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FANUC Series 20 A20B-1001-0560

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A20B-1001-0560

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The FANUC A20B-1001-0560 is a sophisticated RF backplane PCB designed for high-frequency applications. This multi-layer board operates effectively within a frequency range of 0 to 3 GHz, supporting a wide array of signal types and ensuring performance reliability.

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Technical specifications for A20B-1001-0560

ManufacturerFANUC
Product TypeRF Backplane PCB
Product LineSeries 20
Part NumberA20B-1001-0560
Weight32.00 lbs (14.51 kg)
Board MaterialFR4 (Flame Retardant Epoxy)
Connector TypeEdge Connectors
Surface Mount TechnologyYes
Frequency Range0-3 GHz
PCB TypeMultilayer
Operating Voltage5 V DC
Signal TypeDifferential Pair
Impedance50 Ohms
Through-Hole PlatingYes
Current Rating2 A per pin
Layer Count6 Layers
Temperature Range-20°C to 85°C
Mounting TypeSurface-mount and Through-hole

The A20B-1001-0560 model from FANUC belongs to the Series 20 range of RF backplane printed circuit boards (PCBs). Built from flame-retardant epoxy FR4 material, this board is engineered for durability and safety in demanding environments. This multilayer design, featuring six layers, is accommodates differential signals, ensuring enhanced signal integrity. With an operating voltage requirement of 5 V DC, the board efficiently functions across a frequency spectrum extending from 0 to 3 GHz.

In terms of connectivity, this PCB utilizes edge connectors, accommodating various connection types for versatility in application. The integrated surface mount technology (SMT) provides improved electrical performance and space efficiency. It supports a current rating of 2 A for each pin, highlighting its capability to handle substantial electrical loads. Additionally, through-hole plating enhances its robustness and makes it suitable for a range of mounting types, including both surface-mount and through-hole methods. The impedance of the board remains consistent at 50 Ohms, optimizing it for high-speed electronics. This model is engineered to perform effectively within a temperature range spanning from -20°C to 85°C, making it suitable for varying operational environments.