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  csm_e3x-dac-s_ds_e_5_4 1 color sensing digital fiber sensor e3x-dac-s easy and reliable the fiber sensor that sees in color ? high-power white led and multi-rgb processing eliminate the need to select light source (wavelength) types. ? one-touch teaching enables stable detection that resists against workpiece vibration. ? choose from a wide range of fiber heads to match the workpiece and working space. refer to safety precautions on page 10. features no need to select first in its class reliable settin g g uide function. this f u nction g u ides the u ser to ens u re that the w orkpiece is in an appropriate position for teaching. (indicates over, ok, or low.) easy settin g with one-push teachin g settings to teach the w orkpiece to b e detected can b e easily performed w ith one p u sh. a slim, 10-mm-wide amplifier use of a w hite led and a one-package rgb light-recei v ing element res u lts in a slim amplifier. colors are detected thro u gh changes in the ratio of three parameters, rgb, to ena b le sta b le detection e v en w hen the w orkpiece mo v es. not affected b y mo v e- ment intensity detection (pre v io u s type) color detection (color sensing type) easy and reliable ... featurin g a color-sensin g en g ine easy and reliable ... ease of use and smart functions wide ran g e of fiber heads available select from a w ide range of fi b er heads to match the w orkpiece and w orking space. in addition to ens u ring easy u se, w e ha v e added a n u m b er of smart f u nctions, s u ch as remote control to simplify set u p, and t w in sensing and o u tp u t to sim u ltaneo u sly disting u ish t w o registered colors. (ad v anced models) a high-po w er w hite led and a m u lti-rgb processing system com b ine to co v er all rgb w a v elengths, ena b ling easy and acc u rate detection of w orkpieces w itho u t ha v ing to u se a different light so u rce to w atch each one. 10 mm r g b incorrect operat ion is a w orry. operation is relia b le e v en w ith w orkpiece mo v ement. incident light intensity 80 to 130 rgb ratio easy-to-understand double display immediately check the degree of match w ith the registered colors and the thresholds or easily make fine adj u stment w hile checking these v al u es.
e3x-dac-s 2 ordering information amplifier units pre-wired amplifier units [refer to dimensions on page 13.] *four-color determination is enabled by using an external input to switch between banks for two outputs. amplifier units with connectors (amplifier un it connectors must be ordered separately.) [refer to dimensions on page 15.] amplifier units connectors (order separately) note: protector seals are provided as accessories. [refer to dimensions on page 15.] accessories (order separately) mounting bracket a mounting bracket is not provided with the amplifier unit. order a mounting bracket separately if required. [refer to e39-l/f39-l/e39-s/e39-r .] end plate end plates are not provided with the amplifier unit. order end plates separately if required. [refer to pfp- @ .] item appearance functions model npn output pnp output standard models timer, response speed change e3x-dac11-s 2m e3x-dac41-s 2m advanced models with simultaneous 2-color determination standard models + simultaneous 2-color determination and/or output, remote setting e3x-dac21-s 2m e3x-dac51-s 2m advanced models with 4-color determination * standard model + 4-color determination and/or output, bank switching e3x-dac21b-s 2m e3x-dac51b-s 2m item appearance functions model npn output pnp output standard models timer, response speed change e3x-dac6-s E3X-DAC8-S item appearance cable length no. of conductors model master connector 2 m 3 e3x-cn11 slave connector 1 e3x-cn12 ordering precautions for amplifier units with connectors a connector is not provided with the amplifier unit. refer to the tables at the right when placing an order. when using 5 amplifier units amplifier units applicable connector (order separately) model npn output pnp output master connector slave connector standard models e3x-dac6-s E3X-DAC8-S + e3x-cn11 e3x-cn12 amplifier units (5 units) + 1 master connector 4 slave connectors appearance model quantity e39-l143 1 appearance model quantity pfp-m 1
e3x-dac-s 3 ratings and specifications amplifier units note: refer to page 4 for * 1 to * 6 . type standard models advanced models with simultaneous 2-color determination advanced models with 4-color determination item model e3x-dac @ -s @ ( @ : 11/41/6/8) e3x-dac @ -s ( @ : 21/51) e3x-dac @b -s ( @ : 21/51) sensing distance depends on the fiber unit. refer to page 5 to 7 for details. sensing object reflective models: standard 11 color cards * 1, through-beam models: opaque or translucent object light source (wavelength) white led (420 to 700 nm) sensing method c mode: rgb ratio determination (or i mode: light intensity determination for red, green, or blue; black mode: determination of total light intensity for red, green, and blue) * 2 number of registered colors 1 2 (simultaneous determination) 4 (2-color simultaneous determination 2 banks) power supply voltage 12 to 24 vdc 10%, ripple (p-p) 10% max. power consumption 960 mw max. (current consumption: 40 ma max. at power supply voltage of 24 vdc) control outputs npn or pnp open collector load power supply voltage: 26.4 vdc max. load current: 50 ma max. (residual voltage: 2 v max.) number of control outputs 12 remote control input --- no-voltage input (contact/transistor) * 3 protection circuits reverse polarity for power supply connection, output short-circuit, reversed output polarity protection response time super-high-speed mode * 4 high-speed mode standard mode high-resolution mode operate or reset: 60 s operate or reset: 300 s operate or reset: 1 ms operate or reset: 4 ms operate or reset: 120 s operate or reset: 600 s operate or reset: 2 ms operate or reset: 8 ms sensitivity setting (color regis- tration, allowable range) teaching (one-point teaching or teaching with/without workpiece) or manual adjustment functions operation mode on for match (on for same color as registered color) or on for mismatch (on for different color from registered color) timer function timer type: off delay, on delay, or one-short, timer time: 1 ms to 5 s (variable) control outputs --- output for each channel, and output, and or output remote control --- one-point teaching, teaching with/without workpiece, zero reset, and light emission off bank switching (switching between banks a and b and banks c and d) display switch * 5 seven patterns total: match + threshold, margin + threshold, analog bar display, peak + bottom, etc. initialization initial reset (factory defaults) or user reset (saved settings) initial reset (factory defaults) zero reset supported not supported indicators operation indicator (orange)/i mode display indicator (orange) operation indicator for each channel (orange) digital display 7-segment displays (main display: red, sub-display: green) display direction switchable between normal and reversed. ambient illumination (receiver side) incandescent lamp: 3,000 lux sunlight: 10,000 lux ambient temperature range * 6 operating: ? 25 c to 55 c, storage: ? 30 c to 70 c (with no icing or condensation) ambient humidity range operating and storage: 35% to 85% (with no condensation) insulation resistance 20 m min. (at 500 vdc) dielectric strength 1,000 vac at 50/60 hz for 1 minute vibration resistance destruction: 10 to 50 hz with a 1.5-mm double amplitude for 2 h 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 ip50 (with protective cover attached) connection method pre-wired (standard cable length: 2 m) or reduced-wiring connector (units connected: 16 max.) pre-wired (standard cable length: 2 m) weight (packed state) pre-wired model: approx. 100 g, amplifie r unit connector model: approx. 55 g materials case polybutylene terephthalate (pbt) cover polycarbonate (pc) accessories instruction manual
e3x-dac-s 4 *1. sensing object: standard color card (230 colors) from japan color enterprise co., ltd.) *2. when teaching with/without a workpiece, the best sensing method will be automatically selected (rgb ratio (c mode) or light intensity determination (i mode)). if color differences are not strong enough and rgb ratios would result in unstable detection, then light intensity determina tion (i mode) will be selected. the detection mode can be set to c, i, or black mode. *3. input specifications *4. mutual interference prevention cannot be used in super-high-speed mode, and light intensity determination (i mode) must be used. the response time will be 150 s if an and or or is set for the control outputs. *5. with light intensity determination (i mode and black mode), the correlation is not displayed, but rather the light intensity is displayed. *6. the allowable ambient operating temperature changes according to the number of units that are linked. 2 units: ? 25 to 55 c, 3 to 10 units: ? 25 to 50 c, and 11 to 16 units: ? 25 to 45 c amplifier unit connectors color (11 standard colors) munsell color notation white n9.5 red 4r 4.5/12.0 yellow/red 4yr 6.0/11.5 yellow 5y 8.5/11.0 yellow/green 3gy 6.5/10.0 green 3g 6.5/9.0 blue/green 5bg 4.5/10.0 blue 3pb 5.0/10.0 blue/purple 9pb 5.0/10.0 purple 7p 5.0/10.0 red/purple 6rp 4.5/12.5 (black) (n2.0) contact input (relay or switch) non-contact input (transistor) npn on: shorted to 0 v (sourcing current: 1 ma max.). off: open or shorted to vcc. on: 1.5 v max. (sourcing current: 1 ma max.) off: vcc - 1.5 v to vcc (leakage current: 0.1 ma max.) pnp on: shorted to vcc (sinking current: 3 ma max.). off: open or shorted to 0 v. on: vcc - 1.5 v to vcc (sinking current: 3 ma max.) off: 1.5 v max. (leakage current: 0.1 ma max.) item model e3x-cn11 e3x-cn12 rated current 2.5 a rated voltage 50 v contact resistance 20 m max. (20 mvdc max., 100 ma max.) (the figure is for connection to the amplifier unit and the adjacent connector. it does not include the conductor resistance of the cable.) no. of insertions destruction: 50 times (the figure for the number of insertions is for connection to the amplifier unit and the adjacent connector.) materials housing polybutylene terephthalate (pbt) contacts phosphor bronze/gold-plated nickel weight (packed state) approx. 55 g approx. 25 g operating procedures (typical) detecting marks disting u ishing trays detecting w afers beca u se it disting u ishes rgb ratios, detection is highly resistant to w orkpiece mo v ement. thro u gh- b eam heads are capa b le of detecting color differences in semi-transparent o b jects. fo u r-color determination greatly red u ces the w ork req u ired for line s w itcho v ers. w orkpieces that a b sor b a specific w a v elength can b e detected w ith a w ide range of w a v elengths. detecting black marks detecting prod u cts on con v eyors in black mode, b lank seam tape and other b lack marks can b e detected regardless of film color or patterns if yo u teach the con v eyor (i.e., the b ackgro u nd), yo u can detect w orkpieces e v en if they ha v e different colors, shapes, or gloss.
e3x-dac-s 5 sensing distance reflective models (unit: mm) sensing object white paper standard color card (11 colors) (mutual determination) type high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode stan- dard models general- purpose e32-dc200 70 54 46 1 8 14 10 8 .5 6 e32-d11r/e32-d12r/ e32-d15xr/e32-d11n/ e32-dc200br(b4r) 42 32 26 11 8 .5653.5 e32-d14lr 11 8 .5 7 2.5 2.4 1.7 1.4 1 e32-d15yr/e32-d15zr 10 7.5 6.5 2.5 2.1 1.5 1.3 0.9 e32-d211/e32-dc200e/ e32-d22/e32-d25x/ e32-dc200f(f4) 20 16 14 5 4.5 3 2.5 1.5 e32-d24 8 . 8 6.7 5. 8 2.1 1. 8 1.3 1.1 0.7 e32-d25y/e32-d25z 5. 8 4.5 3. 8 1.4 1.2 0.9 0.7 0.5 break- resistant e32-d11/e32-d15xb 42 32 26 11 8 .5653.5 e32-d21b/e32-d221b 19 15 13 4.5 4.1 3 2.4 1.5 e32-d21/e32-d22b 8 . 8 6.7 5. 8 2.1 1. 8 1.3 1.1 0.7 e32-d25xb 14 10 9 3 3 2.1 1.7 1.1 fluorine coating e32-d11u 42 32 26 11 8 .5653.5 special- beam models long dis- tance, high power e32-a09 20 to 3 8 24 to 36 26 to 32 --- 20 to 3 8 24 to 36 26 to 32 --- e32-d11l 90 70 60 22 19 13 11 7.5 e32-d21l/e32-d22l 35 26 22 8 7542.5 coaxial e32-cc200 60 45 35 16 12 9 7 4 e32-cc200r/e32-c11n 35 26 22 9 7.5 5 4.5 3 e32-d32l 35 26 22 9 7.5 5 4.5 3 e32-c31/e32-d32 17 13 11 4.5 3.7 2.7 2.2 1.5 e32-c31n 7.7 6 4. 8 2.1 1.6 1.2 0.9 0.7 area sensing e32-d36p1 35 26 22 9 7.5 5 4.5 3 environ- ment resis- tive models heat- resistant e32-d51 55 42 36 14 11 8 .5 7 4.5 e32-d81r-s/e32-d61-s 20 15 13 5 4 3 2.5 1.5 e32-d73-s 13 10 8 .5 3.5 2. 8 21.71.2 chemical resistant e32-d12f 22 17 15 6 4.9 3.5 2.9 2 e32-d14f 97622.11.41.20.6
e3x-dac-s 6 through-beam models (unit: mm) *these sensing distances ar e recommended to make the most of t he detection capabilities of the sensor. sensing object opaque object translucent object * type high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode stan- dard models general- purpose e32-tc200 200 160 140 70 45 32 26 22 e32-t11r/e32-t12r/ e32-t15xr/e32-t11n/ e32-tc200br(b4r) 150 110 95 50 30 22 1 8 16 e32-t14lr/e32-t15yr/ e32-t15zr 55 44 3 8 19 12 8 .5 7 6.5 e32-tc200e/e32-t22/ e32-t222/e32-t25x/ e32-tc200f(f4) 8 0605046171210 7 e32-t24/e32-t25y/ e32-t25z 4 8 36 32 26 10 7 6 4 break- resistant e32-t11/e32-t12b/ e32-t15xb 190 140 120 60 40 2 8 24 20 e32-t21/e32-t221b/ e32-t22b 70 55 4 8 40 15 11 9 6 e32-t25xb 55 42 36 30 11 8 74.5 fluorine coating e32-t11u 190 140 120 60 40 2 8 24 20 special- beam models long dis- tance, high power e32-t17l 4300 3200 2 8 00 1400 900 600 500 460 e32-tc200 + e39-f1 1100 8 50 700 360 220 160 140 120 e32-t11r + e39-f1 1000 750 650 340 220 150 130 110 e32-t11n+e39-f1 1000 750 650 320 200 150 120 110 e32-t11 + e39-f1 1000 750 650 320 200 150 120 110 e32-t14 950 700 600 300 200 140 120 100 e32-t11l/e32-t12l 350 250 200 120 75 55 46 40 e32-t11l + e39-f2 220 160 140 75 46 32 2 8 25 e32-t11r + e39-f2 110 8 5703622161412 e32-t11 + e39-f2 1 8 0 140 120 60 3 8 2 8 22 20 e32-t12l/e32-t22l 160 120 100 90 34 24 20 14 fine beam e32-t22s 500 400 350 170 110 8 06555 e32-t24s 360 2 8 024012075554640 area sensing e32-t16 750 600 500 250 160 110 95 8 5 e32-t16pr 240 1 8 0 150 8 050363026 e32-t16jr 200 160 130 65 44 30 26 22 e32-t16wr 360 2 8 024012075554640 label detection (slot sensor) e32-g14 10 10
e3x-dac-s 7 *these sensing distances are recommended to make the most of the detection capabilities of the sensor. sensing object opaque object translucent object * type high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode high- resolu- tion mode stan- dard mode high- speed mode super- high- speed mode environ- ment resis- tive models heat- resistant e32-t51 200 160 140 70 44 32 26 22 e32-t54 60 4 8 42 20 13 9.5 8 .1 7 e32-t81r-s 75 60 50 26 16 11 9.5 8 .5 e32-t61-s 120 95 8 04226191614 e32-t61-s + e39-f1 950 700 600 320 200 140 120 100 e32-t61-s + e39-f2 120 95 8 04226191614 e32-t84s-s 360 2 8 024012075554640 chemical resistant e32-t11f 550 420 360 1 8 0110 8 07060 e32-t12f 8 50 650 550 2 8 01 8 0 120 100 95 e32-t14f 100 8 0703522161312 e32-t51f 3 8 0 300 250 130 8 0554 8 44 e32-t81f-s 190 150 120 65 40 2 8 24 22 vacuum resistant e32-t51v 55 42 36 1 8 11 8 .5 7 6 e32-t51v + e39-f1v 2 8 0 200 1 8 09055423530 e32-t54v 36 2 8 24 12 7.5 5.5 4.5 4 e32-t54v + e39-f1v 140 100 90 46 2 8 20 17 15 e32-t84sv 130 100 8 5452 8 20 17 15 refer to the ? e32 series fiber sensor best selection guide (cat. no. e353).
e3x-dac-s 8 engineering data (typical) color vs. detection capability e3x-dac @ -s + e32-cc200 color detection characteristics color detection capability vs. distance e3x-dac @ -s + e32-cc200 e3x-da @ -s + e32-cc200 e3x-dab/g @ -s + e32-cc200 (model with single-color light source) correlation vs. distance correlation vs. angle e3x-dac @ -s + e32-cc200 e3x-dac @ -s + e32-cc200 model w ith red light so u rce model w ith green light so u rce model w ith bl u e light so u rce no need to select (e3x-da @ -s) (e3x-dag @ -s) (e3x-dab @ -s) 5639 4427 5538 545 2 645 2 32322 4 978 4 white red yello w green bl u e p u rple black white red yello w green bl u e p u rple black 83510 8553 536 536 33 4 533 3 10 6643 553 38 532 5242 3223 342 6 322 4 8364 white red yello w green bl u e p u rple black white red yello w green bl u e p u rple black white red yello w green bl u e p u rple black white red yello w green bl u e p u rple black sensing distance: 9 mm (i.e., the teaching distance) ? : detection possible, ? : detection not possible. *. use 2-point teaching to distinguish between white and black. white red yellow/ red yellow yellow/ green green blue/ green blue blue/ purple purple red/ purple black * white ?????????? ( ? ) red ? ?????????? yellow/ red ?? ????????? yellow ??? ???????? yellow/ green ???? ??????? green ????? ?????? blue/ green ?????? ????? blue ??????? ???? blue/ purple ???????? ??? purple ????????? ?? red/ purple ?????????? ? black * ( ? ) ?????????? n u m b er of colors differentiated (com b inations) 0 20 40 60 80 100 120 140 0 sensing distance x (mm) = teaching distance x 35 30 25 20 15 10 5 for one-point teaching for 2-point teaching model w ith b l u e light so u rce e3x-dab-s model w ith green light so u rce e3x-dag-s e3x-dac-s 0 100 200 300 400 500 600 700 800 900 1000 red yello w green bl u e p u rple correlation (digital display) sensing o b ject color registered color registered color sensing distance: 9 mm (i.e., the teaching distance) white red yello w /red yello w ye l l o w /green green bl u e/green bl u e bl u e/p u rple p u rple red/p u rple ~ ~ ~ ~ 9 mm 
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%fufdujohfbditfotjoh pckftudpmps change in correlation ( % ) ? 25 ? 20 ? 15 ? 10 ? 5 0 5 change in distance x ( % ) x sensing distance: 9 mm (i.e., the teaching distance) ? 40 ? 30 ? 20 ? 10 10 20 30 40 0 bl u e red registered color green sensing o b ject angle of incline ( ) change in correlation ( % ) ? 25 ? 20 ? 15 ? 10 ? 5 0 5 ? 20 ? 15 ? 10 ? 5 5 10 15 20 0 + ? sensing o b ject sensing distance: 9 mm (i.e., the teaching distance) bl u e red registered color green
e3x-dac-s 9 i/o circuit diagrams npn output pnp output note 1. timing charts for timer function settings (t: set time) 2. c ontrol outputs (and, or, sync) and timing chart for timer setti ngs (t: set time) model operation mode timing charts operation selector switch output circuit e3x-dac11-s e3x-dac6-s on for match light on (l-on) on for mismatch dark on (d-on) e3x-dac21-s e3x-dac21b-s on for match light on (l-on) on for mismatch dark on (d-on) model operation mode timing charts operation selector switch output circuit e3x-dac41-s E3X-DAC8-S on for match light on (l-on) on for mismatch dark on (d-on) e3x-dac51-s e3x-dac51b-s on for match light on (l-on) on for mismatch dark on (d-on) match mismatch o n off o n off operate reset o u tp u t transistor (between brown and black leads) operation indicator (orange) load (e.g., relay) photo- electric sensor main circ u it load i mode indicator (orange) brown black bl u e control o u tp u t 12 to 24 vdc display operation indicator (orange) match mismatch o n off o n off operate reset o u tp u t transistor (between brown and black leads) operation indicator (orange) load (e.g., relay) match mismatch o n off o n off operate reset o u tp u t transistor (between brown and black leads) operation indicator (orange) load (e.g., relay) ch2 operation indicator (orange) ch1 control o u tp u t ch2 control o u tp u t external inp u t orange pink ch1 operation indicator (orange) photo- electric sensor main circ u it load load brown black bl u e 12 to 24 vdc display match mismatch o n off o n off operate reset o u tp u t transistor (between brown and black leads) operation indicator (orange) load (e.g., relay) (between bl u e and black leads) match mismatch o n off o n off operate reset o u tp u t transistor operation indicator (orange) load (e.g., relay) photo- electric sensor main circ u it load i mode indicator (orange) brown black bl u e control o u tp u t 12 to 24 vdc display operation indicator (orange) (between bl u e and black leads) match mismatch o n off o n off operate reset o u tp u t transistor operation indicator (orange) load (e.g., relay) (between bl u e and black leads) match mismatch o n off o n off operate reset o u tp u t transistor operation indicator (orange) load (e.g., relay) ch2 operation indicator (orange) ch1 control o u tp u t ch2 control o u tp u t external inp u t orange pink ch1 operation indicator (orange) photo- electric sensor main circ u it load load brown black bl u e 12 to 24 vdc display (between bl u e and black leads) match mismatch o n off o n off operate reset o u tp u t transistor operation indicator (orange) load (e.g., relay) on delay off delay one-shot match mismatch o n off o n off l-o n d-o n t t match mismatch o n off o n off l-o n d-o n t t match mismatch o n off o n off l-o n d-o n t t ch1 ch2 o n off o n off o n off o n off out (or) out (a n d) ch1 ch2 o n off o n off o n off o n off o n off one-shot (a n d) off delay (a n d) o n delay (a n d) t t t
e3x-dac-s 10 nomenclature 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 with voltage in excess of the rated voltage. ex cess voltage may result in malfunction or fire. never use the product with an ac power supply. otherwise, explosion may result. high-temperature enviro nments may result in burn injury. the follo w ing precautions must b e o b served to ensure safe operation of the sensor. 1. do not use the sensor in an environment w here explosive or flamma b le gas is present. 2. do not use the sensor in a location su b ject to splattering of w ater, oils, or chemicals. 3. do not attempt to disassem b le, repair, or modify the sensor. 4. do not apply voltages or currents that exceed the rated range to the sensor. 5. do not use the sensor in an am b ient atmosphere or environment that exceeds the ratings. 6. wire the po w er supply correctly, including the polarity. 7. connect the load correctly. 8. do not short-circuit the load at b oth ends. 9. do not use the sensor if the case is damaged. 10. dispose of the sensor as industrial w aste. 11. do not use the sensor in locations su b ject to direct sunlight. 12. burn injury may occur. the sensor surface temperature rises depending on application conditions, such as the am b ient temperature and the po w er supply voltage. use caution w hen operating or performing maintenance on the sensor. amplifier units standard models e3x-dac @ -s ( @ : 11/41/6/8) advanced models with simultan eous 2-color determination e3x-dac @ -s ( @ : 21/51) advanced models with 4-color determination e3x-dac @ b-s ( @ : 21/51) o n when o u tp u t is o n . off when o u tp u t is off. operation indicator (orange) locks the fiber. lock le v er incident le v el, f u nction, etc. main display (red) threshold, f u nction settings, etc. s u b-display (green) use to select set or ru n mode. mode selector switch lit orange: operation in i mode. i mode indicator f u nction setting operations operation keys use to switch between light o n and dark o n modes. operation selector switch up do wn mode locks the fiber. incident le v el, f u nction, etc. o n when o u tp u t is o n . off when o u tp u t is off. ch1 operation indicator lock le v er main display (red) used to select the channel to display and set. channel switch use to select set or ru n mode. mode selector switch o n when o u tp u t is o n . off when o u tp u t is off. ch2 operation indicator f u nction setting operations operation keys threshold, f u nction settings, etc. s u b-display (green) up do wn mode warning caution precautions for safe use
e3x-dac-s 11 do not use the product in atmospheres or environments that exceed product ratings. amplifier unit designing operation after turning power on the sensor is ready to detect within 200 ms after the power supply is turned o n . if the sensor and load are connected to separate power supplies, be sure to turn o n the sensor first. time may be required for the degree of match to stabilize after the power supply is turned o n . operation when turning power off output pulses may occur when the power is turned off. turn off the power supply to the load and the load line before turning off the power supply to the sensor. mounting connecting and discon necting connectors mounting connectors 1. insert the master or slave c onnector into the amplifier unit until it clicks into place. 2. attach the protector seals (p rovided as accessories) to the sides of master and slav e connectors that are not connected. n ote: attach the seals to the sides with grooves. removing connectors 1. slide the slave amplifier unit (s) for which the connector is to be removed away from the rest of the group. 2. after the amplifier unit(s) has been separated, press down on the lever on the connector and remove it. (do not attempt to remove connectors without separating them from other amplifier units first.) adding and removing amplifier units adding amplifier units 1. mount the amplifier units one at a time onto the di n track. 2. slide the amplifier units t ogether, line up the clips, and press the amplifier units togethe r until they click into place. removing amplifier units slide amplifier units away from each other, and remove from the di n track one at a time. (do not attempt to remove amplifier units from the di n track without separating them first.) mounting the end plate (pfp-m) an end plate should be used if there is a possibility of the amplifier unit moving, e.g., due to vibration. precautions for correct use insert seal remo v e le v er press do w n n ote 1. the specifications for ambient temperature will vary according to the number of amplifier unit used together. for details, refer to ratings and specifications on ? page 3. 2. always turn off the power supply before joining or separating amplifier units. click into place end plate
e3x-dac-s 12 fiber connection the e3x amplifier unit has a lock button for easy connection of the fiber unit. connect or disconnect the fibers using the following procedures: 1. connection open the protective cover and raise the lock lever to release the lock. next, insert the fibers according to the fiber insertion marks on the side of the amplifier unit, and lower the lock lever. note: if one of the fibers from the fiber unit has a white line, such as with a coaxial sensor, that fiber is for the emitter. insert it into the emitter section. refer to dimensions for the fiber unit to see if there is an emitter fiber. 2. disconnecting fibers remove the protective cover and raise the lock lever to pull out the fibers. adjusting mutual interference protection function light from other sensors can cause the value on the digital display to become somewhat unst able. if this occurs, reduce the threshold to create a greater margin and enable more stable detection. output short-circuits protection over/cur will flash on the displa y if the output short-circuit protection function operates due to a load short-circuit in a control output. if this occurs, check the load connections. eeprom writing error if the data is not written to the eeprom correctly due to a power failure or static-electric noise, initialize the settings with the keys on the amplifier un it. err/eep will flash on the display when a writing error has occurred. optical communications several amplifier units can be slid together and used in groups. do not, however, slide the amplifier units or attempt to remove any of the amplifier units during operation. others protective cover always keep the protective cover in place when using the amplifier unit. fiber unit design precautions applicable fiber units refer to the sensing distance tables on pages 5 to 7 for the fiber units that can be used and the sensing distances. retro-reflective, convergent-reflective, ultra-compact, and application-specific fiber units, which are not listed, cannot be used. installation precautions glossy sensing objects if the sensing object is glossy, detection may not be stable. if the sensor is inclined by 5 to 20 when using a glossy sensing object, as shown below, detection capabilities can be increased and stable detection achieved. note: do not pull on, compress, or otherwise exert excessive force on the fibers after connecting them to the amplifier unit. (do not exert more than 0.3 nm.) note 1. to maintain the fiber properties, confirm that the lock is released before removing the fibers. 2. be sure to lock or unlock the lock button within an ambient temperature range between ? 10 c and 40 c. 9 mm insertion position locked unlocked protecti v e co v er lock bu tton fi b er insertion mark fi b er locked unlocked protecti v e co v er sensing o b ject sensing distance e32-cc200 or other fi b er unit = 5 to 20
e3x-dac-s 13 dimensions amplifier units (unit: mm) tolerance class it16 applies to dimensions in this data sheet unless otherwise specified. 141.1 1 4 1 . 1 70 7 0 32 3 2 141.1 1 4 1 . 1 70 7 0 32 3 2 101.45 1 0 1 . 4 5 10 1 0 101.45 1 0 1 . 4 5 10 1 0 4.3 12.5 18.7 4.3 12.5 16 4.3 18.7 6.3 15.6 35.25 16 t w o, m3 3.4 (9) (36.2) (21.3) 180 3.4 180 (9) (9.4) 10.3 5.65 4.5 5.65 4.5 3.4 4.4 16 28.1 10 10 l t w o , 2.4 dia. t w o, 3.2 dia. holes mo u nting bracket (e39-l143) sus304 stainless steel hole for optical comm u nications mountin g holes vinyl-ins u lated ro u nd ca b le standard length: 2 m* hole for optical comm u nications vinyl-ins u lated ro u nd ca b le standard length: 2 m* with mountin g bracket attached main display s ub -display operation indicator ro u nd ( ): i mode indicator o b long ( ): operation indicator for channel 2 area of di g ital indication center of din track din track (sold separately) pfp- @ n end plate (sold separately) pfp-m multiple connection dia g ram t w o , 2.4 dia. din track mountin g fi b er attachment mo u nted (e39-f9) fi b er attachment mo u nted (e39-f9) pre-wired amplifier units e3x-dac11-s e3x-dac41-s e3x-dac21-s e3x-dac51-s e3x-dac21b-s e3x-dac51b-s * cable specifications e3x-dac11-s -dac41-s 4-dia., 3-conductor (conductor cross section: 0.2 mm 2 , insulator diameter: 1.1 mm) e3x-dac21-s -dac51-s -dac21b-s -dac51b-s 4-dia., 5-conductor (conductor cross section: 0.2 mm 2 , insulator diameter, 1.1 mm) the number of expansion l (mm) 110 220 330 440 550 660 770 88 0 990 10 100 n ote: w hen using e39-l143 mounting brackets, there will be small gaps between the amplifier units if they are mounted side by side.
e3x-dac-s 14 70 7 0 32 3 2 70 7 0 32 3 2 101.45 1 0 1 . 4 5 10 1 0 101.45 1 0 1 . 4 5 10 1 0 18.7 16 4.3 18.7 6.3 15.6 35.25 16 two, m3 3.4 (9) (36.2) (21.3) 180 3.4 180 (9) (9.4) 10.3 5.65 4.5 5.65 4.5 3.4 4.4 16 28.1 10 10 l four, 2.4 dia. two, 3.2 dia. holes mounting bracket (e39-l143) sus304 stainless steel hole for optical communications mounting holes hole for optical communications with mounting bracket attached main display sub-display operation indicator round ( ): i mode indicator oblong ( ): operation indicator for channel 2 area of digital indication center of din track din track (sold separately) pfp- @ n end plate (sold separately) pfp-m multiple connection diagram four, 2.4 dia. din track mounting 12.95 a dia. * 12.95 a dia. * fiber attachment mounted (e39-f9) fiber attachment mounted (e39-f9)                 amplifier units with c onnectors e3x-dac6-s E3X-DAC8-S *ca b le diameters e3x-cn11 (3 conductors) 4.0-mm dia. e3x-cn12 (1 conductor) 2.6-mm dia. the number of expansion l (mm) 110 220 330 440 550 660 770 88 0 990 10 100 n ote: when u sing e39-l143 mo u nting brackets, there w ill b e small gaps b et w een the amplifier units if they are mo u nted side b y side.
e3x-dac-s 15 amplifier unit connectors refer to the ? e32 series fiber sensor best selection guide (cat. no. e353). master connectors e3x-cn11 (7) 2,000 +50 0 * * e3x-cn11: 4 dia. 4 d i a . ca b le / 3 cond u ctors 3 c o n d u c t o r s / standard length: 2 m (cond u ctor cross section: 0.2 mm 2 (awg24), ins u lator diameter: 1.1 mm) edge of amplifier slave connectors e3x-cn12 (7) 2,000 +50 0 * * e3x-cn12: 2.6 dia. 2 . 6 d i a . ca b le / 1 cond u ctor 1 c o n d u c t o r / standard length: 2 m (cond u ctor cross section: 0.2 mm 2 (awg24), ins u lator diameter: 1.1 mm) edge of amplifier
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 , machin 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 perfor 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 . 2010 . 1 1 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 0 a l l r i g h t r e s e r v e d .


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