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HE693THM884 GE 8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms
  • HE693THM884  GE   8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms
  • HE693THM884  GE   8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms

HE693THM884 GE 8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms

Place of Origin USA
Brand Name GE
Certification CO.CQ
Model Number HE693THM884
Product Details
Manufacture Year:
2020
Con 6DS1311-8AEtrol System:
HE693THM884
Application:
Nuclear Power Plant
Lead Time:
In Stock
Description:
GE
Weight:
4lbs
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GE Controller board

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geautomation board

Payment & Shipping Terms
Minimum Order Quantity
1
Price
inquiry
Packaging Details
new and original with factory sealed
Delivery Time
today
Payment Terms
T/T
Supply Ability
10 pieces a day
Product Description

 

HE693THM884 GE 8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms

 

⇒ Click here for good price HE693THM884

 

Brand/Manufacturer   GE /USA
Part Number

  HE693THM884

Alternate Part Number   HE693THM884
Description   MOTOR SERVO
Dimennsions

  3.6x13x13.5cm 

Weight   0.34kg

 

PRODUCT DETAILS

The HE693THM884 allows thermocouple temperature sensors to be connected to the PLC directly without the use of external signal processing such as transducers, transmitters, etc. All analog and digital processing of the thermocouple signal is performed on the module. This high-resolution module (0.1°C), can report values to the PLC I/O table in 0.5°C, 0.5°F, 0.1°C, or 0.1°F increments. The module has eight thermocouple channels assigned to 8 %AI input registers. There are 16 %I Alarm Bits, one open circuit alarm and one setpoint alarm for each channel. Alarm setpoints are set for each channel through 8 %AQ registers. Open circuit alarm bits for each channel correspond to the first eight successive%I bits, and the alarm setpoints for each channel correspond to the second eight successive %I bits.

HE693THM884  GE   8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms 0

 

Moore  News

NONFERROUS INDUSTRY

 

Non-ferrous Industry Capability

 

The sintering method and the Bayer process are currently the main methods for industrial production of alumina.

Most of the alumina produced is produced by Bayer process.

The Bayer-sintering hybrid method was first created, which greatly improved the total recovery of alumina.

With the continuous improvement of production technology, some new production methods such as lime Bayer method and beneficiation Bayer method are continuously applied to production.

 

The integrated process control system is a distributed control system.

The system consists of eight process control subsystems (workshop) for raw material grinding, lime digestion, dissolution, sedimentation, seed filtration, evaporation, product filtration, and roasting.

Each workshop has an engineering station EWS and 2-3 operator stations OPS.

The data collection, real-time monitoring, data processing and other information transmission of the internal process parameters of the workshop are realized by the EtherNet/IP control network.

The main production operations of the entire alumina plant are completed by these eight subsystems, each controlled by a ControlLogix controller.

HE693THM884  GE   8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms 1

 

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HE693THM884  GE   8 ch. J, K, N, T, E, R, S, B, C 0.1degC res., degC/F units, 8 temp + ope n circ. alarms 2

 

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