ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.
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  • ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

ADT-8909系列_运动控制卡使用手册_中文版.pdf

文件大小 : 3.3MB

ADT-8909系列_运动控制卡编程手册_中文版.pdf

文件大小 : 10.4MB

ADT8909控制卡全系统驱动程序V1.1.6.rar

文件大小 : 59.9MB

ADT-89C9外形尺寸图(2D_3D).zip

文件大小 : 888.3KB

  • Product Description
  • Specification Parameters
  • Download Materials
    • Commodity name: ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

    The ADT-89C9 C1/H1 is a high-performance pulse‑based motion control card that supports up to 12 axes (8 servo channels and 4 stepper channels), with 54 input channels, 26 output channels, and one RS‑485 interface, as well as position‑control and trajectory‑control capabilities.

    Product Introduction

    • The ADT-8909 series motion control card is a high-performance, multi-axis (4/6/8/12 axes) motion controller launched by Zhongweixing, based on the PCI bus and a dual-core platform.

    • The ADT-8909 series motion control card continues to embody a design philosophy dedicated to high precision. Compared with other similar products, it boasts exceptionally robust hardware performance metrics: a reception rate of up to 8 Mpps, a high-speed PCI bus operating at 33.3 MHz, a greater number of configurable and interrupt‑driven I/O channels, support for hardware‑based serial numbers, the capability to implement third‑party encryption, and a high‑speed pulse output frequency of up to 5 Mbps.

    • The ADT-8909 series high-performance motion control card features short line segments and a large buffer, making it ideal for engraving and cutting applications. It ensures that CAM‑generated discrete data can be accurately reconstructed into the machining model, while its three‑dimensional circular interpolation (spherical interpolation) enables the generation of circular arcs in any spatial plane as well as spherical arcs, facilitating simplified teach‑in operations for complex geometries.

    • Thanks to the use of 33.3 MHz PCI communication, a single PC can support up to 10 control cards; moreover, leveraging the PC platform enables distributed motion control and other complex applications.

    • The ADT-8909 series PCI‑based pulse motion control card is suitable for a wide range of applications, including engraving, cutting, turning, milling, punching, and drilling. Its 5 Mpps pulse‑control mode and A/B quadrature decoding enable open‑loop stepper control, while also supporting closed‑loop servo control. A speed‑adaptive algorithm is employed in high‑precision applications such as milling and tool‑grinding, ensuring that the motor operates within an optimal error margin through advanced velocity planning.

     

    Features and Advantages

    • Asymmetric acceleration and deceleration ensure smooth operation, and the motor runs very quietly. Asymmetric acceleration and deceleration profiles can be employed to ensure exceptionally smooth motor operation, thereby reducing noise and making it well-suited for industrial environments with stringent noise‑control requirements.

    • Hardware-level interpolation technology supports spatial curve interpolation. Hardware interpolation technology is integrated into spatial curve interpolation, enabling rapid computation of T/S/E/COS‑type acceleration and deceleration profiles based on the configured acceleration/deceleration mode.

    • High-precision adaptive speed model ensures high-speed performance. The adaptive velocity model ensures both high speed and high precision, meeting the industrial demand for both accuracy and efficiency.

    • Hardware can be upgraded—not just today, but also for the future. The multi‑embedded system featuring an FPGA and dual DSPs ensures critical performance through hardware‑level real‑time processing. Moreover, hardware upgrades enable backward compatibility, allowing new products to be fully compatible with older versions and delivering maximum value to customers.

     

  • File size: 3.3MB

  • File size: 10.4MB

  • File size: 59.9MB

  • File size: 888.3KB

ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.
+
  • ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.


The ADT-89C9 C1/H1 is a high-performance pulse‑based motion control card that supports up to 12 axes (8 servo channels and 4 stepper channels), with 54 input channels, 26 output channels, and one RS‑485 interface, as well as position‑control and trajectory‑control capabilities.


ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.
+
  • ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.


The ADT-89C9 C1/H1 is a high-performance pulse‑based motion control card that supports up to 12 axes (8 servo channels and 4 stepper channels), with 54 input channels, 26 output channels, and one RS‑485 interface, as well as position‑control and trajectory‑control capabilities.



  • Product Description
  • Specification Parameters
  • Download Materials
    • Commodity name: ADT-89C9 C1/H1: A high-performance, twelve-axis pulse‑train motion control card based on the PCI bus.

    The ADT-89C9 C1/H1 is a high-performance pulse‑based motion control card that supports up to 12 axes (8 servo channels and 4 stepper channels), with 54 input channels, 26 output channels, and one RS‑485 interface, as well as position‑control and trajectory‑control capabilities.

    Product Introduction

    • The ADT-8909 series motion control card is a high-performance, multi-axis (4/6/8/12 axes) motion controller launched by Zhongweixing, based on the PCI bus and a dual-core platform.

    • The ADT-8909 series motion control card continues to embody a design philosophy dedicated to high precision. Compared with other similar products, it boasts exceptionally robust hardware performance metrics: a reception rate of up to 8 Mpps, a high-speed PCI bus operating at 33.3 MHz, a greater number of configurable and interrupt‑driven I/O channels, support for hardware‑based serial numbers, the capability to implement third‑party encryption, and a high‑speed pulse output frequency of up to 5 Mbps.

    • The ADT-8909 series high-performance motion control card features short line segments and a large buffer, making it ideal for engraving and cutting applications. It ensures that CAM‑generated discrete data can be accurately reconstructed into the machining model, while its three‑dimensional circular interpolation (spherical interpolation) enables the generation of circular arcs in any spatial plane as well as spherical arcs, facilitating simplified teach‑in operations for complex geometries.

    • Thanks to the use of 33.3 MHz PCI communication, a single PC can support up to 10 control cards; moreover, leveraging the PC platform enables distributed motion control and other complex applications.

    • The ADT-8909 series PCI‑based pulse motion control card is suitable for a wide range of applications, including engraving, cutting, turning, milling, punching, and drilling. Its 5 Mpps pulse‑control mode and A/B quadrature decoding enable open‑loop stepper control, while also supporting closed‑loop servo control. A speed‑adaptive algorithm is employed in high‑precision applications such as milling and tool‑grinding, ensuring that the motor operates within an optimal error margin through advanced velocity planning.

     

    Features and Advantages

    • Asymmetric acceleration and deceleration ensure smooth operation, and the motor runs very quietly. Asymmetric acceleration and deceleration profiles can be employed to ensure exceptionally smooth motor operation, thereby reducing noise and making it well-suited for industrial environments with stringent noise‑control requirements.

    • Hardware-level interpolation technology supports spatial curve interpolation. Hardware interpolation technology is integrated into spatial curve interpolation, enabling rapid computation of T/S/E/COS‑type acceleration and deceleration profiles based on the configured acceleration/deceleration mode.

    • High-precision adaptive speed model ensures high-speed performance. The adaptive velocity model ensures both high speed and high precision, meeting the industrial demand for both accuracy and efficiency.

    • Hardware can be upgraded—not just today, but also for the future. The multi‑embedded system featuring an FPGA and dual DSPs ensures critical performance through hardware‑level real‑time processing. Moreover, hardware upgrades enable backward compatibility, allowing new products to be fully compatible with older versions and delivering maximum value to customers.

     

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