Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

XYCOM AOUT XVME-530 VME BUS 71530D 70530-001 BOARD

F: | Au:FAN | DA:2025-06-10 | 817 Br: | 🔊 点击朗读正文 ❚❚ | Share:

XYCOM AOUT XVME-530 VME BUS 71530D 70530-001 BOARD

Product Overview

XYCOM AOUT XVME-530 VME BUS 71530D 70530-001 BOARD is an analog output board developed by Xycom based on the VME (VersaModule Eurocard) bus standard, and is one of the XVME series products. This board is mainly used to convert digital signals into analog signals for output. In industrial automation control systems, it can accurately control various actuators such as regulating valves, frequency converters, etc. By outputting analog signals to adjust the operating parameters of equipment, precise control and regulation of industrial production processes can be achieved, ensuring stable system operation.



Brand background extension

As a senior brand in the fields of industrial automation and embedded computing, Xycom has always served the market with innovative technology and reliable products. Its products are widely used in multiple industries such as energy, manufacturing, and transportation due to their excellent performance, high reliability, and adaptability to complex industrial environments. In the research and development of products such as analog output boards, Xycom has accumulated rich experience and is committed to providing customers with high-precision, stable and reliable analog output solutions to meet the needs of signal conversion and control in different industrial scenarios.



Specification parameters

Analog output channels: Usually equipped with 8 or 16 independent analog output channels, each channel can simultaneously output different analog signals to meet the control requirements of multiple devices and parameters. For example, in large industrial production lines, it is possible to simultaneously control the opening of multiple regulating valves.

Output signal type: Supports multiple standard analog output signals, commonly including 4-20mA current output, 0-5V voltage output, 0-10V voltage output, etc. Users can flexibly choose between hardware jumpers or software configurations based on the needs of the connected devices, ensuring good compatibility with external actuators.

Output accuracy: With high output accuracy, the resolution can generally reach 12 or 16 bits. Taking 16 bit resolution as an example, fine adjustment of analog signals can be achieved, and the output accuracy can reach ± 0.01% of the full range, effectively improving the accuracy of control and meeting the requirements of high-precision industrial control scenarios.

Update rate: The update rate of analog output signals is fast, reaching thousands of times per second, which can quickly respond to changes in control system instructions, ensuring timely adjustment of output signals in dynamic industrial production processes and achieving real-time control of equipment.

VME bus interface: strictly following the VME bus standard, supporting 32-bit data transmission, with a maximum data transmission rate of up to 40MB/s, ensuring efficient and stable data exchange with other modules in the VME bus system. At the same time, it has good electrical compatibility and can work stably in complex VME bus environments.

Working power supply: DC power supply is used, with a working voltage range of+5V DC ± 5%,+12V DC ± 5%, and -12V DC ± 5% combined power supply to meet the working requirements of different circuit modules inside the board. The power input has overcurrent and overvoltage protection functions to prevent damage to the board due to abnormal power supply.

Working temperature range: It can operate stably in an ambient temperature range of -40 ℃ to+85 ℃, with a storage temperature range of -55 ℃ to+125 ℃. It is suitable for harsh industrial environments such as high temperature, low temperature, and high humidity, ensuring long-term reliable operation in various industrial sites.


Core functions

Digital to analog signal conversion: The core function is to convert the digital signals output by the control system (such as control instructions issued by PLC or computer) into analog signals. By using an internal high-precision digital to analog conversion (DAC) chip, precise conversion of digital signals to analog current or voltage signals is achieved, providing accurate control signals for external actuators.

Signal output and control: According to the instructions of the control system, stable analog signals are output to the connected execution devices for precise control of the equipment. For example, in chemical production, according to the set values of parameters such as temperature and pressure, corresponding analog signals are output to adjust the valve opening, control the material flow rate, and maintain the stability of the production process; In the motor speed control system, the output analog signal adjusts the output frequency of the frequency converter to achieve control of the motor speed.

Fault diagnosis and protection: Built in fault diagnosis circuit can monitor the working status of analog output channels in real time. When there is an abnormal output signal (such as signal out of range, channel short circuit or open circuit), it can detect and trigger an alarm in a timely manner. At the same time, according to the preset protection strategy, the output of the abnormal channel can be automatically switched to a safe state (such as outputting a fixed value or disconnecting the output) to prevent equipment damage or production accidents caused by signal failure.

Software configuration and communication: Supports parameter configuration and function settings through supporting driver software, allowing users to easily set parameters such as output signal type, range, update rate, etc. Communicate with the control system through the VME bus, receive control instructions, and upload the working status information of the board, facilitating system integration and remote monitoring.


Working principle

This board card is connected to the main controller (such as CPU module) in the VME bus system through the VME bus interface, and receives digital control signals sent by the main controller. After the main controller issues an instruction, the communication interface module inside the board receives data from the VME bus and transmits it to the data processing unit. The data processing unit analyzes and processes digital signals, and distributes them to corresponding analog output channels based on set parameters and control logic. Each output channel is equipped with an independent digital to analog conversion (DAC) circuit, which converts digital signals into analog current or voltage signals. The converted analog signal is amplified, filtered, and processed by a signal conditioning circuit to meet the accuracy and driving capability requirements of the output signal. Finally, it is output to the external execution device through the output terminal to achieve control of the device. At the same time, the fault diagnosis circuit inside the board continuously monitors the output signal and the internal circuit status of the board. Once an abnormality is detected, the fault information is immediately fed back to the main controller and corresponding protective measures are taken.


Key advantages

High precision and stability: High quality analog-to-digital conversion chips and precise signal conditioning circuits are used to ensure high precision and stability of analog output. Even in complex industrial electromagnetic interference environments, it can maintain the accuracy of output signals, effectively reduce control deviations caused by signal fluctuations, and improve the quality and efficiency of industrial production.

Flexible configuration and scalability: Supports multiple types of analog output signals and flexible parameter configurations, and can be customized according to different application scenarios and device requirements. Based on the modular design of VME bus, it is convenient to combine and expand with other VME series boards, making it easy to build large-scale and complex industrial automation control systems to meet the constantly developing production needs of enterprises.

High reliability and anti-interference ability: Following strict industrial design standards, high reliability electronic components are selected and rigorously tested and verified. Having good electromagnetic compatibility (EMC), it can resist the impact of harsh environmental factors such as strong electromagnetic interference and power surges, ensuring stability and reliability during long-term continuous operation, reducing equipment failure rates and maintenance costs.

Easy to integrate and use: Provides comprehensive driver programs and development toolkits for easy integration with mainstream industrial control systems such as PLCs, industrial computers, etc. Users do not need complex programming and debugging work, and can quickly implement the functions of the board through simple configuration. At the same time, detailed user manuals and technical support documents provide users with comprehensive technical guidance, reducing the threshold and technical difficulty of use.


Precautions

Installation and wiring: When installing the board, be sure to ensure that the VME bus chassis is powered off to avoid short circuits or damage to the board caused by live operation. Strictly insert the card according to the number and direction of the VME bus slot, ensuring good contact. When wiring analog output signals, use shielded cables to reduce electromagnetic interference, and pay attention to distinguishing the wiring methods of current output and voltage output to avoid signal abnormalities or equipment damage caused by misconnection. At the same time, ensure that the power wiring is correct, verify that the voltage level is consistent with the requirements of the board, and prevent the board from being burned due to power supply errors.

Parameter configuration: Before use, configure the analog output signal type, range, update rate, and other parameters correctly through the supporting software according to the actual application requirements. During the configuration process, carefully check the parameter settings to avoid output signals that do not meet requirements due to parameter errors. After modifying the parameters, save the configuration in a timely manner and conduct testing to ensure that the board works properly.

System compatibility: When integrating into the VME bus system, confirm the compatibility of the board with other VME modules (such as CPU modules, communication modules, etc.). Check whether the clock frequency, data transmission protocol, and other parameters of the VME bus system match the board to avoid communication failures or board malfunction caused by system incompatibility.

Maintenance and upkeep: Regularly inspect the board, clean the dust on the surface of the board, and prevent the accumulation of dust from affecting heat dissipation and electrical performance. Check if the wiring of the board is loose or aged, and replace it promptly if there are any problems. When not in use for a long time, store the board in an anti-static packaging bag and place it in a dry and ventilated environment to avoid moisture and static damage. If the board malfunctions, do not disassemble and repair it yourself. Instead, contact Xycom's official technical support personnel or professional repair institutions for assistance.

XYCOM AO XVME-530 8-Channel Isolated Analog Output Module - Sichuan ...

  • SIGMATEK PC321K Industrial Computer
  • SIGMATEK MDP 102-1 SLIDES Power Module
  • SIGMATEK TAE-151 12-200-151 Light Terminal
  • SIGMATEK CP102 20-004-102P6995B HMI Panel
  • SIGMATEK CAM-123 12-017-123-C Analog Mixing Module
  • SIGMATEK DCC041 DIAS Compact Controller
  • SIGMATEK DVI021 and DKL015 DIAS Power Module
  • SIGMATEK SDD340-46 SDD Series Servo Drive
  • SIGMATEK Robotdrive L6 02220-7997 Engel Drive
  • SIGMATEK AKM63M-ANCNGBB0 4.38kW PM Servomotor
  • Sigmatek SDD 310 SLIDES-Drive SDD310-4O
  • Sigmatek SDD335-23K Drive VARAN Interface 14kVA
  • Sigmatek TAE1922-K Touch Display Unit
  • Sigmatek DIAS DCP 643 CPU Module DKL003
  • Sumitomo CNH-4105Y-43 NSNP Gear Reducer
  • Sumitomo CHHP-4160Y-35-213T Inline Gear Reducer
  • Sumitomo CNHM02-6090YA-87 NSNP Gear Motor
  • Sumitomo CNVXS-6100Y-43 NSNP Gear Reducer
  • Sumitomo CNHM2609511 Gear Motor
  • Sumitomo CHVM3-6130-B-35 Gear Motor
  • Sumitomo HW0389042-A Industrial Component
  • Sumitomo F2CF-W55-ZG05-64 Gear Reducer
  • Sumitomo CHH-6165Y-13 Inline Gear Reducer
  • Sumitomo CNVM3-6125C-EP-6 Cyclo Gear Motor
  • Sumitomo RNYX-1320Y-20 Gear Reducer
  • Sumitomo XFCG111-43/24/165 Control Component
  • Sumitomo LHYJ-3A105K-Y3-102 Gear Reducer
  • Sumitomo CNFM02-6095DA-B-121 TC-FX/FB-02A Motor
  • Sumitomo CNHJ-4105DAY-289 NSNP Gear Reducer
  • Sumitomo LHYJS-4C145Y-Y1-112 NSNB Gear Reducer
  • Radiator 2060351111 Komatsu Sumitomo Linkbelt
  • Sumitomo BL3-09B-35MEHDK6 Gearbox ANFJ-L30
  • Sumitomo Truninger 8H1-150 Internal Gear Pump
  • Sumitomo RNFMS01-25R-B-150 200V NSNP Gearmotor
  • Sumitomo CHHBJN1HA-6135Y-29 Inline Reducer
  • Sumitomo EHYMS5-B6125YA-Y3-74 NSNB Reducer
  • Sumitomo Eaton H-050AA2F-J Orbit Motor
  • Sumitomo TC-FXVP Motor 0.75kW 4P 400V N-80M
  • Sumitomo XFCG111-87/24130 Industrial Control Component
  • Sumitomo AF3122-030 Inverter 30kW 3Ph 200V
  • Sumitomo QT42-25FS-B Internal Gear Pump
  • Sumitomo F2CS-A35-ZG09-59 Speed Reducer
  • Sumitomo CNHM05-6090-B-29 Gear Motor
  • Sumitomo CHHJ-6145Y-29-210T Gear Reducer
  • Sumitomo E3P-20-2.2-S1450-E Hydraulic Pump
  • Sumitomo RNYMS1-1420C-AV-20 Right Angle Gear Motor
  • Sumitomo SR101 SRKG101-76-40-060 Reamer Head
  • Sumitomo RNYM05-1220-25/UBAABB Gear Motor
  • Optidrive E3 Sumitomo GHB-36 Vector Inverter Motor
  • Sumitomo CNH-614HY-35 UNMP Gear Reducer
  • Sumitomo CNH-612HY-6 SM-Cyclo Gearmotor
  • Sumitomo HF3214-A75 Electric Motor
  • Sumitomo CNVM02-6100-B-59 NSMP Gear Reducer
  • Sumitomo CNHJ4105Y35 NSNP Gear Reducer
  • Sumitomo CHH6165Y-29 NSNB Gear Reducer
  • Sumitomo RNYM1-1420-25 Hyponic Gear Motor
  • Sumitomo T600C Industrial Control Unit
  • Sumitomo LHH-4A115-K2-28 NSNB Gear Reducer
  • Sumitomo RNYM02-1220-AV-20 Speed Reducer
  • Sumitomo CHHS-6140Y-SB-17 Gear Motor
  • Sumitomo Heavy Industries SSE-100A-RM Drive Unit
  • Sumitomo PA228771 CNHM2-6100YB-EP-8 Gear Motor
  • Sumitomo RNYM02-1231-B-50 Speed Reducer
  • Sumitomo CNFM1H-6090-6 Induction Motor
  • Sumitomo CHH-614HY-11 Gear Reducer
  • Sumitomo F4C-D25-ZG01-41 Speed Reducer
  • Sumitomo PA224280 CNHM1-6095YC-EP-21 Gear Motor
  • Sumitomo KHYJB4115K185145TC Gear Motor
  • Sumitomo LHYJS-3A105Y-Y1-179 NSNB Gearmotor
  • Sumitomo AF3102-022 BN AC Driver
  • Sumitomo SG75M-H Operator Panel
  • Sumitomo NT2014-2A2 NSNP Control Unit
  • Sumitomo RNYMS03-1320-B-60 Gear with Motor
  • Sumitomo F90L/4 F90L4 Drive Motor
  • Sumitomo TC-FX NSMP Motor Unit
  • Sumitomo RNYM05-1210-7 NSMP Gearmotor
  • Sumitomo Fine Cyclo F2CFS-C45-59 Gearbox
  • Sumitomo Heavy Industries SSE-50A Industrial Unit
  • Sumitomo CHH-6130Y-17 NSNB Gear Reducer
  • Sumitomo UMC556000-02 Control Unit
  • Sumitomo CHHJ-4155Y-87 Inline Gear Box
  • Sumitomo ANFXS-P120F-M30GLD-5 NSNP Reducer
  • Sumitomo CNHJ-6095Y-17 NSNP Gear Reducer
  • Sumitomo H-3115 17:1 USNT Gear Reducer
  • Sumitomo CHH 6135Y USNTC02 Gear Reducer
  • Sumitomo JA450918A2 45JA918A Cylinder Head
  • Sumitomo SD4SGS-ACB-02C-110-54 Solenoid Valve
  • Sumitomo CNVMS02-6100DAYA-231 NSMD Gear Reducer
  • Sumitomo CHH4135Y8 NSMD Inline Gear Reducer
  • Sumitomo PA020201 CNH-6125Y-87 Worm Gear Reducer
  • Sumitomo Connectivity 8100-2730 Connector
  • Sumitomo CNHJ-6120Y-87 PA021857 NSNB Gear Reducer
  • Sumitomo RNYM02-1330-B-100 Induction Gear Motor
  • Sumitomo JA762913AC Operator Interface Keypad
  • Sumitomo CQT51-100FV-S1262J-A Coolant Pump
  • Sumitomo PA225389 CNHM1-6095YC-EP-6 Gear Motor
  • Sumitomo CHHJ-4130Y-43 NSNB Gear Reducer
  • Sumitomo RNYJ-1520Y-12 NSNB Gear Reducer
  • Sumitomo HC1480-29.00 NSMD Inline Gear Reducer
  • Sumitomo MC-550 MCU UMC550000AEG01
  • Sumitomo CNVM1H-6125YA-B-87 Gear Reducer
  • Sumitomo SD4GS-ACB-02B-110-54 Solenoid Valve
  • Sumitomo HCS79310 Main Motor Assembly
  • Sumitomo JA762913AC Operator Interface Keypad
  • Sumitomo CNHJ-6125Y-8 In Line Reducer
  • Sumitomo X120D30303T-01 Driver
  • Sumitomo H1Y203-25-F7000 Shaft Mount Reducer
  • Sumitomo Type-35SE Fiber Fusion Splicer Kit
  • Sumitomo F2CS-T655-171 Cyclo Drive Gearbox
  • Sumitomo F80 Adsorber RX19ZT6124
  • Sumitomo MC-550 MCU UMC550000AKG01
  • Sumitomo Drive FCS-A65G-59 Speed Reducer
  • Sumitomo SRA81-56-BM50-140 Modular Reamer Holder
  • Sumitomo CNHM05-6100YA-59 Gear Motor
  • DEMAG Sumitomo Ergocontrol NC4 100 V7 Control Unit
  • Sumitomo HMV02-207 Cyclo Drive Induction Motor
  • SUN-EH Sumitomo Z4-22172-12 Ozone Power Unit
  • Sumitomo AF-500 AF502-2A2 Transistor Inverter
  • Sumitomo T-82C+ Core Alignment Fusion Splicer
  • Sumitomo P741F6002B Circuit Board
  • Sumitomo AS-3211 Injection Molding Motherboard
  • Yaskawa SGMGH-13Q5A-OM11 Servo Motor with Sumitomo F3CS-A25G-59 Gear
  • Sumitomo SH120-5 Final Drive Track Travel Motor
  • Sumitomo AS-3345 Circuit Board
  • Sumitomo AF300S-1A5-E Transistor Inverter 1.5kW
  • Sumitomo Type-Q101-CA SM MM Fiber Fusion Splicer
  • Sumitomo SH50 NIV Operator Panel
  • Sumitomo RNFM-009-17L-B-120-N4FCZ843 AC Gear Motor