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VT-HNC100-1-22a/W-08-P-0  Digital axis control HNC100

The digital axis control HNC100 is a programmable NC control for a closed-loop controlled axis. It meets the specific requirements for controlling hydraulic drives and, in addition, offers the possibility of controlling electric drives.
With regard to immunity to interference, mechanical resistance to vibration and shock and climate-proofness, the HNC100 is designed for use in harsh industrial environments.
It conforms with EC Directives (CE mark). Fields of application:
– Machine tools, plastic processing machines, special machines
– Presses
– Transfer lines
– Rail-bound vehicles
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Description

Overview


Essential details:VT-HNC100-1-22a/W-08-P-0  Digital axis control HNC100

The digital axis control HNC100 is a programmable NC control for a closed-loop controlled axis. It meets the specific requirements for controlling hydraulic drives and, in addition, offers the possibility of controlling electric drives.
With regard to immunity to interference, mechanical resistance to vibration and shock and climate-proofness, the HNC100 is designed for use in harsh industrial environments.
It conforms with EC Directives (CE mark). Fields of application:
– Machine tools, plastic processing machines, special machines
– Presses
– Transfer lines
– Rail-bound vehicles
Programming:
– User programming with PC
– NC language with subroutine technique and conditional
jumps
– Separate NC program for function sequences
– Local CAN bus for parameterizing several HNC100
Operation:
– Comfortable administration of data on PC
Process interfacing:
– 8, 16 or 24 digital inputs and outputs each
– Comfortable configuration of field bus interfacing with the help of the WIN-PED 5 Bus Manager Hydraulic axes:
– Measuring system:
• Incremental or absolute (SSI)
• Analog 0 to ±10 V and 4 to 20 mA
• Reference voltage ±10 V
– Voltage or current control variable output
– Freely configurable controller variants
• Position controller, pressure/force controller
• Position-dependent braking
• Alternating control (position/pressure)
• Synchronization control for 2 axes

VT-HNC100-1-23/W-08-0-0 R900955334

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VT-HNC100-1-22a/W-08-P-0  Digital axis control HNC100

The operation of the HNC100 is based on the creation of application-specific data sets. These data sets are generated on a PC and sent via the serial interface to the HNC100. The combination of the user program and data sets is called “project”. The software configuration follows determined steps:
1. The tasks to be performed by the HNC100 are to be defined and in flowchart. The definition also refers to the meaning of inputs and outputs and the parameters used.
2. The functions of the sequence charts have to be implemented in the form of a sequence of NC commands.
3. The machine data (selection of transducers and controllers) and the parameters of the NC program have to be defined.
4. The data are sent to the HNC100.
5. Settings and program sequences are optimized on the machine.
PC program “WIN-PED 5“
The PC program “WIN-PED 5” helps the user perform configuration tasks. It is used for programming, setting and diagnostics of the HNC100. Scope of functions:
– Convenient dialog functions for online or offline setting of machine data
– NC Editor with integrated syntax check and program compiler
– Support for the definition of parameters used in the NC program
– Dialog window for online setting of parameter values
– Comprehensive options for displaying process data, digital inputs, outputs and flags
– Recording and graphical representation of up to four process variables via a selection of trigger options
– Dialog for the graphical definition of special functions (determination of function via polygon)
System requirements:
– IBM PC or compatible system
– Windows 2000 or Windows XP
– RAM (recommended: 256 MB)
– 60 MB free hard disk space
Note for storing R parameters in the HNC100: Damage to the internal memory (EEPROM) due to too high a number of write access!
When ticking the „Save in EEPROM“ checkbox (WIN-PED menu: R parameter), you write to the internal memory (EEPROM). As every EEPROM allows only for a limited number of write access before its cells are destroyed, you should make sure that the number of such write access is limited.