Connection Diagrams With System Schematics; Overview Of The Terminal Assignment - Bosch EMS 2 Manual De Instalación

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16 | Mounting
▶ Route cables through the grommets, connect them as shown in the
connection diagrams and secure them with the strain reliefs, which
are supplied as part of the scope of delivery ( fig. 12 to 19, starting
at page 87).
3.3.3

Connection diagrams with system schematics

The hydraulic diagrams are only schematic illustrations and provide a
non-binding notice of a possible hydraulic circuit. Install safety
equipment in accordance with applicable standards and local
regulations. For further information and options, refer to the technical
guides or tender specification.
120/230VAC 120/230VAC
N L
N L
M
PC0
A0
230 V AC
Key to the fig. above and to fig. 24 to 26 (no terminal designation):
230 V AC Mains voltage connection
A0
230 V remote fault indicator provided by the customer
BUS
EMS 2 / EMS plus BUS system (do not connect to BUS1 ...
BUS4)
BUS1...4 EMS / EMS plus BUS system or EMS 2 / 2-wire BUS
(connect directly to HS1 ... HS4 or M1 ... M4)
CON
User interface with EMS 2 / EMS plus BUS system
(Controller)
GLT
Building management system with 0-10 V interfaces
(Building Management System)
HS1, HS5, HS9, HS13
Heat source 1 (HS1 to BUS1), 2 (HS5 to BUS2), 3 (HS9 to
BUS3) and 4 (HS13 to BUS4) to single MC 400 / (Heat
Source)
HS1...4
Heat source 1 (to BUS1) ... 4 (to BUS4) to first subordinate
MC 400 (M1) / (Heat Source)
HS5...8
Heat source 1 (to BUS1) ... 4 (to BUS4) to second
subordinate MC 400 (M2) / (Heat Source)
I2
Switch for maximum performance (all devices are switched
to maximum performance when closed; Input)
I3
Stop switch (heat requirement for all devices is interrupted
when open; Input)
IA1
Input on/off controller 230 V (code 6 ... 9)
6 720 819 669 (2016/05)
MC400
4 5 6
3
2
1
0
120/230 V AC
PC0
A0
N 63
NO
C
NC
120/230 V AC
PC1
IA1
N
L
N 63
L IN
N L
M
230 V AC
PC1
IA1
3.3.4

Overview of the terminal assignment

This overview indicates which system parts can be connected for all
terminals in the module. The components identified with * (such as HS1
and M1) in the system are possible alternatives. Depending on the
module's use, one of the components is connected to the "BUS1"
terminal.
More complex systems can be created in combination with additional
cascade modules. Terminal assignments, which deviate from the
terminal overview, are therefore possible.
If no stop switch (N/C contact) is connected to terminal I3:
▶ Connect the jumper, which is included in the scope of
delivery, to terminal I3.
7
8
1)
9
10
10
≤ 24V
T0
I2
I3
OC1
BUS3 BUS4
1 2
1 2 1 2
1 2 3
1 2
1 2
1)
≤ 24V
T1
T2
0-10V
BUS1
BUS2
BUS
1 2 1 2
1 2 3
1 2
1 2
1 2
1 2 3
(-) (+) (+)
T1
T2
PO
HS1*
HS5*
CON
M1*
M2*
M1...4
Subordinate cascade module 1 (to BUS1) ... 4 (to BUS4)
MC 400 Cascade module
MM 100 Heating circuit module (EMS 2 / EMS plus)
PC0
Cascade pump (On/off or optional speed control via 0-10 V
signal with connection OC1; Cascade Pump); only with heat
sources without a pump
PC1
Heating pump (Pump Circuit); only for one heating circuit
without mixer and without MM 100 (feed pump or heating
pump)
PO
Input and feedback for performance control via a 0-10 V
signal (Power in-/Output); Terminal assignment: 1 – 2 input;
1 – 3 output)
T0
Flow temperature sensor (Temperature sensor)
T1
Outdoor temperature sensor (Temperature sensor)
T2
Return temperature sensor (only required when PC0 with
speed control via 0-10 V signal is at connection OC1;
otherwise optional; Temperature sensor)
1)
Only required, if no stop switch is connected to terminal I3.
1 2 3
0-10V
PC0
T0
I2
I3
HS9*
HS13*
M3*
M4*
6 720 809 449-16.4O
MC 400

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