
( Brand: Smc ), ( Manufacturer Part Number: MHZ2-16DN )
The MHZ2-16DN SMC Parallel Gripper is a versatile and reliable solution for automation applications requiring precise handling and gripping of parts. This parallel gripper is designed with 16 independent fingers, each actuated by a servo motor, providing high grip force and excellent holding capacity.
The MHZ2-16DN SMC Parallel Gripper features a compact design, making it ideal for use in tight spaces and confined work areas. With a total width of 110mm and a depth of 130mm, this gripper can fit into many robotic arms without any issues. The gripper has a finger stroke of 50mm, allowing it to grasp objects of various shapes and sizes with ease.
The MHZ2-16DN SMC Parallel Gripper is equipped with 16 servo motors, each with a holding force of 20N. This results in a total grip force of 320N, ensuring that the gripper can securely hold even heavy objects. The servo motors are also adjustable, allowing the user to fine-tune the grip force to meet the specific requirements of their application.
The gripper is made of high-quality stainless steel, ensuring durability and resistance to corrosion. It is also equipped with a non-slip surface on the fingers, which helps to prevent the objects from slipping during handling. The gripper is easy to clean, making it suitable for use in food and pharmaceutical industries.
The MHZ2-16DN SMC Parallel Gripper is compatible with various types of robotic arms and controllers, making it a flexible solution for different automation applications. It is also easy to integrate into existing automation systems, thanks to its standard interfaces, such as CANopen and Ethernet/IP.
In summary, the MHZ2-16DN SMC Parallel Gripper is a high-performance and versatile solution for automation applications requiring precise gripping and handling of parts. Its compact design, adjustable grip force, non-slip surface, and compatibility with various robotic arms make it a reliable and flexible choice for many industries.
The MHZ2-16DN SMC Parallel Gripper is a popular choice for automation applications due to its robust design and high performance. Here are some pros and cons to consider before making a purchase:
Pros:1. High payload capacity: The MHZ2-16DN can handle up to 16 kg, making it suitable for heavy-duty applications.
2. Parallel design: The parallel jaw design ensures a consistent grip force, which is ideal for handling fragile or irregularly shaped objects.
3. High repeatability: The gripper has a high repeatability of /- 0.1 mm, ensuring consistent and accurate placement of parts.
4. Easy installation: The gripper is easy to install and integrate with robotic arms, reducing setup time and costs.
5. Durable construction: The gripper is made of high-quality materials, ensuring long-term reliability and reduced maintenance costs.
Cons:1. Limited gripper size: The MHZ2-16DN has a limited gripper size, which may not be suitable for larger parts.
2. High cost: The gripper is expensive compared to other grippers on the market.
3. Limited customization options: The gripper is available in a limited number of configurations, which may not meet all application requirements.
Conclusion:The MHZ2-16DN SMC Parallel Gripper is a reliable and high-performance option for automation applications that require a high payload capacity and consistent grip force. While it may be expensive compared to other grippers, its high repeatability and durability make it a worthwhile investment for many applications. However, if you have larger parts or require more customization options, you may want to consider other gripper options.
Recommendation:If you need a high-performance gripper with a high payload capacity and consistent grip force, the MHZ2-16DN SMC Parallel Gripper is an excellent choice. However, ensure that it meets your specific application requirements before making a purchase to avoid any potential compatibility issues.
We determine the best method of shipping based upon item and location. Smc MHZ2-16DN parallel gripper excellent condition.
From late model system.