IFM OMH553 - Rangefinder

OMH553 - Rangefinder IFM - Free user manual and instructions

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Download the instructions for your Rangefinder in PDF format for free! Find your manual OMH553 - IFM and take your electronic device back in hand. On this page are published all the documents necessary for the use of your device. OMH553 by IFM.

USER MANUAL OMH553 IFM

Operating instructions

Photoelectric distance sensor

OMH550

OMH552

OMH554

Contents

1 Preliminary note 4

1.1 Symbols used 4
1.2 Warnings.... 4

2 Safety instructions.... 5
3 Intended use.... 6
4 Function 7

4.1 Output function hysteresis.... 7
4.2 Output function window 7
4.3 Switching off the laser 7
4.4 Operating modes 7

4.4.1 Switching mode.... 7
4.4.2 IO-Link 7

5 Installation.... 9

5.1 Installation conditions 9
5.2 Mounting accessories 9
5.3 Installation instructions 9

5.3.1 Avoidance of soiling and ambient light 9
5.3.2 Avoidance of mutual interference 9
5.3.3 Sensor alignment for a moving object 9

6 Electrical connection.... 10

6.1 PNP/NPN selection.... 10

7 Operating and display elements 11

7.1 LED states 11
7.2 LED states of the parameters 12

8 Set-up.... 13
9 Parameter setting 14

9.1 Hysteresis function 14

9.1.1 Parameter setting of the switch point via the device buttons 14
9.1.2 Parameter setting of the switch point via IO-Link.... 14
9.1.3 Hysteresis function via IO-Link 14

9.2 Window function 15

9.2.1 Parameter setting via the device buttons.... 15
9.2.2 Parameter setting via IO-Link 15

9.3 Two-point function (Two point mode) 16

9.3.1 Parameter setting via IO-Link 16

9.4 Activating OUT2 16

9.4.1 Parameter setting via IO-Link 16

9.5 Output logic (PNP/NPN) 16

9.5.1 Parameter setting via IO-Link 16

9.6 Output function 17

9.6.1 Parameter setting via the device buttons.... 17
9.6.2 Parameter setting via IO-Link 17

9.7 Lock / unlock the device 17

9.7.1 Parameter setting via the device buttons.... 17
9.7.2 Parameter setting via IO-Link 17

9.8 Indication of current setting (Info mode) 18
9.9 Reset to factory setting 18

9.9.1 Reset via device buttons.... 18
9.9.2 Reset via IO-Link 18

9.10 Additional parameter settings via IO-Link 18

9.10.1 Switch-on delay.... 18
9.10.2 Switch-off delay.... 19
9.10.3 Filter 19
9.10.4 Transmitter configuration.... 19
9.10.5 Switching counter 19
9.10.6 Operating modes 20

10 Setting.... 21

10.1 Setting the range via IO-Link.... 21

10.1.1 Single point mode 21

10.1.1.1 Single point mode to smart sensor profile 21

10.1.1.2 Single point mode to smart sensor profile - Two value teach.... 21

10.1.1.3 Single-point mode - position 21

10.1.1.4 Background suppression.... 22

10.1.2 Window mode 22

10.1.2.1 Window Mode - Two value teach 22

10.1.3 Two point mode 23

11 Troubleshooting 24

12 Maintenance, repair and disposal 25

13 Factory setting 26

1 Preliminary note

You will find instructions, technical data, approvals and further information using the QR code on the unit / packaging or at documentation.ifm.com.

1.1 Symbols used

√ Requirement
Instructions
Reaction, result

[...] Designation of keys, buttons or indications

→ Cross-reference

IFM OMH553 - Symbols used - 1

Important note

Non-compliance may result in malfunction or interference.

IFM OMH553 - Symbols used - 2

Information

Supplementary note

1.2 Warnings

Warnings indicate the possibility of personal injury and damage to property. This enables safe product handling. Warnings are graded as follows:

IFM OMH553 - Warnings - 1

WARNING

Warning of serious personal injury

▷ If the warning is not observed, fatal and serious injuries are possible.

IFM OMH553 - Warnings - 2

CAUTION

Warning of minor to moderate personal injury

▷ If the warning is not observed, minor to moderate injuries are possible.

ATTENTION

Warning of damage to property

▷ If the warning is not observed, damage to property is possible.

2 Safety instructions

- The unit described is a subcomponent for integration into a system.

  • The system architect is responsible for the safety of the system.
  • The system architect undertakes to perform a risk assessment and to create documentation in accordance with legal and normative requirements to be provided to the operator and user of the system. This documentation must contain all necessary information and safety instructions for the operator, the user and, if applicable, for any service personnel authorised by the architect of the system.

  • Read this document before setting up the product and keep it during the entire service life.

  • The product must be suitable for the corresponding applications and environmental conditions without any restrictions.
  • Only use the product for its intended purpose ( → → Intended use).
  • If the operating instructions or the technical data are not adhered to, personal injury and/or damage to property may occur.
  • The manufacturer assumes no liability or warranty for any consequences caused by tampering with the product or incorrect use by the operator.
  • Installation, electrical connection, set-up, operation and maintenance of the product must be carried out by qualified personnel authorised by the machine operator.
  • Protect units and cables against damage.

IFM OMH553 - Safety instructions - 1

CAUTION

Exposure to radiation

▷ Use of controls or adjustments or procedures other than those specified herein may result in hazardous radiation exposure.
▶ Only use the operating and adjusting devices indicated in the operating instructions.

IFM OMH553 - Safety instructions - 2

CAUTION

Visible laser light; LASER CLASS 1.

EN/IEC 60825-1 : 2007 and EN/IEC 60825-1 : 2014

Complies with 21 CFR 1040.10 except for conformance with IEC 60825-1 Ed. 3., as described in Laser Notice No. 56, dated May 8, 2019..

Position of the product label
IFM OMH553 - Safety instructions - 3

Warning sign
IFM OMH553 - Safety instructions - 4

3 Intended use

The device is used as a photoelectric distance sensor.

The device continuously detects the distance to the object and generates output signals according to the parameter settings.

- 2 switching outputs are available. They can be set separately. Switch points can either be set or taught.

The device uses a laser diode as light source and creates a light spot. This makes it possible to detect small objects.

IFM OMH553 - Intended use - 1

The light spot should hit the object or the background. Intermediate states may lead to faulty measured values.

4 Function

4.1 Output function hysteresis

The hysteresis keeps the switching state of the output stable if the measured value varies about the sensing range. Both outputs (OUT1 and OUT2) can be set as hysteresis function.

IFM OMH553 - Output function hysteresis - 1

OUT2 can only be configured via IO-Link.

4.2 Output function window

The window function enables the monitoring of a defined acceptable range. Both outputs (OUT1 and OUT2) can be set as window function.

IFM OMH553 - Output function window - 1

OUT2 can only be configured via IO-Link.

4.3 Switching off the laser

The laser can be switched off via the input on pin 5 and via IO-Link.

Input signal on pin 5Laser
PNPNPN
Low / not usedHigh / not usedOn
HighLowOff

4.4 Operating modes

4.4.1 Switching mode

In switching mode, the sensor is directly connected to the process control unit and transmits the state via the switching output.

4.4.2 IO-Link

IO-Link is a communication system for connecting intelligent sensors and actuators to automation systems. IO-Link is standardised in the IEC 61131-9 standard.

IFM OMH553 - Output function window - 2

General information on IO-Link at io-link.ifm

IFM OMH553 - Output function window - 3

Input Output Device Description (IODD) with all parameters, process data and detailed descriptions of the device at documentation.ifm.com

IO-Link offers the following advantages:

• Interference-free transmission of all data and process values
• Parameter setting in the running process or presetting outside the application
- Parameters for identifying the connected devices in the system
• Additional parameters and diagnostic functions
• Automatic backup and restore of parameter sets in case of device replacement (data storage)

  • Logging of parameter sets, process values and events
    • Device description file (IODD - Input Output Device Description) for easy project planning
    • Standardised electrical connection
  • Remote maintenance

5 Installation

5.1 Installation conditions

▶ Install the device so that the object to be detected is within the sensor's detection zone.

Reflecting objects in the direct beam path of the sensor – also outside the detection zone – are to be avoided by the customer (tilt the sensor by 10° ). Otherwise the measured values can be ambiguous.

Detection zone → Data sheet

5.2 Mounting accessories

The device is supplied without mounting accessories.

Suitable mounting accessories can be found at www.ifm.com.

5.3 Installation instructions

5.3.1 Avoidance of soiling and ambient light

Preferably align photoelectric sensors with the front lens facing downwards or parallel to the earth's surface.

Background:

  • Photoelectric sensors are sensitive to direct radiation of light sources. Everyday light sources (lamps, sun) radiate from above.
    • Photoelectric sensors react sensitively to soiling, as it reduces the excess gain.

Dust deposits can be reduced by downwards or sideways orientation. This allows for longer cleaning intervals.

Make sure that sensors installed with their front lens facing upwards are not oriented towards roof windows or ceiling lamps.

5.3.2 Avoidance of mutual interference

Photoelectric sensors should be installed with a sufficient distance between each other. This particularly applies if the detection range of the two sensors partly intersects.

The reason for this is:

- Both sensors have a detection range. This means that the laser light spot of a sensor can be received by its neighbouring sensor. This may lead to the falsification of the measured values and result in incorrect switching.

Mutual interference can be avoided by placing the sensors slightly tilted. Align the light spots so that they impinge as far away from each other as possible.

5.3.3 Sensor alignment for a moving object

The sensor has to be installed in a way to ensure that the object is moved into the detection zone of the sensor from the side or from the front.

6 Electrical connection

IFM OMH553 - Electrical connection - 1

The device must be connected by a qualified electrician.

▶ Observe the national and international regulations for the installation of electrical equipment.
▶ Ensure voltage supply according to SELV, PELV. OMHxxx: cULus, Supply Class 2

▶ Disconnect power.
▶ Connect the device as follows:

IFM OMH553 - Electrical connection - 2

1: L+
2: OUT2: switching output
3: L-
4: OUT1: switching output or IO-Link
5: IN1: laser on / off

6.1 PNP/NPN selection

Pins 2 and 4 can be switched between PNP and NPN logic.

The setting cannot be made for individual pins, but applies to all pins.

PNPNPN

1: L+
2: OUT2: switching output
3: L-
4: OUT1: switching output or IO-Link
5: IN1: laser on / off

7 Operating and display elements

IFM OMH553 - Operating and display elements - 1

1:1x LED yellowSwitching status OUT1
2:1x LED yellowSwitching status OUT2
3:1x LED greenStatus LED
4:1x LED white[SP] = Switch point for hysteresis function
5:1x LED white[nSP] = Near switch point for window function
6:1x LED white[fSP] = Far switch point for window function
7:1x LED white[NO] = Normally open function
8:1x LED white[NC] = Normally closed function
9:Programming button [●]Set button
10:Programming button [▼]Navigation button

7.1 LED states

LED behaviourDescriptionAction
OUT 1Status LEDOUT 2
(0753)(0470)(0968)Status LED is greenDevice is connected to the voltage supply and ready for operation
(0800)(0700)(0800)Status LED is green, OUT 1 is yellowDevice OK, switching output OUT 1 active
(0814)(0550)(0977)Status LED is green, OUT 2 is yellowDevice OK, switching output OUT 2 active
(0874)(0540)(0972)Status LED flashing red (1Hz), OUT 1 flashing yellow (4 Hz)Short circuit OUT 1 Troubleshooting (→ ☐ 24)
(0422)(0470)(0743)Status LED flashing red (1Hz), OUT 2 flashing yellow (4 Hz)Short circuit OUT 2 Troubleshooting (→ ☐ 24)
(0400)(0890)(0772)Status LED flashing red (1 Hz)Error (correctable by the operator) Troubleshooting (→ ☐ 24)
(0482)(0461)(0285)Status LED is redSerious error▶ Contact ifm support. Contact at www.ifm.com
(0420)(0211)(0184)Status LED is green, OUT1 and OUT2 (8 Hz) flashing[Find me] Function

7.2 LED states of the parameters

LED behaviourDescriptionAction
SPnSP/fSPNO/NC
All LEDs are offThe device is in the Run mode.
[SP] and [NO]/[NC] are whiteDevice is in Info mode. Hysteresis function is activated. Sensor operates as normally open or normally closed.
[nSP]/[fSP] and [NO]/[NC] are whiteDevice is in Info mode. Window function is activated. Sensor operates as normally open or normally closed.

8 Set-up

IFM OMH553 - Set-up - 1

The sensor needs a warm-up period of ≥ 20 min. The performance parameters specified in the data sheet only apply after this warm-up period.

After power on, the device is put into operation. After approx. 3 s the device is ready for operation.

On delivery, the parameters are set to the factory setting ( → Factory setting ☐ 26).

The device can also be configured using suitable IO-Link parameter setting software.

9 Parameter setting

The sensor can be configured via the [●] and [▼] buttons as well as using IO-Link.

Internally, the device remains in the operating mode during parameter setting. It continues its monitoring function with the existing parameters until the change has been completed.

IFM OMH553 - Parameter setting - 1

The output logic (PNP/NPN) and the switching output [OUT2] can only be set via IO-Link. On delivery, the output logic PNP is set.

The selection of the control signal with which the laser is switched off is also made via IO-Link.

9.1 Hysteresis function

The selected switch point [SP] is the set point. The reset point is automatically set behind the selected switch point [SP] by the sensor. The nominal distance between set point and reset point is the hysteresis, which can be set via IO-Link.

9.1.1 Parameter setting of the switch point via the device buttons

▶ Press the button [●] to exit the Run mode.
▷ LED for [SP] is white.
▶ Position the object.
▶ Press and hold the [●] button for 2 seconds to teach [SP].
▷ LED for [SP] flashes twice (50 Hz).
▷ Sensor returns to the Run mode.

Single point mode ( → ☐ 21)

▶ Call up [Parameters] > [SSC1.1 / SSC1.2].
▶ Select [SSC1.1 Config. Mode / SSC1.2 Config. Mode].
▶ Set [Single point].
▶ Select [SSC1.1 Param. SP1 / SSC1.2 Param. SP1].
▶ Enter [SP1] in mm.

IFM OMH553 - Parameter setting of the switch point via IO-Link - 1

The switch point can also be taught via teach commands (system commands).

▶ Call up [Parameters] > [Teach].
▶ Select [TI Select].
▶ Select [SSC1.1] or [SSC1.2]. (Depending on which output is to be taught.)
▶ Select the corresponding system commands and carry out the teaching process by clicking on the buttons.

9.1.3 Hysteresis function via IO-Link

The hysteresis keeps the switching state of the output stable if the measured value varies about the sensing range. The selected switch point [SP] is the set point. The reset point is automatically set behind the selected switch point [SP] by the sensor. The hysteresis is the nominal distance between the set and reset points.

The hysteresis can be set via IO-Link.

▶ Call up [Parameters] > [SSC1.1 / SSC1.2].

▶ Select [SSC1.1 Config. Hyst / SSC1.2 Config. Hyst].
▶ Enter the hysteresis in mm.

9.2 Window function

It is possible to define a window for the object recognition for each of the two outputs (OUT1 / OUT2).

IFM OMH553 - Window function - 1

The switch points for the window can be set independently of each other and in any order. To teach a clearly defined window, both switch points must always be taught.

IFM OMH553 - Window function - 2

If [nSP] > [fSP] has been taught, the device will automatically invert the values. The condition nSP = fSP (in IO-Link SP1 = SP2) is not permitted. A minimum distance must be entered.

OMH550: minimum distance 2 mm

OMH552: minimum distance 7 mm

OMH554: minimum distance 10 mm

9.2.1 Parameter setting via the device buttons

▶ Press the button [●] to exit the Run mode.
▷ LED for [SP] is white.
▶ Use [▼] to navigate to [nSP] (near switch point) or [fSP] (far switch point).
▷ LED for [nSP] / [fSP] is white.
▶ Position the object.
▶ Press and hold the [●] button for 2 seconds to teach [nSP] / [fSP].
▷ LED for [nSP] / [fSP] flashes twice (50 Hz).
▷ Sensor returns to the Run mode.

Window mode ( → ☐ 22)

▶ Call up [Parameters] > [SSC1.1 / SSC1.2].
▶ Select [SSC1.1 Config. Mode / SSC1.2 Config. Mode].
▶ Set [Window].
▶ Select [SSC1.1 Param. SP1 / SSC1.2 Param. SP1].
▶ Enter [SP1] in mm.
▶ Select [SSC1.1 Param. SP2 / SSC1.2 Param. SP2].
▶ Enter [SP2] in mm.

IFM OMH553 - Parameter setting via IO-Link - 1

The window can also be taught via teach commands (system commands).

▶ Call up [Parameters] > [Teach].
▶ Select [TI Select].
▶ Select [SSC1.1] or [SSC1.2]. (Depending on which output is to be taught.)
▶ Select the corresponding system commands and carry out the teaching process by clicking on the buttons.

9.3 Two-point function (Two point mode)

It is possible to define a switching area for the object recognition for each of the two outputs (OUT1 / OUT2). There is no hysteresis.

The function can only be set via IO-Link.

IFM OMH553 - Two-point function (Two point mode) - 1

The switching points for the two-point function (Two point mode) can be set independently of each other. Both switching points always have to be set.

Two point mode ( → ☐ 23)

▶ Select [Parameter] > [SSC1.1 / SSC1.2].
▶ Select [SSC1.1 Config. Mode / SSC1.2 Config. Mode].
▶ Set [Two point].
▶ Select [SSC1.1 Param. SP1 / SSC1.2 Param. SP1].
▶ Enter [SP1] in mm.
▶ Select [SSC1.1 Param. SP2 / SSC1.2 Param. SP2].
▶ Enter [SP2] in mm.

IFM OMH553 - Parameter setting via IO-Link - 1

The switching area can also be taught via teach commands (system commands).

▶ Call up [Parameters] > [Teach].
▶ Select [TI Select].
▶ Select [SSC1.1] or [SSC1.2]. (Depending on which output is to be taught.)
▶ Select the corresponding system commands and carry out the teaching process by clicking on the buttons.

9.4 Activating OUT2

▶ Call up [Parameters] > [Output configuration].
▶ Select [ou2].
▶ Set [SSC1.2].

9.5 Output logic (PNP/NPN)

Set the switching logic for all inputs and outputs.

▶ Call up [Parameters] > [Basic settings].
▶ Select [P-n].
▶ Set [PnP] (positive switching) or [nPn] (negative switching).

9.6 Output function

9.6.1 Parameter setting via the device buttons

▶ Press the button [●] to exit the Run mode.
▷ LED for [SP] is white.
▶ Use [▼] to navigate to [NO] (normally open) or [NC] (normally closed).
▷ LED for [NO] / [NC] is white.
▶ Press and hold [●] for 2 seconds to set [NO] / [NC].
▷ LED for [NO] / [NC] flashes twice (50 Hz).
▷ Sensor returns to the Run mode.

9.6.2 Parameter setting via IO-Link

▶ Call up [Parameters] > [SSC1.1] (OUT1) / [SSC1.2] (OUT2).
▶ Select [SSC1.1 Config. Logic] (OUT1) / [SSC1.2 Config. Logic] (OUT2).
▶ Set [High active] (normally open) or [Low active] (normally closed).

9.7 Lock / unlock the device

9.7.1 Parameter setting via the device buttons

Locking:

▶ Press and hold [●] and [▼] simultaneously for 10 seconds.
▷ Green status LED flashes (1 Hz).
▷ After 10 seconds, the green status LED flashes twice (50 Hz).
▷ The sensor is locked and returns to the Run mode.

Unlocking:

▶ Press and hold [●] and [▼] simultaneously for 10 seconds.
▷ Green status LED flashes (1 Hz).
▷ After 10 seconds, the green status LED flashes twice (50 Hz).
▷ The sensor is unlocked and returns to the Run mode.

IFM OMH553 - Parameter setting via the device buttons - 1

Indication of device locking:

▶ Press [●] or [▼].

▷ Green status LED goes out for 0.5 seconds.

▷ The device changes to Run mode and the green status LED is again lit permanently.

▶ Call up [Parameters] > [Display settings].
▶ Select [Loc].
▶ Set [Loc] for locking and [uLoc] for unlocking.

IFM OMH553 - Parameter setting via IO-Link - 1

Indication of device locking:

▶ Press [●] or [▼].

▷ Green status LED goes out for 0.5 seconds.

▷ The device changes to Run mode and the green status LED is again lit permanently.

9.8 Indication of current setting (Info mode)

▶ Press [▼] to change to the Info mode.
▷ LEDs are on for 2 seconds depending on the setting at [NO] / [NC] and at [SP] or [nSP] / [fSP] to indicate whether the hysteresis or window function is set.
▷ Sensor returns to the Run mode.

9.9 Reset to factory setting

9.9.1 Reset via device buttons

▶ Disconnect the voltage supply.
▶ Press and hold [▼] and restore the voltage supply.
▶ Release [▼] press [●].
▷ Green status LED flashes twice confirming reset to factory setting.

9.9.2 Reset via IO-Link

▶ Call up [Parameters] > [Basic settings].
▶ Click on the system command [Reset application] or [Back-to-box].
▷ The device is reset according to the selected reset method.

IFM OMH553 - Indication of current setting (Info mode) - 1

The two system commands reset the device in a different way.

[Reset application]: The parameters of the technology-specific application are set to default values. The identification parameters remain unchanged. An upload to the data memory of the master is carried out, if activated in the port configuration of the master.

[Back-to-box]: The parameters of the device are set to the factory settings and communication is blocked until the next time the device is switched off and on. Note: Disconnect the device directly from the master port!

9.10 Additional parameter settings via IO-Link

9.10.1 Switch-on delay

A switch-on delay can be set for both switching outputs (0...10s).

▶ Call up [Parameters] > [SSC1.1 / SSC1.2].
▶ Select [SSC1.1 / SSC1.2 Switch-on delay].
▶ Enter a switch-on delay between 0...10s.

IFM OMH553 - Indication of current setting (Info mode) - 2

To set a switch-on delay for [SSC1.2], this output must first be activated.

9.10.2 Switch-off delay

A switch-off delay can be set for both switching outputs (0...10s).

▶ Call up [Parameters] > [SSC1.1 / SSC1.2].
▶ Select [SSC1.1 / SSC1.2 Switch-off delay].
▶ Enter a switch-off delay between 0...10s.

IFM OMH553 - Indication of current setting (Info mode) - 3

To set a switch-off delay for [SSC1.2], this output must first be activated.

9.10.3 Filter

Setting the filter property in relation to the detection speed.

4 options can be selected.

• [HIGH] (Slow detection, precision)
• [MEdi] (Standard)
• [LOW] (Average detection, filtering of individual interference pulses)
• [OFF] (Fast detection, without filtering)
▶ Call up [Parameters] > [Signal].
▶ Select [FILT].
▶ Set one of the options.

9.10.4 Transmitter configuration

Setting to activate and deactivate the transmitter.

4 options can be selected.

• [OFF / Off] (permanently off)
• [ON / On] (permanently on)
- [On_ExtActive / Switch on with external signal active] (via input IN1 at pin 5)
• [PDOut / Controlled by PDOut] (via IO-Link communication PDOut)

▶ Select [Parameter] > [Signal].

▶ Select [Transmitte configuration].

▶ Set one of the options.

IFM OMH553 - Indication of current setting (Info mode) - 4

The operating state of the device can be changed with the help of control data via IO-Link (PDOut).

In case of a communication interruption (COMLOST), the device remains in the last operating state set by valid control data (PDOut).

9.10.5 Switching counter

Counts the number of detected objects.

▶ Call up [Parameters] > [Digital Output 1 / Digital Output 2].
▶ Select [SSC1.1 counter / SSC1.2 counter].
▶ Read the counter value.

The counter can be reset via the system command [Reset counter to zero]. The command resets all counters.

▶ Call up [Parameters] > [Counter configuration].
▶ Click on the system command [Reset counter to zero].
▷ All counters (switching counters and memory Lo / Hi) are reset.

9.10.6 Operating modes

Setting the evaluation speed.

3 options can be selected:

• [Standard]
• [Power]
• [Speed]
▶ Call up [Parameters] > [Basic settings].
▶ Select [ModE].
▶ Set one of the options.

Operating modeSpeedObject colour (black)
[Standard]++++
[Power]++++
[Speed]++++

The table provides a preliminary assessment of different applications and the respective operating modes. The rating scale ranges from “+” (less suitable) to “+++” (very suitable).

10 Setting

IFM OMH553 - Setting the range via IO-Link - 1

With "Switchpoint Logic = 1", "ON" and "OFF" can be seen reversed in the graphics.

10.1.1 Single point mode

SSC active: PDV ≥ SP1

SSC inactive: PDV ≤ SP1 + H

10.1.1.1 Single point mode to smart sensor profile

IFM OMH553 - Single point mode to smart sensor profile - 1

Normally open:

(switch point logic = 0)

SP1

Switch-on point

SP1 + H

Switch-off point

10.1.1.2 Single point mode to smart sensor profile - Two value teach

IFM OMH553 - Single point mode to smart sensor profile - Two value teach - 1

Normally open:

(switch point logic = 0)

SP1 = √TP1*TP2

Switch-on point

SP1 + H

Switch-off point

10.1.1.3 Single-point mode - position

IFM OMH553 - Single-point mode - position - 1

Normally open:

(Switch point logic = 0)

SP1

Switch-on point

SP2 + H

Switch-off point

10.1.1.4 Background suppression

IFM OMH553 - Background suppression - 1

Normally open: (switch point logic = 0)

SP1 = teach - 2*H Switch-on point

SP1 + H Switch-off point

SP: Switch point

H: Hysteresis

TP: Teach point

B: Background suppression

SSC: Switching
SignalChannel

PDV: Process
DataVariable

10.1.2 Window mode

IFM OMH553 - Window mode - 1

Normally open: (switch point logic = 0)

SP1 Switch-on point

SP1 + H Switch-off point

SP2

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Product information

Brand : IFM

Model : OMH553

Category : Rangefinder