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Mitsubishi FX Series FX1N-1DABD

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FX1N-1DABD

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The FX1N-1DABD is an analog output expansion board from Mitsubishi's FX Series. It supports current and voltage inputs, allowing for versatile application across various projects.

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Technical specifications for FX1N-1DABD

ManufacturerMitsubishi
Product LineFX Series
Part NumberFX1N-1DABD
Weight0.06 lbs (0.03 kg)
Product NameAnalog Output Expansion Board
Integrated Accuracy for Current Input±1% Against the full scale (4 ~ 20mA: ±0.16mA)
Integrated Accuracy for Voltage Input±1% Against the full scale (0 ~ 10V: ±0.1V)
A/D Conversion TimeApprox. 10ms (D/A conversion is started after the END instruction)
Occupation Point0 points (1DA is not subject to the standard maximum number of control points in the host PLC, as it operates via a data register)
Analog Input TypeCurrent Input and Voltage Input
Range of Analog Voltage InputDC 0 ~ 10V (External load resistance 2k ~ 1MΩ)
Range of Analog Current InputDC 4 ~ 20mA (External load resistance 500Ω or less)
Digital Output12-bit binary
Resolution of Voltage Input2.5mV (10V /4000)
Resolution of Current Input8µA {(20mA - 4mA) /2000}

In the Mitsubishi FX Series, the FX1N-1DABD functions as an analog output expansion board designed for flexibility in control systems. This unit enables users to handle analog inputs effectively and convert them with precision. Both current and voltage inputs are supported with ±1% accuracy against their respective full scale. Specifically, it guarantees ±0.16mA accuracy for current inputs in the range of 4 to 20mA, and ±0.1V accuracy for voltage inputs spanning 0 to 10V.

The A/D conversion process occurs in approximately 10 milliseconds, commencing after the END instruction signals that it is time to start. Notably, its occupation point is recorded as 0 points. The FX1N-1DABD operates via data registers rather than adhering to standard control point limitations defined by the host PLC, providing greater freedom in configuration.

For voltage input, it can process a range of DC 0 to 10V. This requires an external load resistance of between 2kΩ and 1MΩ. In terms of current input, it accommodates DC 4 to 20mA, with an external load resistance capped at 500Ω or lower. The digital output is delivered in a 12-bit binary format, ensuring detailed data representation. The resolution for voltage inputs is calculated at 2.5mV while for current inputs, it registers at 8µA, derived from dividing the difference between 20mA and 4mA by 2000. Overall, this board is engineered to enhance the functional capacity of connected systems.