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A30808-X3247-L14-2-7618
Technical Description (TED:BSS)
BS-240/241
Information
Base Station System
–
8 bit
µ
C (80C505C) for initialization, supervision and controlling the functions of the
ACT.
–
PID-EEPROM to store board data.
The physical function of the ACT is to interface the alarm and command signals between
the CAN-BUS and the alarm and command connectors. The ACT is designed to be used
only one time for the Rack. So the ACT is an element without redundancy, but the BTSE
is not out of service in case of a faulty ACT.
Different ACT, are available depending on the applications in the Base Rack/Shelter
(ACTM) or in the Service and Extension Rack/Shelter (ACTP) as shown in
.
Fig. 3.10
Alarm Collection Terminal (ACTM and ACTP)
3.12
AC/DC Converter (AC/DC)
The AC/DC system consists of one or two Frames housed in the Service Rack/Shelter.
Each Frame provides for AC distribution, DC distribution, EMI-filter, signal distribution
between rectifiers and controller board via backplane. Each AC/DC Frame contains:
–
up to 6 rectifier modules (adapted to the actual need for specific loads) each 720W
-48VDC (N+1 redundancy to achieve 3600W+720W)
–
one controller board (DCBCTRL) for battery supervision, rectifier supervision, alarm
interface (see section
–
two LVD relays for Frame.
The Service Rack/Shelter with two AC/DC Frames is intended to be used to supply
BS240/241 with more than 8 carriers.
1 Door
6 Fan
7 Alarms
Temp.Sens
CAN-Bus Node
Cont Interface
PID
DCDC
Rack1
(Extension)
ACDC
Controller
Battery
ACDC
CORE
CAN-Bus Node Master
Cont Interface
Alarms
Temp.
Superv.
ACOM
ACTP
1 Door
6 Fan
7 Alarms
Temp.Sens
CAN-Bus Node
Cont Interface
PID
ACOM
ACTM
48 Site Inputs
8 Site Outputs
DCDC
1 Door
6 Fan
7 Alarms
Temp.Sens
CAN-Bus Node
Cont Interface
PID
DCDC
Rack 2
(Extension)
Temp.
Superv.
ACOM
ACTP
1 Door
6 Fan
7 Alarms
Temp.Sens
CAN-Bus Node
Cont Interface
PID
DCDC
Temp.
Superv.
ACDC
ACTP
Battery
ACDC Controller
Rack3
(Service1)
Rack 0
(Base)
CAN-Bus
i
Due to the maximum ambient temperature of +55
°
C (+131
°
F), the DC
output power of one AC/DC module is limited to 720W.
By decreasing the maximum ambient temperature to +50
°
C (+122
°
F),
the maximum output power of one AC/DC module is increased to 800W
without any change in the module or in the Frame AC/DC.