MT 1050 RCP MT 1050 RCP
Rapid Control Prototyping
MT 1050 RCP
Entry-level Performance
  • CPU
    CPU
    Dual-core ARM Cortex-A9
  • FPGA
    FPGA
    Xilinx Zynq
  • IO interface
    IO interface
    16 AI ,16 DO
  • PWM
    PWM
    32 channels, 0-3.3V
MT 1050 RCP
MT 1050 RCP

MT 1050 is an entry-level rapid control prototyping product that helps users to quickly debug and validate control algorithms in a safe laboratory, facilitating teaching and research applications such as motor control and renewable energy converter control in the field of power electronics and power transmission.

Detailed Highlights
  • Hardware architecture of CPU+ FPGA

    The hardware architecture is based on ARM dual-core CPU and Xilinx ZYNQ-7100 FPGA, providing algorithm developers with customized, high-performance rapid control prototyping tools.

  • High-frequency control of 50K

    Based on bare metal technology with high speed and low latency, thus realizing high switching frequency control.

  • Support common industrial communication protocols

    Supporting Modbus TCP/RTU, CAN, Ethernet TCP/UDP, Serial and other industrial communication protocols to meet the needs of industrial-grade power hardware control.

Hardware architecture of CPU+ FPGA
High-frequency control of 50K
Support common industrial communication protocols
Technical Parameters
Model
FPGA
Dimension
  • Model
    MT 1050
  • Processor
    Dual-core ARM Cortex-A9,800MHz
  • Memory
    2GB DDR3 SDRAM
  • FPGA
    444K Logic Cells, 26.5Mb Block RAM, 2020 DSP Slices
  • Analog Output
    8 channels,16bit,1MSPS,土10V
  • Analog Input
    16 channels,16bit,1MSPS,土10V
  • Digital Input
    16 channels
  • Digital Output
    16 channels DO,0~3.3V TTL; 32 channels PWM Output,0~3.3V TTL
  • Communication Interface
    Modbus TCP/RTU, CAN, Ethernet TCP/UDP, Serial, 4 SFP+
  • Dimension
    307mm*335mm*134mm(L * W * H)
Application Scenarios
Renewable Energy Inverter Control
Renewable Energy Inverter Control

Capable of rapid verification and testing of renewable energy inverter control algorithms and systems, helping users save time and reduce costs in the process of product development and release.

Renewable Energy Inverter Control
Renewable Energy Inverter Control

Capable of rapid verification and testing of renewable energy inverter control algorithms and systems, helping users save time and reduce costs in the process of product development and release.

RCP Power Device Control
RCP Power Device Control

The distinctive Power Device Control System launched by Modelingtech combines virtual and physical elements, which enables better cultivation of students' practical and hands-on abilities.

RCP Power Device Control
RCP Power Device Control

The distinctive Power Device Control System launched by Modelingtech combines virtual and physical elements, which enables better cultivation of students' practical and hands-on abilities.

Microgrid Research
Microgrid Research

Running microgrid EMS algorithms and the underlying inverter control of photovoltaic, wind energy storage, etc., to quickly realize the verification and testing of control strategies.

Microgrid Research
Microgrid Research

Running microgrid EMS algorithms and the underlying inverter control of photovoltaic, wind energy storage, etc., to quickly realize the verification and testing of control strategies.

Innovative Teaching Experiments
Innovative Teaching Experiments

As a part of the MT simulation experiment platform, it helps students to complete experiments of basic power electronic control, grid-connected control of renewable energy inverters, motor control and so on.

Innovative Teaching Experiments
Innovative Teaching Experiments

As a part of the MT simulation experiment platform, it helps students to complete experiments of basic power electronic control, grid-connected control of renewable energy inverters, motor control and so on.

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