Control Card, Rs485 Serial Communication; Control Card, 24 V Dc Output; Relay Output - Trane TR150 Quick Manual

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Specifications
Maximum load at digital output
1) Terminals 27 and 29 can also be programmed as input. Terminal 29 can also be programmed as pulse input.
2) Terminals 42 and 45 can also be programmed as analog output.
The digital outputs are galvanically isolated from the supply voltage (PELV) and other high voltage terminals.

6.4.7 Control Card, RS485 Serial Communication

Terminal number
Terminal number

6.4.8 Control Card, 24 V DC Output

Terminal number
Maximum load

6.4.9 Relay Output

6
6
Programmable relay outputs
Relay 01 and 02 (enclosure size H1–H5 & I2–I4)
Maximum terminal load (AC-1)
Maximum terminal load (AC-15)
Maximum terminal load (DC-1)
Maximum terminal load (DC-13)
Maximum terminal load (AC-1)
Maximum terminal load (AC-15)
Maximum terminal load (DC-1)
Minimum terminal load on 01–03 (NC), 01–02 (NO)
Environment according to EN 60664-1
1) IEC 60947 parts 4 and 5. Endurance of the relay varies with different load type, switching current, ambient temperature,
driving configuration, working profile, and so forth. It is recommended to mount a snubber circuit when connecting inductive
loads to the relays.
2) Only frame sizex H6–H10 and I6–I8.
Programmable relay outputs
Relay 01 terminal number (enclosure size H9)
Maximum terminal load (AC-1)
Maximum terminal load (AC-15)
Maximum terminal load (DC-1)
Maximum terminal load (DC-13)
Relay 01 and 02 terminal number (enclosure size H6, H7, H8, H9 (relay 2 only),
H10, and I6–I8)
Maximum terminal load (AC-1)
Maximum terminal load (AC-15)
Maximum terminal load (DC-1)
Maximum terminal load (DC-13)
Maximum terminal load (AC-1)
Maximum terminal load (AC-15)
Maximum terminal load (DC-1)
Maximum terminal load (DC-13)
Minimum terminal load on 01–03 (NC), 01–02 (NO), 04–06 (NC), 04–05 (NO)
Environment according to EN 60664-1
1) IEC 60947 parts 4 and 5. Endurance of the relay varies with different load type, switching current, ambient temperature,
driving configuration, working profile, and so forth. It is recommended to mount a snubber circuit when connecting inductive
loads to the relays.
2) Overvoltage Category II.
46
1)
on 01–02/04–05 (NO) (resistive load)
1)
on 01–02/04–05 (NO) (inductive load @ cosφ 0.4)
1)
on 01–02/04–05 (NO) (resistive load)
1)
on 01–02/04–05 (NO) (inductive load)
1)
on 01–03/04–06 (NC) (resistive load)
1)
on 01–03/04–06 (NC) (inductive load @ cosφ 0.4)
1)
on 01–03/04–06 (NC) (resistive load)
1)
on 01–03 (NC), 01–02 (NO) (resistive load)
1)
(inductive load @ cosφ 0.4)
1)
on 01–02 (NO), 01–03 (NC) (resistive load)
1)
(inductive load)
1)
on 04–05 (NO) (resistive load)
1)
on 04–05 (NO) (inductive load @ cosφ 0.4)
1)
on 04–05 (NO) (resistive load)
1)
on 04–05 (NO) (inductive load)
1)
on 04–06 (NC) (resistive load)
1)
on 04–06 (NC) (inductive load @ cosφ 0.4)
1)
on 04–06 (NC) (resistive load)
1)
on 04–06 (NC) (inductive load)
08/2020 All rights reserved.
61 common for terminals 68 and 69
01–03 (NC), 01–02 (NO), 04–06 (NC), 04–05 (NO)
2)
2)
2)
Overvoltage category III/pollution degree 2
01–03 (NC), 01–02 (NO), 04–06 (NC), 04–
2)3)
Overvoltage category III/pollution degree 2
1 kΩ
68 (P, TX+, RX+), 69 (N, TX-, RX-)
80 mA
250 V AC, 3 A
250 V AC, 0.2 A
30 V DC, 2 A
24 V DC, 0.1 A
250 V AC, 3 A
250 V AC, 0.2 A
30 V DC, 2 A
24 V DC 10 mA, 24 V AC 20 mA
01–03 (NC), 01–02 (NO)
240 V AC, 2 A
240 V AC, 0.2 A
60 V DC, 1 A
24 V DC, 0.1 A
05 (NO)
400 V AC, 2 A
240 V AC, 0.2 A
80 V DC, 2 A
24 V DC, 0.1 A
240 V AC, 2 A
240 V AC, 0.2 A
50 V DC, 2 A
24 V DC, 0.1 A
24 V DC 10 mA, 24 V AC 20 mA
BAS-SVX58D-EN
12
2

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