ABB 216VC62a HESG324442R13E HESG324442R112F UNIT
ABB 216VC62a HESG324442R13E HESG324442R112F UNIT
All the available protection and logic functions described in Section
3 are stored as a software module library in the 216VC62a
processing unit. All the user settings for the activated functions
and the configuration of the protection, i.e. assignment of I/P and
O/P signals (channels) to the protection functions, are also
stored in this unit. The software is downloaded using the operator
program.
The protection functions and their associated settings necessary
for a particular plant are selected and stored with the aid of the
portable user interface (PC). Every activated function requires a
certain percentage of the total available computing capacity of
the processing unit (see Section 3).
The processing unit 216VC62a has a computing capacity of
425%.
The 216VC62a is used both as a processor and as an interface
to the interbay bus (IBB) in the substation monitoring system
(SMS) and the substation automation system. The available
communication protocols are:
SPA BUS
LON BUS
MCB interbay bus
MVB process bus.
The SPA BUS interface is always available. The LON and MVB
protocols are transferred by PC cards.
The supply to the memory in the 216VC62a is maintained in the
event of an interruption by a gold condenser so that the event list
and disturbance recorder data remain intact. The disturbance
recorder data can be read via either the interface on the front of
the 216VC62a or the object bus. The data can be evaluated
using the “EVECOM” evaluation program. The internal clock of
the RE. 216 can be synchronised via the object bus interface of
SMS/SCS systems or by a radio clock.
I/P signals (channels) from the B448C bus:
digitised measured variables: primary system currents and
voltages
logic signals: external I/P signals
24 V auxiliary supply and data exchange with the B448C bus.
O/P signals (channels) to the B448C bus:
signal O/P’s from the protection and logic functions selected
tripping O/P’s from the protection and logic functions selected
data exchange with the B448C bus.
Tension sensing PFCL, PFEA, PFTL series
Bailey INFI9, IMDSI02 IMMFP03 IPSYS01
Panel 800 Touch screen PP846 PP836 PP865A
AC 800PEC inverter cabinet controller
red/green LED for battery status
Woodward 5463-190
GJR5253000R0160 ABB
OVATION IC31197G01
2711-T10C15 2711-T10C15
8440-1706B
SCHNEIDER AS-B883-201
SCHNEISER 140DAI54300
3500/53
1FK6042-6AF71-1EA0
PL6-AGC2 PL6-AGC2
6ES7133-0BN11-0XB0
SIEMENS6ES7417-4HL04-0AB0
ABB HESG447270R1 70BK03C-E"
"SIEMENS6SE7027-2TD61
140CPU43412U 140CPU43412U
Analog output
• Allen-Bradley DF1 interface, CI534V4, 2 ch. Up to 5
• Telecontrol & SPA bus, CI535Vxx 13 Up to 5
Voltage regulator, SR511 (Tot. 2) 1
Battery charger, SB510 Up to 2
Cabinets 3, 8,11
RM500V1, IP21, IP41 or IP54: WxDxH 800x512x2125 mm,
(31.5"x20.2"x83.7")
RM500V2, IP21, IP41 or IP54: WxDxH 700x637x2225 mm,
(27.6"x25.1"x87.6")
power module
• V.24/RS232 interface, CI531, 2 ch. 5, 14 Up to 4
• MasterBus 300/300E interface
- Without slave CPU, CS513A/SC510 Up to 2
TCP/IP CI546/SC510
- With slave CPU, CS513A/SC520 6,7 Up to 6
• GCOM interface, CI543/SC510 10 Up to 5
ABB 216VC62a HESG324442R13E HESG324442R112F UNIT
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Replacing an electrical equipment unit in a plant is a complex task that requires careful planning and execution to ensure safety and minimize downtime. Here is a general step-by-step guide on how to replace electrical equipment in a plant:
Pre-Planning:
Safety Precautions:
Shutdown Procedures:
Disconnection:
Removal of Existing Equipment:
Installation of New Equipment:
Testing and Commissioning:
Documentation:
Training:
Startup:
Throughout the process, it’s important to work closely with a team that includes electrical engineers, technicians, and maintenance staff. Communication is key to a successful equipment replacement. Additionally, always adhere to local electrical codes and standards to ensure compliance and safety. If the task is beyond the expertise of in-house staff, consider hiring a professional contractor experienced in industrial electrical work.
Obtaining industrial automation programming software typically involves the following steps:
Identify Your Needs:
Research Software Options:
Contact Equipment Manufacturers:
Purchase or Download:
Academic or Evaluation Versions:
Open Source Options:
Licensing:
Training and Support:
Legal and Compliance:
Installation and Setup:
Here are some common ways to obtain industrial automation programming software:
Remember to keep your software updated to benefit from the latest features and security patches. Also, ensure that you have the necessary backup and recovery procedures in place to protect your programming work.
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