User Account 1 1
Cart 0  0,00

CAN 20 mA analog measurement box for industrial use * 16-bit D/A converter with galvanic isolation – 2 channels

The UC-CAN 16-bit D/A converter is a 2-channel CAN bus module designed for the precise output of analog setpoints in industrial, automation, measurement, and control engineering. As a CAN D/A converter, the module converts CAN communication into analog voltage or current signals and provides two galvanically isolated D/A outputs with 16-bit resolution. It supports 0–5 V, 0–10 V, ±5 V, and ±10 V as well as 0–20 mA, 4–20 mA, and 0–24 mA. The conversion time of 10–12 µs enables time-critical control and regulation tasks, such as for actuators, valves, frequency converters, test benches, and distributed CAN systems.

Price range: € 625,94 through € 683,45 Incl. 19% VAT plus shipping

SKU: UC-CAN-DA2-16ISO Categories: ,

Our promise to you

Product Description

The UC-CAN 16-bit D/A converter with galvanic isolation – 2 channels is an industrial CAN bus module designed for the precise output of analog setpoints from a CAN network. The UC-CAN-U-DA2-16ISO model variant provides two D/A channels with 16-bit resolution and converts digital CAN data into defined voltage or current signals for automation, measurement, and control applications.

System role in CAN architectures

As a standalone module with USB and CAN interfaces, the UC-CAN handles decentralized analog output close to the machine, system, or test bench. Using the open CAN protocol and the automatic CAN RX/TX mode, CAN packets can be processed or transmitted within the network. This makes the module suitable for distributed control architectures in which analog output signals are not provided exclusively centrally, but rather via CAN close to the process.

Precise analog output for voltage and current

The UC-CAN 16-bit D/A converter supports voltage outputs of 0–5 V, 0–10 V, ±5 V, and ±10 V, as well as current outputs of 0–20 mA, 4–20 mA, and 0–24 mA. The 16-bit resolution enables finely graded setpoint specifications, for example for actuators, valves, inverters, or analog inputs of downstream systems. With a conversion time of 10–12 µs, the module is also suitable for applications where output values must be set quickly and reproducibly.

Galvanic isolation and secure signal processing

The two D/A channels are electrically isolated from each other. There is also electrical isolation from the power supply. This reduces potential differences, ground loops, and electrical interference. For voltage outputs with longer cable runs, sense inputs can be used to compensate for voltage drops along the line. This ensures stable analog output even when the module is not located directly at the load.

Fail-safe mode for defined initial states

Fail-safe mode serves as a safety feature in the event of a connection failure or loss of communication. In such cases, the DEDITEC module can switch to a preconfigured safe default state. This prevents connected equipment, actuators, or systems from continuing to operate uncontrollably in the event of a communication failure. This feature supports applications that require a defined response to error and communication conditions.

Typical applications

  • Setpoint output via CAN bus in industrial control and regulation architectures
  • Control of actuators, valves, and analog control elements
  • Analog control signals for frequency converters and downstream systems
  • Test bench setups with reproducible voltage or current output
  • Measurement, laboratory, and development environments with CAN-based analog output
  • Retrofit and mechanical engineering applications with decentralized analog signal generation

Integration, Configuration, and Operation

Integration is carried out via CAN using an open protocol. The DEDITEC ICT tool is available for setup, configuration, testing, diagnostics, and firmware updates. This allows the module to be integrated into existing control and test bench architectures, parameterized, and tested during operation. The combination of CAN communication, USB configuration, and galvanically isolated analog outputs supports precise CAN-based analog output in industrial applications.

Made in Germany

DEDITEC develops and manufactures industrial I/O, control, and measurement modules in Germany. For the UC-CAN 16-bit D/A converter, “Made in Germany” means product-oriented development, traceable technical documentation, and a design tailored for use in industrial applications.

Technical Specifications

The UC-CAN 16-bit D/A converter is an industrial CAN bus D/A module designed to output analog voltage and current signals. With two 16-bit analog outputs, galvanic isolation, and output ranges of 0–10 V, ±10 V, 0–20 mA, and 4–20 mA, the module is suitable for precise setpoint output in automation, measurement and control technology, and test bench applications.

 

At a glance

  • CAN D/A converter for analog setpoint output via CAN bus
  • 2 D/A channels, each with 16-bit resolution
  • Voltage outputs: 0–5 V, 0–10 V / 0–10 V, ±5 V, ±10 V
  • Current outputs: 0–20 mA, 4–20 mA, 0–24 mA
  • Galvanic isolation between D/A channels up to max. 1000 V AC
  • Galvanic isolation from the power supply up to max. 500 V AC
  • CAN 2.0A / CAN 2.0B with bit rates from 10 kbit/s to 1 Mbit/s
  • Open CAN protocol and Auto-TX/RX mode
  • USB-C interface for commissioning and parameterization
  • Conversion time of the D/A converter: 10–12 µs
  • Supply voltage: +12 V to +24 V DC
  • Mounting on 35 x 7.5 mm DIN rail

Analog Outputs and Signal Ranges

  • Two analog D/A outputs for precise voltage and current signals via CAN bus
  • 16-bit resolution for finely graded setpoint specifications
  • Output ranges for common industrial and standard signals such as 0–10 V and 4–20 mA
  • Relative accuracy: min. -16 LSB / max. +16 LSB
  • Temperature drift of full-scale value: ±1 ppm/°C
  • Conversion time: 10–12 µs for fast D/A output in control and regulation applications

Schnittstellen und Integration

  • CAN interface via 9-pin D-Sub connector
  • Support for CAN 2.0A and CAN 2.0B
  • Electrically isolated CAN interface up to 500 V
  • Open CAN protocol for integration into existing CAN bus architectures
  • Auto-TX/RX mode for automatic processing of CAN packets
  • USB-C interface with USB 2.0 / USB 1.1 support up to 480 Mbit/s

Electrical isolation and operational safety

  • D/A channels are electrically isolated from one another up to 1000 V AC
  • Electrical isolation from the power supply up to 500 V AC
  • Reduces interference caused by potential differences and separate signal ranges
  • Timeout protection function adjustable via software
  • Timeout range: 0.1 seconds to 6553 seconds
  • Supported timeout modes: Normal, Auto Reactivate, and Secure Outputs

Mechanics and Environmental Conditions

  • Supply voltage: +12 V to +24 V DC
  • Operating temperature: +10 °C to +50 °C
  • Dimensions: 120 mm x 22.5 mm x 111 mm (H x W x D)
  • Top-hat rail mounting: 35 x 7.5 mm
  • Mis-insertion-protected connectors for industrial control cabinet and system construction

Analog outputs

Our digital/analog converters enable the precise control of current- or voltage-controlled actuators such as valves or servomotors. They ensure reliable and interference-free signal transmission, particularly in industrial environments with long distances. This makes them ideal for demanding applications in automation technology.

Symbole analoge Ausgänge

Fail-Safe Mode

The Fail-Safe mode is a safety function in which the DEDITEC module switches to a previously configured, safe switching state in the event of a connection failure.
This is intended to prevent connected installations or systems from continuing to run in an uncontrolled manner.

Symbol für den Fail-Safe Modus


Automatic Transmit and Receive Mode

Use our Auto TX/RX mode to automate the workflow of your DEDITEC product by automatically processing CAN packets received from other nodes in the network or transmitting CAN packets to them. Both RAW CAN and J1939 are supported. Using our free ICT tool, you can define how TX and RX packets are to be processed via a graphical user interface.

Symbol für CAN RX-TX Modi


Plug connector

A screwless system from the manufacturer WAGO® Kontakttechnik is used as the connector. The 1-wire female connectors are 100 % protected against mismating and have an ejection and locking mechanism.

Symbol für Steckverbinder


Easy installation thanks to DIN rail bus

Thanks to the practical bus connector, which is clipped into the DIN rail, individual modules of a system can be added or replaced very easily. This Plug'n Play principle makes commissioning easier for you and eliminates the need for tedious wiring.

din_rail_bus_1024q


LEDs

Each digital input and output has a separate LED that lights up when the signal status is active. The status of the operating voltage, communication with the interface, error events or the occurrence of a timeout can also be displayed.

Symbol für LEDs


M2M

Machine-to-machine, or M2M for short, involves direct communication between two or more modules. Analog or digital input signals from one transmitter module can be automatically transmitted to another module on a channel-by-channel basis.
M2M transmission is supported by all our products in the WEU series or by products with a CAN interface.

Symbol für M2M


Event-Control

This function can be used to implement small control tasks that are saved in the module. These control tasks are configured as events and actions and then executed automatically according to the “if-then” principle.

Symbol für Event-Control

Power supply +12 V ... +24 V DC
LEDs general
  • Interface communication
  • Module status
  • One LED per input and output channel (only for digital modules)
LEDs product-specific

A/D-version:

  • A/D channel active / not active
  • Read/write access to A/D channel
  • U mode active / not active
  • I mode active / not active

D/A-version:

  • D/A channel active / not active
  • Read/write access to D/A channel
  • U mode active / not active

Thermo version:

  • A/D channel active / not active
  • Read/write access to A/D channel
  • U mode active / not active
  • I mode active / not active

 

DIN rail mounting 35 x 7,5 mm
Operating temperature +10 °C ... +50 °C
Dimensions 120 mm x 22.5 mm x 111 mm (H x W x D)

Special features

Event-Control With our event control, you have the option of linking occurring events to a specific action. With the help of our ICT tool, the control tasks can be stored directly in the module memory thanks to an intuitive “if-then” logic. Monitor, control and regulate without an additional control PC.

Fail-Safe-function

FAIL-SAFE-function
  • Simple and uncomplicated setting of the timeout protection function possible via software
  • Time-definable automatic activation of the timeout protection function in the event of a timeout (between 0.1 seconds and 6553 seconds)
  • In the event of a timeout, digital outputs can be activated, deactivated or left unchanged
Timeout-mode "Normal" The "Normal mode" is valid once and must be reactivated manually by software command after each timeout event. The customer application still has access to all controller outputs.
Timeout-mode „Auto reactivate“ In “Auto reactivate mode”, the timeout function is automatically reactivated once communication with the control PC has been re-established. The customer application still has access to all outputs of the control unit.
Timeout-mode "Secure Outputs" The “Secure outputs mode” blocks access to the outputs after the timeout event. Unlocking can only be carried out by software command. This is an important safety aspect in the event of a fault.


Interfaces

CAN Interface

CAN-Interface
  • Connection: 9-pin D-Sub socket
  • CAN 2.0A or 2.0B
  • 1 Mbit/s, 500 Kbit/s, 250 Kbit/s, 125 Kbit/s, 100 Kbit/s, 50 Kbit/s, 20 Kbit/s or 10 Kbit/s
  • Galvanically isolated up to 500 V
  • Open CAN protocol
  • RAW CAN / J1939
  • Automatic processing of CAN packets (Auto TX/RX mode)

USB Interface

USB-interface
  • Connection: Type C
  • USB 2.0 / USB 1.1 interface with up to 480 Mbit/s
Access speed
  • USB: 2,06 ms

    Calculated with 1000 accesses to the module via the DELIB driver library with the command DapiDoSet32


Inputs/Outputs

Analog outputs

Output
  • D/A channels with 16-bit resolution each
  • Voltage ranges: 0-5 V, 0-10 V, +5 V, +10 V
  • Current ranges: 0-20 mA, 4-20 mA, 0-24 mA
  • Relative accuracy: Min: -16 LSB / Max: +16 LSB
  • Bipolar zero point error (T = 25 °C): ±4 ppm FSR / °C
  • Zero point deviation (T = 25 °C): ±2 ppm FSR / °C
  • Temperature drift of the full scale value: ±1 ppm / °C
Galvanic isolation
  • Channels between each other: max. 1000 V AC
  • For power supply: max. 500 V AC
Conversion time Conversion time of the D/A converter: 10 - 12 µs


Connectors

Plug connector 16-pin
  • Type: Wago contact technology 713-1108/037-000
  • Pluggable female connector with locking mechanism
  • 100 % protected against mismating
  • 1-wire connection for all conductor types up to 1.5 mm²
Plug connector 5-pin
  • Type: Phoenix Contact 1876343
  • Pluggable screw terminal
  • 100 % mismating protected
  • For all conductor types from 0.14 mm² to 1.5 mm²

The ICT-Tool

Integration, configuration and testing - Our all-in-one Windows tool contains all the functions you need to put our products into operation quickly, easily and efficiently. Start with the setup and configuration, install firmware updates and use the extensive test and diagnostic options. The integrated help menu provides additional support if required.

Below you will find a brief overview of the program’s basic menus.

Module selection
Here you can integrate a new product into the ICT tool by clicking on the “+” symbol and then configure it.

ICT TreeView
In the TreeView, on the left-hand side of the program window, you can see the respective control elements or functions that are supported by your selected module. The scope of the functions depends on the respective product.

Overview
All relevant module information can be accessed here at a glance.

  • Module name
  • Module ID
  • Firmware revision
  • MAC address
  • LAN and WiFi Network address (module dependent)

Inputs / Outputs
This overview shows the number of I/Os supported by your module.

Module infos
Here you will find all the important feature information for your module.

General features
Here you will find all the important feature information for your module.

Digital I/O features
Here you will find information about the digital I/Os supported by the module.

Analog I/O features

Here you will find information about the type of analog I/Os supported by your module.

Special I/O features

Here you will find information about the type of special I/Os supported by your module.

In den folgenden Kapitel, würden wir Ihnen unsere neue All-In-One-Software gerne genauer vorstellen.

Info
All relevant module information can be called up here at a glance.

  • Module name
  • Module ID
  • Firmware revision
  • Interface type
  • Current DIP switch setting (only for Ethernet modules)

Identification
If several DEDITEC Ethernet modules are active in the network, a signal LED on the selected module can be activated via an identification function. This facilitates visual assignment.

Restart
You can restart your module here. The module status shows whether the restart was successful.

USB configuration
If you want to use several USB modules from the same product series on one PC, each of these modules must first be assigned its own module number.

LAN info
On this information page, you will find the current LAN network information and all the settings for your module at a glance.

LAN configuration
Integrate the product into your network or control it directly via a 1-to-1 connection.
The following parameters can be changed.

  • Board name
  • DHCP on/off
  • IP address
  • Subnet mask
  • Default gateway
  • TCP Port

WiFi info
All important WiFi settings are displayed on this page

WiFi configuration
Here you can change the network settings of the selected WiFi product.

The following settings can be made:

  • Board name
  • WLAN on/off
  • Router name
  • Router password

WPS
With the WPS function, your module can be connected to the router quickly and easily, automatically (WPS on the router is required)

CAN configuration
With our CAN products in the BS, NET and UC series, settings for the interface and the TX/RX packets can be made using the ICT tool.

More information can be found here:

Serial configuration
For our serial products in the BS, NET, UC and RO series, changes to the interface can be made using the
ICT tool.

More information can be found here:

Modbus TCP
Here you can set the Modbus TCP configuration of the module.
 
The following configurations can be made.

  • Enable/disable access via Modbus TCP
  • TCP port

TCP encryption
Here you can make settings for the encryption of your module.

The following configurations can be made.

  • Allow unencrypted protocol
  • Allow “User” encryption mode
  • User password
  • Allow “Admin” encryption mode
  • Admin password

NTP configuration
You can make changes to the NTP service here.

The following configurations can be made.

  • NTP service on/off
  • server
  • Port
  • Timezone

WEB-Login
Here you can change the login settings of the web interface.

The following configurations can be made.

  • Session duration
  • Login name
  • Login password
  • Allow I/O access via web interface

D/A Default Values
Here you can set the D/A values and modes with which the module should be started.
The value and mode can be set individually for each channel.

Watchdog configuration
Here you can make and save settings on your watchdog stick.

Save or Load config
Using the “Save or Load config” function, you can save your entire module configuration in an external XML file.
This means you can always load your module in the desired original state.

The following configurations can be saved depending on the module type.

  • USB configuration
  • LAN configuration
  • WiFi configuration
  • TCP encryption
  • NTP configuration
  • Serial configuration
  • CAN configuration

 

Status
This gives you an overview of the activity of the transmitter and receiver module

The following information from the transmitter module is displayed:

  • Status of the activity: If the check mark is set, this action is currently being performed.
  • Total number of actions performed. Is reset to 0 after a restart of the module.
  • Number of actions per second.
  • Number of DELIB errors that occur when executing commands from the DEDITEC driver library.

The following information from the receiver module is displayed:

  • Connected: If the check mark is set, the transmitter and receiver modules are connected.
  • IP address of the receiver module.
  • Number of connection attempts.

 

Receiver modules
You can set the network settings of the receiver module here.

The following settings can be made

  • Name for the receiver module
  • Network settings of the receiver module
  • Timeout
  • Encryption type/ password

Action
With an action, you define which input signal is to be sent from the transmitter module to which output of a receiver module.

The following settings can be made:

  • Type of task (digital, analog)
  • Which receiver module should be used
  • The interval at which the operations are to be carried out
  • Start channel of the transmitter module
  • Number of channels to be transmitted
  • Start channel of the receive module

In the image on the right, DI data is sent every 100ms from channel 3(CH Start) to channel 8 ((CH Start) + (CH Count)) to channels 0-5 of the target module.

 

In den folgenden Kapitel, würden wir Ihnen unsere neue All-In-One-Software gerne genauer vorstellen.

Status
The Status area provides an overview of all active events and executed actions.

The following information is listed:

  • Event number
  • Event type
  • Time interval of the event
  • Number of events that have occurred
  • Action number
  • Number of triggered actions
  • Number of other actions

Events configuration
Up to 16 different events can be created in the configuration menu. An event can be used, for example, to define switching thresholds at the analog inputs or logical states at the digital inputs of the module and link them to an executable action. The configuration itself is saved permanently in the module configuration memory of the module.

The following event modes are available, depending on the module type:

  • DI: High-Low state of a digital input.
  • DI flip-flop: Status change of a digital input (is stored in the module with the so-called flip-flop flag and deleted again after readout).
  • DO readback: ON-OFF status of a digital output (is read out using a DO readback command).
  • A/D: Current or voltage level at the analog inputs

 

Configuration actions
Up to 16 different actions can be created in the configuration menu. An action defines what should happen within an event after a condition is met.

The following action modes are available, depending on the module type:

  • Set DO output:    Switches a digital output on or off
  • Set D/A output:    Outputs a current or voltage value at an analog output
  • Send CAN packet:      A special CAN TX event is triggered (up to eight CAN TX events can be configured separately).

 

Digital Out
Hier können Sie die digitalen Ausgänge Ihres Modules ein- und ausschalten.
 
Folgende Funktionen können in dieser Form getestet werden.

  • Kanalweise Ein- und Ausschalten der digitalen Ausgänge
  • Readback der Kanäle
  • Setzen eines Digitalausgangs für eine bestimmte Zeit (Modulabhängig)
  • Gibt an welchen Status die Kanäle nach Ablauf der Zeit einnehmen sollen (Modulabhängig)
  • Testen der Ausgänge

Digital Out
All digital outputs of your product can be checked by clicking on the buttons.

The following switching options are possible:

  • Switching on and off channel by channel
  • Channel-by-channel switching on or off for a specific time (product-dependent)
  • Reading back the switching status (readback)

Digital In
In this view, the logical states of all optocoupler inputs can be read out.

The following information is displayed:

  • Logical status of the inputs (ON/OFF)
  • Number of detected pulses (counter function)
  • Change of state detected (flip-flop)

TTL I/O
In this menu, the TTL channels of the module can be configured as inputs or outputs. The individual TTL outputs can be switched on or off by pressing the buttons. In addition, the status of all TTL inputs can be read out.

The tool offers the following functions:

  • Configuration of the channels as input or output (in blocks of 8)
  • Switching on and off channel by channel
  • Reading back the switching status (output readback)
  • Displaying the logical status of the inputs (input readback)

 

Analog Out
Here you can test the analog outputs of the module and manually enter any voltage or current value.

Analog In
In this menu, voltage or current values of all A/D channels can be displayed.
It is also possible to activate our A/D software filter with different filter levels.

CAN Runtime Parameter

Here you can change the CAN settings of the interface, the RX and TX packets in runtime.

The following settings can be made:

  • Baud rate
  • Extended ID
  • Active on/off
  • CAN ID
  • Mode

CNT48

Here you can read out the counter readings of a counter module, select filter options and set various counting modes.

The following counting modes are supported:

  • Read on rising edge
  • Read on rising edge x2
  • Read on rising edge x4
  • Period duration
  • Frequency measurement
  • PWM measurement

Pulse generator
The pulse generator can be used to generate square-wave signals. High and low time as well as the number of pulses can be set here.

PWM Out
In this menu you have the option of testing various PWM frequencies. In addition, the duty cycle can be entered manually for each individual channel.

Temp
The temperature of all connected temperature sensors is displayed here directly in °C.

Graphical display
This menu allows a graphical representation of all analog input signals, such as A/D, temperature or FIFO-IN.

Watchdog
This tool can be used to check the configured watchdog parameters for correct function.

I/O – Timeout

You can use the timeout function in the I/O area to simulate a timeout case for your module.

The following is a description of the timeout window

  1. Read / Write symbol:   Flashes to indicate an active connection to the module
  2. Automatic access: Removing the tick triggers a timeout after the timeout time has expired
  3. Manual access: Manual retrieval of data from the module
  4. Timeout status: Shows whether the timeout is active and whether a timeout event has occurred
  5. Timeout mode: Selection between 3 timeout modes, Normal, Reactivate and Secure
  6. Timeout duration: The time after which the timeout should be triggered is set here
  7. Activate / deactivate: Activates or deactivates the timeout function

 

Access times tests
You can test the access times for the module here. The following access time tests can be performed:

  • Register – Read/Write/Write + Readback
  • Digital I/O – Read/Write/Write + Readback
  • Analog I/O – Read/Write/Write + Readback

Access times tests

This test can be used to determine the access times to the module. The test values are read and written in 8, 16, 32, or 64-bit commands.

Access times Register
The following example checks the register accesses to an Ethernet module. The average access time here is 0.5 ms.

Access times Analog I/O
In the following example, the access times to an Ethernet module with analog I/Os are checked. The average access time here is 0.6 ms.

Access times Digital I/O
In the following example, the access times to an Ethernet module with digital I/Os are checked. The average access time here is 0.6 ms.


Cable feedback tests
For this test, the digital or analog outputs of the module are connected to the corresponding digital or analog inputs of the module via cable. The feedback test now checks whether the output and input values match.

Cable return test

The cable return test can be used to check the function of all digital and analog inputs and outputs (I/Os) of a module. To do this, inputs and outputs are wired together externally on a 1:1 basis. The test software analyzes whether the output signals arrive correctly at the inputs, thereby identifying wiring errors or hardware defects.

Analog test
In analog test mode, the D/A converter outputs defined test voltages, which are then read in by the A/D converter and compared with the target values. The software counts the number of test runs and automatically documents any deviations.

Digital test
In the digital test, the switching states of the relay or MOSFET outputs are fed back externally to the optocoupler inputs. Here, too, the software counts and compares the number of cycles and automatically detects transmission errors or deviations.

Cable return test

The cable return test can be used to check the function of all digital and analog inputs and outputs (I/Os) of a module. To do this, inputs and outputs are wired together externally on a 1:1 basis. The test software analyzes whether the output signals arrive correctly at the inputs, thereby identifying wiring errors or hardware defects.

Analog test
In analog test mode, the D/A converter outputs defined test voltages, which are then read in by the A/D converter and compared with the target values. The software counts the number of test runs and automatically documents any deviations.

Digital test
In the digital test, the switching states of the relay or MOSFET outputs are fed back externally to the optocoupler inputs. Here, too, the software counts and compares the number of cycles and automatically detects transmission errors or deviations.


A/D ripple
The ripple test displays the residual ripple of the individual A/D inputs.

A/D quality measurements

The quality of an A/D measurement is influenced by various factors and can be affected by external interference. A reliable method for checking measurement quality is to measure a stable battery voltage. Our diagnostic tools can be used to determine the residual ripple and noise behavior.

A/D ripple
The A/D ripple test can be used to measure the residual ripple of the individual A/D inputs and check for interference signals such as mains hum or voltage instabilities.

A/D noise
The noise behavior of each A/D channel can be displayed graphically using A/D noise measurement. Additional filter stages with averaging can be used to smooth and improve the measurement signal.


FIFO In/Out

The software FIFO test can be used to specifically test the integrated FIFO buffering of our digital and analog NET I/O modules. Depending on whether it is an input or output module, data is read from the submodule FIFO or written to the submodule FIFO.

 

FIFO settings

The submodule number can be used to specify which module is to be tested. The start and end channels can also be used to transmit several channels simultaneously. In addition, the transmission frequency can be set and the desired FIFO mode selected – for example, for the use of test values or the actual measured values of the module.

All important information at a glance

During program execution, key information such as the size of the data packets, free and occupied bytes in the FIFO buffer, the number of data packets sent or received, and the current FIFO status are clearly displayed.


D/A output test

The D/A output test enables targeted testing of each individual D/A channel of a module. A freely selectable test voltage can be output directly. Currently, simple square wave signals with configurable high and low times are available. The signals can be monitored simultaneously with an oscilloscope. This function is also ideal for long-term tests. The test software detects DELIB errors and logs them automatically.


Mustertext

Mustertext

DO 4* value + wait

In this test, adjustable 16-bit values are written to the digital outputs of the module.
The values are sent to the module using the DapiDOSet16 command. The start channel is always channel 0.
You can set different wait times between the individual calls.
The test is intended for testing the functionality of the module.


Mustertext

Mustertext

Modbus I/O test

In the diagnostics section of the ICT-Tool, you can test the module’s digital and analog inputs and outputs directly via Modbus TCP. Register addresses as well as transfer and return values are displayed in a debug panel, allowing you to quickly diagnose problems with the D/A converter, for example. A complete overview of all register addresses and examples can be found in the Modbus manual at the following link:

To benefit from the latest functions and prevent errors, we recommend that you always keep your DEDITEC product up to date.

Flash Files
Downloading the firmware flash file package via the ICT tool

  1. Go to Flash Files in the “Firmware update” menu
  2. Click on the download button to start the download.
  3. Administration rights are required for the automatic unpacking of the flash files. If these rights are not available, the files are downloaded to the download area of your PC and must be extracted manually to the installation directory.
    \DEDITEC\DELIB\programs\flash_files

Downloading the firmware flash file package via the DEDITEC homepage

  1. Download the required firmware flash file package from our homepage: Downloads -> Software -> Firmware
  2. Extract the files to the following installation path: ..\DEDITEC\DELIB\programs\flash_files

Flash modules
In the “Firmware update” menu, select the module you want to update and then click on the “Flash modules” or “Flash submodules” button.
The firmware is now updated and the module is then restarted automatically.

 

Information on the firmware flasher
The following information is displayed in the firmware flasher:

  • Last FW: Displays the last firmware version
  • Current FW: Displays the currently installed firmware version
  • Newest FW: Displays the latest firmware version
  • Log: Displays status or error messages during the flash process

In den folgenden Kapitel, würden wir Ihnen unsere neue All-In-One-Software gerne genauer vorstellen.

General
Here you can make general configurations to the ICT tool.

The following changes can be made:

  • Language – setting between German and English possible

Updates
Here you can search for available DELIB or firmware updates.

  • Automatic update search at program start
  • Search for DELIB updates
  • Search for firmware updates

Error log
Here you can make settings for the deditec_debug.log. This is saved under the path C:\Users\?USER?\AppData\Local\DEDITEC.

The following settings can be made:

  • Enable writing to the debug.log
  • Activate log notifications
  • Activate automatic deletion of the debug.log
  • Setting after how many days the debug.log should be deleted
  • Set the maximum size of the debug.log

DELIB – DebugView – Global

Settings can be made here for the information that is to be displayed with the DebugView.

  • Activate debug output
  • Activate display of errors

DELIB – DebugView – Details
More detailed settings can be made here for the information to be displayed with the DebugView.

Configuration of CAN modules

The parameters of the CAN interface can be fully configured via the ICT-Tool. In addition to the baud rate, CAN address and other settings, automatic send and receive packets can also be set up.

Icon Can

Automatic transmission (TX mode)

The Auto-TX mode allows cyclical transmission of data packets, optionally with analog or digital input states to other CAN addresses. Alternatively, a trigger event can also be defined. In this case, a data packet is only sent once a data packet has been received on a certain CAN ID (e.g. CAN sync on ID 0x80).

 

Automatic receiving (RX mode)

With Auto-RX mode, on the other hand, received data packets are forwarded directly to analog or digital outputs. For example, relay outputs can be set via another CAN bus subscriber.

ICT-Tool

The ICT-Tool can be used to quickly and easily read out or change CAN interface settings.

Status interface
Here you can find information about the status of the CAN interface

  • Baud rate
  • Module address
  • Receiving address
  • CAN status
  • Extended ID
  • CAN modus
FormCfgCANStatus
Status TX/RX
Hier finden Sie Informationen über die TX / RX -Pakete
 

  • Anzahl gesendeter / empfangener Pakete
  • TX / RX – Pakete pro Sekunde
  • Durchschnitt gesendeter / empfangener Pakete
FormCfgCANStatistic
Config interface
Settings can be made on the CAN interface here.
 

  • Baud rate
  • Adress Bit-mode
  • Module address
  • Receiver address
FormCfgCANConfigStd
Config I/O Init
Here you can configure the CAN settings of the connected submodules.
 

  • A/D mode
  • A/D filter
  • D/A mode
  • Counter mode
  • Timeout
  • CNT48 mode
  • CNT48 submode
  • CNT48 filter
FormCfgCANConfigIO
Config TX mode
Here you can make settings to the TX package configuration.
 

  • activate / deactivate
  • Trigger mode
  • Interval
  • Use extended ID
  • Send to CAN-ID
  • TX mode
FormCfgCANTX
Config RX mode
You can make settings to the RX package configuration here.
 

  • activate / deactivate
  • Use extended ID
  • Receive from CAN-ID
  • RX mode
FormCfgCANRX
Click here to download the latest driver library.
 
You can find more details on control and some programming examples in the programming section.

M2M

Machine to Machine
M2M is the abbreviation for “machine-to-machine” and enables automatic data transmission between two or more devices. This means that analog or digital input signals from a transmitter module can be automatically transmitted to a receiver module, where they are immediately output again.

Data exchange without a control PC
The modules communicate directly at device level and therefore do not require any additional user software. The one-off configuration of the transmitter module can be carried out very easily using our ICT-Tool. All settings remain permanently stored in the module memory, even in the event of a power failure. After a restart, the module automatically switches back to M2M operation.

M2M Ethernet or M2M CAN
With our DEDITEC products, we differentiate between M2M Ethernet and M2M CAN. We also refer to the latter as CAN-TX/RX mode. Both M2M methods are supported by most of our modules with Ethernet or CAN interface.

Overview M2M

M2M-CAN

All DEDITEC products with a CAN interface are equipped with the M2M-CAN feature. The “Auto TX/RX mode” can be set in the ICT-Tool via the configuration menu. Depending on the product type, 8(4) TX and 8(4) RX modes can be defined.

"TX modes" submenu
The pictures on the right show an example configuration for a transmitter module (TX mode) and a corresponding receiver module (RX mode).

The TX mode on the transmitter module sends the logical states of inputs 1-64 to CAN ID 0x700 every 500ms.

The RX mode on the receiver module receives data packets on CAN ID 0x700 and outputs these values to outputs 1-64.

M2M CAN TX
M2M CAN RX

Control of our CAN modules

Our CAN modules can be controlled in two ways:

1. Auto TX/RX mode for RAW CAN and J1939

2. DELIB Command Mode

 

Icon Can

1. Auto TX/RX Mode for RAW CAN and J1939

Auto TX/RX mode enables the module to process CAN packets automatically without requiring an additional control PC. Both RAW CAN and J1939 are supported. Configuration is carried out conveniently using the ICT tool and does not require any programming knowledge.

CAN Packets via RAW CAN

For a RAW CAN message, either an 11-bit or a 29-bit CAN ID is selected first. The complete CAN ID is then entered directly.

The “Mode” field determines which I/O data is transmitted or how received payload data is processed within the module.

CAN Packets via J1939

To use J1939, “J1939” is selected in the “CAN Mode” field. Instead of entering a complete 29-bit CAN ID, the individual J1939 address components Prio, PGN, SA and, if applicable, DA are entered.

The ICT tool automatically generates the corresponding 29-bit CAN ID from these values. Manual calculation or decomposition of the CAN ID is not required.

When an existing configuration is read, the stored 29-bit CAN ID is automatically split back into Prio, PGN, SA and, if applicable, DA.

Automatic Transmission (TX Mode)

Auto TX mode enables CAN packets to be transmitted automatically and cyclically to other bus nodes. The module’s digital and analog input signals can therefore be forwarded directly to other devices.

As an alternative to cyclic transmission, trigger events can also be defined. This means, for example, that a CAN packet is only transmitted after a CAN message has been received on a specified CAN ID.

 

TX Mode Configuration

The following settings can be configured:

  • Enable / disable TX mode
  • CAN Mode (RAW CAN [11-bit, 29-bit] / J1939)
  • Transmit to CAN ID
  • TX Mode
  • Trigger Mode
  • Interval

 

 

FormCfgCANTX

Automatic Reception (RX Mode)

In Auto RX mode, received data packets are forwarded directly to the module’s analog or digital outputs. This allows relay outputs on the module to be controlled by another CAN bus node, for example.

 

RX Mode Configuration
The following settings can be configured:

 

  • Enable / disable RX mode
  • Use extended ID
  • Receive from CAN ID
  • RX Mode
FormCfgCANRX

2. DELIB command mode

In DELIB command mode, the module's registers are accessed via a CAN protocol developed by DEDITEC. The module expects the CAN messages on a CAN address specified in command mode. Read and write accesses with different data lengths (BYTE, WORD, LONG) are possible. Details on the protocol structure and register assignment can be found in the “Protocols & Register Assignment” manual in the download area.

 

Connection example DA2-ISO I-Mode:

Connection example


Connection example DA2-ISO U-Mode:

Connection example


Connection example DA2-ISO U-Mode VSENSE:

Connection example

Screwless connector system

The customer-side connection wiring of the inputs and outputs is carried out using screwless, pluggable terminal strips. The conductor connection is made using a so-called actuating tool.
A locking and ejecting mechanism facilitates the insertion and removal of the complete terminal strip.

Handling:

Steps 1-5

Step 1

See the scope of delivery for the operating tool.

Wago Betaetigungswerkzeug 615 464 Kopie
Step 2

Insert the operating tool firmly into the side opening in the direction of the conductor connection.

Konf Werkz Montage2 615 464 Kopie
Step 3

Now insert the stripped conductor into the open clamp contact.

Konf Werkz Montage3 615 464 Kopie
Step 4

Pull out the operating tool again.

Konf Werkz Montage4 615 464 Kopie
Step 5

Check that the conductor is properly connected. It should now no longer be possible to pull it out easily.

Konf Werkz Montage5 615 464 Kopie

Manual

DDT Icons Downloads PDF Transparent 250606

Manual UC series

Quickstart - Hardware description - Software description - ICT-Tool
Commissioning/Quickstart

  • Safety instructions
  • Installing the drivers
  • Connecting the power supply
  • Connecting to the PC or network
  • Connecting the I/O connectors
  • Function test

Hardware description

  • List of technical data
  • Definition of the LEDs
  • Functions of switches and buttons
  • Pin assignment of the connectors
  • Connection examples

Software description

  • Control options via the DELIB, protocol level, DELIB CLI, graphical applications
  • DELIB Driver Library, DELIB Sample Sources, DELIB for Linux
  • Web interface (only for Ethernet modules)
  • DELIB API and its functions

ICT-Tool

  • Add module on the PC
  • Configure module/interface (Ethernet, USB, CAN, serial)
  • Setting options for M2M and event control (only for supported modules)
  • Test and diagnose module
  • Install firmware updates
  • Save/load module configurations using a separate file

Software packages ICT-Tool / DELIB driver library

DDT-Icons-Downloads_ZIP_transparent_250606

ICT-Tool + DELIB for Windows (64-bit)

For Windows 11/10, Windows 7, Windows 8, Vista, XP and 2000

Software package for the 64-bit version of the ICT-Tool and the DELIB driver library.

The following operating systems are compatible:
64-bit:

  • Windows 10/11 x64
  • Windows 8 x64
  • Windows 7 x64
  • Windows Server 2012 x64
  • Windows Server 2008 x64
  • Windows Vista x64
  • Windows XP x64
  • Windows Server 2003 x64
  • Windows 2000 x64

Supplied software

ICT-Tool x64

  • Updating the DEDITEC module-firmware
  • Assigning module addresses
  • Module-specific settings
  • Configuration of CAN modules
  • Test and diagnosis of module functions
  • Configuration of the watchdog stick

Replaces the following software

  • DT-Flasher x64
  • DELIB Module Demo x64
  • CAN Configuration Utility x64
  • DELIB Module Config x64
  • DELIB Configuration Utility x64
  • Watchdog Configuration Utility x64


DELIB Command Line Interface x64

Enables the execution of DELIB commands in the command line.

DDT-Icons-Downloads_ZIP_transparent_250606

ICT-Tool + DELIB for Windows (32-bit)

For Windows 11/10, Windows 7, Windows 8, Vista, XP and 2000

Software package for the 32-bit version of the ICT-Tool and the DELIB driver library.

The following operating systems are compatible:
32-bit:

      • Windows 10/11
      • Windows 8
      • Windows 7
      • Windows Server 2012
      • Windows Server 2008
      • Windows Vista
      • Windows XP
      • Windows Server 2003
      • Windows 2000
    •  

Supplied software

ICT-Tool x32

      • Updating the DEDITEC module-firmware
      • Assigning module addresses
      • Module-specific settings
      • Configuration of CAN modules
      • Test and diagnosis of module functions
      • Configuration of the watchdog stick

 

Replaces the following software

      • DT-Flasher
      • DELIB Module Demo
      • CAN Configuration Utility
      • DELIB Module Config
      • DELIB Configuration Utility
      • Watchdog Configuration Utility

Attention:

With this version of the driver library, only 32-bit applications can be created, which can then be executed on 32- and 64-bit systems.

DDT-Icons-Downloads_ZIP_transparent_250606

DELIB driver library for Linux (32/64-bit)

For 32/64-bit Linux distributions from kernel 2.6.x. Version 2.73 from 28.10.2024

DELIB driver library for Linux distributions (32/64-bit) from kernel 2.6.x

This driver package contains the following components

  • DELIB USB driver
  • DELIB Ethernet driver
  • DELIB CLI

DELIB USB driver

Support for the following products:

  • NET series (via USB interface)
  • RO-USB series
  • BS-USB series
  • USB mini-sticks
  • USB watchdog
  • USB-OPTION-8 / USB-RELAY-8
  • USB-TTL-32 / USB-TTL-64

Note:

With the standard version of the USB driver, several USB products with different module IDs (e.g. one RO-USB and one USB-OPTOIN-8) can be addressed. No further driver installation is required.

If several USB products with the same module ID (e.g. a USB-OPTOIN-8 and a USB-RELAIS-8) are to be addressed, the Linux FTDI driver must also be installed. You can find the FTDI driver at http://www.ftdichip.com.

DELIB Ethernet driver

Support for the following products:

  • NET series (via Ethernet interface)
  • RO-ETH series
  • RO-ETH/LC series
  • BS-ETH series
  • ETH-OPTION-8 / ETH-RELAY-8
  • ETH-TTL-64

DELIB CLI

With the DELIB CLI (Command Line Interface) for Linux, all commands for digital and analog I/Os can be set directly via the command line


Manual

DDT Icons Downloads PDF Transparent 250606

Manual for ICT-Tool and DELIB

Software Description - ICT-Tool - DELIB API Reference

Software Description

  • Control options via DELIB, protocol level, DELIB CLI, graphical applications
  • DELIB driver library, DELIB sample sources, DELIB for Linux
  • Web interface (only for Ethernet modules)
  • DELIB API and its functions

ICT-Tool

  • Add module to PC
  • Configure module/interface (Ethernet, USB, CAN, Serial)
  • Settings for M2M and Event Control (only for supported modules)
  • Test and diagnose module
  • Install firmware updates
  • Save/load module configurations using a separate file

DELIB API Reference

  • Directory structure of DELIB
  • Management functions
  • Error handling
  • Manage digital inputs and outputs
  • Manage analog inputs and outputs
  • Manage software FIFO
  • Manage output timeout
  • Register read and write commands


Download

DDT-Icons-Downloads_ZIP_transparent_250606

Hardware updates (firmware flash file package)

Firmware flash file package for the ICT tool

This package contains the latest firmware files for the following product series:

  • STARTER series
  • BS series
  • RO series
  • NET series
  • UC series
  • CAN-IO-Box
  • Development accessories

The firmware flash file package can alternatively be downloaded via the ICT tool.


CAD files

DDT Icons Downloads PDF Transparent 250606

CAD data for enclosures

Simplified 3D model of the item
  • 3D model for the electronics enclosure - ME MAX 22.5 U-U1 BK by Phoenix Contact©
  • Item No. 2279541
  • Width: 22.6 mm, Height: 99 mm, Depth: 113.65 mm
  • Color: black (similar to RAL 9005)

USB cable A plug to C plug

USB cable for connecting our modules to the control PC.

  • Type: USB 2.0, A plug to C plug
  • Length: 1 m
Zbh Kab Usb Ac 600

5-pin plug connector

Enables the power supply to be connected to the DEDITEC module.

  • Type: Phoenix Contact® - 1876343
  • 100 % mismatch protected
  • For all conductor types from 0.2 mm² to 2.5 mm²
Zbh Steck 05 Gew 600

16-pin plug connector

Required for connecting inputs and outputs of the DEDITEC module.

  • Type: WAGO® 713-1108/037-000
  • Plug-in female multipoint connector with locking mechanism
  • 100 % mismatch protected
  • 1-wire connection for all conductor types up to 1.5 mm²
ZBH STECK 16 AUSW 600

Actuating tool for Wago connectors

Used to open and close the terminal contacts on the WAGO® connectors.

  • Type: WAGO® - 734-231
Zbh Steck Werkz 600

DIN-Rail connector

The DIN rail connector is a single BUS segment that enables connection to other modules. It is clipped into the top-hat rail and plugged onto the side of an existing DIN rail connector.

  • Type: Phoenix Contact® - 2203852
  • Connection of a NET or UC module
  • For expanding the NET or UC bus system
  • 1 Piece
Din Rail Bus 615 464

USB cable A plug to C plug

USB cable for connecting our modules to the control PC.

  • Type: USB 2.0, A plug to C plug
  • Length: 1 m
Zbh Kab Usb Ac 600

5-pin plug connector

Enables the power supply to be connected to the DEDITEC module.

  • Type: Phoenix Contact® - 1876343
  • 100 % mismatch protected
  • For all conductor types from 0.2 mm² to 2.5 mm²
Zbh Steck 05 Gew 600

16-pin plug connector

Required for connecting inputs and outputs of the DEDITEC module.

  • Type: WAGO® 713-1108/037-000
  • Plug-in female multipoint connector with locking mechanism
  • 100 % mismatch protected
  • 1-wire connection for all conductor types up to 1.5 mm²
ZBH STECK 16 AUSW 600

Actuating tool for Wago connectors

Used to open and close the terminal contacts on the WAGO® connectors.

  • Type: WAGO® - 734-231
Zbh Steck Werkz 600

DIN-Rail connector

The DIN rail connector is a single BUS segment that enables connection to other modules. It is clipped into the top-hat rail and plugged onto the side of an existing DIN rail connector.

  • Type: Phoenix Contact® - 2203852
  • Connection of a NET or UC module
  • For expanding the NET or UC bus system
  • 1 Piece
Din Rail Bus 615 464

Strain relief plate for 16 or 18-pin Wago connectors

The strain relief plate is pushed onto the center of the female connector and enables the connected cables or strands to be fixed in place.

  • Type: WAGO® - 713-127
  • Strain relief for the connection wiring
  • Suitable for 16 or 18-pole female connectors
  • Slide onto the female connector from the side
ZBH STECK PL 16
ZBH STECK PL 16 Wago

Top hat rail

Top-hat rail for mounting our control technology modules.

  • DIN rail according to DIN EN 50022
  • Type: Phoenix Contact® - 1208131
  • Dimensions in mm: 450 x 35 x 7.5 (L x W x H)
Zbhhutschiene 1m 600

24V/2A power supply unit for top-hat rail mounting

The DR-4524 from Mean Well is a 48W power supply unit for DIN rail mounting for industrial applications. It offers protection against short circuit, overload, overvoltage and overheating.

  • Input voltage range: 85 V.. 264 V AC / 120 V DC ... 370 V DC
  • Output voltage: 24 V DC
  • Output current: 2 A
  • Rated power: 48 W
Zbhnetzteil 24v 2a 600

Typical applications for the UC-CAN 16-bit D/A converter

The UC-CAN 16-bit D/A converter is suitable for industrial applications in which digital CAN data must be converted into precise analog voltage or current signals. With two 16-bit D/A channels, galvanic isolation, and output ranges of 0–10 V, ±10 V, and 4–20 mA, the CAN bus module is particularly well-suited for analog setpoint outputs in machines, control cabinets, test benches, and distributed automation systems.

 

Suitable for

  • Machine and Plant Engineering
  • Industrial Automation and Industrial Control Systems
  • Control Panel Construction and Decentralized CAN Systems
  • Test Benches, Test Systems, and Quality Assurance
  • Measurement and Control Technology
  • Laboratory Automation, Research, and Development
  • Custom Machine Building and OEM Applications
  • Retrofit and Modernization Projects with Existing CAN Infrastructure

Typical applications

  • Output of analog setpoints via the CAN bus
  • Control of actuators, valves, and control elements with defined voltage or current signals
  • Provision of control signals for frequency converters, controllers, or analog inputs of downstream systems
  • Integration of 0–10 V (0..10 V), ±10 V, or 4–20 mA signals into existing CAN networks
  • Reproducible analog output in test benches, test systems, and development environments
  • Decentralized analog signal output in machines, plants, and control cabinets
  • Implementation of time-critical control and regulation tasks with short D/A conversion time
  • Operation in electrically demanding environments with varying ground potentials

Typical signaling and control tasks

  • Conversion of digital CAN communication into analog output signals
  • Output of voltage signals with 0–5 V, 0–10 V, ±5 V, or ±10 V
  • Output of current signals with 0–20 mA, 4–20 mA, or 0–24 mA
  • Provision of two separate analog outputs for independent setpoint specifications
  • Galvanically isolated analog output in distributed automation environments
  • Connection of analog control variables to higher-level CAN controllers
  • Expansion of existing CAN systems with precise analog output channels

Comparison: UC-CAN 16-bit D/A converter with electrical isolation

The following comparison provides a technical overview of the UC-CAN-U-DA2-16ISO: a dedicated 2-channel CAN D/A converter for analog setpoint output via CAN bus. Key features include 16-bit resolution, voltage and current outputs, galvanic isolation, an open CAN protocol, and integration into automation, measurement, and control systems.

 

Product Type, CAN Communication, and System Integration

Feature Market Comparison UC-CAN-U-DA2-16ISO Practical benefits
Product Type Many CAN I/O modules are designed as universal mixed-signal modules for various input and output signals. Dedicated CAN D/A converter with two analog outputs. Ideal when digital CAN data needs to be specifically converted into analog output signals for control, regulation, or testing applications.
Signal direction With combined CAN I/O modules, the focus is often on the wide range of signals they support. Analog output via CAN bus for voltage and current signals. Supports the output of analog setpoints, control signals, and process signals from a CAN-based automation environment.
CAN interface Supported CAN versions, baud rates, and connection types vary depending on the module and manufacturer. CAN 2.0A or CAN 2.0B via a 9-pin D-Sub connector, with data rates ranging from 10 kbit/s to 1 Mbit/s. Facilitates integration into existing CAN networks, test benches, machine control systems, and decentralized I/O structures.
CAN protocol Some modules rely on closed, highly proprietary, or poorly documented communication channels. Open CAN protocol. Useful for custom CAN implementations, customer-specific telegrams, gateways, and PC-based measurement or automation software.
Automatic CAN operation With simple CAN modules, transmission and reception processes often have to be implemented entirely within the external application. Automatic processing of CAN packets in auto TX/RX mode. Reduces the programming effort required for recurring CAN communication tasks and supports stable operational processes.
USB interface Not every CAN module also includes a direct USB interface for commissioning, testing, or service. USB-C with USB 2.0 / USB 1.1 interface, up to 480 Mbit/s. Facilitates local configuration, parameterization, and testing of the module without having to rely solely on the CAN bus.

Analog Outputs, Signal Ranges, and Accuracy

Feature Market Comparison UC-CAN-U-DA2-16ISO Practical benefits
Number of analog outputs Depending on the model, compact CAN analog modules offer individual outputs, mixed I/O, or multiple signal types in a single device. Two D/A channels, each with 16-bit resolution. Two analog setpoints or control signals can be output via a CAN node.
D/A resolution Standard solutions often operate at a lower resolution or one that is not directly comparable. 16-bit D/A resolution per output channel. Enables finely graded analog signals for control engineering, test benches, setpoint specification, and industrial control tasks.
Voltage ranges For many analog output modules, voltage ranges are fixed or available only in certain variants. 0–5 V, 0–10 V (0..10 V), ±5 V, and ±10 V. Supports standard voltage signals for setpoint output, actuator control, drive connection, and test bench simulation.
Current ranges Current outputs such as 4–20 mA are not available on every CAN analog output module. 0–20 mA, 4–20 mA and 0–24 mA. Industrial current signals can be generated directly via the CAN D/A converter and used in process, test, or control applications.
Accuracy and Temperature Response With simple analog modules, accuracy and drift are not always clearly highlighted or presented in a way that is relevant to the application. Relative accuracy: -16 LSB to +16 LSB; bipolar zero error: ±4 ppm FSR/°C; zero offset: ±2 ppm FSR/°C; full-scale temperature drift: ±1 ppm/°C. Supports a transparent technical evaluation for precise analog output in measurement, control, and regulation applications.
Time of Change For analog output modules, the available response time depends on the converter, communication, and control system. D/A conversion time: 10–12 µs. Suitable for applications in which analog output values must be generated quickly and reproducibly from CAN data.

Electrical isolation, power supply, and industrial assembly

Feature Market Comparison UC-CAN-U-DA2-16ISO Practical benefits
Electrical isolation of the D/A channels Galvanic isolation between analog outputs is not always available in compact modules, or it is not implemented on a per-channel basis. D/A channels are electrically isolated from one another up to a maximum of 1000 V AC. Helps address potential differences between output circuits and improves electrical isolation in industrial systems.
Electrical isolation for the power supply For analog modules, isolation from the power supply must be verified separately depending on the operating environment. Electrical isolation for power supplies up to 500 V AC. Reduces risks associated with potential leakage and helps create a more stable signal environment in the control cabinet or test bench.
Power supply Industrial I/O modules are often designed for typical 24-V DC environments; any deviations from this supply voltage must be verified. +12 V to +24 V DC. Suitable for use in typical 12-V and 24-V DC environments, such as in machines, test benches, and mobile measurement setups.
Control Panel Assembly Depending on the design, additional adapters, special housings, or separate mounting systems may be required. Top-hat rail mount 35 × 7.5 mm, dimensions 120 × 22.5 × 111 mm. Facilitates integration into control cabinets, test benches, laboratory setups, and modular automation systems.
Connectors Maintenance, wiring, and replacement depend heavily on the terminal type, locking mechanism, and misinsertion protection. 16-pin WAGO spring-cage connector with locking mechanism, 5-pin Phoenix Contact screw terminal, each with 100% protection against incorrect insertion. Supports secure wiring and simplifies commissioning, replacement, and maintenance in industrial environments.
Operating temperature Temperature ranges must be evaluated separately for CAN analog modules intended for use in control cabinets, test benches, or laboratories. +10 °C to +50 °C. Suitable for typical industrial indoor, control cabinet, and laboratory environments.

Software, Commissioning, and Service

Feature Market Comparison UC-CAN-U-DA2-16ISO Practical benefits
Konfiguration and Test CAN modules are often configured using manufacturer-specific tools, direct protocol commands, or proprietary test software. Configuration and testing via the ICT tool, as well as access via the DELIB driver library. Supports commissioning, diagnostics, and functional testing before the module is fully integrated into the target application.
Software integration Depending on the manufacturer, integration is limited to specific platforms, protocols, or libraries. Control via CAN protocol, auto TX/RX mode, and DELIB-based access. Facilitates integration into your own measurement, test bench, control, and automation software.
Typical applications Universal CAN I/O modules are often described in broad terms and are less clearly tailored to analog setpoint output. CAN D/A converters for setpoint output, actuator and valve control, frequency converters, control loops, test benches, and mechanical engineering. The product’s role is clearly defined: CAN data is converted into precise analog output signals for specific control and regulation tasks.

Manufacturer, Availability, and Support

Feature Market Comparison UC-CAN-U-DA2-16ISO Practical benefits
Manufacturing In the field of industrial electronics, the transparency regarding origin, vertical integration, and long-term product support varies depending on the supplier. Made in Germany. Relevant for B2B applications where traceable manufacturing, technical coordination, and long-term project planning are important.
Long-term availability Product lifecycles and availability can vary significantly for automation components. 10-year long-term availability. Supports plant engineering, production machinery, retrofit projects, and test bench systems where spare parts and reorders must remain predictable.
Software maintenance Depending on the manufacturer, updates for drivers, tools, or libraries may be time-limited or product-specific. Lifetime Updates. Simplifies the long-term maintenance of measurement, control, and automation software throughout the product lifecycle.
Technical Support Support is often provided through sales, standard documentation, or general service channels. Direct developer support. Helpful for CAN integration, protocol issues, special applications, commissioning, and fine-tuning technical details.
My cart
Your cart is empty.

Looks like you haven't made a choice yet.