EE-SX91. Meeting Customer Needs with Compact Sensors that Mount with M3 Screws

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Compact Pre-wired Photomicrosensor with Built-in Amplifier (Non-modulated) CSM DS_E_7_1 Meeting Customer Needs with Compact Sensors that Mount with M Screws Both light-on and dark-on outputs provided. A compact size and choice of five models for a wide range of applications. Compact NPN and PNP output models. Safer operation with built-in power supply reverse polarity protection. Output overcurrent protection with a thermal shutdown circuit (patent pending). * Mount using M or M2 screws. Indicator is visible in many directions for installation in any location. Flexible robot cables are standard on all models. * Output overcurrent protection is provided only on output 2 (OUT2) on NPN models. Features A Compact Size and Choice of Five Models for a Wide Range of Applications Select any of five models to minimize the space required. Be sure to read Safety Precautions on page. Flexible Robot Cables: Standard on All Models Robot Cables are effective for moving parts, and are provided as standard equipment with all models. Both and Outputs Both light-on and dark-on outputs are provided on all models, allowing outputs to be switched by simply changing the wiring according to the application. Compact NPN and PNP Output Models Both NPN and PNP output models are available for use according to system requirements. Safer Operation with Built-in Power Supply Reverse Polarity Protection The built-in power supply reverse polarity protection protects against reverse connection of the power supply or outputs for safer operation at the assembly site. NPN Light indicator (orange) Main circuit Vcc 1 OUT1 2 (Control output) OUT2 to (Control output) 24 VDC GND (0 V) Indicator Visible from Many Directions for Installation in Any Location The light indicator can be checked from up to four directions. Mount Using M or M2 Screws The can be mounted using M or M2 screws, so it can easily replace an existing compact sensor mounted with M2 screws. Reverse polarity protection 1

Ordering Information List of Models Models with Robot Cables Infrared light Appearance Standard Sensing method Sensing distance Output configuration Indicator mode Connecting method (Cable length) NPN output Model PNP output 0-R 1M * 0P-R 1M * L-shaped 1-R 1M * 1P-R 1M * F-shaped Throughbeam type (with slot) mm (slot width) (2 outputs) Lit when light is incident Pre-wired models (1 m) 2-R 1M * 2P-R 1M * R-shaped -R 1M * P-R 1M * U-shaped 4-R 1M * 4P-R 1M * * Prewired models with a -m cable are also available. When ordering, specify the cable length by adding M for the end of the model number (e.g., 0-R M). 2

Ratings and Specifications NPN models Type Standard L-shaped F-shaped R-shaped U-shaped Pre-wired models 0-R 1-R 2-R -R 4-R PNP Item models Pre-wired models 0P-R 1P-R 2P-R P-R 4P-R Sensing distance mm (slot width) Sensing object Opaque: mm min. Differential distance 0.02 mm max. *1 Light source GaAs infrared LED with a peak wavelength of 940 nm Indicator Light indicator (orange LED) Supply voltage to 24 VDC ±10%, ripple (p-p): 10% max. Current consumption 21 ma max. power supply voltage: to 24 VDC current: 0 ma max. Control output OFF current: 0. ma max. 0 ma load current with a residual voltage of 1.0 V max. ma load current with a residual voltage of 0.4 V max. Protection circuits Power supply reverse polarity protection; output reverse polarity protection (only OUT2 on models with NPN output) Response frequency 1 khz min. ( khz average) *2 Ambient illumination 1,000 lx max. with fluorescent light on the surface of the receiver Ambient temperature range Operating: 2 to C Storage: 0 to 80 C (with no icing or condensation) Ambient humidity range Operating: % to 8% Storage: % to 9% (with no icing or condensation) Vibration resistance (Destruction) 10 to 2,000 Hz (peak acceleration: 10m/s 2 ) 0.7-mm single amplitude for 2. h (1-min periods, 10 cycles) each in X, Y, and Z directions Shock resistance (Destruction) 00 m/s 2 for times each in X, Y, and Z directions Degree of protection IEC029 IP0 Connecting method Pre-wired Models (standard cable length: 1 m) Weight (packed state) Pre-wired Models Approx. 17 g Materials Case/cover Polybutylene phthalate (PBT) Emitter/receiver Polycarbonate (PC) *1. The differential distance is the value when a sensing object is moved in a lateral direction to the slot. *2. The response frequency was measured by detecting the following rotating disk. Disk 2.1 mm 1 mm t = 0.2 mm 1 mm

Engineering Data (Typical) Sensing Position Characteristics 0 0 1 d Insertion direction Insertion direction d Insertion direction d 0 1 2 4 0 1 2 4 0 1 2 4 Distance d (mm) Distance d (mm) Distance d (mm) Repeated Sensing Position Characteristics 0 d=±0.002 d.14.1.18.2 Distance d (mm) Vcc = 24 V, No. of repetitions: 20, Ta = 2 C (Differential distance = 0.02 mm max.) Note: The data applies to dark status. Operation may be affected by external light interference or light coming through the sensing object. 4

I/O Circuit Diagrams Output type Model Output transistor operation status Timing charts Output circuit NPN output PNP output 0-R 1-R 2-R -R 4-R 0P-R 1P-R 2P-R P-R 4P-R OUT1: OUT2: Light incident Light interrupted Light indicator ON (orange) OFF Output 1 transistor ON OFF 1 Operates (e.g., relay) Releases Output 2 transistor ON OFF 2 Operates (e.g., relay) Releases Light indicator (orange) Main circuit Light indicator (orange) Main circuit Vcc 1 OUT1 2 (Control output) OUT2 to (Control output) 24 VDC GND (0 V) Vcc OUT1 (Control output) OUT2 (Control 1 output) 2 GND (0 V) to 24 VDC

Safety Precautions Refer to Warranty and Limitations of Liability. WARNING This product is not designed or rated for ensuring safety of persons either directly or indirectly. Do not use it for such purposes. Precautions for Safe Use Power Supply Voltage Do not exceed the voltage range Brown indicated in the specifications. Sensor Applying a voltage exceeding the specifications or using an AC Blue Black White power supply may result in rupture or burning. Faulty Wiring Do not reverse the power supply polarity. Doing so may result in rupture or burning. Do not short-circuit the load. (Do not connect to the power supply.) Doing so may result in rupture or burning. Dispose of this product as industrial waste. Brown Sensor Blue Brown Black White Sensor Blue + ( short-circuit) Black White + Precautions for Correct Use Installation It is assumed that Sensors will be built into a device. These Sensors use non-modulated light and are not equipped to deal with interference from an external light source. When they are used in locations subject to external light interference, such as near a window or under an incandescent light, install them to minimize the effects of external light interference. Mount the Sensors securely on a flat surface. Use M or M2.0 screws to secure the Photomicrosensor. (The stronger M screws are recommended. In addition, use flat washers and spring washers to prevent the screws from loosening.) Refer to the following table for the correct tightening torque. Screw diameter Tightening torque M2.0 0.1 N m max. M 0.4 N m max. If the Sensor is to be used on a moving part, secure the cable connection point so that it is not directly subjected to stress. Wiring Unused Output Lines Be sure to isolate output lines that are not going to be used. Connecting to Devices with Voltage Input Specifications A Sensor with an open-collector output can be connected to a counter with a voltage input by connecting a resistor between the power source and output. Select a resistor with reference to the following example. The resistance of the resistor is generally 4.7 kω and its wattage is 1/2 W for a supply voltage of 24 V and 1/4 W for 12 V. series SW main circuit Example: Series Resistance of 4.7 kω Connected in a Counter Counter Specifications Tr Input impedance Voltage judged as high level (input ON) Voltage judged as low level (input OFF) Insert a resistor Counter (Voltage input type) +Vcc 24 V Power supply R Input terminal (CP) Output Z (Input impedance: approx.. kω) 0 V 0 V. KΩ 4. to 0 VDC 0 to 2 VDC The high and low levels are found using the following formulas. The input device specifications must satisfy both formulas. High level: Z. k Input voltage VH = Vcc = 24 V = 1 V R+Z 4.7 k+. k Low level: Vcc 24 V current Ic = = =.1 ma 0 ma R R Input voltage VL 1.0 V (Residual voltage for 0-mA load current) Note: Refer to the ratings of the Sensor for the residual voltage of the load current.

Other Precautions Do not disconnect wire the cables from the Sensor when power is supplied to the Sensor, or Sensor damage could result. Do not install the Sensor in the following places to prevent malfunction or trouble: 1. Places exposed to dust or oil mist 2. Places exposed to corrosive gas. Places directly or indirectly exposed to water, oil, or chemicals 4. Outdoor or places exposed to intensive light, such as direct sunlight Be sure to use the Sensor under the rated ambient temperature. The Sensor may be dissolved by exposure to organic solvents, acids, alkali, or aromatic hydrocarbons, aliphatic chloride hydrocarbons causing deterioration in characteristics. Do not expose the Sensor to such chemicals. Make sure the total length of the power cable connected to the product is less than 10 m. Only output 2 (OUT2) on NPN models is provided with overcurrent protection. If an overcurrent occurs, heat generated by the output transistor will activate the thermal shutdown circuit and OUT2 will turn OFF. Check the wiring and load current and cycle the power supply. If there is no overcurrent, normal operation will be resumed. (The thermal shutdown circuit will be activated again if there is an overcurrent.) This function does not provide protection against load short circuits. If the electric power of the output transistor increases due to a load short-circuit or near load short-circuit, the Sensor may be damaged. An output pulse may occur when the power supply is turned ON depending on the power supply and other conditions. The operation of the Sensor will be stable 100 ms after turning ON the power supply. 7

Dimensions (Unit: mm) Tolerance class IT1 applies to dimensions in this datasheet unless otherwise specified. Photomicrosensors 0-R 0P-R 24 1-R 1P-R 1.7 12 2. 12 8 2.7 Two,.2 dia. 18.7 1.4.7 0-R 4. dia.. 8..8 Sensing window (0.1 mm 2 with -mm dia. insulator); (Four, R1.).9. 12 2 1..2 8 1.4.7 (0.1 mm 2 with -mm dia. insulator); 10 1-R 4 Sensing window 2-R 2P-R -R P-R Sensing window 11.7 1..2 (R1.) 12 8.2 2. 2 dia. 1.9 1. * 4.7 1.4. 8..7 4. dia. 8.. 4. dia..7 1.4 4.7 * 1. 2 dia. 8 12 Sensing window.2 2. (R1.).2 11.7 1. 1.9 (0.1 mm 2 with -mm dia. insulator); 2-R -R (0.1 mm 2 with -mm dia.insulator); * The lug is used to prevent turning. When installing, make a fixed hole of 2.1 to 2. mm dia. * The lug is used to prevent turning. When installing, make a fixed hole of 2.1 to 2. mm dia. 4-R 4P-R 1. 1.4 Sensing window.7 8. 8. 11. 8 Two,.2 dia. 4-R (0.1 mm 2 with -mm dia. insulator); 8

Read and Understand This Catalog Please read and understand this catalog before purchasing the products. Please consult your OMRON representative if you have any questions or comments. Warranty and Limitations of Liability WARRANTY OMRON's exclusive warranty is that the products are free from defects in materials and workmanship for a period of one year (or other period if specified) from date of sale by OMRON. OMRON MAKES NO WARRANTY OR REPRESENTATION, EXPRESS OR IMPLIED, REGARDING NON-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR PARTICULAR PURPOSE OF THE PRODUCTS. ANY BUYER OR USER ACKNOWLEDGES THAT THE BUYER OR USER ALONE HAS DETERMINED THAT THE PRODUCTS WILL SUITABLY MEET THE REQUIREMENTS OF THEIR INTENDED USE. OMRON DISCLAIMS ALL OTHER WARRANTIES, EXPRESS OR IMPLIED. LIMITATIONS OF LIABILITY OMRON SHALL NOT BE RESPONSIBLE FOR SPECIAL, INDIRECT, OR CONSEQUENTIAL DAMAGES, LOSS OF PROFITS OR COMMERCIAL LOSS IN ANY WAY CONNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED ON CONTRACT, WARRANTY, NEGLIGENCE, OR STRICT LIABILITY. In no event shall the responsibility of OMRON for any act exceed the individual price of the product on which liability is asserted. IN NO EVENT SHALL OMRON BE RESPONSIBLE FOR WARRANTY, REPAIR, OR OTHER CLAIMS REGARDING THE PRODUCTS UNLESS OMRON'S ANALYSIS CONFIRMS THAT THE PRODUCTS WERE PROPERLY HANDLED, STORED, INSTALLED, AND MAINTAINED AND NOT SUBJECT TO CONTAMINATION, ABUSE, MISUSE, OR INAPPROPRIATE MODIFICATION OR REPAIR. Application Considerations SUITABILITY FOR USE OMRON shall not be responsible for conformity with any standards, codes, or regulations that apply to the combination of products in the customer's application or use of the products. At the customer's request, OMRON will provide applicable third party certification documents identifying ratings and limitations of use that apply to the products. This information by itself is not sufficient for a complete determination of the suitability of the products in combination with the end product, machine, system, or other application or use. The following are some examples of applications for which particular attention must be given. This is not intended to be an exhaustive list of all possible uses of the products, nor is it intended to imply that the uses listed may be suitable for the products: Outdoor use, uses involving potential chemical contamination or electrical interference, or conditions or uses not described in this catalog. Nuclear energy control systems, combustion systems, railroad systems, aviation systems, medical equipment, amusement machines, vehicles, safety equipment, and installations subject to separate industry or government regulations. Systems, machines, and equipment that could present a risk to life or property. Please know and observe all prohibitions of use applicable to the products. NEVER USE THE PRODUCTS FOR AN APPLICATION INVOLVING SERIOUS RISK TO LIFE OR PROPERTY WITHOUT ENSURING THAT THE SYSTEM AS A WHOLE HAS BEEN DESIGNED TO ADDRESS THE RISKS, AND THAT THE OMRON PRODUCTS ARE PROPERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM. PROGRAMMABLE PRODUCTS OMRON shall not be responsible for the user's programming of a programmable product, or any consequence thereof. Disclaimers CHANGE IN SPECIFICATIONS Product specifications and accessories may be changed at any time based on improvements and other reasons. It is our practice to change model numbers when published ratings or features are changed, or when significant construction changes are made. However, some specifications of the products may be changed without any notice. When in doubt, special model numbers may be assigned to fix or establish key specifications for your application on your request. Please consult with your OMRON representative at any time to confirm actual specifications of purchased products. DIMENSIONS AND WEIGHTS Dimensions and weights are nominal and are not to be used for manufacturing purposes, even when tolerances are shown. PERFORMANCE DATA Performance data given in this catalog is provided as a guide for the user in determining suitability and does not constitute a warranty. It may represent the result of OMRON s test conditions, and the users must correlate it to actual application requirements. Actual performance is subject to the OMRON Warranty and Limitations of Liability. ERRORS AND OMISSIONS The information in this document has been carefully checked and is believed to be accurate; however, no responsibility is assumed for clerical, typographical, or proofreading errors, or omissions. OMRON Corporation Industrial Automation Company http://www.ia.omron.com/ 2011.7 In the interest of product improvement, specifications are subject to change without notice. (c)copyright OMRON Corporation 2011 All Right Reserved.