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FANUC A06B A06B-6058-H203

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A06B-6058-H203

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The FANUC A06B-6058-H203 is a servo drive and amplifier designed specifically for two-axis applications, including CNC machinery and robotic systems. This unit operates using a digital signal control type and requires an AC power supply for optimal performance.

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Ships from Raleigh, NC
2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
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Technical specifications for A06B-6058-H203

ManufacturerFANUC
Product TypeServo Drive / Amplifier
Product LineA06B
Part NumberA06B-6058-H203
Weight14.00 lbs (6.35 kg)
Axes2 Axes
CompatibilityCNC & Robotics
ApplicationRobot / CNC
Control TypeDigital Signal
Rated Power0S/5S + 0S/5S
Power SupplyAC Power
Cooling TypeAir Cooling
MountingPanel / Rack Mountable
Maximum Operating Humidity80% RH without condensation
Maximum Storage Humidity80% RH without condensation

In the realm of motion control, the FANUC A06B-6058-H203 is a specialized servo drive and amplifier. It is structured to manage two axes, making it adept for applications in CNC and robotics. The digital signal control mechanism enhances its precision and responsiveness when functioning with intricate systems.

This servo drive operates on an AC power supply, facilitating powerful performance tailored for demanding tasks. With a rated power of 0S/5S + 0S/5S, it effectively meets various operational needs. Weighing in at 6.35 kg, it is suitable for deployment in both panel-mount and rack-mounted configurations, offering flexibility depending on installation requirements. Air cooling is incorporated to maintain optimal operating temperatures efficiently.

Engineered to perform seamlessly, the A06B-6058-H203 has a maximum operating humidity threshold of 80% without condensation, ensuring reliable function in humid environments. The storage conditions closely mirror these parameters, highlighting the device's robust design for sustained performance.