Festo 2 Finger Double Acting Action Pneumatic Gripper, DHPC-20-A-NC-S-2, Parallel Gripping Type

Subtotal (1 unit)*

£271.38

(exc. VAT)

£325.66

(inc. VAT)

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1 +£271.38

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RS Stock No.:
350-809
Mfr. Part No.:
DHPC-20-A-NC-S-2
Brand:
Festo
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Brand

Festo

Number of Fingers

2

Product Type

Pneumatic Gripper

Gripping Type

Parallel

Stroke Length

5mm

Action Type

Double Acting

Series

DHPC-20-A-NC-S-2

Maximum Operating Pressure

8 bar

Port Size

M5

Weight

224g

Minimum Operating Temperature

-10°C

Gripping Force - External

170.9N

Maximum Operating Temperature

60°C

Standards/Approvals

ISO 8573-1:2010 (7:4:4), RoHS, VDMA24364-B2-L

Maximum Operating Frequency

3Hz

COO (Country of Origin):
CN
The Festo parallel gripper is designed for precision and reliability in demanding automation environments. Engineered with the latest pneumatic technology, it features a robust construction with high-alloy stainless steel gripper jaws, ensuring longevity and performance under various conditions. The gripper operates with exceptional accuracy, offering a minimal backlash and a repeatability of up to 0.02 mm. With a versatile design that allows for multiple mounting positions, it seamlessly integrates into a variety of industrial setups. Its efficient design is optimized for quick cycle times, ensuring a swift operation that can boost productivity significantly. The product is further enhanced by its corrosion-resistant class, making it suitable for diverse applications, including those requiring lubrication. This combination of features makes it an ideal choice for users seeking precision engineering in their gripping solutions.

Pneumatic drive system ensures dynamic gripping forces

Optional mounting positions enhance flexibility during installation

Compact design suited for space-constrained environments

Ball guide technology promotes smooth operation

Proximity switch compatibility allows for easy position detection

Lubricated operation provides enhanced durability

Corrosion resistance categorization ensures reliability in harsh conditions

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