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191192
shock absorber YSRW-5-8 Self-adjusting, with progressive characteristic curve. Size: 5, Stroke: 8 mm, Cushioning: (* self-adjusting, * Soft characteristic), Assembly position: Any, Position detection: No
Festo
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189465
mini guided drive DFC-6-25-P-A-KF For position sensing with ball bearing guide. Centre of gravity distance from working load to yoke plate: 10 mm, Stroke: 25 mm, Piston diameter: 6 mm, Operating mode of drive unit: Yoke, Cushioning: P: Flexible cushioning
Festo
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191199
shock absorber YSR-10-10-C Self-adjusting Size: 10, Stroke: 10 mm, Cushioning: self-adjusting, Assembly position: Any, Position detection: No
Festo
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189456
mini guided drive DFC-6-10-P-A-GF For position sensing with plain-bearing guide. Centre of gravity distance from working load to yoke plate: 10 mm, Stroke: 10 mm, Piston diameter: 6 mm, Operating mode of drive unit: Yoke, Cushioning: P: Flexible cushionin
Festo
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189454
mini guided drive DFC-4-20-P-GF no sensing facility, with plain-bearing guide. Centre of gravity distance from working load to yoke plate: 5 mm, Stroke: 20 mm, Piston diameter: 4 mm, Operating mode of drive unit: Yoke, Cushioning: P: Flexible cushioning r
Festo
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565726
hinge cylinder DWA-50-50-Y-A-G Stroke: 50 mm, Piston diameter: 50 mm, Piston rod thread: M16x1,5, Distance of rod clevis to swivel mounting: 16 mm, Cushioning: PPV: Pneumatic cushioning adjustable at both ends
Festo
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565771
hinge cylinder DWA-63-150-Y-AB-G Stroke: 150 mm, Piston diameter: 63 mm, Piston rod thread: M16x1,5, Distance of rod clevis to swivel mounting: 16 mm, Cushioning: PPV: Pneumatic cushioning adjustable at both ends
Festo
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197322
clevis foot CRLMC-50 For type CRHD Size: 50, Based on the standard: ISO 15552 (previously also VDMA 24652, ISO 6431, NF E49 003.1, UNI 10290), Assembly position: Any, Corrosion resistance classification CRC: 4 - Very high corrosion stress, Ambient tempera
Festo
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1179837
shock absorber DYEF-M10-Y1 Size: M10, Stroke: 1 mm, Cushioning: P cushioning without metal fixed stop, Assembly position: Any, Position detection: No
Festo
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1086663
cover DADS-AB-G6-4-30 Suitable for DGSL mini slide Corrosion resistance classification CRC: 2 - Moderate corrosion stress, Ambient temperature: 0 - 60 °C, Product weight: 2,2 g, Materials note: Conforms to RoHS
Festo
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572364
hinge cylinder DWC-63-125-Y-A-G Stroke: 125 mm, Piston diameter: 63 mm, Piston rod thread: M16x1,5, Distance of rod clevis to swivel mounting: 16,5 mm, Cushioning: PPV: Pneumatic cushioning adjustable at both ends
Festo
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195584
rod eye CRSGS-M16X1,5 With hexagonal nut, for spherical swivelling cylinder mounting (piston rod side) as per DIN ISO 8139. Size: M16x1,5, Corrosion resistance classification CRC: 3 - High corrosion stress, Ambient temperature: -40 - 150 °C, Product weigh
Festo
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546555
flange mounting FZF-1" For cylinder DZF. Size: 1", Assembly position: Any, Corrosion resistance classification CRC: 2 - Moderate corrosion stress, Ambient temperature: -40 - 150 °C, Product weight: 56 g
Festo
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548377
shock absorber DYEF-M16-Y1F Size: M16, Stroke: 4,8 mm, Cushioning: Pneumatic cushioning with fixed metallic stop, Assembly position: Any, Position detection: No
Festo
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565758
hinge cylinder DWB-63-100-Y-A-G Stroke: 100 mm, Piston diameter: 63 mm, Piston rod thread: M16x1,5, Distance of rod clevis to swivel mounting: 19,5 mm, Cushioning: PPV: Pneumatic cushioning adjustable at both ends
Festo
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1946877
sensing kit DASI-Q11-63-A-KT Size: 63, Corrosion resistance classification CRC: 2 - Moderate corrosion stress, Ambient temperature: -10 - 60 °C, Product weight: 1390 g, Mounting type: Tightened
Festo
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3015256
sensor bracket DASP-M4-320-A Size: 320, Design: For tie rod, Assembly position: Any, Corrosion resistance classification CRC: 3 - High corrosion stress, Tightening torque: 0,6 - 1 Nm
Festo
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2349279
moment compensator DARD-L1-63-M Size: 63, Radial deviation +/-: 4 mm, Corrosion resistance classification CRC: 1 - Low corrosion stress, Ambient temperature: -10 - 60 °C, Long maximum permitted load in force direction +/-: 5000 N
Festo
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2349278
moment compensator DARD-L1-50-M Size: 50, Radial deviation +/-: 4 mm, Corrosion resistance classification CRC: 1 - Low corrosion stress, Ambient temperature: -10 - 60 °C, Long maximum permitted load in force direction +/-: 3150 N
Festo
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195856
flange mounting FBN-40 For DSNU and ESNU cylinders. Size: 40, Corrosion resistance classification CRC: 1 - Low corrosion stress, Product weight: 191 g, Materials note: (* Free of copper and PTFE, * Conforms to RoHS), Material mounting: (* Steel, * Galvani
Festo
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Actuator Accessories
Actuator Accessories - General Guide & Overview
Actuator accessories are key components that enhance the performance and functionality of actuator systems. Whether it's pneumatic, linear, or hydraulic actuators, these accessories are designed to provide additional features and capabilities, complementing the main actuator unit. Actuator accessories come in various forms, such as pneumatic cylinders, rotary actuators, rodless actuators, tie rod cylinders, and more. These accessories are made from different materials and offer a range of options in terms of motion profiles, pressure ranges, and overall build.
When selecting actuator accessories, it is crucial to consider factors such as the application environment, desired motion, load capacity, and available space. By choosing the right accessories, users can optimize their actuator systems for maximum performance and efficiency. From improving motion capabilities to adapting to different environments, actuator accessories play a vital role in achieving optimal functionality. Moreover, actuator accessories offer cost-effective solutions and the flexibility to customize according to specific requirements.
Types of Actuator Accessories
When it comes to actuator accessories, there is a wide variety of options to choose from, each designed to meet specific application requirements. Understanding the different types can help users select the right accessory for their needs and optimize their systems accordingly.
Pneumatic Cylinders
Pneumatic cylinders, also known as air cylinders or air actuators, are the most commonly used type of actuator accessory. These cylinders utilize compressed air or gas to convert energy into linear or rotary motion. With their reliable performance and ease of use, pneumatic cylinders are widely employed in various industries and applications.
Rotary Actuators
Rotary actuators provide rotational movement, offering up to 1080° of rotation. They are ideal for applications such as pick and place operations, opening and closing mechanisms, and indexing processes. By delivering precise and controlled rotation, rotary actuators enable efficient motion control in a range of industrial settings.
Rodless Actuators
Rodless actuators are compact and efficient, making them perfect for point-to-point movements and applications with limited physical space. These actuators offer smooth and precise linear motion without the need for a traditional rod. They are commonly used in industries such as packaging, material handling, and automation.
Tie Rod Cylinders
Tie rod cylinders are widely employed in industrial machining applications. They offer larger bore sizes, longer strokes, and quick mounting capabilities. With their robust construction and reliable performance, tie rod cylinders are known for their durability and suitability for heavy-duty applications.
Combination Actuators
Combination actuators combine the features of both rotary and linear actuators, providing users with versatile motion control solutions. These actuators are suitable for a wide range of applications, including dispensing, packaging, and automated assembly. By integrating the strengths of both rotary and linear actuation, combination actuators offer enhanced functionality and adaptability.
By understanding the different types of actuator accessories, users can select the right one for their specific needs and optimize their systems accordingly. Whether it's pneumatic cylinders, rotary actuators, rodless actuators, tie rod cylinders, or combination actuators, choosing the appropriate accessory is key to achieving optimal performance and efficiency.
Benefits of Actuator Accessories
Actuator accessories offer a multitude of benefits that enhance the overall performance and efficiency of actuator systems. These accessories are designed to withstand the demanding conditions of various industries, making them reliable choices for any application. With efficient motion control, actuator accessories utilize energy conversion to generate precise and controlled movement, ensuring optimal performance.
What sets actuator accessories apart is their versatility. They have the ability to adapt to different applications and environments, making them suitable for a wide range of industries. Whether in manufacturing, automation, or robotics, actuator accessories provide adaptable solutions that meet specific requirements.
Moreover, actuator accessories offer cost-effectiveness, making them a practical choice for businesses. They serve as more affordable alternatives to other types of actuators, without compromising on performance or functionality. This cost-effectiveness extends beyond the initial investment, as these accessories can be made from different materials and offer customizable options to tailor them to specific needs.
By utilizing actuator accessories, users can enhance the functionality and versatility of their systems. These accessories provide reliable, efficient, and cost-effective solutions that adapt to various applications. They play a crucial role in optimizing performance and achieving maximum efficiency in actuator systems.
Actuator accessories play a vital role in optimizing the performance and functionality of actuator systems. With a wide range of options available, users can carefully select the right accessories to meet their specific needs and requirements.
By considering factors such as the application environment, desired motion, load capacity, and available space, users can make informed decisions when choosing actuator accessories. This selection process ensures that the accessories are perfectly tailored to their systems, resulting in maximum performance, efficiency, and functionality.
Whether it's enhancing motion capabilities, adapting to different environments, or achieving cost-effectiveness, actuator accessories offer a multitude of benefits. These accessories enable users to optimize their systems for optimal performance while maintaining the desired level of functionality.
With the right actuator accessories in place, users can rest assured that their systems are optimized for success. By leveraging the power of selection and utilization, they can achieve top-notch performance and unlock the full potential of their actuator systems.
FAQ
What are actuator accessories?
Actuator accessories are additional components designed to enhance the performance and functionality of actuator systems. They can include pneumatic cylinders, rotary actuators, rodless actuators, tie rod cylinders, and combination actuators, among others.
What types of actuator accessories are available?
There are various types of actuator accessories available, including pneumatic cylinders, rotary actuators, rodless actuators, tie rod cylinders, and combination actuators. Each type is designed for specific applications and provides unique motion capabilities.
Why should I consider using actuator accessories?
Actuator accessories offer several benefits, including reliability, efficient motion control, versatility, cost-effectiveness, and adaptability. They are designed to withstand demanding conditions and can be customized to meet specific requirements.
How do actuator accessories optimize actuator systems?
By selecting the right actuator accessories, users can optimize their systems for maximum performance and efficiency. The accessories enhance motion capabilities, adapt to different environments, and offer cost-effective solutions, ultimately improving the functionality and versatility of the actuator systems.
How do I choose the right actuator accessories for my application?
When selecting actuator accessories, it is essential to consider factors such as the application environment, desired motion, load capacity, and available space. Understanding the specific requirements of your application will help you decide the right accessories to optimize your actuator system.