Festo EAMM-U Series Connection Kit for Use with Motor Mounting, 348mm Length

Subtotal (1 unit)*

£1,585.05

(exc. VAT)

£1,902.06

(inc. VAT)

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RS Stock No.:
195-520
Mfr. Part No.:
EAMM-U-145-D100-120G-188
Brand:
Festo
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Brand

Festo

Accessory Type

Paralleling Link

For Use With

Motor Mounting

Series

EAMM-U

Length

348mm

COO (Country of Origin):
DE

Festo EAMM-U Series Connection Kit, For Use With Motor Mounting, 348mm Length - EAMM-U-145-D100-120G-188, Numeric Part Number: 2803620


This connection kit is essential for effective motor mounting solutions. It is designed to be compatible with a variety of motors, allowing for optimal assembly configurations and ensuring strong performance in industrial settings. The unit is constructed to address the challenges of mechanical integration in automation applications.

Features & Benefits


• Robust design for dependable performance in various conditions
• Optional mounting positions enhance installation flexibility
• Frictional torque independent of load simplifies control

Applications


• Suitable for motor mounting setups in automation machinery
• Ideal for mechanical assembly in production lines
• Applicable in constructing drive systems and gear units
• Can be integrated into customised automation solutions
• Compatible with a range of mechanical engineering components

What environmental conditions can this withstand?


The kit operates effectively within a temperature range of -10°C to 60°C and functions in relative humidity levels from 0 to 95%, making it suitable for diverse industrial environments.

What maintenance practices are recommended for longevity?


Regular inspections for wear, along with keeping components clean and lubricated, are recommended to ensure durability and sustained operational efficiency.

Can this be used with any motor type?


It is compatible with motors that adhere to specific interface codes, ensuring proper connections with designated actuators and motor specifications.

How does this design contribute to operational efficiency?


The design reduces frictional torque under varying load conditions, resulting in smoother operation and decreased energy consumption during mechanical tasks.

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