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COMPANY PROFILE

SMAC Moving Coil Actuators, Inc.

www.smac-mca.com
Click Here to Contact
  • Member Since 2014
  • Robotic Supplier

SMAC Inc. was founded in 1990 in Carlsbad, California USA. It has now grown to become a world leader in Moving Coil technology and is now the largest manufacturer of Moving Coil Actuators in the world. We have manufacturers on a global basis with production facilities in the USA, Europe and Asia offering technical support and service around the corner and around the world. SMAC now employs about 160 people, with over 30% of our employees being qualified engineers. SMAC is a business run by engineers, for engineers. SMAC Moving Coil Actuators are being used in many different applications in a wide variety of industries throughout the world. The range and capability of SMAC's product line is expanding rapidly, and the cost is now approaching that of precision pneumatic component levels with the significant advantage of having precise control and programmability of position, force and velocity.

Editorials

Impact Productivity Not The Product

POSTED: 12/31/2015

A common side effect of using air cylinder to performing high-speed diverting and sorting of all types of products, and heavy products at any speed is the of the decrease in productivity caused by the higher energy the air cylinder imparts on the product at the point of impact.  This

8 Ways SMAC's Revolutionary SOFT-LAND is a Game Changer

POSTED: 10/22/2015

“Soft-land” is the ability to softly land on a surface with a Moving Coil Actuator shaft and virtually instantly (in milliseconds) recognize that contact has been made and at what distance.  The “Soft-Land” is a patented unique routine which allows the actuator rod or gripper jaw to land on the

Small Fragile Electronic Component Assembly - Challenges and Solutions

POSTED: 04/21/2015

The smallest SMD components are shrinking in size, currently 0.2 x 0.4 mm (type 01005). The solder area’s on these components is 0.07 x 0.2 mm. The interspacing between components needs to be as small as possible in order to maximize the component density. A distance between components of 0.05


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