E2E. Your Search for Proximity Sensors Starts with the World-leading Performance and Quality of the E2E. Standard Proximity Sensor.

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1 Stanar Proximity Sensor EE CSM_EE_DS_E_8_ Your Search for Proximity Sensors Starts with the Worl-leaing Performance an Quality of the EE Stanar Sensors for etecting ferrous metals. Wie array of variations. Ieal for a variety of applications. with ifferent frequencies are also available to prevent mutual interference. Superior environment resistance with stanar cable mae of oilresistant PVC an sensing surface mae of material that resists cutting oil. Useful to help prevent isconnection. Cable protector provie as a stanar feature. Be sure to rea Safety Precautions on page 5. For the most recent information on moels that have been certifie for safety stanars, refer to your OMR website. Features -Wire Pre-wire with Oil-resistant Reinforce PUR Cables Ae to the Lineup an Easy Differentiation with Orange Hea Oil Resistance Cable Flexibility Cable Flexibility at Low Temperatures Differentiation from stanar moels: Orange Hea Oil Resistance (Insulation service life): twice or three times that of oil-resistant vinyl chlorie Cable Flexibility: approximately twice that of cinyl chlorie cables More Flexibility at C Lineup inclues moels with Smartclick pre-wire connectors for fast connection. S5 Smartclick connectors use to enable checking connector mating Jacket: Polyester elastomer Click Insert all the way. /8 turn Insulation: Oil-resistant grae PUR (polyurethane)

2 EE Lineup inclues moels with self-iagnostic output to provie notification of failures an unstable etection conitions, such as coil burnout. Contributes to preventive maintenance to keep the line from stopping. Reuce wiring, fewer resources, an low power consumption contribute to environmentalism. Wiring work an amount of copper wire use reuce to two thirs of that require for -wire moels. Current consumption rastically reuce to less than % (when a DC -wire moel is compare with a DC -wire moel). -Wire Lineup inclues moels with small iameter ( ia., ia., 5. ia., M5) All small-iameter moels use seale construction. is stable even when the Sensor is mounte in a small space or embee in metal. Bright inicators enable easily checking the installation conition. Wie range of ambient operating temperatures: C to 85 C (M8 to M moels) Wie range of ambient operating temperatures also for small-iameter moels: 5 C to 7 C Suitable for low-temperature an high-temperature applications, which are troublesome for photoelectric sensors. Lineup inclues moels with flexible cable (-ia. to M moels) Reuce risk of isconnection in applications with moving parts.

3 EE Guie to Selection by Purpose EE Environment Wie operating temperature range to 85 C AC -wire: M to M, DC -wire: M8 to M 5 to 7 C not liste above. Resists the influence of surrouning metal tenance Reucing stocke moels NPN/PNP output DC -Wire EE-@D@ AC/DC AC/DC -Wire EE-@T Easy replacement Smartclick Pre-wire Connector EE-@D@-MTGJ-(U) Pre-wire Connector EE-@D-M(G)J-(T) Connector EE-@D@-M(G) EE-@E@-M EE-@Y@-M Reucing troubles Higher oil resistance Reinforce with Oil-resistor reinforce PUR cable EE-@D@-U Stanar with Oil-resistant PVC cable Mounting to moving parts Robotics cable Mutual interference prevention Robotics Cable EE-@D-R EE-@E-R with a Different Frequency ( only) EE-@@5 Miswiring measures Loa short- protection DC -Wire EE-@D@ DC -Wire EE-@E@ No polarity DC -Wire No-polarity EE-@D-MJ-T Early iscovery of problems Diagnostic EE-@DS Note: Refer to Not Liste in this Catalog for Long Boy, Transmission Couplers, an Power Couplers.

4 EE Moel Number Legen EE EE- A B C D E F G - H I - J - K - L M No. Classification Coe Meaning Remarks C Cylinrical (not threae) A Appearance Cylinrical (threae) Number Sensing istance (Unit: mm) Example: B Sensing istance R6:.6 mm R Inication of ecimal point R5:.5 mm Blank C Shieling M Unshiele B DC -wire PNP open-collector output C DC -wire NPN open-collector output D DC -wire polarity/no polarity Whether D moels have Power supply an output D E DC -wire NPN collector loa built-in output polarity is efine by number J. specifications F DC -wire PNP collector loa built-in output T AC/DC -wire Y AC -wire E F G Form of output switching element Oscillation frequency type Self-iagnosis Normally open () Normally close () Blank Stanar frequency Use to prevent mutual interference. 5 Different frequency Blank No 5 Yes Blank Pre-wire H Connection metho M M-size metal connector I J K Connector specifications DC -wire polarity Cable specifications M Blank G J GJ TJ TGJ Blank T Blank R U L New moel N M Cable length Letter M M8-size metal connector Connector DC -wire an AC -wire, DC -wire with self-iagnosis output, DC -wire with ol pin arrangement Connector DC -wire with IEC pin arrangement Pre-wire Connector DC -wire an AC -wire, DC -wire with ol pin arrangement Pre-wire Connector DC -wire with IEC pin arrangement Pre-wire Smartclick Connector DC -wire Pre-wire Smartclick Connector DC -wire with IEC pin arrangement Polarity No polarity Stanar PVC cable (oil resistant) Flexible PVC cable (oil resistant) Polyurethane cable (oil resistant an reinforce) New moel (Applies only to DC -wire pre-wire an shiele moels.) Cable length (Unit: m) (Applicable to Pre-wire an Prewire Connector.) Note: The purpose of this moel number legen is to provie unerstaning of the meaning of specifications from the moel number. are not available for all combinations of coe numbers. This is blank if the cable specification in number K is R or U. Example: M.M

5 Orering Information EE -Wire DC -wire with No Self-iagnostic Output [Refer to Dimensions on page 7.] M8 M M8 M Sensing istance mm mm 7 mm mm Connection metho Cable specifications *. with ifferent frequencies are also available. The moel number is (example: EE-D5-N M). *. Refer to page for etails. *. The resiual voltage for moels without polarity is 5 V, so use caution concerning the connection loa interface conitions (e.g., PLC voltage). Refer to page 6 Appearance Polarity moe Pin arrangement Applicable connector coe * Moel M Pre-wire Smartclick Connector Mo- oil-resistant) PUR (increase : +V, : V EE-D-MTGJ-U.M H : +V, : V EE-D-MTGJ-U.M els (.m) : +V, : V G EE-D-MTGJ.M PUR (increase EE-D-U M oil-resistant) Pre-wire EE-D-U M ( m) Yes EE-D-N M EE-D-N M M Connector : +V, : V A EE-D-MG : +V, : V D EE-D-MG M8 Connector : +V, : V EE-D-MG I : +V, : V EE-D-MG M Pre-wire Smartclick Connector Mo- oil-resistant) : +V, : V EE-D-MTGJ-U.M PUR (increase : +V, : V EE-D-MTGJ-U.M H els (.m) : +V, : V G EE-D-MTGJ.M PUR (increase EE-D-U M oil-resistant) Pre-wire Yes EE-D-U M ( m) EE-D-N M * EE-D-N M M Connector : +V, : V D EE-D-MG : +V, : V A EE-D-MG * : +V, : V A EE-D-MGJ.M Yes M Stanar Prewire Connector Mo- : +V, : V D EE-D-MGJ.M els (. m) (, ): (+V, V) C EE-D-MJ-T.M No * (, ): (+V, V) D M Pre-wire Smartclick Connector (.m) Pre-wire ( m) M Connector M Stanar Prewire Connector (. m) M Pre-wire Smartclick Connector (.m) Pre-wire ( m) M Connector M Stanar Prewire Connector (. m) PUR (increase : +V, : V EE-7D-MTGJ-U.M H oil-resistant) : +V, : V EE-7D-MTGJ-U.M : +V, : V G EE-7D-MTGJ.M PUR (increase EE-7D-U M oil-resistant) Yes EE-7D-U M EE-7D-N M * EE-7D-N M : +V, : V A EE-7D-MG * : +V, : V D EE-7D-MG Yes : +V, : V A EE-7D-MGJ.M : +V, : V D EE-7D-MGJ.M No * (, ): (+V, V) C EE-7D-MJ-T.M (, ): (+V, V) D EE-7D-MJ-T.M PUR (increase : +V, : V EE-D-MTGJ-U.M H oil-resistant) : +V, : V EE-D-MTGJ-U.M : +V, : V G EE-D-MTGJ.M PUR (increase EE-D-U M oil-resistant) Yes EE-D-U M EE-D-N M * EE-D-N M : +V, : V A EE-D-MG * : +V, : V D EE-D-MG Yes : +V, : V A EE-D-MGJ.M : +V, : V D EE-D-MGJ.M No * (, ): (+V, V) C EE-D-MJ-T.M (, ): (+V, V) D EE-D-MJ-T.M 5

6 EE -Wire Unshiele DC -Wire with No Self-iagnosis Output [Refer to Dimensions on page 7.] M8 M M8 M Sensing istance mm 8 mm mm mm Connection metho Pre-wire ( m) Cable specifications M Connector M8 Connector M Pre-wire Smartclick Connector (.m) Pre-wire ( m) Appearance Polarity moe Pin arrangement *. with ifferent frequencies are also available. The moel number is (example: EE-8MD5 M). *. Refer to page for etails. DC -Wire with Self-iagnosis Output [Refer to Dimensions on page 7.] Applicable connector coe * Moel EE-MD M EE-MD M : +V, : V A EE-MD M : +V, : V D EE-MD-MG : +V, : V EE-MD-MG I : +V, : V EE-MD-MG : +V, : V G EE-8MD-MTGJ.M M Connector M Stanar Prewire Connector (. m) M Pre-wire Smartclick Connector (.m) Pre-wire ( m) EE-8MD M * EE-8MD M : +V, : V A EE-8MD-MG * : +V, : V D EE-8MD-MG : +V, : V A EE-8MD-MGJ.M : +V, : V D Yes : +V, : V G EE-MD-MTGJ.M M Connector M Stanar Prewire Connector (. m) M Pre-wire Smartclick Connector (.m) Pre-wire ( m) EE-MD M * EE-MD M : +V, : V A EE-MD-MG * : +V, : V D EE-MD-MG : +V, : V A EE-MD-MGJ.M : +V, : V D EE-MD-MGJ.M : +V, : V G EE-MD-MTGJ.M M Connector M Stanar Prewire Connector (. m) EE-MD M * EE-MD M : +V, : V A EE-MD-MG * : +V, : V D EE-MD-MG : +V, : V A EE-MD-MGJ.M : +V, : V D M M8 M Sensing istance mm 7 mm mm Connection metho Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications Appearance Polarity moe Pin arrangement *. with ifferent frequencies are also available. The moel number is (example: EE-D5S M). *. Refer to page for etails. Applicable connector coe * Moel EE-DS M * : +V an iagnostic output : V : +V an control output EE-7DS M * Yes : +V an iagnostic output : V D EE-7DS-M : +V an control output D EE-DS-M EE-DS M * : +V an iagnostic output : V : +V an control output D EE-DS-M 6

7 EE -Wire Unshiele DC -Wire with Self-iagnosis Output [Refer to Dimensions on page 7.] M M8 M Sensing istance 8 mm mm mm Connection metho Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications Appearance Polarity moe Pin arrangement *. with ifferent frequencies are also available. The moel number is (example: EE-8MD5S M). *. Refer to page for etails. Applicable connector coe * Moel EE-8MDS M * : +V an iagnostic output : V : +V an control output EE-MDS M * Yes : +V an iagnostic output : V D EE-MDS-M : +V an control output D EE-8MDS-M EE-MDS M * : +V an iagnostic output : V : +V an control output D EE-MDS-M Connector Pin Assignments of DC -Wire The connector pin assignments of each New EE DC -Wire Moel conform to IEC Table III. (Only DC -Wire have been change in comparison to the previous moels.) The following moels with conventional connector pin assignments are available as well. (Only can be use.) The cable at the right shoul also be use if the WA-P@5-G Connector Junction Box is alreay being use. Cable length Moel 5 mm SW-D-BY Internal Wiring (Proximity Sensor en) (Wire en) with conventional connector pin assignments are available as well. Appearance Unshiele * Refer to page for etails. Moel Applicable connector coe * Applicable connector coe * M8 EE-D-M C EE-D-M D M EE-D-M C EE-D-M D M8 EE-7D-M C EE-7D-M D M EE-D-M C EE-D-M D M8 EE-MD-M C EE-MD-M D M EE-8MD-M C EE-8MD-M D M8 EE-MD-M C EE-MD-M D M EE-MD-M C EE-MD-M D 7

8 EE -Wire AC -Wire [Refer to Dimensions on page 7.] Appearance M8 M M8 M *. with ifferent frequencies are also available. The moel number is (example: EE-5Y5 M). *. Refer to page for etails. Unshiele Sensing istance.5 mm mm 5 mm mm Connection metho Pre-wire ( m) Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications moe Pin arrangement Applicable connector coe * Moel EE-R5Y M EE-R5Y M EE-Y M * EE-Y M (, ): (AC, AC) E EE-Y-M (, ): (AC, AC) F EE-Y-M EE-5Y M * EE-5Y M (, ): (AC, AC) E EE-5Y-M (, ): (AC, AC) F EE-5Y-M EE-Y M * EE-Y M (, ): (AC, AC) E EE-Y-M (, ): (AC, AC) F EE-Y-M Appearance M8 M M8 M Sensing istance mm 5 mm mm 8 mm Connection metho Pre-wire ( m) Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications moe *. with ifferent frequencies are also available. The moel number is (example: EE-5MY5 M). *. Refer to page for etails. AC -Wire [Refer to Dimensions on page 7.] (There are no unshiele moels.) Pin arrangement Applicable connector coe * Moel EE-MY M EE-MY M EE-5MY M * EE-5MY M (, ): (AC, AC) E EE-5MY M (, ): (AC, AC) F EE-5MY-M EE-MY M * EE-MY M (, ): (AC, AC) E EE-MY-M (, ): (AC, AC) F EE-MY-M EE-8MY M * EE-8MY M (, ): (AC, AC) E EE-8MY-M (, ): (AC, AC) F EE-8MY-M Appearance M M8 M Sensing istance mm 7 mm mm Connection metho Pre-wire ( m) Pre-wire ( m) Pre-wire ( m) Cable specifications moe Pin arrangement Applicable connector coe Moel EE-T M EE-7T M EE-T M Note: Not compliant with CE. 8

9 EE -Wire DC -Wire [Refer to Dimensions on page 7.] Appearance ia. ia. M5 5. ia. M8 M M8 M Sensing istance.6 mm.8 mm mm mm.5 mm mm 5 mm mm Connection metho Pre-wire ( m) Pre-wire ( m) Pre-wire ( m) Pre-wire ( m) Pre-wire ( m) M Connector M8 Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications moe Pin arrangement *. with ifferent frequencies are also available. The moel number is EE-@@@5 (example: EE-5E5 M). *. Refer to page for etails. Applicable connector coe NPN output * EE-CR6C M Moel PNP output EE-CR6B M EE-CR6C M EE-CR6B M EE-CR8C M EE-CR8B M EE-CR8C M EE-CR8B M EE-C M EE-B M EE-C M EE-B M EE-CC M EE-CB M EE-CC M EE-CB M EE-R5E M EE-R5F M EE-R5E M EE-R5F M : +V, : V, : Control output B EE-R5E-M EE-R5F-M : +V, : V, : Control output D EE-R5E-M EE-R5F-M : +V, : V, EE-R5E-M EE-R5F-M : Control output I : +V, : V, : Control output EE-R5E-M EE-R5F-M EE-E M * EE-F M * EE-E M EE-F M : +V, : V, : Control output B EE-E-M EE-F-M : +V, : V, : Control output D EE-E-M EE-F-M EE-5E M * EE-5F M * EE-5E M EE-5F M : +V, : V, : Control output B EE-5E-M EE-5F-M : +V, : V, : Control output D EE-5E-M EE-5F-M EE-E M * EE-F M EE-E M EE-F M : +V, : V, : Control output B EE-E-M EE-F-M : +V, : V, : Control output D EE-E-M EE-F-M 9

10 EE -Wire Unshiele DC -Wire [Refer to Dimensions on page 7.] M8 M M8 M Sensing istance mm 5 mm mm 8 mm Connection metho Pre-wire ( m) M Connector M8 Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Pre-wire ( m) M Connector Cable specifications Appearance moe Pin arrangement *. with ifferent frequencies are also available. The moel number is EE-@M@@5 (example: EE-5ME5 M). *. Refer to page for etails. Applicable connector coe NPN output * EE-ME M Moel PNP output EE-MF M EE-ME M EE-MF M : +V, : V, : Control output B EE-ME-M EE-MF-M : +V, : V, : Control output D EE-ME-M EE-MF-M : +V, : V, : Control output EE-ME-M EE-MF-M I : +V, : V, EE-ME-M EE-MF-M : Control output EE-5ME M * EE-5MF M EE-5ME M EE-5MF M : +V, : V, : Control output B EE-5ME-M EE-5MF-M : +V, : V, : Control output D EE-5ME-M EE-5MF-M EE-ME M * EE-MF M EE-ME M EE-MF M : +V, : V, : Control output B EE-ME-M EE-MF-M : +V, : V, : Control output D EE-ME-M EE-MF-M EE-8ME M * EE-8MF M EE-8ME M EE-8MF M : +V, : V, : Control output : +V, : V, : Control output B EE-8ME-M EE-8MF-M D EE-8ME-M EE-8MF-M

11 Ratings an Specifications EE DC -Wire Size M8 M M8 M Unshiele Unshiele Unshiele Unshiele Item Moel EE-D@ EE-MD@ EE-D@ EE-8MD@ EE-7D@ EE-MD@ EE-D@ EE-MD@ Sensing istance mm ±% mm ±% mm ±% 8 mm ±% 7 mm ±% mm ±% mm ±% mm ±% Set istance * to.6 mm to. mm to. mm to 6. mm to 5.6 mm to. mm to 8 mm to 6 mm Differential travel 5% max. of sensing istance % max. of sensing istance Detectable object Ferrous metal (The sensing istance ecreases with non-ferrous metal. Refer to Engineering Data on pages 6 an 7. Stanar sensing object Response frequency * Power supply voltage (operating voltage range) Leakage current Control output Inicators Loa current Resiual voltage * moe (with sensing object approaching) Diagnostic output elay Protection s Ambient temperature range Ambient humiity range Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance Shock resistance Degree of protection, 8 8 mm, mm, mm, mm, 8 8 mm, mm, 5 5 mm.5 khz khz.8 khz.5 khz. khz. khz to VDC ( to VDC), ripple (p-p): % max..8 ma max. to ma, Diagnostic output: 5 ma for -D(5)S V max. (Loa current: ma, Cable length: m, MJ-T only: 5 V max.) D : inicator (re) an setting inicator (green) D : inicator (re) D : D :. to s Surge suppressor, Loa short- protection (for control an iagnostic output) Operating: 5 to 7 C, Storage: to 85 C (with no icing or conensation) Operating/storage: 5% to 95% (with no conensation) ±5% max. of sensing istance at C in the temperature range of 5 to 7 C ±% max. of sensing istance at C in the temperature range of 5 to 7 C ±% max. of sensing istance at rate voltage in the rate voltage ±5% range 5 MΩ min. (at 5 VDC) between current-carrying parts an case VAC, 5/6 Hz for minute between current carry parts an case Destruction: to 55 Hz,.5-mm ouble amplitue for hours each in, Y, an Z irections Destruction: 5 m/s times each in, Y, an Z irections Destruction:, m/s times each in, Y, an Z irections Pre-wire : IEC 659 IP67, in-house stanars: oil-resistant Connector : IEC 659 IP67 Connection metho Pre-wire (Stanar cable length: m), Connector, or Pre-wire Connector (Stanar cable length:. m) Weight (packe state) Materials Accessories Pre-wire Pre-wire Connector Connector Approx. 6 g Approx. 7 g Approx. g Approx. 75 g Approx. g Approx. 7 g Approx. g Approx. 5 g Approx. 5 g Approx. g Approx. 9 g Case Stainless steel (SUS) Nickel-plate brass Sensing surface Clamping nuts Toothe washer PBT Nickel-plate brass Zinc-plate iron Instruction manual Refer to the timing charts uner I/O Circuit Diagrams on page 9 for etails. *. Use the EE within the range in which the setting inicator (green LED) is (except D ). *. The response frequency is an average value. Measurement conitions are as follows: stanar sensing object, a istance of twice the stanar sensing object, an a set istance of half the sensing istance. *. The resiual voltage of each MJ-T Moel is 5 V. When connecting to a evice, make sure that the evice can withstan the resiual voltage. (Refer to page 6 for etails.)

12 EE AC -Wire Size M8 M M8 M Unshiele Unshiele Unshiele Unshiele Item Moel EE-R5Y@ EE-MY@ EE-Y@ EE-5MY@ EE-5Y@ EE-MY@ EE-Y@ EE-8MY@ Sensing istance.5 mm ±% mm ±% 5 mm ±% mm ±% 8 mm ±% Set istance to. mm to.6 mm to mm to 8 mm to mm Differential travel % max. of sensing istance Detectable object Ferrous metal (The sensing istance ecreases with non-ferrous metal. Refer to Engineering Data on page 7.) Stanar sensing object Response frequency Power supply voltage (operating voltage range) * Leakage current Control output Inicators, 8 8 mm 5 Hz, mm to VAC ( to 6 VAC), 5/6 Hz.7 ma max., 5 5 mm Loa current * 5 to ma 5 to ma 5 to ma Resiual voltage moe (with sensing object approaching) Protection s Ambient temperature range ** Ambient humiity range Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance Shock resistance Degree of protection Connection metho Weight (packe state) Materials Accessories Prewire Moel Connector Refer to Engineering Data on page 8. inicator (re) Y : Y : Surge suppressor Operating/Storage: 5 to 7 C (with no icing or conensation) Operating/storage: 5% to 95% (with no conensation) ±% max. of sensing istance at C in the temperature range of 5 to 7 C Operating/Storage: to 85 C (with no icing or conensation), 8 8 mm, mm, 5 5 mm ±5% max. of sensing istance at C in the temperature range of to 85 C, ±% max. of sensing istance at C in the temperature range of 5 to 7 C ±% max. of sensing istance at rate voltage in the rate voltage ±5% range 5 MΩ min. (at 5 VDC) between current-carrying parts an case, VAC (M8 :, VAC), 5/6 Hz for min between current-carrying parts an case Destruction: to 55 Hz,.5-mm ouble amplitue for hours each in, Y, an Z irections Destruction: 5 m/s times each in, Y, an Z irections Destruction:, m/s times each in, Y, an Z irections Pre-wire : IEC 659 IP67, in-house stanars: oil-resistant Connector : IEC 659 IP67 Pre-wire (Stanar cable length: m) an Connector Approx. 6 g Approx. 7 g Approx. g Approx. 75 g Approx. 5 g Approx. 5 g Approx. g Approx. 9 g Case Stainless steel (SUS) Nickel-plate brass Sensing surface Clamping nuts Toothe washer PBT Nickel-plate brass Zinc-plate iron Instruction manual Refer to the timing charts uner I/O Circuit Diagrams on page for etails. *. When supplying VAC to any of the above moels, make sure that the operating ambient temperature range is at least 5 C. *. When using an M8 or M Connector Moel at an ambient temperature between 7 an 85 C, make sure that the Sensor has a control output (loa current) of 5 to ma max.

13 EE AC/DC -Wire Size M M8 M Item Moel EE-T EE-7T EE-T Sensing istance mm ±% 7 mm ±% mm ±% Set istance to. mm to 5.6 mm to 8 mm Differential travel % max. of sensing istance Detectable object Ferrous metal (The sensing istance ecreases with non-ferrous metal. Refer to Engineering Data on page 6.) Stanar sensing object, mm, 8 8 mm, mm Response DC khz.5 khz. khz frequency * AC 5 Hz Power supply voltage (operating voltage range) * Leakage current Control output Loa current Resiual voltage to VDC ( to 6 VDC) 8 to VAC ( to 6 VAC) DC: ma max. AC: ma max. 5 to ma DC: 6 V max. (Loa current: ma, Cable length: m) AC: V max. (Loa current: 5 ma, Cable length: m) inicator (re), Setting inicator (green) Inicators moe (with sensing object (Refer to the timing charts uner I/O Circuit Diagrams on page for etails.) approaching) Protection s Loa short- protection ( to VDC only), Surge suppressor Ambient temperature range Operating: 5 to 7 C, Storage: to 85 C (with no icing or conensation) Ambient humiity range Operating/Storage: 5% to 95% (with no conensation) Temperature influence ±% max. of sensing istance at C in the temperature range of 5 to 7 C Voltage influence ±% max. of sensing istance at rate voltage in the rate voltage ±5% range Insulation resistance 5 MΩ min. (at 5 VDC) between current-carrying parts an case Dielectric strength, VAC, 5/6 Hz for minute between current-carrying parts an case Vibration resistance Destruction: to 55 Hz,.5-mm ouble amplitue for hours each in, Y, an Z irections Shock resistance Destruction:, m/s times each in, Y, an Z irections Degree of protection IEC 659 IP67, in-house stanars: oil-resistant Connection metho Pre-wire (Stanar cable length: m) Weight (packe state) Approx. 8 g Approx. g Approx. 9 g Case Nickel-plate brass Materials Accessories Sensing surface Clamping nuts Toothe washer PBT Nickel-plate brass Zinc-plate iron Instruction manual *. The response frequency is an average value. Measurement conitions are as follows: stanar sensing object, a istance of twice the stanar sensing object, an a set istance of half the sensing istance. *. Power Supply Voltage Waveform: Use a sine wave for the power supply. Using a rectangular AC power supply may result in faulty reset.

14 EE DC -Wire Item Size M8 M M8 M Unshiele Unshiele Unshiele Unshiele Moel EE -R5E@/F@ EE -ME@/F@ EE -E@/F@ EE -5ME@/F@ EE -5E@/F@ EE -ME@/F@ EE-E@/ F@ EE -8ME@/F@ Sensing istance.5 mm ±% mm ±% 5 mm ±% mm ±% 8 mm ±% Set istance to. mm to.6 mm to mm to 8 mm to mm Differential travel % max. of sensing istance Detectable object Ferrous metal (The sensing istance ecreases with non-ferrous metal. Refer to Engineering Data on pages 6 an 7.) Stanar sensing object Response frequency * Power supply voltage (operating voltage range) * Current consumption Control output Inicators Loa current * Resiual voltage moe (with sensing object approaching) Protection s Ambient temperature range * Ambient humiity range Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance Shock resistance Degree of protection Connection metho Weight (packe state) Materials Accessories Prewire Connector, 8 8 mm, mm, 5 5 mm, 8 8 mm, mm, 5 5 mm khz.8 khz.5 khz. khz.6 khz. khz. khz. khz to VDC ( to VDC), ripple (p-p): % max. ma max. ma max. V max. (Loa current: ma, Cable length: m) inicator (re) E/F : E/F : Refer to the timing charts uner /O Circuit Diagrams on page for etails. Loa short- protection, Surge suppressor, Reverse polarity protection Operating/Storage: to 85 C (with no icing or conensation) Operating/Storage: 5% to 95% (with no conensation) ±5% max. of sensing istance at C in the temperature range of to 85 C ±% max. of sensing istance at C in the temperature range of 5 to 7 C ±% max. of sensing istance at rate voltage in the rate voltage ±5% range 5 MΩ min. (at 5 VDC) between current-carrying parts an case, VAC, 5/6 Hz for minute between current carry parts an case Destruction: to 55 Hz,.5-mm ouble amplitue for hours each in, Y, an Z irections Destruction: 5 m/s times each in, Y, an Z irections Destruction:, m/s times each in, Y, an Z irections Pre-wire : IEC 659 IP67, in-house stanars: oil-resistant Connector : IEC 659 IP67 Pre-wire (Stanar cable length: m) an Connector Approx. 65 g Approx. 75 g Approx. 5 g Approx. 95 g Approx. 5 g Approx. 5 g Approx. g Approx. 9 g Case Stainless steel (SUS) Nickel-plate brass Sensing surface Clamping nuts Toothe washer PBT Nickel-plate brass Zinc-plate iron Instruction manual *. The response frequency is an average value. Measurement conitions are as follows: stanar sensing object, a istance of twice the stanar sensing object, an a set istance of half the sensing istance. *. When using an M8 Moel at an ambient temperature between 7 an 85 C, supply to VDC to the Sensor an make sure that the Sensor has a control output of ma maximum.

15 EE an DC -Wire Size ia. ia. M5 5. ia. Item Moel Sensing istance.6 mm ±5%.8 mm ±5% mm ±5% Set istance to. mm to.5 mm to.7 mm Differential travel 5% max. of sensing istance Detectable object Ferrous metal (The sensing istance ecreases with non-ferrous metal. Refer to Engineering Data on pages 7 an 8.) Stanar sensing object, mm Response frequency * khz khz Power supply voltage (operating voltage range), 5 5 mm to VDC ( to VDC), ripple (p-p): % max. Current consumption ma max. 7 ma max. Control output Inicators Loa current Resiual voltage moe (with sensing object approaching) Protection s Ambient temperature range Ambient humiity range Temperature influence Voltage influence Insulation resistance Dielectric strength Vibration resistance Shock resistance Open-collector output, 8 ma max. ( VDC max.) V max. (Loa current: 8 ma, Cable length: m) inicator (re) C/B : C : Reverse polarity protection, Surge suppressor Open-collector output, ma max. ( VDC max.) V max. (Loa current: ma, Cable length: m) Operating/Storage: 5 to 7 C (with no icing or conensation) Operating/Storage: 5% to 95% (with no conensation) ±5% max. of sensing istance at C in the temperature range of 5 to 7 C ±5% max. of sensing istance at rate voltage in the rate voltage ±% range 5 MΩ min. (at 5 VDC) between current-carrying parts an case ±.5% max. of sensing istance at rate voltage in the rate voltage ±5% range 5 VAC, 5/6 Hz for min between current-carrying parts an case Destruction: to 55 Hz,.5-mm ouble amplitue for hours each in, Y, an Z irections Destruction: 5 m/s times each in, Y, an Z irections Degree of protection IEC 659 IP66 IEC 659 IP67, in-house stanars: oil-resistant Connection metho Pre-wire (Stanar cable length: m) Weight (packe state) Materials Accessories Approx. 6 g Case Stainless steel (SUS) Nickel-plate brass Sensing surface Clamping nuts Toothe washer Heat-resistant ABS Nickel-plate brass (EE-C/B@ only) Zinc-plate iron (EE-C/B@ only) Instruction manual Refer to the timing charts uner I/O Circuit Diagrams on page for etails. * The response frequency is an average value. Measurement conitions are as follows: stanar sensing object, a istance of twice the stanar sensing object, an a set istance of half the sensing istance. 5

16 Y Y Y Engineering Data (Reference Value) EE Sensing Area EE-@D@/-@T EE-@E@/-@Y@/-@F@ EE-C@C@/-@C@ EE-C@B/-@B@ 8 EE- EE-7 8 EE EE-/EE-C 6 EE- 6 EE-5.8 EE-CR8 EE- EE- EE -R5.6.. EE-CR Distance Y (mm) Unshiele EE-@MD@ Distance Y (mm) EE-@ME@/-@MY@/-@MF@..... Distance Y (mm) 5 5 Y EE -M EE -M EE -8M 5 EE -M Distance Y (mm) EE-8M EE-M EE-5M EE-M Influence of Sensing Object Size an Material EE-D@ EE-D@/-T EE-7D@/-7T Y Distance Y (mm) t = mm Stainless steel (SUS) Copper t = mm Stainless steel (SUS) Copper t = mm Stainless steel (SUS) Copper Sie length of sensing object: (mm) Sie length of sensing object: (mm) Sie length of sensing object: (mm) EE-D@/-T EE-MD@ EE-8MD@ 8 t = mm 6 5 t = mm 8 t = mm 6 Stainless steel (SUS) Copper Stainless steel (SUS) Copper 6 Stainless steel (SUS) Copper Sie length of sensing object: (mm) Sie length of sensing object: (mm) Sie length of sensing object: (mm) 6

17 EE t = mm Stainless steel (SUS) Copper t = mm Stainless steel (SUS) Copper t = mm Stainless steel (SUS) Sie length of sensing object: (mm) Sie length of sensing object: (mm) Sie length of sensing object: (mm) EE-E@/-Y@/-F@ EE-5E@/-5Y@/-5F@ EE-E@/-Y@/-F@.5..5 t = mm Stainless steel (SUS) t = mm Stainless steel (SUS) 8 6 t = mm Stainless steel (SUS) Sie length of sensing object: (mm) 5 Sie length of sensing object: (mm) 5 6 Sie length of sensing object: (mm) EE-ME@/-MY@/-MF@ EE-5ME@/-5MY@/-5MF@ EE-ME@/-MY@/-MF@.5..5 t = mm Stainless steel (SUS) t = mm Stainless steel (SUS) 8 6 t = mm Stainless steel (SUS)..5 Copper Sie length of sensing object: (mm) Sie length of sensing object: (mm) Sie length of sensing object: (mm) EE-8ME@/-8MY@/-8MF@ EE-CR6@ EE-CR8@ 5 t = mm Stainless steel (SUS)...8 t = mm 5 5 Stainless steel (SUS).... t = mm.6.. Stainless steel (SUS) Copper 6 8 Sie length of sensing object: (mm) 5 5 Sie length of sensing object: (mm) Sie length of sensing object: (mm) 7

18 EE t = mm Stainless steel (SUS) Sie length of sensing object: (mm) Leakage Current EE-@D@ EE-@Y@ EE-@T Leakage current (ma)..8.6 EE-D-N EE-D-N Leakage current (ma)....8 Leakage current (ma)....8 AC power. EE-D-N EE-7D-N Power supply voltage (V) Resiual Output Voltage EE-@D@ Resiual output voltage (V) 5 EE-@D-MJ-T EE-@D@.6.. Proximity Sensor () EE-@T Resiual output voltage (V) ma ~ Protective resistance V~ AC power Power supply voltage (V) 6 5 VAC VAC VDC DC power Power supply voltage (V) Loa current (ma) Loa current (ma) EE-@Y@ at VAC EE-@Y@ at VAC EE-@Y@ at VAC Loa voltage VL (V) 5 Resiual output voltage 5 V~ ~ A VAC 5 Resiual loa voltage Loa current (ma) VL Loa voltage VL (V) Resiual output voltage 8 V~ 6 VAC ~A Resiual loa voltage Loa current (ma) VL Loa voltage VL (V) 6 8 Resiual output voltage ~A V~ VL VAC Resiual loa voltage Loa current (ma) 8

19 I/O Circuit Diagrams EE DC -Wire moe Moel Timing Chart Output Polarity: Yes Without selfiagnostic output: Non-sensing area Sensing object Unstable sensing area Set position Stable sensing area Proximity Sensor (%) 8 Rate sensing istance Setting inicator (green) inicator (re) Control output Proximity Sensor main Loa Brown Blue +V V Note: The loa can be connecte to either the +V or V sie. Polarity: None Proximity Sensor main Loa +V ( V) V (+V) Note. The loa can be connecte to either the +V or V sie.. The EE-@D-MJ-T has no polarity. Therefore, terminals an have no polarity. Non-sensing area Sensing area Without selfiagnostic output: EE-@D-N EE-@D-MG EE-@D-(MTGJ)-U EE-@D-MG Sensing object (%) Rate sensing istance Proximity Sensor inicator (re) Control output Proximity Sensor main Loa Brown Blue Note: The loa can be connecte to either the +V or V sie. +V V Non-sensing area Unstable sensing area Set position Stable sensing area Proximity Sensor With selfiagnostic output: EE-@DS EE-@DS-M Sensing object (%) 8 Rate sensing istance Setting inicator (green) inicator (re) Control output Diagnostic output* Proximity Sensor main Brown () Loa Loa Orange () (iagnostic output) Blue () Note: Connect both the loas to the +V sie of the control output an iagnostic output. +V +V * The iagnostic output is when there is a coil burnout or the sensing object is locate in the unstable sensing area for. s or longer. 9

20 EE DC -Wire moe Output specifications Moel Timing Chart Output NPN output Sensing object inicator (re) Control output (between brown an black leas) Output voltage (between black an blue leas) Present Not present High Low Sensing object Present Not present inicator (re) Control output (between brown an black leas) Output voltage High (between black an blue leas) Low Proximity Sensor main Ω Constant current* Brown Black Blue Loa *Constant current output is.5 to ma. Note: For Connector, the connection between pins, an uses an contact, an the connection between pins, an uses an contact. Tr +V V PNP output EE-@F@ EE-@F@-M EE-@F@-M Sensing object inicator (re) Control output (Between blue an black leas) Output voltage (between brown an black leas) Sensing object inicator (re) Control output (Between blue an black leas) Output voltage (between brown an black leas) Present Not present High Low Present Not present High Low Proximity Sensor main Ω Brown * Black Blue Loa *When a transistor is connecte Note: For Connector, the connection between pins, an uses an contact, an the connection between pins, an uses an contact. Tr +V V NPN opencollector output EE-C/@C@ Sensing Present object Not present inicator (re) Control output Sensing object Present Not present inicator (re) Control output Proximity Sensor main Ω * Brown Black Blue Loa *The EE-CR6@ oes not have -Ω resistance. +V V Sensing object inicator (re) Present Not present Brown +V PNP opencollector output EE-C/@B@ Control output Sensing object inicator (re) Control output Present Not present Proximity Sensor main Ω * Black Blue Loa *The EE-CR6@ oes not have -Ω resistance. V

21 EE AC -Wire moe Moel Timing Chart Output Sensing object inicator (re) Present Not present Operate Control output Reset Sensing Present object Not present Proximity Sensor main Brown (or ) Loa Blue (or ) inicator (re) Control output Operate Reset Note: For Connector, the connection between pins an uses an contact, an the connection between pins an uses an contact. AC/DC -Wire moe Moel Timing Chart Output EE-@T Unstable Set position Non-sensing sensing area area Stable sensing area Proximity Sensor Sensing object (%) 8 Rate sensing Setting inicator istance (green) inicator (re) Control output Proximity Sensor main Brown Blue Loa Power supply to VDC 8 to VAC Note: The loa can be connecte to either the +V or V sie. There is no nee to be concerne about the polarity (brown/blue) of the Proximity Sensor.

22 EE Sensor I/O Connectors (Sockets on One Cable En) Moel for Connectors an Pre-wire Connectors: A Connector is not provie with the Sensor. Be sure to orer a Connector separately. [Refer to Dimensions for the S, S, an S5.] Connector Applicable Applicable Proximity Connection Cable length m Cable length 5m connector Sensor moel iagram coe Screw Appearance * CablConnector CablConnector number No. * moel number moel number A Straight SF-D-DA-F SF-D-GA-F L-shape SF-D-DA-F SF-D-GA-F EE-@D-MG(J) B Straight SF-D-DC-F SF-D-GC-F EE-@E-M L-shape SF-D-DC-F SF-D-GC-F EE-@F-M C Straight SF-D-DD SF-D-GD EE-@D-MJ-T EE-@D-M L-shape SF-D-DD SF-D-GD EE-@D-MJ-T EE-@D-M EE-@D-MG(J) 6 EE-@D-MJ-T 8 Straight SF-D-D8-F SF-D-G8-F EE-@D-M 7 EE-@DS-M 5 D EE-@E-M EE-@F-M M EE-@D-MG(J) 6 EE-@D-MJ-T 8 L-shape SF-D-D8-F SF-D-G8-F EE-@D-M 7 EE-@DS-M 5 EE-@E-M EE-@F-M E Straight SF-A-DB-F SF-A-GB-F L-shape SF-A-DB-F SF-A-GB-F EE-@Y-M F Straight SF-A-D9-F SF-A-G9-F EE-@Y-M 5 G Smartclick Connector, Straight S5F-D-D8-F S5F-D-G8-F EE-@D-MTGJ 6 H Smartclick Connector, Straight Oil-resistant Reinforce Cables S5F-D-D8-P S5F-D-G8-P EE-@D-MTGJ-U 7 EE-@D-MTGJ-U 8 I M8 Straight SF-M--A SF-M-5-A L-shape SF-M--A SF-M-5-A Note: Refer to Introuction to Sensor I/O Connectors for etails an for information on Cable length an Robotics Cables. *. Images of straight an L-shape connectors. M Straight M L-shape M8 Straight M8 L-shape EE-@D-MG EE-@D-MG 9 EE-@E-M EE-@F-M EE-@E-M EE-@F-M EE-@D-MG EE-@D-MG 9 EE-@E-M EE-@F-M EE-@E-M EE-@F-M *. Refer to Connection Diagrams on page for information on Proximity Sensor an I/O Connector connections.

23 Connections for Sensor I/O Connectors EE Connection iagram No. Type Proximity Sensor moe Moel Sensor I/O Connector moel number Connections DC -wire (IEC pin wiring) : Straight : L-shape SF-D@-@A-F D: -m cable G: 5-m cable EE SF Brown (+) Blue ( ) DC -wire (previous pin wiring) EE-@D-M : Straight : L-shape SF-D@-@D D: -m cable G: 5-m cable EE SF Blue ( ) Brown (+) DC -wire (no polarity) EE-@D-MJ-T : Straight : L-shape SF-D@-@D D: -m cable G: 5-m cable EE SF Blue (+) ( ) Brown ( ) (+) DC -wire (M8 connector) EE-@D-MG : Straight : L-shape SF-M@-@-A : -m cable 5: 5-m cable EE SF * Brown (+) White (not connecte) Blue (not connecte) Black ( ) 5 DC -wire (iagnostic type) EE-@DS-M : Straight : L-shape SF-D@-@8-F D: -m cable G: 5-m cable EE SF * Brown (not connecte) White (iagnostic output) (+) Blue ( V) Black (control output) (+) 6 DC -wire (IEC pin wiring) EE-@D-MG/MGJ : Straight : L-shape SF-D@-@8-F D: -m cable G: 5-m cable EE SF * Brown (+) White ( ) Blue (not connecte) Black (not connecte) 7 8 DC -wire (previous pin wiring) DC -wire (no polarity) EE-@D-M EE-@D-MJ-T : Straight : L-shape SF-D@-@8-F SF-D@-@8-F D: -m cable G: 5-m cable : Straight : L-shape D: -m cable G: 5-m cable EE EE SF * SF * Brown (not connecte) White (+) Blue ( ) Black (not connecte) Brown (+)( ) White ( )(+) Blue (not connecte) Black (not connecte) 9 DC -wire (M8 connector) EE-@D-MG : Straight : L-shape SF-M@-@-A : -m cable 5: 5-m cable EE SF * Brown (+) White ( ) Blue (not connecte) Black (not connecte) * Different from Proximity Sensor wire colors.

24 EE Connection iagram No. Type Proximity Sensor moe Moel Sensor I/O Connector moel number Connections : Straight : L-shape EE SF DC -wire EE-@E/F-M EE-@E/F-M SF-D@-@C-F SF-D@-@8-F D: -m cable G: 5-m cable : Straight : L-shape D: -m cable G: 5-m cable EE SF Brown (+V) Blue ( V) Black (output) Brown (+V) White (not connecte) Blue ( V) Black (output) : Straight : L-shape EE SF DC -wire (M8 connector) EE-@E/F-M EE-@E/F-M SF-M@-@-A : -m cable 5: 5-m cable : Straight : L-shape SF-M@-@-A : -m cable 5: 5-m cable EE SF Brown (+V) White (not connecte) Blue ( V) Black (output) Brown (+V) White (output) Blue ( V) Black (not connecte) : Straight : L-shape EE SF AC -wire EE-@Y-M 5 EE-@Y-M SF-A@-@B-F SF-A-@9-F D: -m cable G: 5-m cable D: -m cable G: 5-m cable EE SF* Brown Blue Brown White Blue (not connecte) Black (not connecte) 6 EE-@D-MTGJ S5F-D-@8-F D: -m cable G: 5-m cable EE S5F Brown (+) White (not connecte) Blue (not connecte) Black ( ) 7 DC -wire (Smartclick connector) EE-@D- MTGJ-U S5F-D-@8-P D: -m cable G: 5-m cable EE S5F Brown (+) White (not connecte) Blue (not connecte) Black ( ) 8 EE-@D- MTGJ-U S5F-D-@8-P D: -m cable G: 5-m cable EE S5F Brown (+) White ( ) Blue (not connecte) Black (not connecte) * Different from Proximity Sensor wire colors. Refer to Introuction to Sensor I/O Connectors for etails.

25 EE Safety Precautions Refer to Warranty an Limitations of Liability. WARNING This prouct is not esigne or rate for ensuring safety of persons either irectly or inirectly. Do not use it for such purposes. CAUTI Do not short the loa. Explosion or burning may result. Do not supply power to the Sensor with no loa, otherwise Sensor may be amage. Applicable Precautions for Correct Use Do not use this prouct uner ambient conitions that excee the ratings. Design Influence of Surrouning Metal When mounting the Sensor within a metal panel, ensure that the clearances given in the following table are maintaine. Failure to maintain these istances may cause eterioration in the performance of the Sensor. l Influence of Surrouning Metal DC -Wire EE-@D@ m AC/DC -Wire EE-@T DC -Wire EE-@E@ EE-@F@ AC -Wire EE-@Y@ DC -Wire EE-@C/B@ EE-C@C/B@ ia. D l n m (Unit: mm) Moel Item M8 M M8 M Unshiele Unshiele l 8 8 D m.5 8 n l D 5 m 8 7 n 7 9 l 8 8 D m.5 8 n l D 6 5 m 8 7 n Moel Item ia. ia. M5 5. ia. l 5 5. D m. n 6 8 Relationship between Sizes an Moel Moel ia. EE-CR6C/B ia. EE-CR8C@ EE-CR8B@ M5 EE-C@ EE-B@ 5. ia. M8 M M8 M Unshiele Unshiele Unshiele Unshiele EE-CC@ EE-CB@ EE-D@ EE-R5E@ EE-R5F@ EE-R5Y@ EE-MD@ EE-ME@ EE-MF@ EE-MY@ EE-D@ EE-E@ EE-F@ EE-Y@ EE-T EE-8MD@ EE-5ME@ EE-5MF@ EE-5MY@ EE-7D@ EE-5E@ EE-5F@ EE-5Y@ EE-7T EE-MD@ EE-ME@ EE-MF@ EE-MY@ EE-D@ EE-E@ EE-F@ EE-Y@ EE-T EE-MD@ EE-8ME@ EE-8MF@ EE-8MY@ 5

26 EE Mutual Interference When installing Sensors face-to-face or sie-by-sie, ensure that the minimum istances given in the following table are maintaine. B A Mutual Interference (Unit: mm) Moel Item M8 M M8 M DC -Wire A () 5 () (5) EE-@D@ B 5 () * 5 (8) * 7 (5) AC/DC -Wire A 8 (6) () () Unshiele EE-@T B 6 (5) (6) () DC -Wire A () 5 () (5) EE-@E@/@F@ B 5 () * 5 (8) * 7 (5) AC -Wire A 8 (6) () () Unshiele EE-@Y@ B 6 (5) (6) () Moel Item ia. ia. M5 5. ia. DC -Wire A EE-@C/B@ EE-C@C/B@ B 5 Note: Values in parentheses apply to Sensors operating at ifferent frequencies. * Mutual interference will not occur for close-proximity mounting if moels with ifferent frequencies are use together. Loas with Large Surge Currents (EE-@T@) If a loa with a large surge current is connecte, such as a relay, lamp, or motor, the surge current may cause the loa short- protection to operate, resulting in operating errors. Mounting Tightening Force Do not tighten the nut with excessive force. A washer must be use with the nut. Part B Part A Part B Part A Refer to the following to mount the EE-CR6, EE-CR8 an EE-C Unthreae Cylinrical. EE-CR6 9 to mm Unshiele EE-CR8, EE-C 8 to mm Dimple en of set screw (M) (No screws are provie with the EE-CR8 or EE-C.) Note:. The allowable tightening strength epens on the istance from the ege of the hea, as shown in the following table. (A is the istance from the ege of the hea. B inclues the nut on the hea sie. If the ege of the nut is in part A, the tightening torque for part A applies instea.). The following strengths assume washers are being use. When using a set screw, tighten it to a torque of. N m max. (EE-C:. N m max.) M5 M8 M M8 M Moel Part A Part B Dimension Torque Torque N m 9 Unshiele 9 N m N m N m 7 N m 8 N m Connecting a DC -Wire Proximity Sensor to a PLC (Programmable Controller) Require Conitions Connection to a PLC is possible if the specifications of the PLC an the Proximity Sensor satisfy the following conitions. (The meanings of the symbols are given at the right.). The voltage of the PLC an the resiual voltage of the Proximity Sensor must satisfy the following. V VCC VR. The current of the PLC an the leakage current of the Proximity Sensor must satisfy the following. I Ileak (If the current is not liste in the PLC s input specifications, take it to be. ma.). The current of the PLC an the control output of the Proximity Sensor must satisfy the following. IOUT (min.) I IOUT (max.) The current of the PLC will vary, however, with the power supply voltage an the input impeance, as shown in the following equation. I = (VCC VR VPC)/RIN Example In this example, the above conitions are checke when the PLC Unit is the CH-ID, the Proximity Sensor is the EE-7D-N, an the power supply voltage is V.. V (. V) VCc (. V) VR ( V) = 7. V:OK. I (. ma) Ileak (.8 ma): OK. I = [VCC (. V) VR ( V) VPLC ( V)]/RIN ( kω) = Approx..5 ma Therefore, IOUT (min.) ( ma) I (.5 ma): OK Connection is thus possible. V: voltage of PLC (. V) I: current of PLC (typically 7 ma) I: current of PLC (. ma) RIN: Input impeance of PLC ( kω) VPC: Internal resiual voltage of PLC ( V) VR: Output resiual voltage of Proximity Sensor ( V) Ileak: Leakage current of Proximity Sensor (.8 ma) IOUT Control output of Proximity Sensor ( to ma) VCC: Power supply voltage (PLC:. to 6. V) Values in parentheses apply to the following PLC moel an Proximity Sensor moel. PLC: CH-ID Sensor: EE-7D-N 6

27 Dimensions Units Moel Number-Dimensions Drawing Number Lookup Table EE Moel DC -Wire DC -Wire AC -Wire AC/DC -Wire Moel Moel No. Moel No. Moel No. Moel No. Pre-wire Connector (M) Connector (M8) Pre-wire Connector Pre-wire Connector (no polarity) ia. ia. M5 5. ia. M M EE-D@ 9 EE-E@/F@ 9 EE-Y@ EE-T M8 EE-7D@ EE-5E@/F@ EE-5Y@ EE-7T M EE-D@ 6 EE-E@/F@ 6 EE-Y@ 6 EE-T 6 M8 EE-MD@ 6 EE-ME@/F@ 6 EE-MY@ 8 M EE-8MD@ EE-5ME@/F@ EE-5MY@ Unshiele M8 EE-MD@ 5 EE-ME@/F@ 5 EE-MY@ 5 M EE-MD@ 7 EE-8ME@/F@ 7 EE-8MY@ 7 M8 EE-D@-M(G) 8 EE-R5E/F@-M 8 M EE-D@-M(G) EE-E/F@-M EE-Y@-M M8 EE-7D@-M(G) EE-5E/F@-M EE-5Y@-M M EE-D@-M(G) 6 EE-E/F@-M 6 EE-Y@-M 6 M8 EE-MD@-M(G) 9 EE-ME/F@-M 9 Unshiele M EE-8MD@-M(G) EE-5ME/F@-M EE-5MY@-M M8 EE-MD@-M(G) 5 EE-ME/F@-M 5 EE-MY@-M 5 M EE-MD@-M(G) 7 EE-8ME/F@-M 7 EE-8MY@-M 7 EE-D@-MG 8 EE-R5E/F@-M 8 Unshiele M8 EE-MD@-MG 9 EE-ME/F@-M 9 M8 EE-D@-M(T)GJ(-U) M EE-D@-M(T)GJ(-U) M8 EE-7D@-M(T)GJ(-U) M EE-D@-M(T)GJ(-U) 5 M EE-8MD-M(T)GJ Unshiele M8 EE-MD-M(T)GJ M EE-MD-M(T)GJ 6 M EE-D-MJ-T M8 EE-7D@-MJ-T M EE-D@-MJ-T 5 (Unit: mm) Tolerance class IT6 applies to imensions in this ata sheet unless otherwise specifie. Note. an one toothe washer are provie with M8 to M.. The moel numbers of M8 to M Pre-wire are laser-marke on the mille section an cable section. This oes not apply, however, to moels that en in -U. Pre-wire () Diagram EE-CR6B@/CR6C@ Diagram EE-CB@/CC@ ±. ia ia inicator (re) *.-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:.8 mm, Insulator iameter:.7 mm) Diagram ia. EE-CR8B@/CR8C@ * inicator (re) *.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.9 mm), Stanar length: m Robotics Cable :.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:.5 mm, Insulator iameter:.5 mm), Stanar length: m The cable can be extene up to m (separate metal conuit). * * inicator (re) *.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.9 mm), Stanar length: m Robotics Cable :.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:.5 mm, Insulator iameter:.5 mm), Stanar length: m The cable can be extene up to m (separate metal conuit). Mounting Hole Dimensions F Dimension ia. ia. 5. ia. F (mm). +. ia ia ia. 7

28 EE Pre-wire () Mounting Hole Dimensions Dimension M5 M8 M F (mm) ia ia ia. F Diagram EE-B@/C@ Pre-wire (Unshiele) 8 ia * M5.5 inicator (re) Two toothe washers *.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.9 mm), Stanar length: m Robotics Cable :.9-ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:.5 mm, Insulator iameter:.5 mm), Stanar length: m The cable can be extene up to m (separate metal conuit). Diagram 5 5 ia. EE-D@ EE-R5E@/F@ Diagram 6 EE-MD@ EE-ME@/F@ 7 5 ia * Inicators * M8 *. -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m Robotics Cable : -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m with Highly Oil-resistant Cables: -ia. polyurethane-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m The cable can be extene up to m (separate metal conuit). *. D : inicator (re) an setting inicator (green), D/E/F : inicator (re) 6. ia. M8 Inicators * *. -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m Robotics Cable : -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m The cable can be extene up to m (separate metal conuit). *. D : inicator (re) an setting inicator (green), D/E/F : inicator (re) * Diagram 7 5 ia. EE-R5Y@ Diagram 8 EE-MY@ 7 5 ia Diagram 9 ia. 7 M8 * inicator (re) Toothe washer EE-D@ EE-E@/F@ 8 9 -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m The cable can be extene up to m (separate metal conuit). 6. ia. Diagram M8 * inicator (re) Toothe washer EE-8MD@ EE-5ME@/F@ ia ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m The cable can be extene up to m (separate metal conuit). * Inicators * M *. -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m Robotics Cable : -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m with Highly Oil-resistant Cables: -ia. polyurethane-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m The cable can be extene (separate metal conuit) up to m for the control output an up to m for the iagnostic output. *. D : inicator (re) an setting inicator (green), D/E/F : inicator (re) 9 ia. * Inicators * M *. -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:. mm), Stanar length: m Robotics Cable : -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m -ia. vinyl-insulate roun cable with conuctors (Conuctor cross section:. mm, Insulator iameter:.7 mm), Stanar length: m The cable can be extene (separate metal conuit) up to m for the control output an up to m for the iagnostic output. *. D : inicator (re) an setting inicator (green), D/E/F : inicator (re) 8

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