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H2-2206 Leadshine AC Hybrid Servo Drive
  • H2-2206 Leadshine AC Hybrid Servo Drive
  • H2-2206 Leadshine AC Hybrid Servo Drive

H2-2206 Leadshine AC Hybrid Servo Drive

Place of Origin USA
Brand Name Leadshine
Certification CO.CQ
Model Number H2-2206
Product Details
Manufacture Year:
2020
Con 6DS1311-8AEtrol System:
H2-2206
Application:
Nuclear Power Plant
Lead Time:
In Stock
Description:
Leadshine
Weight:
4lbs
High Light: 

dcs automation

,

sst pb3 clx rll

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

 

H2-2206 Leadshine AC Hybrid Servo Drive

 

Brand/Manufacturer

Leadshine/USA

Part Number

H2-2206

Alternate Part Number

H2-2206

Description AC Hybrid Servo Drive
Dimennsions 9.0 cm x 13.5cm x 18.4 cm
Weight 0.85kg

 

Product Details

Features

Low cost and good high-speed torque

Supply voltage up to +50VDC

Output current up to 4.2A

Optically isolated input signals

Pulse frequency up to 300 KHz

Automatic idle-current reduction

3-state current control technology

15 selectable resolutions

Suitable for 2-phase and 4-phase motors

DIP switch current setting with 8 different values

CW/CCW mode available (optional)

Over-voltage and short-circuit protection

Small size (118x75.5x33mm)

 

Electrical Specifications

Output current: 1.0 - 4.2 (3.0A RMS) A

Supply voltage: 20-50 VDC

Logic signal current: 7-16 mA

Pulse input frequency: 0 - 300 KHz

Isolation resistance: 500 MΩ

 

Moore News

METALLURGICAL INDUSTRY

The process is simple, the production volume is large, the labor productivity is high, and the energy consumption is low. The iron produced by this method still accounts for more than 95% of the total iron production in the world.
In the blast furnace production, iron ore, coke, slag flux (limestone) is loaded from the top of the furnace, and preheated air is blown from the tuyere at the lower part of the furnace along the circumference of the furnace.
At high temperatures, carbon in coke (some blast furnaces also spray auxiliary fuel such as pulverized coal, heavy oil, natural gas, etc.) and carbon monoxide and hydrogen produced by combustion of oxygen in the air.
The oxygen in the iron ore is removed during the ascent in the furnace, thereby reducing the iron. The molten iron is discharged from the iron mouth. The impurities that are not reduced in the iron ore are combined with a flux such as limestone to form slag, which is discharged from the slag port. The generated gas is exported from the top of the furnace. After dedusting, it is used as fuel for hot blast stoves, heating furnaces, coke ovens, boilers, etc.
 

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