63
9 External Controller shall be connected to 1-pole switch with min 3.0 mm contact gap. (connection refer to
Diagram 5.2). Its cable must be (2 x min 0.5 mm
2
), double insulation layer of PVC-sheathed or rubber-
sheathed cable.
* note: - When making such connection, kindly remove the jumper between terminal no. 17 and 18.
- Switch used shall be CE compliance component.
- Maximum operating current shall be less than 3A
rms
.
10 Must install Solar Connection PCB
!
(optional) to indoor unit when Solar Pump Station is utilized. Refer
Solar Connection PCB’s installation instruction for detail of installation.
11 Solar Three-way Valve cable shall be (3 x min 0.5 mm
2
), double insulation layer PVC-sheathed or rubber-
sheathed cable.
12
Solar Pump Station cable shall be (2 x min 0.5 mm
2
), of double insulation PVC-sheathed or rubber-sheathed
cable. Strongly recommended install with maximum length of 10 meter only.
12.3.4.1 Connecting
Requirement
The equipment’s power supply 1 complies with IEC/EN 61000-3-12 provided that the short-circuit power S
sc
is
greater than or equal to 3050kW (for WH-SDC12C6E5/UD12CE5**, WH-SDC14C6E5/UD14CE5** and
WH-SDC16C6E5/UD16CE5**) at the interface point between the user’s supply and the public system. It is the
responsibility of the installer or user of the equipment to ensure, by consultation with the distribution network
operator if necessary, that the equipment is connected only to a supply with a short-circuit power S
sc
greater than
or equal to 3050 kW.
The equipment’s power supply 1 shall be connected to a suitable supply network, with the following maximum
permissible system impedance Z
max
at the interface for models:
WH-SDC12C6E5/UD12CE5**, WH-SDC14C6E5/UD14CE5** and WH-SDC16C6E5/UD16CE5** : 0.244
Ω
Please liaise with supply authority to ensure that the power supply 1 is connected only to a supply of that
impedance or less.
The equipment’s power supply 2 complies with IEC/EN 61000-3-12.
The equipment’s power supply 2 shall be connected to a suitable supply network, with the following maximum
permissible system impedance Z
max
at the interface for models:
WH-SDC12C6E5/UD12CE5**, WH-SDC14C6E5/UD14CE5** and WH-SDC16C6E5/UD16CE5** : 0.236
Ω
Please liaise with supply authority to ensure that the power supply 2 is connected only to a supply of that
impedance or less.
The equipment’s power supply 3 complies with IEC/EN 61000-3-12.
The equipment’s power supply 3 shall be connected to a suitable supply network, with the following maximum
permissible system impedance Z
max
at the interface for models:
WH-SDC12C6E5/UD12CE5**, WH-SDC14C6E5/UD14CE5** and WH-SDC16C6E5/UD16CE5** : 0.464
Ω
Please liaise with supply authority to ensure that the power supply 3 is connected only to a supply of that
impedance or less.
Содержание WH-SDC07C3E5
Страница 22: ...22 4 Location of Controls and Components 4 1 Indoor Unit 4 1 1 Location of Control ...
Страница 23: ...23 ...
Страница 24: ...24 ...
Страница 25: ...25 4 1 2 Weekly Timer Setting ...
Страница 26: ...26 4 1 3 Setting Up the Special Functions ...
Страница 27: ...27 4 1 4 Main Components 4 2 Outdoor Unit ...
Страница 28: ...28 5 Dimensions 5 1 Indoor Unit ...
Страница 29: ...29 5 2 Outdoor Unit 5 2 1 WH UD07CE5 A WH UD09CE5 A WH UD07CE5 A 1 WH UD09CE5 A 1 ...
Страница 30: ...30 5 2 2 WH UD12CE5 A WH UD14CE5 A WH UD16CE5 A WH UD12CE5 A 1 WH UD14CE5 A 1 WH UD16CE5 A 1 ...
Страница 32: ...32 ...
Страница 33: ...33 7 Block Diagram 7 1 WH UD07CE5 A WH UD09CE5 A WH UD07CE5 A 1 WH UD09CE5 A 1 ...
Страница 34: ...34 7 2 WH UD12CE5 A WH UD14CE5 A WH UD16CE5 A WH UD12CE5 A 1 WH UD14CE5 A 1 WH UD16CE5 A 1 ...
Страница 35: ...35 8 Wiring Connection Diagram 8 1 Indoor Unit 8 1 1 WH SDC07C3E5 WH SDC09C3E5 WH SDC07C3E5 1 WH SDC09C3E5 1 ...
Страница 36: ...36 8 1 2 WH SDC12C6E5 WH SDC14C6E5 WH SDC16C6E5 WH SDC12C6E5 1 WH SDC14C6E5 1 WH SDC16C6E5 1 ...
Страница 37: ...37 8 2 Outdoor Unit 8 2 1 WH UD07CE5 A WH UD09CE5 A WH UD07CE5 A 1 WH UD09CE5 A 1 ...
Страница 38: ...38 8 2 2 WH UD12CE5 A WH UD14CE5 A WH UD16CE5 A WH UD12CE5 A 1 WH UD14CE5 A 1 WH UD16CE5 A 1 ...
Страница 39: ...39 9 Electronic Circuit Diagram 9 1 Indoor Unit 9 1 1 WH SDC07C3E5 WH SDC09C3E5 WH SDC07C3E5 1 WH SDC09C3E5 1 ...
Страница 40: ...40 9 1 2 WH SDC12C6E5 WH SDC14C6E5 WH SDC16C6E5 WH SDC12C6E5 1 WH SDC14C6E5 1 WH SDC16C6E5 1 ...
Страница 41: ...41 9 2 Outdoor Unit 9 2 1 WH UD07CE5 A WH UD09CE5 A WH UD07CE5 A 1 WH UD09CE5 A 1 ...
Страница 42: ...42 9 2 2 WH UD12CE5 A WH UD14CE5 A WH UD16CE5 A WH UD12CE5 A 1 WH UD14CE5 A 1 WH UD16CE5 A 1 ...
Страница 43: ...43 10 Printed Circuit Board 10 1 Indoor Unit 10 1 1 Main Printed Circuit Board ...
Страница 44: ...44 10 1 2 Solar Printed Circuit Board Optional ...
Страница 46: ...46 10 2 1 2 Capacitor Printed Circuit Board 10 2 1 3 Noise Filter Printed Circuit Board ...
Страница 48: ...48 10 2 2 2 Capacitor Printed Circuit Board 10 2 2 3 Noise Filter Printed Circuit Board ...
Страница 54: ...54 11 3 4 2 Wire Stripping and Connecting Requirement ...
Страница 73: ...73 ...
Страница 79: ...79 ...
Страница 80: ...80 ...
Страница 90: ...90 ...
Страница 140: ...140 18 3 To Remove Pressure Gauge 18 4 To Remove Control Panel ...
Страница 141: ...141 18 5 To Remove RCCB 18 6 To Remove Transformer and Electronic Controller Board ...
Страница 166: ...166 19 4 Hydraulic Pump Performance 07C3 09C3 12C6 14C6 16C6 ...
Страница 169: ...169 20 2 WH UD07CE5 A WH UD09CE5 A WH UD07CE5 A 1 WH UD09CE5 A 1 ...
Страница 170: ...170 ...
Страница 174: ...174 20 3 WH UD12CE5 A WH UD14CE5 A WH UD16CE5 A WH UD12CE5 A 1 WH UD14CE5 A 1 WH UD16CE5 A 1 ...
Страница 175: ...175 ...