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FANUC Series 20 A20B-1003-0300

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A20B-1003-0300

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The A20B-1003-0300 is a digital control PCB specifically engineered for spindle control applications in FANUC's Series 20. This unit is particularly designed for compatibility with large I-series AC spindle drives and can function effectively with 8I and 12I spindle motors.

In Stock
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 A20B-1003-0300

ManufacturerFANUC
Product LineSeries 20
Part NumberA20B-1003-0300
Weight2.50 lbs (1.13 kg)
ProductSpindle Control PCB
TypePCB
FunctionDigital Control PCB
Fitted OnLarge I series AC spindle drives
Compatible Drive Series8I and 12I AC spindle motors
Minimum Operating Temperature0°C
Maximum Operating Temperature55°C
Minimum Storage Temperature-20°C
Maximum Storage Temperature60°C
EnvironmentNo Corrosive Gases
Humidity95% or less (non-condensing)

FANUC's A20B-1003-0300 PCB serves as a pivotal spindle control PCB, focusing on digital control systems for precise operation in industrial applications. Designed for large I-series AC spindle drives, this board is specifically compatible with both 8I and 12I drive series, making it versatile for various spindle motor implementations. Its weight is listed at 1.13 kg, equivalent to 2.49 lbs., providing a compact yet sturdy option for system integrations.

Temperature specifications for this PCB are critically important, as it operates optimally within a range of 0°C to 55°C. Furthermore, its storage requirements are designed to maintain performance, with suitable conditions ranging from -20°C to 60°C. The A20B-1003-0300 is engineered to function effectively in environments that do not expose it to corrosive gases, helping to preserve the integrity and longevity of the circuit board. Additionally, it can withstand humidity levels of up to 95% (non-condensing), ensuring reliable operation across diverse operational contexts.