Teleservice

Teleservice

Overview

As demonstrated by numerous studies, up to 70% of the maintenance costs can be saved by preventive maintenance. A useful tool for this is the teleservice that enables a continuous monitoring and maintenance of the systems. For this reason with the VIPA teleservice modules we offer a modern and intelligent kind of teleservice for the different types of transmission. Whether on the conventional way via analog or ISDN line or via broadband connections as ADSL and HSUPA (mobile communications) VIPA offers here the complete product range on teleservice modules too. The communication to your automatization modules is established by MPI or PROFIBUS or via the Ethernet interface, which belongs to each of our devices as standard. The configuration of the VIPA teleservice modules is performed via a web browser. Additional software or the like is not required.

 

Beside the robust hardware, which shines with the usual VIPA interface variety, VIPA offers also a free service called Talk2M. Via this service you are able to establish a save connection to your construction within seconds, regardless of whether they are communicating via mobile phone or a line.

Teleservice of controllers, HMIs, frequency converters, roboters, IPCs etc. are not an impossible challenge for us. With the VIPA Teleservice modules, you have a perfectly balanced combination of hardware and software.

To ensure that your system is always optimally protected, you can find the latest security information on these products at the following link: HMS Network Cyber Security

If a firmware update is necessary, the corresponding instructions are available here.

If you have any technical queries, please do not hesitate to get in touch with our support on the phone number: +49 911 47771 100 or by email: support@yaskawa.eu.com

  • Input power supply
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  • Input Voltage
  • x No
  • Current Consumption
  • x No
  • Max. current drain at backplane bus
  • x No
  • Max. current drain load supply
  • x No
  • Current consumption from backplane bus
  • x No
  • Current consumption from load voltage L+ (without load)
  • x No
  • Power Loss
  • x No
  • Number of inputs (digital)
  • x No
  • Rated load voltage (digital)
  • x No
  • Current consumption from load voltage L+ (without load)
  • x No
  • Signal logic input (digital)
  • x No
  • Input characteristic curve (digital)
  • x No
  • Initial data size (digital)
  • x No
  • Number of outputs (digital)
  • x No
  • Rated load voltage (digital output)
  • x No
  • Current consumption from load voltage L+ (without load)
  • x No
  • Signal logic output (digital)
  • x No
  • Output data size (digital)
  • x No
  • Number of inputs (analog)
  • x No
  • Rated load voltage (analog)
  • x No
  • Current consumption from load voltage L+ (without load)
  • x No
  • Voltage inputs (analog)
  • x No
  • Current inputs (analog)
  • x No
  • Resolution
  • x No
  • Measurement principle
  • x No
  • Basic conversion time
  • x No
  • Initial data size
  • x No
  • Number of outputs (analog)
  • x No
  • Output voltage ranges
  • x No
  • Output current ranges
  • x No
  • Resolution (analog)
  • x No
  • Conversion time (analog)
  • x No
  • Output data size (analog)
  • x No
  • Number of counters
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  • Counter width
  • x No
  • Maximum input frequency
  • x No
  • Maximum count frequency
  • x No
  • Maximum count frequency
  • x No
  • Maximum count frequency
  • x No
  • Maximum count frequency
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  • Number of channels
  • x No
  • Input voltage (rated value)
  • x No
  • Power stage
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  • PWM frequency
  • x No
  • Type of encoder
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  • Encoder frequency
  • x No
  • Encoder resolution (internal)
  • x No
  • Control type
  • x No
  • Terminal voltage max.
  • x No
  • Terminal current max.
  • x No
  • Total current per module, max.
  • x No
  • Number of clamps
  • x No
  • Binding of potential
  • x No
  • Point-to-point protocol
  • x No
  • Encoder Supply: Number of outputs (L+n)
  • x No
  • Rated output current
  • x No
  • Port mode
  • x No
  • Load memory, integrated
  • x No
  • Work memory, integrated
  • x No
  • Work memory, maximal
  • x No
  • Memory card slot
  • x No
  • Racks, max.
  • x No
  • Modules per rack, max.
  • x No
  • Fieldbus
  • x No
  • Connector
  • x No
  • Topology
  • x No
  • Transmission speed, max.
  • x No
  • Address range inputs, max.
  • x No
  • Address range outputs, max.
  • x No
  • Material
  • x No
  • Mounting
  • x No
  • Width
  • x No
  • Height
  • x No
  • Depth
  • x No
  • Net weight
  • x No
  • Gross weight
  • x No
  • Certifications
  • x No
  • Safety protocol
  • x No
  • Safety requirements
  • x No
  • Circuit monitoring
  • x No
  • Min. operating temperature
  • x No
  • Max. operating temperature
  • x No
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