Welcome to the Industrial Automation website!

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

HIMatrix Safety-Related Controller F35 01 Manual

F: | Au:佚名 | DA:2023-11-16 | 1000 Br: | 🔊 点击朗读正文 ❚❚ | Share:

Reaction in the Event of a Fault:

If the device detects a faulty signal on a digital output, the affected module output is set to the safe (de-energized) state using the safety switches.If a device fault occurs, all digital outputs are switched off.In both cases, the devices activates the FAULT LED.The error code allows the user to configure additional fault reactions in the user program.

1. Safety-Related Counters

The controller is equipped with 2 independent counters with inputs that can be configured for 5 V or 24 V level.The required voltage level is determined with the Counter[0x].5/24V Mode system parameter.Input A is the counter input, B is the count direction input and input Z (zero track) is used to reset.Alternatively, all inputs are 3-bit Gray code inputs (in decoder operation)

The following modes of operation can be implemented:

{1} Counter function 1 (depending on the count direction input signal)

{2} Counter function 2 (irrespective of the count direction input signal)

{3} Decoder operation with attached absolute rotary transducer

Refer to Chapter 3.4.3 for more details on how to configure the counters.The safety-related counter has a 24-bit resolution, the maximum counter reading is 224 – 1(= 16 777 215).

2. Reaction in the Event of a Fault

If the device detects a fault in the counter section, a status bit is set for evaluation in the user program.The device activates the FAULT LED.In addition to the status bit, the user program must also consider the corresponding error code.The error code allows the user to configure additional fault reactions in the user program.The resolution of the voltage and the current values depends on the parameter set in the properties of the controller.In SILworX, the FS 1000 / FS 2000 system parameter can be selected in the Module tab(Module of the digital and analog inputs MI 24/8). Depending on the selection, different resolutions result in the user program for the AI[xx].Value system parameter, see Chapter 4.3.4.1.To monitor the AI[xx].Value parameter, evaluate the corresponding AI[xx].Error Code parameter in the user program.In ELOP II Factory, set the 1000 resolution (MI 24/8 FS 1000) or 2000 resolution (MI 24/8 FS2000) in the Type field (menu: Properties, module: Analog Inputs). Depending on the selection, different resolutions result in the user program for the AI[xx].Value system parameter,see Chapter 4.4.4.To monitor the AI[xx].Value parameter, evaluate the corresponding AI[xx].Error Code parameter in the user program.The input signals are evaluated in accordance with the de-energized to trip principle.Only shielded cables with a length of a maximum of 300 m must be connected to the analog inputs. Each analog input must be connected to a twisted pair of wires. The shielding must be connected to the controller and the sensor housing and earthed on one end to the controller side to form a Faraday cage.Unused analog inputs must be short-circuited.If an open-circuit occurs during voltage measurement (the line is not monitored), any input signals are processed on the high-resistance inputs. The value resulting from this fluctuating

input voltage is not reliable. Therefore with voltage inputs, the channels must be terminated by a 10 k resistor. The internal resistance of the source must be taken into account.For a current measurement with the shunt connected in parallel, the 10 k resistor is not required.The analog inputs have a common ground L-.The analog inputs are designed to retain the metrological accuracy for 10 years. A proof testmust be performed every 10 years


System LEDs

System LEDs with CPU OS V8 and Higher

While the system is being booted, all LEDs are lit simultaneously

Connections for Fieldbus Communication

The three 9-pole D-sub connectors are located on the front plate of the housing.The fieldbus interfaces FB1 and FB2 can be equipped with fieldbus submodules. The fieldbus

submodules are optional and must be mounted by the manufacturer. The available fieldbus submodules are described in the SILworX communication manual (HI 801 101 E).

The fieldbus interfaces are not operational without fieldbus submodule.Factory-made, the fieldbus interface FB3 is equipped with RS485 for Modbus (master or slave)

or ComUserTask.

Mounting the F35 in Zone 2(EC Directive 94/9/EC, ATEX)The controller is suitable for mounting in zone 2. Refer to the corresponding declaration of conformity available on the HIMA website.When mounting the device, observe the special conditions specified in the following section.

Specific Conditions X

1. Mount the HIMatrix F35 controller in an enclosure that meets the EN 60079-15 requirements and achieves a type of protection of at least IP54, in accordance with EN 60529. Provide the enclosure with the following label:Work is only permitted in the de-energized state

Exception:

If a potentially explosive atmosphere has been precluded, work can also performed when the controller is under voltage.

2. The enclosure in use must be able to safely dissipate the generated heat. Depending on the output load and supply voltage, the HIMatrix F35 has a power dissipation ranging between 15 W and 29 W.

  • GE IS2I5WEMAHIA+IS210BPPBHZCAA Mark VIe Safety Controller & I/O Module Set
  • GE IS2I5AEPAHICH+IS210BPPBHZCAA Mark VIe Analog I/O Control Module Set
  • GE IS2I5WECAH1B+IS2108PPBHZCAA Mark VIe Controller Redundant I/O Set
  • VMIC HSDA 332-000111 Scanning Analog-to-Digital Converter Module
  • GE VMIC VMIVME1150B VME Module
  • FANUC VMIVME3128 VME Digital I/O Board
  • GE Fanuc VMIVME-7697-350 VMEbus Single Board Computer
  • GE Fanuc VMIVME-4150 PLC Board
  • FANUC VMIVME-1160A VMEbus Module
  • GE Fanuc VMIVME-4116 VMEbus CPU Processor Controller
  • FANUC VMIVME-9300 VMEbus Module
  • VMIVME-7589A Pentium VMEbus CPU Board
  • GE Fanuc VMIPCI-7767-13100 PCI Board
  • GE Fanuc VMIVME-4140 VMEbus Module
  • IS415UCVGH1A VME Controller Card
  • VMIC VMIVME-1150 VME Circuit Board
  • VMIC VMIVME7589 Processor Board
  • FANUC VMIVME-2200 VME Circuit Board
  • IS215UCVEH2A VME Controller Card
  • VMIC VMIVME-7589A-446 VMEbus CPU SBC
  • VMIC VMIVME-7658-330 VME Single Board Computer
  • VMIC SEMIVISION OPAL VMEbus CPU Module with VMIVME-7588
  • GE Fanuc VMIVME-4140 VME Module
  • Abaco VMIVME 2532A 32-Bit High-Voltage Digital I/O Board – VMEbus
  • VMIC VMIVME 100-Pin VME Bus I/O Cables
  • VMIC ASSY 11994R13 VMEbus Module
  • GE Fanuc VMIVME 1182 VMEbus Input Board – 332-011182-030A
  • VMIC VMIVME-7589 VMEbus Module with VMIVME-7434
  • VMIC VMIVME-7588-787 Single Board Computer – 332-250236
  • VMIC 7487A VMEbus CPU Board – 332-107487-033 H
  • FANUC VMIVME-3125 VMEbus Analog Input Board
  • VMIC VMIVME 6015 VMEbus Board – 332-006015-000
  • VMIC ASSY 11993R2 VMEbus Module
  • Cisco 2851 Router with VMIC2-1MFT-T1/E1 Module
  • Applied Materials VMIC 7505 800MHz CPCI SBC
  • VMIVME-2534-046D 32-Bit High-Voltage Digital I/O Board
  • VMIC 5530M Optical Extender PCB Board
  • GE VMIC XVB602 Control Module
  • VMIVME-6005-020 Octal ARINC-429 Controller
  • VMIC VMI PCI 3322 Board
  • FANUC VMIVME-7487 VME Processor Board
  • VMIC 332-800576-000A VMIACC 0576 Module
  • VMIC VMIVME-7805-231000 VME Board
  • ABACO VMIC VMICBL-000-F3-102 Reflective Memory Cable
  • VMIC 332-000131-B VMIVME PCB Card
  • VMIC 320-250236 with VMIVME-7588 Processor Board
  • VMIC ASSY 12149 Module
  • FANUC VMIC VMIVME5010 I/O PCB Board
  • VMIC VMIVME-7698-345 VME Single Board Computer
  • IS215UCVEH2A VME Controller Card
  • VMIC VMIVME-7658-330 VME Single Board Computer
  • VMIC VMIPCI-5790-000 Dual-Channel Ultra160 SCSI Adapter
  • VMIC VMICPCI-7756-460 Single Board Computer
  • VMIVME-4920 Dual Channel Digital Converter Board – VMEbus
  • GE Fanuc VMIVME-4140 VMEbus Module
  • VMIC VMIPMC-7440 PMC Sound Card
  • VMIC PCI 4320 VMEbus Board-333-854320-000
  • VMIC VMIVME 5530S VMEbus Interface Module
  • FANUC 332-999995-000 VMEbus PCB Assembly
  • FANUC VMIVME-4116-030 VMEbus Module
  • VMIC VMIVME-7658-330 VMEbus Single Board Computer
  • VMIC VME-2532A VMIVME2532A-413 Digital I/O Board
  • VMIC VMIVME-7696-650 VMEbus Processor Board
  • VMIC VMIVME-7487A Mainframe Board
  • GE Fanuc VMIVME-2120-175 Digital Output Board
  • Abaco VMIVME-4125A-000 System Test Calibration Board
  • VMIC VMICPCI-5579 Reflective Memory PCI Board
  • FANUC A860-2000-X003 Encoder Interface Module
  • FANUC 332-999992-000 VME Module
  • VMIC VMIVME-7698 VME Module
  • FANUC A860-2000-X003 Encoder Interface Module
  • VMIC 333-657755-000 B LSC-3 4201 Board
  • VMIVME-9304 CPU Board with NEC FGA-002A Interface Chip
  • VMIC VMIVME-7805 VMEbus Board – VMIVME-7805-234001
  • VMIC 332-000131-000M01 VMIVME PCB Card
  • FANUC GE VMIC VMIVME 2510B Digital I/O Board
  • VMIC VMIPMC-5795-000 PMC Ultra160 SCSI Adapter
  • GE Fanuc VMIVME 5588 High-Speed Reflective Memory Board
  • VMIC VMIVME 4132 VMEbus Analog Output Board
  • VMIC VMIVME-3418 8-Channel Strain Gauge and RTD Board
  • VMIC VMIPMC-5797-000 Ultra320 SCSI Host Bus Adapter
  • VMIC VMIACC 0562 Accessory Module
  • Abaco VMIVME 4116 8-Channel 16-Bit Analog Output Board
  • VMIC VMIVME 4512 Analog I/O Board – 332-004512-300
  • VMIC VMIVME 4120 VMEbus Circuit Board – 332-004120
  • VMIC VMIVME-3801-100C Analog-to-Digital Converter Module
  • IS215UCVEH2AE VME Controller Card
  • FANUC 333-00DMA0-000 VME Module
  • GE Fanuc VMIVME-5588-200 High-Speed Reflective Memory Card
  • VMIC VMIVME-7696-650 VMEbus Single-Board Computer
  • GE Fanuc VMIVME-5532S VMEbus Fiber-Optic Repeater Link
  • VMIC GE EV-DIO-01 Control Board
  • Abaco VMIVME-7751 Pentium III VME Single Board Computer
  • PMC-5565PIORC-110000 128MB Reflective Memory Card
  • Abaco VMIVME-5565-010000 Reflective Memory Board
  • VMIC VMIPMC-5565 Reflective Memory PMC Module
  • VMIC VMIVME 5504 Slave VME Module
  • VMIC VMIVME-5740-12000 VMEbus Hard Drive Module
  • VMIC VMIVME-7751 VMEbus Processor Module
  • VMIC VMIVME-7588 CPU Module
  • VMIC 332-000132 VMIVME PCB Card
  • GE Fanuc VMIVME-4514A Analog I/O Board
  • Abaco VMIVME-2528-000 128-Bit TTL Digital I/O
  • VMIC VMIVME 4514 Scanning Analog I/O Board
  • VMIPCI 5588-101 High Speed Fiber Optic Reflective Memory Card
  • VMIC VMIVME-1228 VMEbus Board
  • VMIC VMIVME-7455 CD-ROM Drive Module
  • VMIC VMIACC 0577 Compact PCI Board
  • IS415UCVGH1A VME Controller Card
  • VMICPMC-5664 VME PMC Dual Fiber Card
  • VMIVME1128 128-Bit High-Voltage Digital Output Board
  • VMIC VMIVME-2170A VMEbus PCB Board
  • VMIC 332-015565-010L VME Module
  • VMIC VMICPCI-7612-470 Single Board Computer
  • VMIC EV-CNT/01 Control Board
  • VMIC VMIVME 1181 VMEbus Input Board – 333-001181-000 A
  • VMIC VMIVME-1150 VMEbus Module
  • VMIC VMIVME-5576 VMEbus Module
  • VMIC VMIVME-4150 VMEbus Module
  • VMIC VMIOMAX-8001B PLC Rack
  • VMIC VMIVME 2128 High-Voltage Digital Output Board
  • VMIC VMIVME-1111 64-Bit High-Voltage Digital Input Board
  • GE Fanuc VMIVME 1182 VMEbus Input Board – 332-011182-060C
  • VMIC VMIVME-7696 VMEbus PC Board
  • VMIC VMIVME-7686 VMEbus Module
  • GE VMIVME-7486 VME PCB Board
  • VMIC VMIVME-7740-840 Processor Module
  • VMIC VMIACC BT01 REV 0 Transition Board