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Q series PLC

Mitsubishi Q01UCPU General-Purpose CPU Module | High-Performance PLC Controller

Mitsubishi General-Purpose CPU Q01UCPU

New
Brand Mitsubishi
Model Q01UCPU
$83.00
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The Mitsubishi general-purpose CPU Q01UCPU supports 1024 I/O points and 8192 I/O elements. It features a program capacity of 15K steps, a processing speed of 0.06 μs, and 60 KB of program memory. Connectivity includes USB and RS232, but it does not support memory card installation.

Designed for high-speed processing, it reduces production time and enhances performance to meet the demands of larger, more complex applications. With a high-speed basic operation processing time of 1.9 ns, it shortens execution cycles, enabling fast control comparable to microcontroller-based systems while minimizing total scan time to improve system performance and prevent potential deviations.

It excels in high-speed data processing, significantly accelerating real-number (floating-point) operations—for example, addition instructions achieve 0.014 μs. This capability supports rapid processing of machining data and similar computations. Additionally, newly added double-precision floating-point operation instructions simplify programming and reduce computational errors in complex formulas.

Mitsubishi General-Purpose CPU Q01UCPU

Key Specifications:

●I/O Points: 1,024 points.

●I/O Device Count: 8,192 points.

●Program Capacity: 15 K steps.

●Processing Speed: 0.06 μs per basic instruction.

●Program Memory Capacity: 60 KB.

●Communication Interfaces: USB and RS232 support.

●Memory Card: Not compatible.

Performance Features:

1. High-Speed Processing for Reduced Production Time

   With applications growing larger and more complex, minimizing system cycle time is essential. The Q01UCPU achieves this through an enhanced fundamental processing speed of 1.9 ns, significantly shortening the execution cycle. This enables not only high-speed control comparable to traditional microcontroller-based systems but also reduces the total scan time, thereby improving overall system performance and minimizing potential performance deviations.

2. Efficient High-Speed Data Processing

   The CPU delivers substantially improved processing speed for real-number (floating-point) arithmetic operations. For instance, the addition instruction executes in just 0.014 μs, making it well-suited for high-speed computational tasks such as machining data processing. Additionally, the introduction of double-precision floating-point operation instructions simplifies programming and reduces computational errors when executing complex formulas, enhancing both accuracy and developer efficiency.

Applications:

Ideal for advanced automation systems requiring rapid data computation, precision control, and reliable performance in demanding industrial environments.

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