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Home ProductsIndustrial Servo Motor

Industrial Yaskawa Electric SGMGH Series 850W AC SERVO MOTOR SGMGH-09ACA21

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Industrial Yaskawa Electric SGMGH Series 850W AC SERVO MOTOR SGMGH-09ACA21

Large Image :  Industrial Yaskawa Electric SGMGH Series 850W AC SERVO MOTOR SGMGH-09ACA21

Product Details:

Place of Origin: Japan
Brand Name: Yaskawa
Model Number: SGMGH-09ACA21

Payment & Shipping Terms:

Minimum Order Quantity: 1
Price: negotiable
Packaging Details: New in original box
Delivery Time: 2-3 work days
Payment Terms: T/T, Western Union
Supply Ability: 100
Detailed Product Description
Brand: Yaskawa Model: SGMGH-09ACA21
Place Of Origin: Japan Type: AC SERVO MOTOR
Power: 850W Volatge: 200V
Current: 7.1A Ins: F
Highlight:

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Industrial Yaskawa Electric SGMGH Series 850W AC SERVO MOTOR SGMGH-09ACA21

 

 

 

 

Specifications

Manufacturer: Yaskawa

Product number: SGMGH-09ACA21​

Description: SGMGH-09ACA21​ is an Motors-AC Servo manufactured by Yaskawa

Servomotor Type: SGMGH AC Servomotor

Rated Output: 850W

Supply Voltage: 200V

Encoder Specification: 17-bit Incremental Encoder

Design Revision Order: A

Shaft End Specification: Straight without key

Options: With 24 VDC Brake

 

 

 

 

 

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Contact person: Anna
E-mail: wisdomlongkeji@163.com
Cellphone: +0086-13534205279

 

 

 

 


SIMILAR PRODUCTS

SGMGH-03ACB61
SGMGH-03ACB6C
SGMGH-05A2A2B
SGMGH-05A2A61
SGMGH-05A2ASC61
SGMGH-05ACA61 +SGDM-05ADA
SGMGH-05ACA6C
SGMGH-05ACC21
SGMGH-09A2A21
SGMGH-09ACA21
SGMGH-09ACA2B
SGMGH-09ACA2C
SGMGH-09ACA61
SGMGH-09ACA6B
SGMGH-09ACA6C
SGMGH-09ACB61
SGMGH-09ACB6B
SGMGH-09PCA-AM14
SGMGH-12A2B2
SGMGH-12A2B21
SGMGH-13A2A-YR13
SGMGH-13A2A-YR23
SGMGH-13A2A-YR23A
SGMGH-13A2A-YR24
SGMGH-13ACA
SGMGH-13ACA21
SGMGH-13ACA61
SGMGH-13ACA6C
SGMGH-13DCA61
SGMGH-1AACA61
SGMGH-1EACA61
SGMGH-20A2B2C
SGMGH-20ABA6C
SGMGH-20ACA61
SGMGH-20ACA6B
SGMGH-20ACA6C
SGMGH-20ACB2C
SGMGH-20ACB61
SGMGH-20D2A21

 

 

 

 

 

 

Servomotor

 

DC Servomotor and AC Servomotor

Servomotors are divided into two types: DC servomotors and AC servomotors.

DC servomotors are driven by direct current (DC). They have a long history. Up until the 1980s, the term “servomotor” used to imply a DC servomotor.

From 1984, AC servomotors were emerging as a result of rapid progress in microprocessor technology. Driven by alternating current (AC), AC servomotors are now widely used because of the following
advantages:

• Easy maintenance: No brush

• High speed: No limitation in rectification rate


Note however that servomotors and Servopacks use some parts that are subject to mechanical wear or aging. For preventive maintenance, inspect and replace parts at regular intervals. For details, refer to Chapter 6 Inspection, Maintenance, and Troubleshooting.

 

 

 

Scientific Information and Studies

 

The boundaries of each SGMA reflect the biological and geographical realities of area currently occupied by a population or populations of sage-grouse. The SGMAs are based upon the location of occupied leks, the identification of nesting and brood rearing habitat, on average, within a 3.0 mile radius of the occupied leks2, and associated winter and other habitat.

 

 

For decades prior to the current review, the DWR has been supporting research and communitybased conservation efforts to learn more about the ecology of the species. Appendix 8 contains a listing of research studies and reports on sage-grouse conducted in Utah. To facilitate this effort, the DWR established ten Local Area Working Groups (LAWGs) under the general direction of Utah State University, with the first established as far back as 1996. These LAWGs were composed of private interests and governmental entities, and were charged to assess the local nature and scope of the threats to the species, and to recommend a course of action to address those threats.

 

 

Because of this early and ongoing assessment, the State of Utah is fortunate to have a high level of knowledge about seasonal range, migration routes, and other factors known to be essential to maintenance of the species, all in the context of Utah’s unique conditions. This information, along with peer-reviewed scientific studies, forms the basis for this plan.

 

 

When local or county, state agency, and federal agency planning is aggregated into a statewide plan for sage-grouse, the collective result provides a complete and credible means of addressing the factors used by the FWS to measure the success of conservation efforts. Specifically, the objectives to enhance and increase habitat, and the implementation of this Plan to eliminate threats to greater sage-grouse populations will address the need for resiliency of the species – the ability of birds to persist in each management area in the face of normal or catastrophic events, and provide adequate representation of the species across its range in Utah. This plan further protects against the need for this species to be listed as threatened or endangered by providing a level of redundancy - numerous resilient populations that contribute to the long-term viability of the species across its range.

 

 

In Utah, based on statewide averages, 91% of greater sage-grouse hens nest within 3 miles of a lek, This is based upon data compiled by the DWR, Utah State University and Brigham Young University. These data include 478 sage grouse nests within SGMAs. The Strawberry SGMA is excluded from this analysis due to the transplanted nature of the population and the on-going establishment of new leks.

 

 

 

 

 

 

 

 

 

 

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