

Use a diode with a reverse
breakdown voltage two to three
times the circuit voltage and
forward current at least as large
as the load current.

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