Introduction 1 Introduction Safety information General This manual contains information that must be observed in the interest of your own safety and to avoid material damage. This information is supported by symbols which are used in this manual as indicated. Please read this manual before starting up the device.
The cable transmitter's high level of vibration and shock resistance makes it reliable and durable. It is connected on the input and output side via M12 plug connectors. JUMO dTRANS T09 DS: cable transmitter for temperature with IO-Link interface (707091) Display and connection elements...
1 Introduction Dimensions Type 707091, JUMO dTRANS T09 DS Cable transmitter for temperature with IO-Link interface * Figure with connection line (not included in scope of delivery, see accessories)
Downloading the IODD: 1. Open the website www.jumo.de (change the language to English if necessary) 2. Use the search function to select the device 3. Under "Software", download the ZIP file containing the collection of IODDs 4.
1× Pt1000 in four-wire circuit In the JUMO dTRANS T09 AS version the output is scaled to 0 to 100 °C per default. In the JUMO dTRANS T09 DS version the output is not scalable (fixed setting at -50 to +260 °C).
4-pole, 2000 mm Cable socket M12 × 1 for self-as- straight, sembly Connecting cable without connecting cable, 00419130 (output side) 5-pole angled, without connecting cable, 5-pole 00419133 Designation Part no. IO-Link master upon request Device data (IODD) on www.jumo.de or on http://ioddfinder.io-link.com.
Mounting 3 Mounting The cable transmitter may only be installed, connected and started up by qualified and authorized per- sonnel observing these operating instructions, the applicable standards, and the legal requirements (de- pending on the application). If you experience difficulties during installation and startup, please contact the manufacturer. The device can be installed in any position.
1. Start up the hardware and software for the IO-Link master 2. Load the sensor's device description file (IODD) a) Open the website www.jumo.de (change the language to English if necessary) b) Use the search function to select the sensor c) Under "Software", download the ZIP file containing the collection of IODDs...
Functions 6 Functions CAUTION! Write operations to some R/W parameters result in them being saved to the EEPROM. This mem- ory module has only a limited number of write cycles (approx. 100,000). Frequent writing of certain parameters can therefore result in a memory error. ...
6 Functions 6.1.1 Hysteresis function The hysteresis function switches the output as soon as the switching point "SP" is reached. When the release point "rSP" is reached, the output switches again. The hysteresis function distinguishes between N/C and N/O contacts. Switching requirement: Switching point "SP"...
6 Functions 6.1.2 Window function Under the window function, the window range is defined using the parameters window low "FL" (lower value) and window high "FH" (upper value). The output switches when the current measured value (x) is between the two limits [(x > FL) & (x < FH)]. The window function distinguishes between N/C and N/O contacts.
6 Functions 6.1.3 Switch-on delay/switch-off delay The switch-on delay "VSP" and switch-off delay "VrSP" prevent switching of the output being triggered by peaks or drops in the measured values. If the necessary measured value is no longer measured once the delay time has passed, the output is not switched.
6 Functions Fine adjustment You can use customer-specific fine adjustment to correct the measured values of the sensor. In contrast to offsetting, which is used to specify a constant correction value for the entire characteristic line, fine adjustment can also be used to change the gradient of the characteristic line. NOTE! This data is not stored in the parameter manager.
Page 20
6 Functions Performing fine adjustment • Determine the lower value (as low and constant as possible) with the reference measuring device. Example: Set furnace temperature to 20 °C. • Enter the measured value as the actual start value and the reference value as the target start value. Example: Enter 15 and 20.
6 Functions Teach functions The teach functions can be used to transfer certain commands to the sensor. Teach functions in the area of "General parameters" Teach function Description Reset to default settings All parameters under "General parameters", "Switching points", "Fine adjustment" and "Event settings" are reset to the default settings.
6 Functions Fault signaling IO-Link offers a range of fault signaling options (device status, event codes, PDValid-Flag). Furthermore, malfunctions can also be signaled within the process data via the process value itself or the status of the process value. Overview Description Signaling Process value...
Page 23
6 Functions Device status and event codes Various events can be activated or deactivated via configuration parameters. PD-Valid Flag If the device status is 4 (failure), the PDValid-Flag is set to zero (false). This means that all of the process data is invalid.
Parameter overview 7 Parameter overview Process data The data is transferred in a cycle via the IO-Link interface to the IO-Link master (PDI = Process Data Input). The entire process data can be extracted via index 40 and subindex 0. Designation Data type Value range Default...
7 Parameter overview Configuration data The configuration is stored in the parameter manager and is transferred via the IO-Link interface in an acyclic process. General Designation Index Sub in- Data type Value range Default Description cess right Data format TENUM 0 = Floating point Float- (1 byte)
Page 26
7 Parameter overview Switching output 1 and 2 Designation Index Subin- Data type Value range Default Description cess right Switching behav- TENUM 0 = Inactive Inactive RW 1 = Hysteresis func- tion N/O contact 2 = Hysteresis func- tion N/C contact 3 = Window function N/O contact 4 = Window function...
Page 27
7 Parameter overview Fine adjustment data Designation Index Sub in- Data type Value range Default Description cess right Active TENUM 0 = No (1 byte) 1 = Yes Actual start value 221 TFLOAT -999 to 999 Actual end value TFLOAT -999 to 999 Target start value 223 TFLOAT...
7 Parameter overview Service data The service data is written to the EEPROM in a cyclical process (every 10 minutes) and can be reset via the teach functions. Designation Index Sub in- Data type Value range Description cess right Operating hours 3000 TUINT32 counter...
Technical data 8 Technical data Input RTD temperature probe Pt100 (DIN EN 60751:2009 / IEC 60751:2008) in four-wire circuit or Pt1000 (DIN EN 60751:2009 / IEC 60751:2008) in four-wire circuit Measuring range -50 to +260 °C Sampling rate 160 ms Input filter Digital filter 2nd order, filter constant can be set Calibration accuracy of the...
COM3 (230.4 kBaud) fer rate) IO Device Description (IODD) The IODD can be localized and downloaded on the JUMO website in the prod- uct area for this device or at www.io-link.com with the "IODDfinder". Max. line length acc. to IO-Link...
Installation position Weight JUMO dTRANS T09 AS, type 707090 = ca. 35 g JUMO dTRANS T09 DS, type 707091 = ca. 43 g Potential equalization Functional bonding conductor FB The temperature probe must be connected to the plant's potential equalization system via the process connection.
8 Technical data Environmental influences Transmitter Ambient temperature -40 to +85 °C Storage temperature -40 to +85 °C Resistance to climatic conditions During operation ≤ 100 % relative humidity without condensation on device outer case During storage ≤ 90 % relative humidity without condensation Climate class 3K7 according to DIN EN 60721-3-3 Vibration strength...
Page 36
JUMO GmbH & Co. KG JUMO Instrument Co. Ltd. JUMO Process Control, Inc. Street address: JUMO House 6733 Myers Road Moritz-Juchheim-Straße 1 Temple Bank, Riverway East Syracuse, NY 13057, USA 36039 Fulda, Germany Harlow, Essex, CM20 2DY, UK Delivery address:...
Need help?
Do you have a question about the dTRANS T09 DS and is the answer not in the manual?
Questions and answers