E2E2. Proximity Sensor with a Long Screw Length. Long-barrel Inductive Proximity Sensor. Ordering Information. Sensors DC 2-Wire Models

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Long-barrel Inductive Proximity Sensor EE CSM_EE_DS_E Proximity Sensor with a Long Screw Length Increased tightening strength. Cable protectors provided as a standard feature. Increased indicator visibility. A milled section for wrench grip on all models. Be sure to read Safety Precautions on page 9. Ordering Information Sensors DC -Wire Models Model Appearance Sensing distance Operation mode NO NC M1 3 mm EE-3D1 M * EE-3D M M1 7 mm EE-7D1 M * EE-7D M M3 mm EE-D1 M * EE-D M M1 mm EE-MD1 M * EE-MD M M1 1 mm EE-1MD1 M * EE-1MD M M3 mm EE-MD1 M * EE-MD M * Models with different frequencies are also available. The model numbers are EE-@D1 (example: EE-3D1). DC 3-Wire Models Appearance Sensing distance Model Operation mode NO NC M1 mm EE-C1 M EE-C M M1 mm EE-C1 M EE-C M M3 mm EE-C1 M EE-C M M1 mm EE-MC1 M EE-MC M M1 mm EE-MC1 M EE-MC M M3 1 mm EE-1MC1 M EE-1MC M AC -Wire Models Appearance Sensing distance Model Operation mode NO NC M1 mm EE-Y1 M EE-Y M M1 mm EE-Y1 M EE-Y M M3 mm EE-Y1 M EE-Y M M1 mm EE-MY1 M EE-MY M M1 mm EE-MY1 M EE-MY M M3 1 mm EE-1MY1 M EE-1MY M 1

EE Accessories (Order Separately) Mounting Brackets Protective Covers Sputter Protective Covers Ratings and Specifications EE-@D@ DC -Wire Models Size M1 M1 M3 Shielding Item Model EE-3D@ EE-MD@ EE-7D@ EE-1MD@ EE-D@ EE-MD@ Sensing distance 3 mm±% mm±% 7 mm±% 1 mm±% mm±% mm±% Set distance *1 to. mm to. mm to. mm to 11. mm to mm to 1 mm Differential travel Standard sensing object % max. of sensing distance Ferrous metal (The sensing distance decreases with non-ferrous metal. Refer to Engineering Data on page.) 1 1 1 mm 3 3 1 mm 1 1 1 mm 3 3 1 mm 3 3 1 mm Response frequency * 1 khz Hz Hz Hz Hz Power supply voltage (operating voltage range) Leakage current Control output Indicators Switching capacity 1 to VDC ( to 3 VDC), ripple (p-p): % max.. ma max. 3 to ma Residual voltage 3 V max. (Load current: ma, Cable length: m) Ambient temperature Ambient humidity D1 Models: Operation indicator (red) and setting indicator (green) D Models: Operation indicator (red) D1 Models: NO D Models: NC Surge absorber, Load short-circuit protection Operating/Storage: to 7 C (with no icing or condensation) Operating/Storage: 3% to 9% (with no condensation) Temperature influence ±% max. of sensing distance at 3 C in the temperature range of to 7 C Voltage influence Insulation resistance Dielectric strength Vibration resistance (destruction) Shock resistance (destruction) Degree of protection ±1% max. of sensing distance at rated voltage in the rated voltage ±1% range MΩ min. (at VDC) between current-carrying parts and case VAC, / Hz for 1 minute between current-carrying parts and case to Hz, 1.-mm double amplitude for hours each in, Y, and Z directions 1, m/s times each in, Y, and Z directions IEC IP7, in-house standard for oil resistance Connection method Pre-wired Models (Standard cable length: m) Weight (packed state) Approx. g Approx. 1 g Approx. g Case Operation mode (with sensing object approaching) Protection circuits Materials Accessories Sensing surface Clamping nuts PBT Nickel-plated brass Zinc-plated iron Instruction sheet Refer to the timing charts under I/O Circuit Diagrams on page for details. 1 mm *1. Use the EE within the range in which the setting indicator (green LED) is (except D Models). *. The response frequency is an average value. Measurement conditions are as follows: standard sensing object, a distance of twice the standard sensing object, and a set distance of half the sensing distance.

EE EE-@C@ DC 3-Wire Models Size M1 M1 M3 Shielding Item Model EE-C@ EE-MC@ EE-C@ EE-MC@ EE-C@ EE-1MC@ Sensing distance mm±% mm±% mm±% mm±% mm±% 1 mm±% Set distance to 1. mm to mm to mm to mm to mm to 1 mm Differential travel Standard sensing object % max. of sensing distance Ferrous metal (The sensing distance decreases with non-ferrous metal. Refer to Engineering Data on page.) 1 1 1 mm 1 1 1 mm 1 1 1 mm 3 3 1 mm 3 3 1 mm Response frequency *1 1. khz Hz Hz Hz Hz Hz Power supply voltage (operating voltage range) * 1 to VDC ( to VDC), ripple (p-p): % max. Leakage current 13 ma max. Control Load current NPN open-collector output, ma max. ( VDC max.) output Residual voltage V max. (Load current: ma, Cable length: m) Indicators Ambient temperature Ambient humidity Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance (destruction) Shock resistance (destruction) Degree of protection Connection method Operation indicator (red) C1 Models: NO C Models: NC Reverse polarity protection, Surge absorber, Load short-circuit protection Operating/Storage: to C (with no icing or condensation) Operating/Storage: 3% to 9% (with no condensation) ±1% max. of sensing distance at 3 C in the temperature range of to C ±% max. of sensing distance at 3 C in the temperature range of to 7 C ±1% max. of sensing distance at rated voltage in the rated voltage ±1% range MΩ min. (at VDC) between current-carrying parts and case 1, VAC, / Hz for 1 minute between current carry parts and case to Hz, 1.-mm double amplitude for hours each in, Y, and Z directions 1, m/s times each in, Y, and Z directions IEC IP7, in-house standard for oil resistance Pre-wired Models (Standard cable length: m) and Connector Models Weight (packed state) Approx. 7 g Approx. 1 g Approx. g Case Operation mode (with sensing object approaching) Protection circuits Materials Accessories Sensing surface Clamping nuts PBT Nickel-plated brass Zinc-plated iron Instruction sheet Refer to the timing charts under I/O Circuit Diagrams on page for details. 1 mm *1. The response frequency is an average value. Measurement conditions are as follows: standard sensing object, a distance of twice the standard sensing object, and a set distance of half the sensing distance. *. A full-wave rectification power supply of VDC ±% (average value) can be used. 3

EE EE-@Y@ AC -Wire Models Size M1 M1 M3 Shielding Item Model EE-Y@ EE-MY@ EE-Y@ EE-MY@ EE-Y@ EE-1MY@ Sensing distance mm±% mm±% mm±% mm±% mm±% 1 mm±% Set distance to 1. mm to mm to mm to mm to mm to 1 mm Differential travel Standard sensing object Response frequency Power supply voltage (operating voltage range) *1 % max. of sensing distance Ferrous metal (The sensing distance decreases with non-ferrous metal. Refer to Engineering Data on page.) 1 1 1 mm Hz 1 1 1 mm to VAC ( to VAC), / Hz 1 1 1 mm Leakage current 1.7 ma max. Control Load current * to ma to 3 ma output Residual voltage Refer to Engineering Data on page. Indicators Ambient humidity Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance (destruction) Shock resistance (destruction) Degree of protection Connection method Operation indicator (red) Y1 Models: NO Y Models: NC 3 3 1 mm Operating/Storage: to C (with no icing or condensation) Operating/Storage: 3% to 9% (with no condensation) 3 3 1 mm ±1% max. of sensing distance at 3 C in the temperature range of to C, ±% max. of sensing distance at 3 C in the temperature range of to 7 C ±1% max. of sensing distance at rated voltage in the rated voltage ±1% range MΩ min. (at VDC) between current-carrying parts and case, VAC, / Hz for 1 minute between current carry parts and case to Hz, 1.-mm double amplitude for hours each in, Y, and Z directions 1, m/s times each in, Y, and Z directions IEC IP7, in-house standard for oil resistance Pre-wired Models (Standard cable length: m) and Connector Models Weight (packed state) Approx. g Approx. 1 g Approx. g Case Operation mode (with sensing object approaching) Ambient temperature *1, Materials Accessories Sensing surface Clamping nuts PBT Nickel-plated brass Zinc-plated iron Instruction sheet Refer to the timing charts under I/O Circuit Diagrams on page for details. 1 mm *1. When supplying VAC to any of the above models, make sure that the operating ambient temperature range is at least C to C. *. When using an M1 or M3 Connector Model at an ambient temperature between 7 and C, make sure that the Sensor has a control output (load current) of to ma max.

Y Engineering Data (Typical) EE Sensing Area Models EE-@D@ EE-@C@/-@Y@ Distance (mm) 1 EE- EE-7 Distance (mm) 1 EE- Y EE- EE-3 EE - 1 1 1 1 Models EE-@MD@ Distance (mm) 3 1 Y Distance Y (mm) EE -1M EE -M EE -M EE-@MC@/-@MY@ Distance (mm) 3 1 Y Distance Y (mm) EE-1M EE-M EE-M 3 3 3 3 Distance Y (mm) Distance Y (mm) Leakage Current Residual Output Voltage EE-@D@ EE-@Y@ EE-@D@ Leakage current (ma) 1... Leakage current (ma) 1. 1. 1.. Residual output voltage (V).. 1 3 Power supply voltage (V)... Proximity Sensor () ma V Protective resistance AC power 1 3 Power supply voltage (V) 3 1 3 3 Load current (ma)

EE EE-@Y@ at VAC EE-@Y@ at VAC EE-@Y@ at VAC Load voltage VL (V) 3 1 Residual output voltage VAC A Residual load voltage 1 3 3 3 V VL Load current (ma) Load voltage VL (V) 1 Residual output voltage A Residual load voltage 1 3 3 3 V VL VAC Load current (ma) Load voltage VL (V) 1 1 Residual output voltage A Residual load voltage 1 3 3 3 V VL VAC Load current (ma) Influence of Sensing Object Size and Material EE-3D@ EE-7D@ EE-D@ Distance (mm) 3. 3. 1. 1. Stainless steel (SUS3) Copper Distance (mm) 7 3 1 Stainless steel (SUS3) Copper Distance (mm) 1 Stainless steel (SUS3) Copper 1 3 3 3 EE-MD@ EE-1MD@ EE-MD@ Distance (mm) 1 Stainless steel (SUS3) Copper Distance (mm) 1 Stainless steel (SUS3) Copper Distance (mm) 3 7 1 Stainless steel (SUS3) Copper 3 7 3 7 3 7 9

EE EE-C@/-Y@ EE-C@/-Y@ EE-C@/-Y@ Distance (mm). 1. Stainless steel (SUS3) Distance (mm) 7 Stainless steel (SUS3) Distance (mm) 1 Stainless steel (SUS3) 1. 3 1 1 3 3 EE-MC@/-MY@ EE-MC@/-MY@ EE-1MC@/-1MY@ Distance (mm) 7 Distance (mm) 1 Distance (mm) Stainless steel (SUS3) Stainless steel (SUS3) 1 Stainless steel (SUS3) 3 1 3 3 7

I/O Circuit Diagrams EE DC -Wire Models Operation mode Model Timing Charts Output circuit NO EE-3D1 EE-7D1 EE-D1 EE-MD1 EE-1MD1 EE-MD1 Non-sensing area Sensing object Unstable sensing area Set position Stable sensing area Proximity Sensor (%) Rated sensing distance Setting indicator (green) Operation indicator (red) Control output Proximity Sensor main circuit Brown Load +V NC EE-3D EE-7D EE-D EE-MD EE-1MD EE-MD Sensing object (%) Non-sensing area Stable sensing area Rated sensing distance Proximity Sensor Operation indicator (red) Blue V Note: The load can be connected to either the +V or V side. Control output DC 3-Wire Models Operation mode NO NC Model Timing Charts Output circuit EE-C1 EE-C1 EE-C1 EE-MC1 EE-MC1 EE-1MC1 EE-C EE-C EE-C EE-MC EE-MC EE-1MC Present Not present Operation indicator (red) Control output Present Not present Operation indicator (red) Control output Proximity Sensor main circuit Ω Brown Black Blue Load +V V

EE AC -Wire Models Operation mode NO NC Model Timing Charts Output circuit EE-Y1 EE-Y1 EE-Y1 EE-MY1 EE-MY1 EE-1MY1 EE-Y EE-Y EE-Y EE-MY EE-MY EE-1MY Present Not present Operation indicator (red) Control output Present Not present Operation indicator (red) Control output Proximity Sensor main circuit Brown Load Blue Safety Precautions 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 Correct Use Do not use this product under ambient conditions that exceed the ratings. Design l Influence of Surrounding Metal When mounting the Sensor within a metal panel, ensure that the clearances given in the following table are maintained. m D d dia. l m n (Unit: mm) DC -Wire Models EE-@D@ DC 3-Wire Models EE-@C@ AC -Wire Models EE-@Y@ Model Item M1 M1 M3 l d 1 1 3 D m n 1 7 l 1 3 d 7 9 D 1 3 m 7 n 7 9 l d 1 1 3 D m n 1 7 l 1 3 d 9 D 1 3 m 7 n 3 9 9

EE Mutual Interference When installing Sensors face-to-face or side-by-side, ensure that the minimum distances given in the following table are maintained. Mutual Interference DC -Wire Models EE-@D@ DC 3-Wire Models EE-@C@ AC -Wire Models EE-@Y@ Model Item M1 M1 M3 Note: Values in parentheses apply to Sensors operating at different frequencies. A B A B 3 () (1) 1 () () A (3) 3 (1) () 1 () (Unit: mm) () 7 (3) 3 () () A 3 B 3 7 A 1 3 B 1 B Relationship between Sizes and Models Size Model EE-3D@ EE-C@ EE-Y@ M1 EE-MD@ EE-MC@ EE-MY@ EE-7D@ EE-C@ EE-Y@ M1 EE-1MD@ EE-MC@ EE-MY@ EE-D@ EE-C@ EE-Y@ M3 EE-MD@ EE-1MC@ EE-1MY@ Mounting Tightening Torque Do not tighten the nut with excessive force. A washer must be used with the nut. The following strengths assume washers are being used. Model M1 M1 M3 Torque 3 N m 7 N m 1 N m

EE Dimensions (Unit: mm) Unless otherwise specified, the tolerance class IT1 is used for dimensions in this data sheet. EE-3D@/EE-C@/EE-Y@ EE-MD@/EE-MC@/EE-MY@ 1 dia. 17 9 1 dia. 17 7 9 M1 1 Two clamping nuts Indicators * *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:.3 mm, Insulator diameter: 1.3 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:.3 mm, Insulator diameter: 1.3 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) *1 9 dia. M1 1 Two clamping nuts Indicators * *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:.3 mm, Insulator diameter: 1.3 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:.3 mm, Insulator diameter: 1.3 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) *1 EE-7D@/EE-C@/EE-Y@ 9 dia. 1 EE-1MD@/EE-MC@/EE-MY@ 9 dia. 1 *1 Indicators * M1 1 Two clamping nuts *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) 1. dia. *1 Indicators * M1 1 Two clamping nuts *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) EE-D@/EE-C@/EE-Y@ 7 dia. 3 1 EE-MD@/EE-1MC@/EE-1MY@ dia. 3 7 13 1 Indicators * M3 1. Two clamping nuts *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) *1. dia. *1 Indicators * M3 1. Two clamping nuts *1. -dia. vinyl-insulated round cable with conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m -dia. vinyl-insulated round cable with 3 conductors (Conductor cross section:. mm, Insulator diameter: 1.9 mm), Standard length: m The cable can be extended to up to m (Separate metal conduit.) *. D Models: Operation indicator (red) and setting indicator (green), C/Y Models: Operation indicator (red) Mounting Hole Dimensions F Note 1. Two clamping nuts and one toothed washer are provided with each Sensors.. The model number is laser-marked on the cable section and milled section. Dimension M1 M1 M3 +. +. +. F (mm) 1. dia. 1. dia. 3. dia. In the interest of product improvement, specifications are subject to change without notice. 11

Read and Understand This Catalog Please read and understand this catalog before purchasing the products. Please consult your OMR representative if you have any questions or comments. Warranty and Limitations of Liability WARRANTY OMR'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 OMR. OMR MAKES NO WARRANTY OR REPRESENTATI, EPRESS OR IMPLIED, REGARDING N-INFRINGEMENT, MERCHANTABILITY, OR FITNESS FOR PARTICULAR PURPOSE OF THE PRODUCTS. ANY BUYER OR USER ACKNOWLEDGES THAT THE BUYER OR USER ALE HAS DETERMINED THAT THE PRODUCTS WILL SUITABLY MEET THE REQUIREMENTS OF THEIR INTENDED USE. OMR DISCLAIMS ALL OTHER WARRANTIES, EPRESS OR IMPLIED. LIMITATIS OF LIABILITY OMR SHALL NOT BE RESPSIBLE FOR SPECIAL, INDIRECT, OR CSEQUENTIAL DAMAGES, LOSS OF PROFITS OR COMMERCIAL LOSS IN ANY WAY CNECTED WITH THE PRODUCTS, WHETHER SUCH CLAIM IS BASED CTRACT, WARRANTY, NEGLIGENCE, OR STRICT LIABILITY. In no event shall the responsibility of OMR for any act exceed the individual price of the product on which liability is asserted. IN NO EVENT SHALL OMR BE RESPSIBLE FOR WARRANTY, REPAIR, OR OTHER CLAIMS REGARDING THE PRODUCTS UNLESS OMR'S ANALYSIS CFIRMS THAT THE PRODUCTS WERE PROPERLY HANDLED, STORED, INSTALLED, AND MAINTAINED AND NOT SUBJECT TO CTAMINATI, ABUSE, MISUSE, OR INAPPROPRIATE MODIFICATI OR REPAIR. Application Considerations SUITABILITY FOR USE OMR 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, OMR 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 APPLICATI 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 OMR PRODUCTS ARE PROPERLY RATED AND INSTALLED FOR THE INTENDED USE WITHIN THE OVERALL EQUIPMENT OR SYSTEM. PROGRAMMABLE PRODUCTS OMR shall not be responsible for the user's programming of a programmable product, or any consequence thereof. Disclaimers CHANGE IN SPECIFICATIS 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 OMR representative at any time to confirm actual specifications of purchased products. DIMENSIS 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 OMR s test conditions, and the users must correlate it to actual application requirements. Actual performance is subject to the OMR Warranty and Limitations of Liability. ERRORS AND OMISSIS 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. OMR Corporation Industrial Automation Company http://www.ia.omron.com/ 9.1 In the interest of product improvement, specifications are subject to change without notice. (c)copyright OMR Corporation 9 All Right Reserved.