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DRT1-ID16T Omron Remote Terminal Source 24V DC Input
  • DRT1-ID16T Omron Remote Terminal Source 24V DC Input

DRT1-ID16T Omron Remote Terminal Source 24V DC Input

Place of Origin JAPAN
Brand Name OMRON
Certification CO.CQ
Model Number DRT1-ID16T
Product Details
Manufacture Year:
2020
Con 6DS1311-8AEtrol System:
DRT1-ID16T
Application:
Nuclear Power Plant
Lead Time:
In Stock
Description:
OMRON
Weight:
4lbs
High Light: 

b&r touch screen

,

b&r touch panel

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

 

DRT1-ID16T OMRON REMOTE TERMINAL SOURCE:24V DC INPUT

 

Brand/Manufacturer OMRON/JAPAN
Part Number

DRT1-ID16T

Alternate Part Number

DRT1-ID16T

Description REMOTE TERMINAL SOURCE:24V DC INPUT
Dimennsions 4cm x 6cm x 11cm
Weight 0.15kg

 

Product Details

Input current 10 mA max./point

ON delay time 1.5 ms max.

OFF delay time 1.5 ms max.

ON voltage 15 VDC min. between each input terminal and V

OFF voltage 5 VDC max. between each input terminal and V

OFF current 1 mA max.

Insulation method Photocoupler

Input indicators LED (yellow)

 

Communications power supply voltage 11 to 25 VDC (supplied from the communications connector)

Internal power supply voltage 24 VDC +10%/–15%

I/O power supply voltage 24 VDC +10%/–15%

Current consumption (see note) Communications: 60 mA max. at 24 VDC; Internal circuit: 60 mA max. at 24 VDC

Dielectric strength 500 VAC for 1 min (1-mA sensing current between insulated circuits)

Noise immunity:

Power supply normal: ±600 V for 10 minutes with a pulse width of 100 ns to 1 µs

Power supply common: ±1,500 V for 10 minutes with a pulse width of 100 ns to 1 µs

Vibration resistance 10 to 55 Hz, 1.5-mm double amplitude

Shock resistance:

Malfunction: 200 m/s2 (approx. 20G)

Destruction: 300 m/s2 (approx. 30G)

DRT1-ID16T Omron Remote Terminal Source 24V DC Input 0

 

Moore News

METALLURGICAL INDUSTRY

Metallurgical Industry Capability
Blast furnace ironmaking is the use of iron-containing raw materials (sinter, pellet or iron ore), fuel (coke, coal powder, etc.) and other auxiliary materials (limestone, dolomite, manganese ore, etc.)
The blast furnace is charged into a certain proportion, and hot air is blown into the blast furnace to help the coke burn, and the raw materials and fuel are lowered as the smelting process in the furnace progresses.
In the process of falling material and gas rising, heat transfer, reduction, melting and decarbonization occur successively to produce pig iron.
The impurities in the iron ore raw material are combined with the flux added to the furnace to form a slag, and the molten iron at the bottom of the furnace is intermittently discharged into the molten iron tank.
Sent to the steel mill. At the same time, it produces blast furnace gas and slag two by-products. After blast furnace slag water quenching, all of them are used as raw materials for cement production.

 

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