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M60 MOTOR PROTECTION SYSTEM – INSTRUCTION MANUAL
TRANSDUCER INPUTS/OUTPUTS
CHAPTER 5: SETTINGS
5
5.10.2 RTD inputs
SETTINGS
TRANSDUCER I/O
RTD INPUTS
RTD INPUT H1(W8)
The RTD inputs convert values of input resistance into temperature for further operations. These channels are intended to
be connected to any of the RTD types in common use. Hardware details are contained in chapter 3.
RTD input channels are arranged in a manner similar to CT and VT channels. Configure individual channels with the
settings shown here.
The channels are arranged in sub-modules of two channels, numbered from 1 through 8 from top to bottom. On power-up,
the relay generates automatically the configuration settings for every channel, based on the order code, in the same
general manner that is used for CTs and VTs. Each channel is assigned a slot letter followed by the row number, 1 through
8 inclusive, which is used as the channel number. The relay generates an actual value for each available input channel.
Settings are generated automatically for every channel available in the specific relay as shown above for the first channel
of a type 5C transducer module installed in the first available slot.
RTD INPUT H1 FUNCTION
— The function of the channel can be either “Enabled” or “Disabled.” When disabled, there is no
actual value created for the channel.
RTD INPUT H1 ID
— Assigns an alphanumeric ID to the channel. This ID is included in the channel actual values. It is also
used to reference the channel as the input parameter to features designed to measure this type of parameter.
RTD INPUT H1 TYPE
— Specifies the RTD type. Four different RTD types are available: 100
Ω
Nickel, 10
Ω
Copper, 100
Ω
Platinum, and 120
Ω
Nickel. The following table outlines reference temperature values for each type.
RTD INPUT H1
RTD INPUT H1
FUNCTION: Disabled
Range: Disabled, Enabled
RTD INPUT H1 ID:
RTD Ip 1
Range: up to 20 alphanumeric characters
RTD INPUT H1 TYPE:
100
Ω
Platinum
Range: 100
Ω
Nickel, 10
Ω
Copper, 100
Ω
Platinum,
120
Ω
Nickel
RTD INPUT H1
APPLICATION: None
Range: None, Stator, Bearing, Ambient, Group 1,
Group 2
RTD INPUT H1 ALARM
TEMPERATURE: 130°C
Range: 1 to 249°C in steps of 1
RTD INPUT H1 ALARM
PKP DELAY: 0.00 s
Range: 0.00 to 600.00 s in steps of 0.01
RTD INPUT H1 TRIP
TEMPERATURE: 130°C
Range: 1 to 249°C in steps of 1
RTD INPUT H1 TRIP
PKP DELAY: 0.00 s
Range: 0.00 to 600.00 s in steps of 0.01
RTD INPUT H1 TRIP
RST DELAY: 0.00 s
Range: 0.00 to 600.00 s in steps of 0.01
RTD INPUT H1 TRIP
VOTING: None
Range: None, Group, RTD Inp H1, RTD Inp H2,...,
RTD Inp W8
RTD INPUT H1 OPEN:
None
Range: None, Alarm, Block
RTD INPUT H1 BLOCK:
Off
Range: FlexLogic operand
RTD INPUT H1 TARGET:
Self-reset
Range: Self-reset, Latched, Disabled
RTD INPUT H1 EVENTS:
Disabled
Range: Disabled, Enabled
Содержание M60
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Страница 10: ...x M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL TABLE OF CONTENTS ...
Страница 14: ...1 4 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL FOR FURTHER ASSISTANCE CHAPTER 1 INTRODUCTION 1 ...
Страница 208: ...4 88 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL FLEXLOGIC DESIGN USING ENGINEER CHAPTER 4 INTERFACES 4 ...
Страница 494: ...5 286 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL CONTROL ELEMENTS CHAPTER 5 SETTINGS 5 Figure 5 158 Time out mode ...
Страница 552: ...5 344 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL TESTING CHAPTER 5 SETTINGS 5 ...
Страница 596: ...7 14 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL TARGETS MENU CHAPTER 7 COMMANDS AND TARGETS 7 ...
Страница 602: ...9 4 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL SATURATION DETECTOR CHAPTER 9 THEORY OF OPERATION 9 ...
Страница 652: ...C 6 M60 MOTOR PROTECTION SYSTEM INSTRUCTION MANUAL COMMAND LINE INTERFACE APPENDIX C COMMAND LINE INTERFACE C ...
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