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  csm_h3yn_ds_e_ 5_1 1 solid-state timer h3yn miniature timer with multiple time ranges and multiple operating modes ? minimizes stock. ? pin configuration compatible with my power relay. ? standard multiple operating modes and multiple time ranges. ? conforms to en61812-1 and iec60664-1 for low voltage, and emc directives. -3 for the most recent information on models that have been certified for safety standards, refer to your omron website. model number structure model number legend 1. output 2: dpdt 4: 4pdt 2. time range none: short-time range (0.1 s to 10 min) 1: long-time range (0.1 min to 10 hrs) 3. contact type none: single contact z: twin contacts ordering information list of models note: 1. sockets and hold-down clips are not included with the h3yn. they must be ordered separately. 2. only models with 24-vdc power supply are available. 3. use the h3yn-4 or h3yn-41 series when sw itching micro loads, and use the h3yn-4-z or h3yn-41-z series when switching even smaller loads. h3yn-@@-@ 1 2 3 supply voltage time-limit contact short-time range model (0.1 s to 10 min) long-time range model (0.1 min to 10 h) 24, 100 to 120, 200 to 230 vac; 12, 24, 48, 100 to 110, 125 vdc dpdt h3yn-2 h3yn-21 4pdt h3yn-4 h3yn-41 24 vdc 4pdt (twin contac ts) h3yn-4-z h3yn-41-z note: specify both the model n umber and supply v oltage w hen ordering. example: h3y n-2 24 v ac supply v oltage
h3yn 2 accessories (order separately) adapter, mounting plate, clip note: for details, refer to ntlp reference socket and din track products . socket note: 1. cannot be used with the h3y- @ -0 (pcb terminals). 2. the pyf @@ a-e has a finger-protection structure. round crimp term inals cannot be used. use forked crimp terminals. 3. for details, refer to socket and din track products. name/specification model flush mounting adapter y92f-78 mounting plate for socket for 1 socket pyp-1 for 18 sockets pyp-18 clip for pyf @ a y92h-3 for py @ and pyf @ m y92h-4 timer square sockets contact model pin connection terminal model dpdt h3y-2 h3yn-2 @ 8-pin front connecting din track mounting pyf08a din track mounting (finger-safe tyape) pyf08a-e screw mounting pyf08f back connecting solder terminal py08 4pdt h3y-4 h3yn-4 @ 14-pin front connecting din track mounting pyf14a din track mounting (finger-safe tyape) pyf14a-e back connecting solder terminal PY14
h3yn 3 specifications ratings note: 1. do not use the output from an inverter as the power supply. refer to safety precautions for all times for details. 2. single-phase, full-wave-rectif ied power supplies can be used. 3. when using the h3yn continuously in any place wh ere the ambient temperature is in a range of 45 c to 50 c, supply 90% to 110% of the rated supply voltages (supply 95% to 110% with 12 vdc type). 4. set the reset voltage as follows to ensure proper resetting. 100 to 120 vac: 10 vac max. 200 to 230 vac: 20 vac max. 100 to 110 vdc: 10 vdc max. 5. refer to safety precautions for all timers when combining the timer with an ac 2-wire proximity sensor. 6. a diode to prevent reverse voltages is pr ovided only on models with a dc power supply. item h3yn-2/-4/-4-z h3yn-21/-41/-41-z time ranges 0.1 s to 10 min (1 s, 10 s, 1 min, or 10 min max. selectable) 0.1 min to 10 h (1 min, 10 min, 1 h, or 10 h max. selectable) rated supply voltage (see note 5, 6.) 24, 100 to 120, 200 to 230 vac (50/60 hz) (see note 1.) 12, 24, 48, 100 to 110, 125 vdc (see note 2.) pin type plug-in operating mode on-delay, interval, flicker off start, or flicker on start (selectable with dip switch) operating voltage range 85% to 110% of rated supply voltage (12 vdc: 90% to 110% of rated supply voltage) (see note 3.) reset voltage 10% min. of rated supply voltage (see note 4.) power consumption 100 to 120 vac: relay on: approx. 1.8 va (1.6 w) at 120 vac, 60 hz relay off: approx. 1 va (0.6 w) at 120 vac, 60 hz 200 to 230 vac: relay on: approx. 2.2 va (1.8 w) at 230 vac, 60 hz relay off: approx. 1.5 va (1.1 w) at 230 vac, 60 hz 24 vac: relay on: approx. 1.8 va (1.4 w) at 24 vac, 60 hz relay off: approx. 0.3 va (0.2 w) at 24 vac, 60 hz 12 vdc: relay on: approx. 1.1 w at 12 vdc relay off: approx. 0.1 w at 12 vdc 24 vdc: relay on: approx. 1.1 w at 24 vdc relay off: approx. 0.1 w at 24 vdc 48 vdc: relay on: approx. 1.2 w at 48 vdc relay off: approx. 0.3 w at 48 vdc 100 to 110 vdc: relay on: approx. 1.6 w at 110 vdc relay off: approx. 0.4 w at 110 vdc 125 vdc: relay on: approx. 1.6 w at 125 vdc relay off: approx. 0.4 w at 125 vdc control outputs dpdt: 5 a at 250 vac, resistive load (cos = 1) 4pdt: 3 a at 250 vac, resistive load (cos = 1)
h3yn 4 characteristics note: 1. terminal screw sections are excluded. 2. refer to the life-test curve . item h3yn-2/-21/-4/-41 accuracy of operating time 1% fs max. (1 s range: 1% 10 ms max.) setting error 10% 50 ms fs max. reset time min. power-opening time: 0.1 s ma x. (including halfway reset) influence of voltage 2% fs max. influence of temperature 2% fs max. insulation resistance 100 m min. (at 500 vdc) dielectric strength 2,000 vac, 50/60 hz for 1 min (between current -carrying terminals and ex posed non-current-carrying metal parts) (see note 1) 2,000 vac, 50/60 hz for 1 min (between operating power circuit and control output) 2,000 vac, 50/60 hz for 1 min (between different pole cont acts; 2-pole model) 1,500 vac, 50/60 hz for 1 min (between different pole contacts; 4-pole model) 1,000 vac, 50/60 hz for 1 min (between non-continuous contacts) vibration resistance destruction: 10 to 55 hz, 0.75-mm single amplitude for 1 h each in 3 directions malfunction: 10 to 55 hz, 0.5-mm single am plitude for 10 min each in 3 directions shock resistance destruction: 1,000 m/s 2 malfunction: 100 m/s 2 ambient temperature operating: ? 10 c to 50 c (with no icing) storage: ? 25 c to 65 c (with no icing) ambient humidity operating: 35% to 85% life expectancy mechanical: 10,000,000 operations min. (under no load at 1,800 operations/h) electrical: dpdt: 500,000 operations min. (5 a at 250 vac, resistive load at 1,800 operations/h) 4pdt: 200,000 operations min. (h3yn-4-z/-41-z: 100,000 operations min.) (3 a at 250 vac, resistive load at 1,800 operations/h) (see note 2) impulse withstand voltage between power terminals: 3 kv for 100 to 120 vac, 200 to 230 vac, 100 to 110 vdc, 125 vdc 1 kv for 12 vdc, 24 vdc, 48 vdc, 24 vac between exposed non-current-carrying metal parts: 4.5 kv for 100 to 120 vac, 200 to 230 vac, 100 to 110 vdc, 125 vdc 1.5 kv for 12 vdc, 24 vdc, 48 vdc, 24 vac noise immunity 1.5 kv, square-wave noise by noise simulator (pulse width: 100 ns/1 s, 1-ns rise) static immunity destruction: 8 kv malfunction: 4 kv degree of protection ip40 weight approx. 50 g emc (emi) en61812-1 emission enclosure: en55011 group 1 class a emission ac mains: en55011 group 1 class a (ems) en61812-1 immunity esd: en61000-4-2: 8 kv air discharge (level 3) immunity rf-interference from am radio waves: en61000-4-3: 10 v/m (80 mhz to 1 ghz) (level 3) immunity burst: en61000-4-4: 2 kv power-line (level 3) 2 kv i/o signal-line (level 4) immunity surge: en61000-4-5: 2 kv line to ground (level 3) 1 kv line to line (level 3) approved standards ul508, csa c22.2 no. 14, lloyds conforms to en61812-1 and iec60664-1. (2.5 kv/2 fo r h3yn-2/-21, 2.5 kv/1 for h3yn-4/-41, h3yn- 4-z/-41-z) output category according to en60947-5-1.
h3yn 5 life-test curve (reference value) 5,000 1,000 500 200 5,000 1,000 500 200 5,000 1,000 500 200 5,000 1,000 500 200 5,000 1,000 500 100 60 h3yn-2/-21 h3yn-4/-41 h3yn-4-z/-41-z sw itching operations (x 10 3 ) load current (a) sw itching operations (x 10 3 ) load current (a) sw itching operations (x 10 3 ) load current (a) sw itching operations (x 10 3 ) load current (a) sw itching operations (x 10 3 ) load current (a) 250 v ac, resisti v e load 250 v ac, cos = 1 24 v dc, cos = 1 reference: a maxim um current of 0.6 a can be s witched at 125 vdc (cos = 1). maxim um current of 0.2 a can be s w itched if l/r is 7 ms. in b oth cases, a life of 100,000 operations can b e expected. the minim um applicab le load is 1 ma at 5 v dc (p reference v alue). 250 v ac, cos = 0.4 24 v dc, l/r = 7 ms 250 v ac, cos = 1 24 v dc, cos = 1 reference: a maxim um current of 0.5 a can be s witched at 125 vdc (cos = 1). maxim um current of 0.2 a can be s w itched if l/r is 7 ms. in b oth cases, a life of 100,000 operations can b e expected. the minim um applicab le load is 1 ma at 1 v dc (p reference v alue). 250 v ac, cos = 0.4 24 v dc, l/r = 7 ms 24 v dc, resistiv e load reference: a maxim um current of 0.5 a can be s witched at 125 vdc (cos = 1). maxim um current of 0.2 a can be s w itched if l/r is 7 ms. in b oth cases, a life of 100,000 operations can b e expected. the minim um applicab le load is 0.1 ma at 1 v dc (p reference v alue).
h3yn 6 connections connection pulse operation a pulse output for a certain period can be obtained with a random external input signal. use the h3yn in interval mode as shown in the following timing charts. up pw h3yn-2/-21 din indication din indication up pw timer circuit timer circuit h3yn-4/-41 h3yn-4-z/-41-z (bottom view) (bottom view) h3yn-2/-21 external inp ut po w er (9-14) po w er (9-14) external inp ut h3yn-4/-41 h3yn-4-z/-41-z timer circuit timer circuit external short circ uit (5-13) external inp ut (9-13) time limit contact no (12-8) time limit contact nc (12-4) ru n/po w er indicator (pw) output indicator (up) 50 ms min. note: t: set time rt: reset time external short circ uit (5-13) external inp ut (9-13) time limit contact no (10-6, 11-7, 12-8) time limit contact nc (10-2, 11-3, 12-4) ru n/po w er indicator (pw) output indicator (up) 50 ms min. note: t: set time rt: reset time !caution be careful when connecting wires. mode terminals pulse operation power supply between 9 and 14 short-circuit between 5 and 13 input signal between 9 and 13 operating mode; interval and all other modes power supply between 13 and 14
h3yn 7 operation timing chart note: t: set time rt: reset time operating mode timing chart h3yn-2/-21 h3yn-4/-41 on-delay po w er output po w er (13-14) time limit contact nc (9-1, 12-4) time limit contact no (9-5, 12-8) ru n/po w er indicator (pw) output indicator po w er (13-14) time limit contact nc (9-1, 10-2, 11-3, 12-4) time limit contact no (9-5, 10-6, 11-7, 12-8) ru n/po w er indicator (pw) output indicator (up) interval po w er output po w er (13-14) time limit contact nc (9-1, 12-4) time limit contact no (9-5, 12-8) ru n/po w er indicator (pw) output indicator (up) po w er (13-14) time limit contact nc (9-1, 10-2, 11-3, 12-4) time limit contact no (9-5, 10-6, 11-7, 12-8) ru n/po w er indicator (pw) output indicator (up) flicker off-start po w er output po w er (13-14) time limit contact nc (9-1, 12-4) time limit contact no (9-5, 12-8) ru n/po w er indicator (pw) output indicator (up) po w er (13-14) time limit contact nc (9-1, 10-2, 11-3, 12-4) time limit contact no (9-5, 10-6, 11-7, 12-8) ru n/po w er indicator (pw) output indicator (up) flicker on-start po w er output po w er (13-14) time limit contact nc (9-1, 12-4) time limit contact no (9-5, 12-8) ru n/po w er indicator (pw) output indicator (up) po w er (13-14) time limit contact nc (9-1, 10-2, 11-3, 12-4) time limit contact no (9-5, 10-6, 11-7, 12-8) ru n/po w er indicator (pw) output indicator (up)
h3yn 8 dip switch settings the 1-s range and on-delay mode for h3yn-2/-4/-4-z, the 1-min range and on-delay mode for h3yn-21/-41/-41-z are factory-set bef ore shipping. time ranges note: the top two dip switch pins are used to select the time ranges. operating modes note: the bottom two dip switch pins are used to select the operating mode. nomenclature 1 min 10 min 1 s 10 s model time range time setting range setting factory-set h3yn-2, h3yn-4 h3yn-4-z 1 s 0.1 to 1 s yes 10 s 1 to 10 s no 1 min 0.1 to 1 min no 10 min 1 to 10 min no h3yn-21, h3yn-41 h3yn-41-z 1 min 0.1 to 1 min yes 10 min 1 to 10 min no 1 h 0.1 to 1 h no 10 h 1 to 10 h no operating mode setting factory-set on-delay yes interval no flicker off-start no flicker on-start no run/power indicator (green) (lit: po w er on) output indicator (orang e) (lit: o utput on) main dial set the desired time according to time range selecta b le b y dip s witch.
h3yn 9 dimensions note: all units are in millimeter s unless otherwise indicated. timers 6.4 (63.0) py08 (PY14) h3yn-2/-21 front mounting mounting height py08 (PY14 (see note)) py08qn (PY14qn (see note)) note: models in parentheses are connecting sockets to the h3yn-4/-41 or h3yn-4-z/-41-z. fo u rteen, 3 1.2 elliptic holes 28 max. 21.5 max. 28 max. 21.5 max. eight, 3 1.2 elliptic holes pyf08a (pyf14a) h3yn-4/-41 front mounting h3yn-4-z/-41-z pyf08a/pyf08a-n/pyf08a-e (pyf14a/pyf14a-n/pyf14a-e (see note)) h3yn series h3yn series h3yn series py08qn (PY14qn) mounting holes eight, 1.3-dia. holes pin 1 mounting holes fo u rteen, 1.3-dia. holes pin 1
h3yn 10 accessories (order separately) connecting sockets use the pyf @ a, py @ , py @ -02, or py @ qn(2) to mount the h3yn. when ordering any one of these sockets, replace ? @ ? with ?08? or ?14.? 90.5 86.6 6 16.5 35.4 3.4 4 6 590.3 150.2 6 16.5 35.4 3.4 4 6 590.3 220.2 4 42 1 8 5 12 9 14 14 13 44 12 14 41 11 a2 a2 a1 19.8 4 42 8 44 1 12 5 14 41 12 a2 14 11 9 a1 13 a2 14 pyf-08a-n 4321 8 765 12 11 10 9 14 14 13 42 32 22 12 44 34 24 14 41 31 21 11 a2 a2 a1 20.8 4 42 3 32 2 22 1 12 8 44 7 34 6 24 5 14 41 12 31 11 21 10 11 9 a1 13 a2 14 a2 14 pyf-14a-n pyf@a mounting holes 72 max. 23 max. 30 max. pyf-14a mounting holes 72 max. 29.5 max. 30 max. pyf-08a-n terminal arran g ement 3.2 dia. 3.6 dia. 22 max. 66.5 max. 30 max. t w o, 3.5 dia. 30 max. 66.5 max. 29.5 max. pyf-14a-n terminal arran g ement track mountin g /front connecting sockets pyf08a t w o, 4.2 5 mounting holes eight, m3 8 sems t w o, 4.5 dia. m4 or m3 h3yn series t w o, 4.5 dia. m4 or m3 fo u rteen, m3 8 sems t w o, 4.2 5 mounting holes terminal arran g ement (top view) terminal arran g ement (top view) mounting holes (for surface mountin g) mounting holes (for surface mountin g)
h3yn 11 pyf08a-e 31 max. 72 max. 23 max. (top view) pyf14a-e 31 max. 72 max. 29.5 max. (top view) t w o, 4.2 5 mounting holes eight, m3 8 sems t w o, 4.5 dia. m4 or m3 t w o, 4.5 dia. m4 or m3 fo u rteen, m3 8 sems t w o, 4.2 5 mounting holes 0.3 2.7 7.7 2.6 0.3 2.7 4.3 2 2.7 ** 1 x 1 59.3 21.4 +0.2 0 25.8 +0.2 0 panel cutout py08 -02, PY14-02 24 max. 20 max. 22 max. 16.5 max. py08@ -02 PY14@-02 29.5 max. 25 max. * 24 max. 22 max. py08 PY14 back connectin g sockets py08 , PY14 eight, 3 1.2 dia. holes only for py0 8 (fou rteen, 3 1.2 dia. holes) 25.5 max. 29.5 max. py08 qn, PY14qn py08 qn(2), PY14qn(2) terminal arran g ement (bottom view) terminal arran g ement (bottom view) h3yn series py@, py@-02, py@qn(2) PY14qn PY14qn(2) py08qn py08qn(2) terminal arran g ement (bottom view) (see note) 41.5 max. (see note) note: with py@qn(2)(-3), dimension * should read 20 max. and dimension ** 36.5 max. 25.5 max. 29.5 max.
h3yn 12 flush mounting adapter socket mounting plates the pyp-1 is a socket mounting plate for a single socket and the pyp-18 is a socket mounting plate for 18 sockets. the pyp-18 c an be cut appropriately according to the number of sockets to be used. hold-down clips the hold-down clip makes it possible to mount the h3yn securely and prevent the h3yn from falling out due to vibration or shock . 33.5 27.1 48.5 31.5 25.1 3 3 5 25.2 +0.2 ?0 31.6 +0.2 ?0 r0.5 max. panel cutout y92f-78 note: 1. push the h3y in until the adaptor (y92f-7 8) hooks engage with its rear panel. 2. do not rou nd the corners of the c utout on the rear panel su rface, other wise the adaptor (y92f-78) tab s may not engage properly. panel thickness 1 to 3 mm t = 1.6 49 28 t = 1.6 420.1 49 492 17 x 27.4 = 465.80.6 13.1 21.6 4.5 3.4 27.40.15 pyp-1 t w o, 3.4-dia. holes square hole pyp-18 72, elliptic holes 53 4.5 4.5 1.2 9r 33.7 2.5 20 (84) 30.5 24.5 5 max. y92h-3 y92h-4 y92h-3 for pyf@ a socket (set of two clips) y92h-4 for py@ socket
h3yn 13 safety precautions refer to safety precautions for all timers . correct use the operating voltage will increase when using the h3yn continu- ously in any place where the ambient temperature is in a range of 45 c to 50 c. supply 90% to 110% of the rated voltages (at 12 vdc: 95% to 110%). do not leave the h3yn in time-up condition for a long period of time (for example, more than one month in any place where the ambient temperature is high), otherwise the internal parts (aluminum electro- lytic capacitor) may become damaged. therefore, the use of the h3yn with a relay as shown in the following circuit diagram is recom- mended to extend the service life of the h3yn. the h3yn must be disconnected from the socket when setting the dip switch, otherwise the user may touch a terminal imposed with a high voltage and get an electric shock. do not connect the h3yn as shown in the following circuit diagram on the right hand side, otherwise the h3yn?s internal contacts differ- ent from each other in polari ty may become short-circuited. use the following safety circuit when building a self-holding or self- resetting circuit with the h3yn and an auxiliary relay, such as an my relay, in combination. in the case of the above circuit, the h3yn will be in pulse operation. therefore, if the circuit shown on page 6 is used, no auxiliary relay will be required. do not set to the minimum setting in the flicker modes, otherwise the contact may become damaged. be careful not to apply any voltage to the terminal screws on the back of the timer. mount the product so that the screws will not come in contact with the panel or metal parts. do not use the h3yn in places w here there is excessive dust, corro- sive gas, or direct sunlight. do not mount more than one h3yn closely together, otherwise the internal parts may become damaged. make sure that there is a space of 5 mm or more between any h3yn models next to each other to allow heat radiation. the internal parts may become damaged if a supply voltage other than the rated ones is imposed on the h3yn. in order to conform to ul and csa requirements when using the h3yn-4/-41 or h3yn-4-z/-41-z, conn ect the unit so that output con- tacts (contacts of different poles) have the same electric potential. in cases such as plc input where t he load is extremely small for the control output of a timer containing a power relay (using other than gold-plated contacts), reliability can be increased by using contacts of the same poles (e.g., the h3y-2) in parallel. precautions for en61812-1 conformance the h3yn as a built-in timer conforms to en61812-1 provided that the following conditions are satisfied. handling do not touch the dip switch while power is supplied to the h3yn. before dismounting the h3yn from the socket, make sure that no voltage is imposed on any terminal of the h3yn. the applicable socket is the pyf @ a. only basic insulation is ensur ed between the y92h-3 hold-down clips and h3yn internal circuits. do not allow the y92h-3 hold-down clips to contact other parts. the insulation test voltage between different pole contacts for the 4- pole model is the impulse voltage of 2.95 kv. wiring the power supply for the h3yn must be protected with equipment such as a breaker approved by vde. basic insulation is ensured between the h3yn?s operating circuit and control output. basic insulation: overvoltage category ii, pollution degree 1 (h3yn-4/-41, h3yn-4-z/- 41-z), pollution degree 2 (h3yn-2/-21) (with a clearance of 1.5 mm and a creepage distance of 2.5 mm at 240 vac) x 1 t x 2 x 2 /b t/a x 1 /a x 1 /a x : a u xiliary relay su ch as my relay l 2 l 1 l 2 l 1 correct incorrect : a u xiliary relay su ch as my relay in the interest of product improvement, specif ications are subject to change without notice. all dimensions shown are in millimeters. to convert millimeters into inches, multiply by 0.03 937. to convert grams into ounces, multiply by 0.03527.
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 3 . 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 3 a l l r i g h t r e s e r v e d .


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