Description
GE General Electric Technical Specifications: IS200IGEHG1A
The IS200IGEHG1A has an Open RTD Sensor Alarm. This alarm will look at all RTDs that have either an alarm or trip programmed and
determine if an RTD connection has been broken. Any RTDs that do not have a trip or alarm associated with them will be
ignored for this feature. When a broken sensor is detected, the assigned output relay will operate and a message will
appear on the display identifying the RTD that is broken. It is recommended that if this feature is used, the alarm be pro
grammed as latched so that intermittent RTDs are detected and corrective action may be taken.
brand | Product Name | Product model | Order No |
GE Fanuc | Module card | IS200IGEHG1A | nothing |
Place of Origin | Marketable land | Imported or not | defects liability period |
Europe and America | Nationwide and overseas | yes | a year |
Place of shipment | Delivery method | How to use | Applicable industries |
Xiamen | Shunfeng Express | Commissioning and installation | Power Plant Steel Plant Cement Plant Shipboard Papermaking |
Service advantages | Foreign import, goods preparation and supply | Reasonable price and reliable quality | Pictures are for reference only |
Product features | Primary source of goods, supply by model | After sales guarantee | Chen 1810693-7731 |
The IS200IGEHG1A has an RTD Short/Low Temperature alarm. This alarm will look at all RTDs that have either an alarm or trip pro
grammed and determine if an RTD has either a short or a very low temperature (less than –50°C). Any RTDs that do not
have a trip or alarm associated with them will be ignored for this feature. When a short/low temperature is detected, the
assigned output relay will operate and a message will appear on the display identifying the RTD that caused the alarm. It is
recommended that if this feature is used, the alarm be programmed as latched so that intermittent RTDs are detected and
corrective action may be taken.
The thermal model of the IS200IGEHG1A is primarily intended for induction generators, especially those that start on the system bus in
the same manner as induction motors. However, some of the thermal model features may be used to model the heating
that occurs in synchronous generators during overload conditions.
One of the principle enemies of generator life is heat. Generator thermal limits are dictated by the design of both the stator
and the rotor. Induction generators that start on the system bus have three modes of operation: locked rotor or stall (when
the rotor is not turning), acceleration (when the rotor is coming up to speed), and generating (when the rotor turns at super
synchronous speed). Heating occurs in the generator during each of these conditions in very distinct ways. Typically, during
the generator starting, locked rotor and acceleration conditions, the generator will be rotor limited. That is to say that the
rotor will approach its thermal limit before the stator. Under locked rotor conditions, voltage is induced in the rotor at line fre
quency, 50 or 60 Hz. This voltage causes a current to flow in the rotor, also at line frequency, and the heat generated (I 2R)
is a function of the effective rotor resistance. At 50 or 60 Hz, the reactance of the rotor cage causes the current to flow at
the outer edges of the rotor bars. The effective resistance of the rotor is IS200IGEHG1A therefore at a maximum during a locked rotor con
dition as is rotor heating. When the generator is running at above rated speed, the voltage induced in the rotor is at a low
frequency (approximately 1 Hz) and therefore, the effective resistance of the rotor is reduced quite dramatically. During
overloads, the generator thermal limit is typically dictated by stator parameters. Some special generators might be all stator
or all rotor limited. During acceleration, the dynamic nature of the generator slip dictates that rotor impedance is also
dynamic, and a third thermal limit characteristic is necessary.
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Lead time problem
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livery can be arranged on the same day after the contract payment is signed
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For the simple purchase procedure of spare parts, ensure that they are delivered to the site in a timely manner, and help users reduce the risk of downtime caused by the shortage of spare parts
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