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  1 csm_e3c_ds_e_ 8_1 compact head amplifier-separated photoelectric sensor e3c thin, compact head saves space and mounts closely. built-in interference protection provided. ? input indicator on the sensor unit simplifies settings. be sure to read safety precautions on page 11. ordering information sensors sensor units [refer to dimensions on page 12.] * through-beam sensors are normally sold in sets that include both the emitter and receiver. orders for individual emitters and receivers are accepted. (modi fications are required for some models. ask your omron represen tative for details.) sensing method application appearance sensing distance model through-beam (emitter + receiver) * small type e3c-s10 2m emitter e3c-s10l 2m receiver e3c-s10d 2m e3c-s50 2m emitter e3c-s50l 2m receiver e3c-s50d 2m e3c-1 2m emitter e3c-1l 2m receiver e3c-1d 2m e3c-2 2m emitter e3c-2l 2m receiver e3c-2d 2m slim type e3c-s20w 2m emitter e3c-s20lw 2m receiver e3c-s20dw 2m e3c-s30w 2m emitter e3c-s30lw 2m receiver e3c-s30dw 2m side-view e3c-s30t 2m emitter e3c-s30lt 2m receiver e3c-s30dt 2m diffuse-reflective small type e3c-ds10 2m slim type e3c-ds5w 2m side-view e3c-ds10t 2m convergent-reflective small type e3c-ls3r 2m red light infrared light 10 12 5.8 100 mm 11 13 7 500 mm 25 8 12 1 m 36 16 12.4 2 m 18 12.5 2.8 200 mm 15 8 3 300 mm 7.85 3 15 15 26 10 100 mm 18 19.5 2.8 50 mm 8 21 11 100 mm 10 18 36 30 3 mm
e3c 2 amplifier units [refer to amplifier units on page 15.] accessories (order separately) mounting brackets [refer to e39-l/f39-l/e39-s/e39-r for dimensions. ] note: refer to e39-l/f39-f/e39-s/e39-r for dimensions. * when using through-beam models, order one bracket for the receiver and one for the emitter. connector [refer to e39-l/f39-l/e39-s/e39-r for dimensions.] power supply application appearance functions model ac standard models --- e3c-a e3c-c dc slim type e3c-jc4p 2m small type --- E3C-GE4 49 48 109.5 timer 60 30 14 self dia g nostic 35.5 27.2 20.7 appearance model quantity remarks e39-l41 2 provided with the e3c-1. e39-l42 2 provided with the e3c-2. can be used with the e3c-ds10. e39-l127-t1 1 can be used with the e3c-s10. e39-l127-t2 1 e39-l127-t3 1 e39-l31 1 * can be used with the e3c-s50. name appearance model quantity remarks front connection socket pf113a 1 provided with the e3c-a/c. pyf08a 1 can be used with the E3C-GE4. rear connection socket py08 1 can be used with the E3C-GE4.
e3c 3 ratings and specifications sensors sensing method through-beam item model e3c-s10 e3c-s20w e3c-s50 e3c-s30t e3c-s30w e3c-1 e3c-2 sensing distance 100 mm 200 mm 500 mm 300 mm 1 m 2 m standard sensing object opaque, 2-mm dia. min. opaque, 3-mm dia. min. opaque, 1.5-mm dia. min. opaque, 4-mm dia. min. opaque, 8-mm dia. min. directional angle emitter/receiver: 10 to 60 each emitter/receiver: 10 to 40 each emitter/receiv- er: 3 to 20 each emitter/receiv- er: 3 to 15 each light source (wavelength) infrared led (950 nm) infrared led (940 nm) infrared led (950 nm) ambient illuminance (receiver side) incandescent lamp: 3,000 lx max., sunlight 10,000 lx max. ambient temperature range operating/storage: ? 25 c to 70 c (with no icing or condensation) ambient humidity range operating: 35% to 85%, storage: 35% to 95% (with no condensation) insulation resistance 20 m min. at 500 vdc dielectric strength 500 vac at 50/60 hz for 1 minute vibration resistance destruction: 10 to 55 hz, 1.5-mm double amplitude for 2 hours each in x, y, and z directions shock resistance destruction: 500 m/s 2 for 3 times each in x, y, and z directions degree of protection iec 60529 ip64 limited to indoor use iec 60529 ip50 limited to indoor use iec 60529 ip64 limited to indoor use iec 60529 ip60 limited to indoor use iec 60529 ip66 limited to indoor use connection method pre-wired models (standard length: 2 m) weight (packed state) approx. 50 g approx. 24 g approx. 60 g approx. 120 g material case polycarbonate abs polyca rbonate zinc die-cast lens polycarbonate acrylics polycarbonate mounting brackets --- steel accessories instruction manual phillips screw m2 8, spring washer, flat washer, m2 nut, instruction manual instruction manual phillips screw m2 8, spring washer, flat washer, nut m2, instruction manual mounting bracket (with screws), instruction manual mounting bracket (with screws), instruction manual sensing method diffuse-reflective convergent-reflective item model e3c-ds5w e3c-ds10t e3c-ds10 e3c-ls3r sensing distance 50 mm (white paper 100 100 mm) 100 mm (white paper 100 100 mm) 100 mm (white paper 50 50 mm) 30 3 mm (white paper 10 10 mm) differential travel 20% max. of sensing distance 10% max. 3% max. light source (wavelength) infrared led (950 nm) infrared led (950 nm) red led (680 nm) ambient illuminance (receiver side) incandescent lamp: 3,000 lx max., sunlight 10,000 lx max. ambient temperature range operating/storage: ? 25 c to 70 c (with no icing or condensation) ambient humidity range operating: 35% to 85%, storage: 35% to 95% (with no condensation) insulation resistance 20 m min. at 500 vdc dielectric strength 500 vac at 50/60 hz for 1 minute vibration resistance destruction: 10 to 55 hz, 1.5-mm double amplitude for 2 hours each in x, y, and z directions shock resistance destruction: 500 m/s 2 for 3 times each in x, y, and z directions degree of protection iec 60529 ip50 (limited to indoor use) iec 60529 ip64 (limited to indoor use) connection method pre-wired models (standard length: 2 m) weight (packed state) approx. 50 g approx. 55 g material case polycarbonate lens polycarbonate accessories phillips screw m2 8, spring washer, flat washer, m2 nut, instruction manual instruction manual
e3c 4 amplifier units * the terminal pins are used for connection between amplifiers for synchronous operation. item model e3c-a e3c-c e3c-jc4p E3C-GE4 power supply voltage 100 to 240 vac 10%, 50/60 hz 12 to 24 vdc 10%, ripple (p-p): 1 v max. power (current) consumption 3 w max. 50 ma max. control output transis- tor output load power supply voltage: 24 vdc max., load current: 80 ma max., voltage output type, output current: 1 to 4 ma (residual voltage: 1.2 v max.) light-on/dark-on switch selectable load power supply voltage: 24 vdc max., load current: 100 ma max., npn open collector output type (residual voltage: 1 v max.) light-on/dark-on switch se- lectable load power supply voltage: 24 vdc max., load current: 80 ma max., voltage output type, output current: 1 to 4 ma (residual voltage: 0.7 v max.) light-on/dark-on cable con- nection selectable relay out- put 220 vac 1 a cos =1 (resistive load) spdt contact only --- external synchronous input --- h = 6 to 30 v l = 0 to 2 v when l, turns off the control output forcibly. --- timer function --- on/off, oneshot delay (se- lectable): 1 or 10 s max. off-delay 0/40 ms (switch se- lectable) --- ambient temperature range operating: ? 10 to 55 c, storage: ? 25 to 70 c (with no icing or condensation) ambient humidity range operating: 35% to 85%, storage: 35% to 95% (with no condensation) insulation resistance 20 m min. at 500 vdc dielectric strength 500 vac at 50/60 hz for 1 minute vibration resistance destruction: 10 to 55 hz, 1.5-mm double amplitude for 2 hours each in x, y, and z directions shock resistance destruction: 300 ms 2 three times in each of x, y and z directions degree of protection iec ip20 (limited to indoor use) iec ip60 (limited to indoor use) iec ip20 (limited to indoor use) protection reverse polarity protection, output short-circuit protection, mutual interference prevention response time no contact operate or reset: 1 ms max./2 ms max. each (switch select- able) operate or reset: 1 ms max. operate or reset: 1 ms max./2 ms max. each (switch selectable) relay operate or reset: 20 ms max. --- connection method terminal block terminal block input cable pullout (standard cable length: 2 m) terminal block weight (packed state) approx. 200 g approx. 80 g approx. 15 g material case abs polycarbonate mounting brackets stainless steel --- iron --- accessories connection socket (pf113a) instruction manual mounting bracket, adjustment screwdriver, caution label, instruction manual instruction manual
e3c 5 engineering data (typical) parallel operating range through-beam through-beam through-beam e3c-s10 e3c-s20w e3c-s50 through-beam through-beam through-beam e3c-1 e3c-2 e3c-s30t/-s30w operating range diffuse-reflective diffuse-r eflective diffuse-reflective e3c-ds5w e3c-ds10t e3c -ds10 (example 1) y x 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 sensing distance x (mm) 50 100 150 200 250 300 operating position y (mm) y x 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 50 100 150 200 250 300 sensing distance x (mm) operating position y (mm) y x 0.2 0.4 0.6 0.8 1 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 sensing distance x (mm) operating position y (mm) y x 0.5 1 1.5 2 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 sensing distance x (mm) operating position y (mm) y x 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 1 2 3 4 sensing distance x (mm) operating position y (mm) 200 150 100 50 0 ? 50 ? 100 ? 150 ? 200 200 400 600 800 y x sensing distance x (mm) operating position y (mm) moving direction of object x y 40 30 20 10 0 ? 10 ? 20 ? 30 ? 40 20 40 60 80 120 100 sensing distance x (mm) operating position y (mm) y x 40 30 20 10 0 ? 10 ? 20 ? 30 ? 40 20 40 60 80 100 120 160 140 sensing distance x (mm) operating position y (mm) x optical axis y 40 30 20 10 0 ? 10 ? 20 ? 30 ? 40 40 80 120 200 160 on off moving direction of object sensing distance x (mm) operating position y (mm)
e3c 6 diffuse-reflective convergent-reflective c onvergent-reflective e3c-ds10 (example 2) e3c-ls3r (example 1) e3c-ls3r (example 2) excess gain vs. set distance e3c-s20w e3c-s30t/-s30w e3c-s50 e3c-ds5w e3c-ds10t e3c-ls3r x y 40 30 20 10 0 ? 10 ? 20 ? 30 ? 40 40 80 120 160 200 on off optical axis moving direction of object sensing distance x (mm) operating position y (mm) x y 2 1 0 ? 1 ? 2 22 26 28 30 32 34 36 38 on off 24 optical axis sensing distance x (mm) operating position y (mm) moving direction of object x y 2 1 0 ? 1 ? 2 22 26 28 30 32 34 38 36 on off 24 optical axis moving direction of object sensing distance x (mm) operating position y (mm) 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 0 100 200 300 400 500 set distance (mm) operating level excess gain ratio 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 0 0.2 0.4 0.6 0.8 1 excess gain ratio operating level set distance ( mm ) 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 0 0.2 0.4 0.6 0.8 1 excess gain ratio operating level set distance ( mm ) 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 0 50 100 150 200 excess gain ratio operating level set distance (mm) 0 50 100 150 200 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 excess gain ratio operating level set distance (mm) 10 0 20304050 100 70 50 30 10 7 5 3 1 0.7 0.5 0.3 0.1 excess gain ratio operating level set distance (mm)
e3c 7 i/o circuit diagrams npn output * for t in the timing chart, refer to part names/selection method on page 9. model operation mode timing charts * operation selector output circuit e3c-a e3c-c light-on light on dark-on dark on e3c-jc4p light-on l-on (light on) dark-on d-on (dark on) E3C-GE4 light-on switched with wiring. (light on) dark-on switched with wiring. (dark on) incident light no incident light on off a b h l on off light indicator (red) contact output solid-state output output transistor tt output 0 v +12 v +5.5 v output circuit input circuit synchronous inputs * 1 rated current circuit 1.5 to 4 ma 80 ma max. *2 3 2 9 high 6 to 30 v low 0 to 2 v * 1. e3c-c only * 2. e3c-a/-c have spdt contact output. (about terminal number, please refer to the connection section.) photo- electric sensor main circuit tt incident light no incident light on off a b h l on off light indicator (red) contact output solid-state output output transistor incident light no incident light on off on off on off light indicator (red) output transistor load (relay etc.) 40 ms light indicator (red) stability indicator (green) photo- electric sensor main circuit load brown black blue pink self diagnostic output 50 ma max. output 12 to 24 vdc 0 v 100 ma max. z 0 z 1 40 ms incident light no incident light on off on off on off light indicator (red) output transistor load (relay etc.) incident light no incident light on off h l on off light indicator (red) no-contact output output transistor tt 14 4 + ? output rated current circuit 1.5 to 4 ma 80 ma max. 12 14 4 power source photo- electric sensor main circuit tt incident light no incident light on off h l on off light indicator (red) no-contact output output transistor 14 4 ? +
e3c 8 connection amplifier units connected to the through-beam model connected to the reflective model note e3c-a/c + pf113a note: 1. the strip-off length of the shielded cable should always be 20 mm max. on the receiver side (white) and 50 mm max. on the emitter side (red). 2. the e3c-a does not have a gate input function. 3. l when the gate input 2-9 terminals are connected, h when they are disconnected. e3c-jc4p note: 1. the strip-off length of the shielded cable should always be 20 mm max. on the receiver side (white) and 50 mm max. on the emitter side (red). E3C-GE4 note: 1. the strip-off length of the shielded cable should always be 20 mm max. on the receiver side (white) and 50 mm max. on the emitter side (red). 2. the response time is 1 ms when (8) is disconnected, and 2 ms when (8) is connected to 0 v (negative side) of the power supply. 3. by setting the power supply terminal (4) to ? and (14) to +, the output turns "h" when the light is received. with the e2 mode, the output transistor turns off. by setting (4) to + and (14) to +, the output turns "l" when the light is received. with the e1 mode, the output transistor turns on. emitter receiver shield red white gate input ? (note) solid-state output + ? + tb ta tc 100 to 240 vac shield 2 1 11 10 5678 9 3 4 e3c-a/c emitter/receiver white red e3c-a/c gate input ? (note ) solid-state output + ? + tb ta tc 100 to 240 vac 2 1 11 10 5678 9 3 4 shield shield shield emitter receiver white red shield emitter/receive r shield white red shield 1 5 9 13 4 8 12 14 red white shield shield emitter receiver response time selector input 12 to 24 vd c output + ? + ? 1 5 9 13 4 8 12 14 emitter/ receiver response time selector input shield red shield white 12 to 24 vdc output + ? + ?
e3c 9 nomenclature/settings amplifier units nomenclature settings e3c-a e3c-c stability indicator (green) when the light receiving input becomes +20% or more and ? 20% or less of operating voltage, it will be turned on. (indicate stable status) light indicator (red) when the light inputs, it will be turned on. sensitivity adjuster response time selector switch operation selector operation indicator (red) when a relay-switch operates, the indicator turns on. operation switching response time changing (the different frequency type can be made up by changing the response speed.) timing chart dark turns the relay on and the transistor out- put "h". light turns the relay on and the transistor out- put "h". the response time is set to 2 ms. the response time is set to 1 ms. dark on light on dark on light on 2 ms (b) 1 ms (a) 2 ms (b) 1 ms (a) note 1. control output is produced only during input time. 2. when t exceeds 1 ms or 2 ms, solid-state output is produced. to produce relay output, t must be longer than 20 ms. tt incident light no incident light "a" "b" "a" "b" "h" "l" "h" "l" (off) (on) (off) (on) (output transistor) relay output solid state selector switch for operating mode light on selector switch for operating mode dark on stability indicator (green) when the light receiving input becomes +20% or more and ? 20% or less of operating voltage, it will be turned on. (indicate stable status) light indicator (red) when the light inputs, it will be turned on. sensitivity adjuster delay time adjuster delay time setting switch timer function setting switch selector switch for response time operation selector operation indicator (red) when a relay-switch operates, the indicator turns on. operation switching response time changing (the different frequency type can be made up by changing the response speed.) delay time setting after setting the selector, fine-adjust the delay time with the variable adjuster. (clockwise turn increases the delay time.) timing chart external synchronous input operation when the external synchronous input terminal (9) is open (high), the output relay performs timer operation according to the input signals (light, dark). when the external synchronous input terminal (9) is connected to the 0 v ter- minal (2) (low), the output relay turns off, independently of the input signals and output status, and acts as an inhibit signal. dark turns the relay on and the transistor out- put "h". light turns the relay on and the transistor out- put "h". the response time is set to 2 ms. the response time is set to 1 ms. 0.1 to 1 s can be set. 1 to 10 s can be set. dark on light on dark on light on 2 ms (b) 1 ms (a) 2 ms (b) 1 ms (a) 1 sec 10 sec 1 sec 10 sec min max time note 1. t must be longer than 1 ms or 2 ms. 2. t denotes a delay time. t t t t t tt t t t t incident light no incident light (9)(2) release (9)-(2) short circuit light on dark on light on dark on light on dark on on d. off d. o.s.d. "a" "b" "a" "b" "a" "b" "a" "b" "a" "b" "a" "b" "h" "l" "h" "l" "h" "l" "h" "l" "h" "l" "h" "l" (off) (on) (off) (on) (off) (on) (off) (on) (off) (on) (off) (on) output relay solid state (output transistor) external synchro- nous in- puts timer function setting when select- ing on delay (on d.) when select- ing off de- lay (off d.) when select- ing one-shot delay (o.s.d.) dark on light on 2 ms (b) delay on d. 1 sec 1 ms (a) o.s.d. off d. 10 sec set a position freel y set a position freel y set a position freel y dark on light on 2 ms (b) delay on d. 1 sec 1 ms (a) o.s.d. off d. 10 sec set a position freel y set a position freel y set a position freel y dark on light on 2 ms (b) delay on d. 1 sec 1 ms (a) o.s.d. off d. 10 sec set a position freely set a position freely since the function ha s stopped, it allows in both of the positions. set a position freely
e3c 10 amplifier units nomenclature settings e3c-jc4p --- E3C-GE4 light indicator (red) stability indicator (green) sensitivity adjuster (4-turn endless asjuster) operation selector stability indicator (green) when the light receiving input becomes+20% or more and ? 20% or less of operating voltage, it will be turned on. (indicate stable status) light indicator (red) when the light inputs, it will be turned on sensitivit y ad j uster operation switching response time changing (the different frequency type can be made up by changing the response speed.) * 0 v of power supply timing chart dark turns the output "h". light turns the output "h". h -0 v * connected the response time is set to 2 ms. h disconnected the response time is set to 1 ms. 14 4 ? + 14 4 + ? 14 4 ? + 14 4 + ? tt incident light no incident light "h" "l" "h" "l" no-contact output (off) (on) (off) (on) (output transistor)
e3c 11 safety precautions refer to warranty and limitations of liability . this product is not designed or rated for ensuring safety of persons either directly or indirectly. do not use it for such purposes. do not use the product in atmospheres or environments that exceed product ratings. wiring connection of e3c-jc4p amplifier unit and sensor always run the shielded wires of t he emitter and receiver separately. also, route the sensor cable along the cable grooves of the cover and sensor and fix it with the cover. connection socket the standard socket is the pf113a for the e3c-a and -c, and the pyf08a, pyf08m or py08 for the E3C-GE4. avoid using any other sockets since they may not satisfy the characteristi cs. (there will be no problem when the stability indicator turns on) wiring extension cable ? the extension distance of the sensor connection cable should be within 10 m. ? the strip-off length of the core in the connection cable should be 20 mm max. on the receiver side and 50 mm max. on the emitter side, and the core should be as short as possible. avoid using the joint terminal and connector. ? use independent shielded wires for the emitter and receiver. using a common shielded wire can cause a malfunction. extension cable through-beam reflective model others when the e3c is used in a place where high-frequency noise will be generated, e.g. ultrasonic welder, grounding the 0-v terminal (on the shield side of the connection cable) of the receiver may avoid a malfunction caused by induction. warning precautions for correct use amplifier units sensor units receiver emitter white (shield) (shield) red 20 mm max. socket cable specified cable replacement cable model e3c-s10 e3c-1 e3c-2 e3c-s50 polyethylene insulation shield round cable 1-conductor shield/ vinyl wire, conduc- tor cross section: 0.3 mm 2 min. e3c-s20w vinyl insulation shield round cable 1-conductor shield/ vinyl wire, conduc- tor cross section: 0.3 mm 2 min. e3c-s30t e3c-s30w vinyl insulation shield round cable (robot cable) cable specified cable replacement cable model e3c-ds10 e3c-ds10t e3c-vs1g e3c-vs3r e3c-ls3r vinyl insulation shielded parallel ca- ble when there is no1- conductor shielded, vinyl cable (parallel wire), use two 1- conductor shielded, vinyl wires. e3c-ds5w e3c-vs7r e3c-vm35r vinyl insulation shielded parallel ca- ble when there is no1- conductor shielded, vinyl cable (parallel wire), use two 1- conductor shielded, vinyl wires. 2.4 dia. 12-conductor, 0.18 dia. white (polyethylene) shield white (vinyl) gra y ( vin y l sheath ) shield 1.7 dia. 12-conductor, 0.18 dia. sheath shield polyethylene conductor 1.8 dia. 30-conductor, 0.08 dia. sheath shield polyethylene conductor 12-conductor, 0.18 dia. sheath shield conductor polyethylene internal sheath 2.4 4.3 sheath shield polyethylene conductor 7-conductor, 0.18 dia.
e3c 12 dimensions sensors sensor units (unit: mm) tolerance class it16 applies to dimensions in this data sheet unless otherwise specified. e3c-s10 emitter: e3c-s10l receiver: e3c-s10d 5.8 10 2.3 2.8 2.8 7.5 two, 2.9 dia. 2.4-dia. shielded cable with 1 conductor (conductor cross section: 0.3 mm 2 ), standard len g th: 2 m light indicator (red) (emitter only) 12 2 5.2 dia. emitter/ receiver surface e3c-s50 emitter: e3c-s50l receiver: e3c-s50d 13 7 emitter/receiver label two, 3.2 dia. 3.5 5.7 dia. 8 0.2 2.9 0.2 11 emitter/receiver surface 2.4-dia. shielded cable with 1 conductor (conductor cross section: 0.3 mm 2 ), standard length: 2 m light indicator (red) (emitter only) e3c-1 emitter: e3c-1l receiver: e3c-1d 13.5 12 optical axis position emitter/receiver surface iron 12.5 * mounting bracket can be attached to side a. 5 10 3 8 6.4 5.5 2 13 25 3.2 8 12 6 dia. 3.2 16.5 5 4 m3 6 3.5 lens 4 dia. 12 (a)* 2.4-dia. shielded cable with 1 conductor (conductor cross section: 0.3 mm 2 ), standard length: 2 m light indicator (red) (emitter only) lens 8 dia. 6.7 23 3.2 5.5 4.5 iron 3.2 36 12.4 9.4 2 8 12 8 dia. 7 21 emitter/recei v er s u rface 13.3 20 17 3.3 * mo u nting bracket can b e attached to side a. (a)* 16 m3 2.4-dia. shielded ca b le w ith 1 cond u ctor (cond u ctor cross section: 0.3 mm 2 ), standard length: 2 m optical axis position light indicator (red) (emitter only) e3c-2 emitter: e3c-2l receiver: e3c-2d
e3c 13 e3 c - s 20w 3.8 dia. 11 0.2 3.5 2.5 2 dia. (emitter) light indicator (red) (red) (white) 5 4 4.5 4.5 3.6 18 2 dia. (receiver) 2 2,000 (6) 12.5 2.8 1.4 2.3 dia. 1.75-dia. shielded cable with 1 conductor (conductor cross section: 0.3 mm 2 ), standard length: 2 m receiver emitter emitter: e3c-s20lw receiver: e3c-s20dw e3c-s30w 2.2 dia. 4 3.6 dia. 5 7.5 12 2.2 2 8 15 1.5 dia. (receiver) 3 1.5 5 2.4 1.5 dia. (emitter) 1.93-dia. shielded robotics cable with 1 conductor (conductor cross section: 0.15 mm 2 ), standard length: 2 m receiver emitter light indicator (red) 1.2 dia. emitter: e3c-s30lw receiver: e3c-s30dw e3c-s30t 2.2 dia. 15 3.85 5 1.5 dia. (receiver) 3.6 dia. 12 7.5 2.2 7.85 1.5 dia. (emitter) 3 1.5 5 2.4 1.93-dia. shielded robotics cable with 1 conductor (conductor cross section: 0.15 mm 2 ), standard length: 2 m receiver emitter light indicator (red) 1.2 dia. emitter: e3c-s30lt receiver: e3c-s30dt 4 5 optical axis position 3.2 10 2.4 6.6 19 3.2 3.9 receiver emitter lens 5 10 9 4.3 26 2 8.5 1 15 r3.3 r1.2 2.4-dia. shielded cable with 2 conductors (conductor cross section: 0.3 mm 2 ), standard length: 2 m light indicator (red) e3c-ds10
e3c 14 3.5 2.5 emitter receiver 4 7 0.2 6 19.5 3.8 dia. 2.8 1.4 2.3 dia. 18 2,000 2 4.5 11 0.2 40 4 7 1.8 3.6-dia. shielded cable with 2 conductors (conductor cross section: 0.18 mm 2 ), standard length: 2 m e3c-ds5w e3c-ds10t 16 0.2 two, 3.2-dia. mounting holes 2.5 emitter receiver 2.5 8 6 40 7 7 0.2 11 21 1.5 2,000 4. 6 2.4-dia. shielded cable with 2 conductors (conductor cross section: 0.3 mm 2 ), standard length: 2 m e3c-ls3r emitter receiver 36 2 10 9 4.3 3.2 6.5 313 1 lens 30 optical axis position light indicator (red) 5.3 18 2.4 6.6 13 r3.3 r1.2 2.4-dia. shielded cable with 2 conductors (conductor cross section: 0.3 mm 2 ), standard length: 2 m
e3c 15 amplifier units accessories (order separately) mounting brackets refer to e39-l/f39-l/e39-s/e39-r for details. connecting sockets refer to e39-l/f39-l/e39-s/e39-r for details. e3c-a e3c-c 49 48 48 operation indicator (red) stability indicator (green) light indicator (red) 51.5 pf113a 4 24.5 109.5 73.5 3 4 6 8 6 e3c-jc4p 50 (10) 5 t w o, 3.3 dia. operation selector ca u tion la b el* sensiti v ity adj u ster light indicator m2.6 sta b ility indicator timer mode selector s w itch 60 16 r1.6 mo u nting b racket (iron) (detacha b le) 23.5 43 10 6 14 12 3.5 30 2.5 35.5 2 3.2 14 *after adj u sting the sensiti v ity, attach the ca u tion la b el at the location indicated b y a b o v e to pre v ent malf u nction. 4.5-dia. v inyl-ins u lated ro u nd ca b le w ith 4 cond u ctors (cond u ctor cross section: 0.2mm 2 , ins u lator diameter: 1.2mm), standard length: 2 m with mountin g bracket attached E3C-GE4 connector use the pyf08a front connection socket or py08 rear connection socket. 20.7 stability indicator (green) light indicator (red) 35.5 5.4 27.2
r e a d a n d u n d e r s t a n d t h i s c a t a l o g p l e a s e r e a d a n d u n d e r s t a n d t h i s c a t a l o g b e f o r e p u r c h a s i n g t h e p r o d u c t s . p l e a s e c o n s u l t y o u r o m r o n r e p r e s e n t a t i v e i f y o u h a v e a n y q u e s t i o n s o r c o m m e n t s . w a r r a n t y a n d l i m i t a t i o n s o f l i a b i l i t y w a r r a n t y o m r o n ' s e x c l u s i v e w a r r a n t y i s t h a t t h e p r o d u c t s a r e f r e e f r o m d e f e c t s i n m a t e r i a l s a n d w o r k m a n s h i p f o r a p e r i o d o f o n e y e a r ( o r o t h e r p e r i o d i f s p e c i f i e d ) f r o m d a t e o f s a l e b y o m r o n . o m r o n m a k e s n o w a r r a n t y o r r e p r e s e n t a t i o n , e x p r e s s o r i m p l i e d , r e g a r d i n g n o n - i n f r i n g e m e n t , m e r c h a n t a b i l i t y , o r f i t n e s s f o r p a r t i c u l a r p u r p o s e o f t h e p r o d u c t s . a n y b u y e r o r u s e r a c k n o w l e d g e s t h a t t h e b u y e r o r u s e r a l o n e h a s d e t e r m i n e d t h a t t h e p r o d u c t s w i l l s u i t a b l y m e e t t h e r e q u i r e m e n t s o f t h e i r i n t e n d e d u s e . o m r o n d i s c l a i m s a l l o t h e r w a r r a n t i e s , e x p r e s s o r i m p l i e d . l i m i t a t i o n s o f l i a b i l i t y o m r o n s h a l l n o t b e r e s p o n s i b l e f o r s p e c i a l , i n d i r e c t , o r c o n s e q u e n t i a l d a m a g e s , l o s s o f p r o f i t s o r c o m m e r c i a l l o s s i n a n y w a y c o n n e c t e d w i t h t h e p r o d u c t s , w h e t h e r s u c h c l a i m i s b a s e d o n c o n t r a c t , w a r r a n t y , n e g l i g e n c e , o r s t r i c t l i a b i l i t y . i n n o e v e n t s h a l l t h e r e s p o n s i b i l i t y o f o m r o n f o r a n y a c t e x c e e d t h e i n d i v i d u a l p r i c e o f t h e p r o d u c t o n w h i c h l i a b i l i t y i s a s s e r t e d . i n n o e v e n t s h a l l o m r o n b e r e s p o n s i b l e f o r w a r r a n t y , r e p a i r , o r o t h e r c l a i m s r e g a r d i n g t h e p r o d u c t s u n l e s s o m r o n ' s a n a l y s i s c o n f i r m s t h a t t h e p r o d u c t s w e r e p r o p e r l y h a n d l e d , s t o r e d , i n s t a l l e d , a n d m a i n t a i n e d a n d n o t s u b j e c t t o c o n t a m i n a t i o n , a b u s e , m i s u s e , o r i n a p p r o p r i a t e m o d i f i c a t i o n o r r e p a i r . a p p l i c a t i o n c o n s i d e r a t i o n s s u i t a b i l i t y f o r u s e o m r o n s h a l l n o t b e r e s p o n s i b l e f o r c o n f o r m i t y w i t h a n y s t a n d a r d s , c o d e s , o r r e g u l a t i o n s t h a t a p p l y t o t h e c o m b i n a t i o n o f p r o d u c t s i n t h e c u s t o m e r ' s a p p l i c a t i o n o r u s e o f t h e p r o d u c t s . a t t h e c u s t o m e r ' s r e q u e s t , o m r o n w i l l p r o v i d e a p p l i c a b l e t h i r d p a r t y c e r t i f i c a t i o n d o c u m e n t s i d e n t i f y i n g r a t i n g s a n d l i m i t a t i o n s o f u s e t h a t a p p l y t o t h e p r o d u c t s . t h i s i n f o r m a t i o n b y i t s e l f i s n o t s u f f i c i e n t f o r a c o m p l e t e d e t e r m i n a t i o n o f t h e s u i t a b i l i t y o f t h e p r o d u c t s i n c o m b i n a t i o n w i t h t h e e n d p r o d u c t , m a c h i n e , s y s t e m , o r o t h e r a p p l i c a t i o n o r u s e . t h e f o l l o w i n g a r e s o m e e x a m p l e s o f a p p l i c a t i o n s f o r w h i c h p a r t i c u l a r a t t e n t i o n m u s t b e g i v e n . t h i s i s n o t i n t e n d e d t o b e a n e x h a u s t i v e l i s t o f a l l p o s s i b l e u s e s o f t h e p r o d u c t s , n o r i s i t i n t e n d e d t o i m p l y t h a t t h e u s e s l i s t e d m a y b e s u i t a b l e f o r t h e p r o d u c t s : ? o u t d o o r u s e , u s e s i n v o l v i n g p o t e n t i a l c h e m i c a l c o n t a m i n a t i o n o r e l e c t r i c a l i n t e r f e r e n c e , o r c o n d i t i o n s o r u s e s n o t d e s c r i b e d i n t h i s c a t a l o g . ? n u c l e a r e n e r g y c o n t r o l s y s t e m s , c o m b u s t i o n s y s t e m s , r a i l r o a d s y s t e m s , a v i a t i o n s y s t e m s , m e d i c a l e q u i p m e n t , a m u s e m e n t m a c h i n e s , v e h i c l e s , s a f e t y e q u i p m e n t , a n d i n s t a l l a t i o n s s u b j e c t t o s e p a r a t e i n d u s t r y o r g o v e r n m e n t r e g u l a t i o n s . ? s y s t e m s , m a c h i n e s , a n d e q u i p m e n t t h a t c o u l d p r e s e n t a r i s k t o l i f e o r p r o p e r t y . p l e a s e k n o w a n d o b s e r v e a l l p r o h i b i t i o n s o f u s e a p p l i c a b l e t o t h e p r o d u c t s . n e v e r u s e t h e p r o d u c t s f o r a n a p p l i c a t i o n i n v o l v i n g s e r i o u s r i s k t o l i f e o r p r o p e r t y w i t h o u t e n s u r i n g t h a t t h e s y s t e m a s a w h o l e h a s b e e n d e s i g n e d t o a d d r e s s t h e r i s k s , a n d t h a t t h e o m r o n p r o d u c t s a r e p r o p e r l y r a t e d a n d i n s t a l l e d f o r t h e i n t e n d e d u s e w i t h i n t h e o v e r a l l e q u i p m e n t o r s y s t e m . p r o g r a m m a b l e p r o d u c t s o m r o n s h a l l n o t b e r e s p o n s i b l e f o r t h e u s e r ' s p r o g r a m m i n g o f a p r o g r a m m a b l e p r o d u c t , o r a n y c o n s e q u e n c e t h e r e o f . d i s c l a i m e r s c h a n g e i n s p e c i f i c a t i o n s p r o d u c t s p e c i f i c a t i o n s a n d a c c e s s o r i e s m a y b e c h a n g e d a t a n y t i m e b a s e d o n i m p r o v e m e n t s a n d o t h e r r e a s o n s . i t i s o u r p r a c t i c e t o c h a n g e m o d e l n u m b e r s w h e n p u b l i s h e d r a t i n g s o r f e a t u r e s a r e c h a n g e d , o r w h e n s i g n i f i c a n t c o n s t r u c t i o n c h a n g e s a r e m a d e . h o w e v e r , s o m e s p e c i f i c a t i o n s o f t h e p r o d u c t s m a y b e c h a n g e d w i t h o u t a n y n o t i c e . w h e n i n d o u b t , s p e c i a l m o d e l n u m b e r s m a y b e a s s i g n e d t o f i x o r e s t a b l i s h k e y s p e c i f i c a t i o n s f o r y o u r a p p l i c a t i o n o n y o u r r e q u e s t . p l e a s e c o n s u l t w i t h y o u r o m r o n r e p r e s e n t a t i v e a t a n y t i m e t o c o n f i r m a c t u a l s p e c i f i c a t i o n s o f p u r c h a s e d p r o d u c t s . d i m e n s i o n s a n d w e i g h t s d i m e n s i o n s a n d w e i g h t s a r e n o m i n a l a n d a r e n o t t o b e u s e d f o r m a n u f a c t u r i n g p u r p o s e s , e v e n w h e n t o l e r a n c e s a r e s h o w n . p e r f o r m a n c e d a t a p e r f o r m a n c e d a t a g i v e n i n t h i s c a t a l o g i s p r o v i d e d a s a g u i d e f o r t h e u s e r i n d e t e r m i n i n g s u i t a b i l i t y a n d d o e s n o t c o n s t i t u t e a w a r r a n t y . i t m a y r e p r e s e n t t h e r e s u l t o f o m r o n s t e s t c o n d i t i o n s , a n d t h e u s e r s m u s t c o r r e l a t e i t t o a c t u a l a p p l i c a t i o n r e q u i r e m e n t s . a c t u a l p e r f o r m a n c e i s s u b j e c t t o t h e o m r o n w a r r a n t y a n d l i m i t a t i o n s o f l i a b i l i t y . e r r o r s a n d o m i s s i o n s t h e i n f o r m a t i o n i n t h i s d o c u m e n t h a s b e e n c a r e f u l l y c h e c k e d a n d i s b e l i e v e d t o b e a c c u r a t e ; h o w e v e r , n o r e s p o n s i b i l i t y i s a s s u m e d f o r c l e r i c a l , t y p o g r a p h i c a l , o r p r o o f r e a d i n g e r r o r s , o r o m i s s i o n s . 2 0 1 1 . 9 i n t h e i n t e r e s t o f p r o d u c t i m p r o v e m e n t , s p e c i f i c a t i o n s a r e s u b j e c t t o c h a n g e w i t h o u t n o t i c e . o m r o n c o r p o r a t i o n i n d u s t r i a l a u t o m a t i o n c o m p a n y h t t p : / / w w w . i a . o m r o n . c o m / ( c ) c o p y r i g h t o m r o n c o r p o r a t i o n 2 0 1 1 a l l r i g h t r e s e r v e d .


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