# LASER

![Product image](https://novapart.co/image/farnell:4459207/)

**URL**: https://novapart.co/products/QS30LLPCQ/laser
**SKU**: QS30LLPCQ
**Manufacturer**: BANNER ENGINEERING
**Price**: €235.2900
**Stock**: 10+
**Lead Time**: 58 days (indicative)

## Specifications

| Parameter | Value |
|---|---|
| Svhc | No SVHC (23-Jan-2024) |
| Product Range | QS30 Series |

## Datasheet

📄 [Download PDF](https://novapart.co/datasheet/farnell:4459207/)

WORLD-BEAM[®] QS30 LLP and LLPC 

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BARN NEE.<br>**----- End of picture text -----**<br>


## Datasheet 

## _Polarized Retroreflective Laser Sensors_ 

- Visible class 1 laser with small, effective beam size 

- Excellent optical performance throughout sensing range, even close up 

- • Easy push-button SET options: Maximum Excess Gain or Low-Contrast SET, depending on model, plus Manual Adjust 

- Easy-to-read operating status indicators, with 8-segment bar graph display 

- Bipolar discrete outputs, PNP and NPN 

- Selectable 30 millisecond OFF-delay 

- Models available with 2 m or 9 m (6.5 ft or 30 ft) cable or integral quickdisconnect 

- Tough ABS housing rated IP67; NEMA 6 

- Compact housing, mounting versatility – popular 30 mm threaded nose or side-mount 

Excellent for applications where high sensing power and small beam size are important. Operates over sensing ranges typically accomplished only by conventional opposed-mode photoelectrics; uses a special filter to polarize the emitted light, filtering out unwanted reflections from shiny objects. 

## **WARNING:** 

- **Do not use this device for personnel protection** 

- Using this device for personnel protection could result in serious injury or death. 

- This device does not include the self-checking redundant circuitry necessary to allow its use in personnel safety applications. A device failure or malfunction can cause either an energized (on) or deenergized (off) output condition. 

## Models 

|**Model**|**Range and Use**|**Spot Size at Focus**|**Cable**<br>1|**Supply**|**Output**<br>**Type**|
|---|---|---|---|---|---|
|**QS30LLP**|0.2 m to 18 m (0.67 ft to 60<br>ft) Maximum Excess Gain<br>SET for Long-Range<br>Applications|Approx. 4 mm at 10<br>m (0.16 in at 33 ft)|2 m (6.5 ft) 5-wire Cable|10 V DC to<br>30 V DC|Bipolar<br>NPN / PNP|
|**QS30LLPQ**|||Integral 5-pin M12 Quick<br>Disconnect Connector|||
|**QS30LLPC**|0.2 m to 18 m (0.67 ft to 60<br>ft) Low-Contrast SET for<br>Small Object Detection||2 m (6.5 ft) 5-wire Cable|||
|**QS30LLPCQ**|||Integral 5-pin M12 Quick<br>Disconnect Connector|||



## Overview 

QS30LLP and QS30LLPC Series sensors are easy-to-use, high-performance laser sensors whose many configuration options make them suitable for demanding applications. Each sensor features two identically configured outputs, one each NPN and PNP. 

The compact housing has a large, easy-to-see bar graph display plus bright LEDs for easy configuration and status monitoring during operation. The sensor can be side-mounted, using integral mounting holes, or front-mounted, via the 30 mm threaded barrel. **MODEL QS30LLP(Q)** is configured using the Maximum Excess Gain SET procedure. It is useful for long-range applications and high variations in contrast, such as beam-break applications where the target objects are larger than the beam. See Maximum Excess Gain SET - Model QS30LLP on page 4 for more information. 

**MODEL QS30LLPC(Q)** is configured using the Low-Contrast SET procedure. It is useful for small object detection and other applications with small variations in contrast, such as yarn- or thread-break applications. See Low-Contrast SET - Model QS30LLPC on page 4 for more information. 

> 1 To order the 9 m (30 ft) cable models, add the suffix “W/30” to the model number of any cabled sensor (for example, QS30LLP W/30). A model with a quick disconnect connector requires a mating cable. 

Original Document 112355 Rev. F 

11 May 2022 

112355 

WORLD-BEAM[®] QS30 LLP and LLPC 

_Figure 1. Model QS30LLP Features_ 

_Figure 2. Model QS30LLPC Features_ 

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**----- Start of picture text -----**<br>
Amber Output  Amber Output<br>Green Power ON  Conducting  Green Power ON Conducting<br>Indicator Indicator Indicator Indicator<br>Configuration  Configuration<br>Push  Push<br>Bar Graph  Buttons Bar Graph Buttons<br>Display Display<br>a, / Oy,"I Kt"|<br>a,.z qtes<br>Switching  Switching<br>Threshold 5 : eg Threshold S6c eZ<br>4 VG 5 rg<br>| v |<br>SETUP Status Indicators:  Ie1 SETUP StatusIndicators: | I@<br>    Delay      Delay<br>    Dark Operate      Dark Operate<br>    Light Operate     Light Operate<br>**----- End of picture text -----**<br>


## Description of Laser Classes 

## Class 1 Lasers 

Class 1 lasers are lasers that are safe under reasonably foreseeable conditions of operation, including the use of optical instruments for intrabeam viewing. 

Reference IEC 60825-1:2001, Section 8.2. 

## **CAUTION:** 

- **Return defective units to the manufacturer.** 

- Use of controls or adjustments or performance of procedures other than those specified herein may result in hazardous radiation exposure. 

- Do not attempt to disassemble this sensor for repair. A defective unit must be returned to the manufacturer. 

## For Safe Laser Use (Class 1 or Class 2): 

- Do not stare at the laser. 

- Do not point the laser at a person’s eye. 

- Mount open laser beam paths either above or below eye level, where practical. 

- Terminate the beam emitted by the laser product at the end of its useful path. 

## Device Setup 

## Installation Notes 

Conventional retroreflective photoelectric sensors are extremely easy to align. Beam angles are wide, and retro targets are forgiving to the light beam’s angle of incidence. The beam of this laser sensor is very narrow, compared with the beam of most retro sensors. As Figure 6 indicates, the effect of angular misalignment can be dramatic. Alignment is critical because the beam may miss the retroreflective target unless the target is large. 

_Figure 3. Beam Displacement per degree of misalignment_ 

||||**Ø = Misalignment Angle**|**Ø = Misalignment Angle**|**Ø = Misalignment Angle**|**Ø = Misalignment Angle**<br>**Y**<br>\ ee<br>ee~~l~~|**Ø = Misalignment Angle**<br>**Y**<br>\ ee<br>ee~~l~~|**Sensor-to-Target Distance (X)**<br>1.5 m (5 ft)|**Beam Displacement (Y) for 1º**<br>**of Misalignment**<br>25 mm (1 in)|
|---|---|---|---|---|---|---|---|---|---|
|||||||||3 m (10 ft)|50 mm (2 in)|
|**Y = X(tan Ø)**|**Y = X(tan Ø)**|**Y = X(tan Ø)**|**Y = X(tan Ø)**|||**Sensing Distance = X**||6 m (20 ft)|100 mm (4 in)|
|||||||||15 m (50 ft)|250 mm (10 in)|
|||||||||30 m (100 ft)|500 mm (20 in)|



For example, with one BRT-51X51BM mounted at a distance of 6 m (20 ft) from the sensor, one degree of angular misalignment will cause the center of the laser beam to miss the center of the target by 100 mm (4 in). 

P/N 112355 Rev. F 

2 

www.bannerengineering.com - Tel: + 1 888 373 6767 

WORLD-BEAM[®] QS30 LLP and LLPC 

## Alignment Tip 

When using a small retroreflective target at medium or long range, it is often useful to temporarily attach (or suspend) a strip of retroreflective tape (for example, BRT-THG-3X3) along a line that intersects the actual target. The visible red laser beam is easily seen in normal room lighting on such tape. Sight along the beam toward the target (from behind the sensor). Move the sensor to scan the laser beam back and forth across the retro tape strip. Use the tape strip to guide the beam onto the target. 

Consider using sensor mounting bracket model SMB30SC (see Brackets on page 9). This swivel bracket can simplify multipleaxis alignment. Alignment is complete when the visible image is centered on the retro target. The perpendicularity of the laser beam to the face of the retro target is forgiving, just as it is with a conventional retroreflective sensor. 

## Effective Beam Size 

Unlike conventional retroreflective sensors, the retroreflective laser has the ability to sense relatively small profiles. Figure 7 indicates the diameter of the smallest opaque rod which will reliably break the laser beam at several sensor-to-object distances using sensor model QS30LLP(Q). These minimum object sizes were measured with the sensor aligned to a BRT-51X51BM reflector and the gain set to maximum using the Max Excess Gain SET. This sensor is typically recommended for long-range applications of relatively small targets that will completely break the beam. 

_Figure 4. Minimum object detection size vs. distance from sensor, model QS30LLP(Q)_ 

|**Sensor-to-Object**<br>**Distance (X)**|**Minimum Object Detection**<br>**Size**|
|---|---|
|0.3 m (1 ft)|2.5 mm (0.10 in)|
|1.5 m (5 ft)|5.0 mm (0.20 in)|
|3 m (10 ft)|7.0 mm (0.28 in)|
|18 m (59 ft)|13 mm (0.52 in)|



Smaller objects can be detected by using model QS30LLPC(Q), adjusting the sensor gain down using the Manual Adjust, or performing a Low-Contrast SET of the reflector. Objects as small as 2.0 mm can be reliably detected after performing the Low-Contrast SET at ranges up to 6 m (18 ft). This sensor is typically recommended for shorter-range applications detecting very small targets that may break only a portion of the beam. 

Note that the shape of the beam is elliptical. The minimum object sizes listed assume passage of the rod across the major diameter of the ellipse (worst case). It may be possible to detect objects smaller than the sizes listed if the direction in which the objects pass through the beam can be controlled. 

## Retrorefector Recommendations 

BRT-51X51BM is recommended for beam-block applications up to 18 m range. 

## Wiring Diagrams 

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Cabled Models QD Models<br>brown + brown +<br>blue – 10-30 V dc blue – 10-30 V dc<br>white 150 mA maximum white 150 mA maximum<br>Load Load<br>black Load load black Load load<br>gray Remote TEACH gray Remote TEACH<br>Note: The pink wire is not used.<br>**----- End of picture text -----**<br>


## Sensor Configuration 

Configure the sensor using the SET and SETUP modes. After SET mode has defined the sensing parameters, use SETUP mode to add an OFF-delay or change the light/dark operate status. Use Manual Adjust to fine-tune the thresholds. Use the two push buttons, “+” and “-”, to access and set sensing parameters. The remote wire also may be used for some procedures. 

## Remote Configuration 

Use the Remote Configuration function to set the sensor threshold remotely or to disable the push buttons for security. Connect the gray wire of the sensor to ground (0 V dc), with a remote programming switch connected between them. Pulse the remote line according to the diagrams in the programming procedures. The length of the individual programming pulses is equal to the value T: 0.04 seconds ≤ T ≤ 0.8 seconds. 

## Push Button Disable 

In addition to its programming function, Remote Programming may be used to disable the push buttons for security. Disabling the push buttons prevents undesired tampering with the programming settings. Connect the gray wire of the sensor as described and four-pulse to enable or disable the push buttons. 

**T T T T T T T** 

P/N 112355 Rev. F 

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3 

WORLD-BEAM[®] QS30 LLP and LLPC 

Maximum Excess Gain SET - Model QS30LLP 

- Sets the sensor for maximum excess gain without allowing false proxing. Provides maximum contrast between any reflector and a blocked condition and is stable even in dirty environments. 

- Useful for long-range applications and high variations in contrast, such as beam-break applications where the target objects are larger than the beam. 

Sensor can be aimed at an object or the reflector during SET process to obtain the same result. All conditions darker than the switchpoint condition result in ON output (Dark Operate). Output ON and OFF conditions can be reversed by changing Light/Dark Operate in SETUP mode (factory setting: Dark Operate). 

|_Figure 5. Maximum Excess Gain SET (Dark Operate shown)_|_Figure 5. Maximum Excess Gain SET (Dark Operate shown)_|_Figure 5. Maximum Excess Gain SET (Dark Operate shown)_|_Figure 5. Maximum Excess Gain SET (Dark Operate shown)_|_Figure 5. Maximum Excess Gain SET (Dark Operate shown)_|
|---|---|---|---|---|
|**Location of switchpoint**|||||
|**adjusted via Manual Adjust**|||||
|**Output ON**|||**Output OFF**||
|**Darkest**<br>**Factory-set**|||**Most Light**||
|**(no signal)**<br>**Threshold**|||**(saturated**||
||||**signal)**||



## **Manual Adjust – Maximum Excess Gain SET** 

During RUN mode, adjusts switchpoint up or down via “+” or “–” push buttons. 

- Each push button “click” adjusts the switchpoint up by approximately 0.5X excess gain or down by the same increments. 

- The lighted bar graph LEDs move to reflect the increase or decrease of excess gain relative to the switchpoint. 

- LEDs #7 and 8 flash when maximum gain is achieved; LEDs #1 and 2 flash when minimum gain is achieved. 

When the received signal is at any level greater than 6X excess gain, the first “–” (minus) click to reduce excess gain reduces it to the 6X level. Subsequent “–” clicks result in decreased values as shown in Specifications on page 7 (approximately 2 clicks per LED change). To return to maximum excess gain, either press “+” repeatedly until LEDs #7 and 8 flash, or hold the “+” button for longer than 2 seconds. For example, in an application that results in 20X excess gain, pressing “–” once lowers the gain to 6X, exhibited by LED #8 ON. Pressing it twice more results in approximately 5X excess gain, exhibited by LED #7 ON. Holding the “+” button for 2 seconds results in a return to maximum gain (20X), exhibited by LEDs #7 and 8 flashing. 

## **Set the Switchpoint** 

|**Method**|**Action**|**Result**|
|---|---|---|
|**Push Button**|Press and hold "+" > 2 seconds<br>S<br>~~a~~>)|Green Power LED: OFF<br>Amber Output LED: ON<br>Bar graph: #7 & 8 flashing<br>•<br>Sensor returns to RUN mode with<br>new settings<br>•<br>Use Manual Adjust to increase or<br>decrease sensor excess gain<br>**1**<br>**3**<br>**4**<br>**5**<br>**6**<br>**7**<br>**8**<br>**2**<br>**LO**<br>**DO**<br>**+**<br>**GAIN**<br>**—**|
|**Remote Input**<br>2|Single-pulse the remote input.<br>**T**<br>.||



## Low-Contrast SET - Model QS30LLPC 

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Figure 6. Low-Contrast SET (Dark Operate shown)<br>Location of switchpoint<br>adjusted via Manual Adjust<br>35% of<br>(+)    (-)<br>Learned Signal<br>Output ON Output OFF<br>Darkest Sensor Most Light<br>(no signal) Switchpoint (saturated<br>signal)<br>Learned<br>Signal from<br>Retro Target<br>**----- End of picture text -----**<br>


- Sets a switchpoint at 35 percent below the signal from the retroreflector. 

- Useful for small object detection and other applications with small variations in contrast, such as yarn- or thread-break applications. 

- • Sensor must be aimed at the reflector during the SET process. All conditions darker than the switchpoint condition result in ON output (Dark Operate). Output ON and OFF conditions can be reversed by changing Light/Dark Operate in SETUP mode (factory setting: Dark Operate). 

2 0.04 seconds ≤ T ≤ 0.8 seconds 

P/N 112355 Rev. F 

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WORLD-BEAM[®] QS30 LLP and LLPC 

## Manual Adjust – Low-Contrast SET 

During RUN mode, adjusts switchpoint up or down via “+” or “–” push buttons. 

- Each push button “click” adjusts the switchpoint up by 5 percent of the signal from the reflector or down by the same increments. 

- The lighted bar graph LEDs move to reflect the increase or decrease in excess gain. 

- LEDs #7 and 8 flash when maximum gain is achieved; LEDs #1 and 2 flash when minimum gain is achieved. 

If the target object does not cause the output to change state, press the “–” button to decrease the gain, making the sensor more sensitive to small signal changes. 

## Set Switchpoint 

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Method Action Result<br>a. Align sensor to the reflector. Green Power LED: OFF<br>b. Press and hold "+" > 2 seconds. v Amber Output LED: ON<br>Push Button<br>ea — GAIN OK +<br>Switchpoint Accepted<br>Bar graph: #7 and 8 flash for 2 sec<br>Amber Power LED: OFF<br>Green Power LED: ON<br>Bar graph: Appropriate LED ON<br>• Sensor returns to RUN mode with new settings<br>• Use Manual Adjust to increase or decrease<br>sensor sensitivity<br>Remote Input 3 a. Align sensor to the reflector. T — GAIN +<br>b. Single-pulse remote line.<br>LI ° “aE.<br>Switchpoint Not Accepted<br>Bar graph: #1, 4, 5, and 8 flash for 2 sec<br>Green Power LED: ON<br>• Sensor returns to RUN mode without saving<br>(maintains previous settings)<br>S em Oe — GAIN +<br>° a> |<br>1 2 3 4 5 6 7 8<br>LO DO<br>1 2 3 4 5 6 7 8<br>LO DO<br>1 2 3 4 5 6 7 8<br>LO DO<br>**----- End of picture text -----**<br>


## SETUP Mode 

SETUP mode is accomplished via the sensor’s two push buttons. It is used to change sensor output response for: 

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Figure 7. SETUP Mode<br>used to change sensor output response for:<br>• Light or Dark Operate ft 4 WT,<br>• 30-millisecond pulse stretcher (OFF-delay), if required. 3<br>SETUP | it)<br>The status LEDs, active only during SETUP mode, indicate the output status |_| 2 DO<br>response configuration when the sensor will be in RUN mode. indicators |_| 1 LO<br>**----- End of picture text -----**<br>


3 0.04 seconds ≤ T ≤ 0.8 seconds 

P/N 112355 Rev. F 

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WORLD-BEAM[®] QS30 LLP and LLPC 

1. Access SETUP Mode. **Method Action Result** ~~PO~~ Green Power LED turns OFF **Push Button** 4 Press and hold both push buttons > 2 vv See eee **— GAIN +** seconds ~~=~~ - 2. Select SETUP Options. **Method Action Result** ~~Seae~~ DO, No Delay DO 30 ms Delay **— —** ~~a:~~ **Push Button** Click either push button to toggle through ~~a~~ n>) or the four possible setting combinations. LO, 30 ms Delay LO, No Delay **— —** ~~a~~ k» ~~REE~~ S @ a 3. Return to RUN Mode. **Method Action Result** ~~a~~ Green Power LED turns ON **Push Button** Press and hold both push buttons > 2seconds. , a seeeeeee **— GAIN +** ~~a S >~~ 

4 0.04 seconds ≤ T ≤ 0.8 seconds 

P/N 112355 Rev. F 

6 

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WORLD-BEAM[®] QS30 LLP and LLPC 

## Specifications 

**Supply Voltage and Current Adjustments** 10 V DC to 30 V DC (10% maximum ripple at 10% duty cycle) at 35 mA 2 push buttons and remote wire maximum current, exclusive of load Easy push-button configuration **Sensing Beam** Manually adjust (+/-) thresholds (push buttons only) Visible red LED, 650 nm LO/DO and OFF-delay configuration options **Laser Classification** Push-buttons lockout (from remote wire only) Class 1 Factory Defaults: No Delay **Beam Size at Aperture** Dark Operate Approximately 3 mm Push buttons enabled 

## **Supply Protection Circuitry** 

Protected against reverse polarity, overvoltage, and transient voltages 

## **Delay at Power-Up** 

1 second maximum; outputs do not conduct during this time 

## **Output Configuration** 

Solid-state bipolar (SPDT): 1 current sourcing (PNP) and 1 current sinking (NPN) 

## **Output Rating** 

150 mA maximum load Off-state leakage current: < 10 µA at 30 V DC ON-state saturation voltage: 

NPN: less than 1.0 V at 150 mA load PNP: less than 2.0 V at 150 mA load 

## **Output Protection Circuitry** 

Protected against output short-circuit, continuous overload, transient overvoltages, and false pulse on power-up 

## **Output Response** 

500 microseconds 

## **Repeatability** 

## **Indicators** 

Green LED: Power ON Amber LED: Output conducting 8-Segment Red Bar Graph 

## **SETUP mode:** 

|LED 3 (clock): Flashes Red when delay is selected<br>LED 2 (DO): Flashes Red when Dark Operate is selected<br>LED 1 (LO): Flashes Red when Light Operate is selected<br>**RUN mode:**Signal Strength(excessgain), relative to switchpoint|LED 3 (clock): Flashes Red when delay is selected<br>LED 2 (DO): Flashes Red when Dark Operate is selected<br>LED 1 (LO): Flashes Red when Light Operate is selected<br>**RUN mode:**Signal Strength(excessgain), relative to switchpoint|
|---|---|
|**Model QS30LLP**|**Model QS30LLPC**|
|LED 8: >6X|LED 8: >2X|
|LED 7: 5-6X|LED 7: 1.5-2X|
|LED 6: 4-5X|LED 6: 1-1.5X|
|LED 5: 3-4X|LED 5: 0.8X|
|LED 4: 2-3X|LED 4: 0.6X|
|LED 3: 1-2X|LED 3: 0.4X|
|LED 2: 0.5-1X|LED 2: 0.2X|
|LED 1: 0-0.5X|LED 1: 0X|



70 microseconds 

## **Required Overcurrent Protection** 

**WARNING:** Electrical connections must be made by qualified personnel in accordance with local and national electrical codes and regulations. 

**Sensor calibration failure:** Alternating even-numbered and odd-numbered LEDs flash 

## **Construction** 

ABS housing, acrylic lens cover 

## **Environmental Rating** 

IP67; NEMA 6 

Overcurrent protection is required to be provided by end product application per the supplied table. 

Overcurrent protection may be provided with external fusing or via Current Limiting, Class 2 Power Supply. 

Supply wiring leads < 24 AWG shall not be spliced. 

For additional product support, go to www.bannerengineering.com. 

|**Supply Wiring (AWG)**|**Required Overcurrent Protection (Amps)**|
|---|---|
|20|5.0|
|22|3.0|
|24|2.0|
|26|1.0|
|28|0.8|
|30|0.5|



## **Connections** 

5-conductor 2 m (6.5 ft) PVC cable, 9 m (30 ft) PVC cable, or 5-pin integral M12 male quick-disconnect fitting 

## **Operating Conditions** 

–10 °C to +50 °C (+14 °F to +122 °F) 

95% at +50 °C maximum relative humidity (non-condensing) 

## **Vibration and Mechanical Shock** 

All models meet MIL-STD-202F, Method 201A (Vibration: 10 Hz to 60 Hz maximum, 0.06 inch (1.52 mm) double amplitude, 10G maximum acceleration) requirements. Also meets IEC 60947-5-2 (Shock: 30G 11 ms duration, half sine wave) requirements. 

## **Certifications** 

**==> picture [31 x 84] intentionally omitted <==**

**Banner Engineering Europe** Park Lane, Culliganlaan 2F bus 3, 1831 Diegem, BELGIUM 

**Turck Banner LTD** Blenheim House, Blenheim Court, Wickford, Essex SS11 8YT, Great Britain 

P/N 112355 Rev. F 

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7 

WORLD-BEAM[®] QS30 LLP and LLPC 

## Dimensions 

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Cabled Models<br>QD Models<br>35.0 mm<br>(1.38")<br>1.3 mm<br>32.5 mm 22.0 mm 12.5 mm (0.05")<br>(1.28") (0.87") 3.5 mm (0.49")<br>(0.14")<br>8<br>7<br>6 44.0 mm<br>5.0 mm 54 33.0 mm(1.30") (1.73")<br>(0.20") 32<br>1<br>M30 x 1.5 Thread 13.0 mm<br>max. torque  (0.51")<br>6 Nm (53 in lbs)<br>with included 30 mm<br>2 x ø3.3 mm (0.125")<br>mounting nut<br>max. torque<br>0.7 Nm (6 in lbs)<br>**----- End of picture text -----**<br>


Hardware Included: (2) M3 × 0.5 × 28 stainless steel machine screws, nuts, and washers 

## Excess Gain 

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With Supplied Target BRT-51X51BM<br>1000<br>with BRT-51X51BM<br>E<br>X<br>C<br>E 100<br>S<br>S<br>G 10<br>A<br>I<br>N<br>1<br>0.1 m 1.0 m 10 m 100 m<br>0.33' 3.3' 33' 330'<br>DISTANCE<br>**----- End of picture text -----**<br>


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With Target BRT-2X2 (Optional)<br>1000<br>E with BRT-2X2<br>X<br>C<br>E 100<br>S<br>S<br>G 10<br>A<br>I<br>N<br>1<br>0.1 m 1.0 m 10 m 100 m<br>0.33 ft 3.3 ft 33 ft 330 ft<br>DISTANCE<br>**----- End of picture text -----**<br>


## Accessories 

## Quick-Disconnect Cables 

|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|||
|---|---|---|---|---|---|
|**Model**|**Length**|**Style**|**Dimensions**||**Pinout (Female)**|
|**MQDC1-501.5**|0.5 m (1.5 ft)|Straight|**44 Typ.**<br>**M12**|**ø 14.5**<br>**x 1**|**2**<br>**3**<br>**4**<br>**1**<br>**5**<br>1 = Brown<br>2 = White<br>3 = Blue<br>4 = Black<br>5 = Gray|
|**MQDC1-503**|0.9 m (2.9 ft)|||||
|**MQDC1-506**|2 m (6.5 ft)|||||
|**MQDC1-515**|5 m (16.4 ft)|||||
|**MQDC1-530**|9 m (29.5 ft)|||||
|**MQDC1-560**|18 m (59 ft)|||||



P/N 112355 Rev. F 

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WORLD-BEAM[®] QS30 LLP and LLPC 

|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|**5-Pin Threaded M12 Cordsets—Single Ended**|
|---|---|---|---|---|
|**Model**|**Length**|**Style**|**Style**<br>**Dimensions**|**Pinout (Female)**|
|**MQDC1-506RA**|2 m (6.5 ft)|Right-Angle|Right-Angle<br>**32 Typ.**<br>**[1.26"]**<br>**30 Typ.**<br>**[1.18"]**<br>**ø 14.5 [0.57"]**<br>**M12 x 1**<br>y~~e~~||
|**MQDC1-515RA**|5 m (16.4 ft)||||
|**MQDC1-530RA**<br>P~~|~~|9 m (29.5 ft)<br>~~|~~||||
|**MQDC1-560RA**<br>P~~|~~|19 m (62.3 ft)<br>~~|~~||||



## Retroreflective Targets 

**Note:** Polarized sensors require corner cube type retroreflective targets only. 

- **BRT-2X2 BRT-51X51BM** • Square, acrylic target • Square, acrylic target • Reflectivity factor: 1.0 • Reflectivity Factor: 1.5 • Max. temperature: +50 °C (+122 ºF) • Temperature: –20 °C to +50 °C (–4 °F to • Optional brackets are available +122 °F) • Approximate size: 51 mm × 51 mm • Micro-prism geometry • Optional brackets are available • Approximate size: 51 mm × 51 mm 

## Brackets 

All measurements are listed in millimeters, unless noted otherwise. 

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SMB30SC 67 SMBQS30L<br>• Swivel bracket with 30 mm • Right-angle bracket for cable<br>mounting hole for sensor B sensor models<br>• Black reinforced thermoplastic ‘ • Clearance for M4 (#8) hardware<br>polyester 58 • ± 12° tilt adjustment<br>• Stainless steel mounting and • 14-ga. stainless steel<br>swivel locking hardware included<br>QU</ 29 A<br>Hole center spacing:  A=ø 50.8 Hole center spacing:  A to B=35.0<br>Hole size:  A=ø 7.0, B=ø 30.0 Hole size:  A=ø 4.3, B=ø 4.25x16.3<br>SMBQS30LT SMBQS30Y<br>• Tall right-angle bracket for QD • Heavy-duty die-cast bracket<br>models • M18 vertical mount option<br>• ± 8° tilt adjustment wna • ± 8° tilt adjustment with cabled<br>• 14-ga. stainless steel units<br>• Includes nuts and lock washer<br>Hole center spacing:  A to B=35.0 Hole size:  A=ø 15.3<br>Hole size:  A=ø 4.3, B=ø 4.25x16.3<br>**----- End of picture text -----**<br>


P/N 112355 Rev. F 

www.bannerengineering.com - Tel: + 1 888 373 6767 

9 

WORLD-BEAM[®] QS30 LLP and LLPC 

## **SMB30MM** 

- 12-ga. stainless steel bracket with curved mounting slots for versatile orientation 

- Clearance for M6 (¼ in) hardware 

- Mounting hole for 30 mm sensor 

**==> picture [70 x 53] intentionally omitted <==**

**----- Start of picture text -----**<br>
70 57<br>C<br>57<br>B<br>A<br>**----- End of picture text -----**<br>


## **SMB30A** 

- 45 

- • Right-angle bracket with curved slot for versatile orientation C 

- • Clearance for M6 (¼ in) 61 hardware 

- • Mounting hole for 30 mm sensor B • 12-ga. stainless steel A 69 

**Hole center spacing:** A = 51, A to B = 25.4 **Hole size:** A = 42.6 x 7, B = ø 6.4, C = ø 30.1 

**Hole center spacing:** A to B=40 

**Hole size:** A=ø 6.3, B= 27.1 x 6.3, C=ø 30.5 

## Banner Engineering Corp. Limited Warranty 

Banner Engineering Corp. warrants its products to be free from defects in material and workmanship for one year following the date of shipment. Banner Engineering Corp. will repair or replace, free of charge, any product of its manufacture which, at the time it is returned to the factory, is found to have been defective during the warranty period. This warranty does not cover damage or liability for misuse, abuse, or the improper application or installation of the Banner product. 

**THIS LIMITED WARRANTY IS EXCLUSIVE AND IN LIEU OF ALL OTHER WARRANTIES WHETHER EXPRESS OR IMPLIED (INCLUDING, WITHOUT LIMITATION, ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE), AND WHETHER ARISING UNDER COURSE OF PERFORMANCE, COURSE OF DEALING OR TRADE USAGE.** 

This Warranty is exclusive and limited to repair or, at the discretion of Banner Engineering Corp., replacement. **IN NO EVENT SHALL BANNER ENGINEERING CORP. BE LIABLE TO BUYER OR ANY OTHER PERSON OR ENTITY FOR ANY EXTRA COSTS, EXPENSES, LOSSES, LOSS OF PROFITS, OR ANY INCIDENTAL, CONSEQUENTIAL OR SPECIAL DAMAGES RESULTING FROM ANY PRODUCT DEFECT OR FROM THE USE OR INABILITY TO USE THE PRODUCT, WHETHER ARISING IN CONTRACT OR WARRANTY, STATUTE, TORT, STRICT LIABILITY, NEGLIGENCE, OR OTHERWISE.** 

Banner Engineering Corp. reserves the right to change, modify or improve the design of the product without assuming any obligations or liabilities relating to any product previously manufactured by Banner Engineering Corp. Any misuse, abuse, or improper application or installation of this product or use of the product for personal protection applications when the product is identified as not intended for such purposes will void the product warranty. Any modifications to this product without prior express approval by Banner Engineering Corp will void the product warranties. All specifications published in this document are subject to change; Banner reserves the right to modify product specifications or update documentation at any time. Specifications and product information in English supersede that which is provided in any other language. For the most recent version of any documentation, refer to: www.bannerengineering.com. 

For patent information, see www.bannerengineering.com/patents. 

© Banner Engineering Corp. All rights reserved 



## Links

- [View this product on Novapart](https://novapart.co/products/QS30LLPCQ/laser)
- [Request a quote for this part](https://novapart.co/quote/)
- [Supplier page](https://es.farnell.com/banner-engineering/qs30llpcq/laser/dp/4459207)
---

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