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  csm_61f-gp-n__ds_e_6_1 1 floatless level switch (compact, plug-in type) 61f-gp-n@ space-saving design idea l for control panel downsizing. easy maintenance. ? compact: 49.4 38 84 mm (h w d). ? easy identification of operating status with led operation indicator. ? independent dpdt contacts on 11-pin models. ? ce marking and ul/csa compliance. refer to safety precautions for floatless level controllers . model number legend ordering information note: when ordering, specify the desired operating voltage at the end of the model number. 1. no. of pins 2. type n: 11 pins n8: 8 pins blank: general-purpose l 2km: long-distance (for 2 km) l 4km: long-distance (for 4 km) h: high-sensitivity d: low-sensitivity r: two-wire t: high-temperature position of led indicator 2 1 61f-gp-@@ type general-purpose long-distance (for 2 km) long-distance (for 4 km) model model model 11-pin 61f-gp-n 61f-gp-nl 2km 61f-gp-nl 4km type high-sensitivity low-sensitivity two-wire model model model 11-pin 61f-gp-nh 61f-gp-nd 61f-gp-nr type tropical environments high-temperature model model 8-pin 61f-gp-n-tdl 61f-gp-nt type general-purpose long-distance (for 2 km) long-distance (for 4 km) model model model 8-pin 61f-gp-n8 61f-gp-n8l 2km 61f-gp-n8l 4km type high-sensitivity low-sensitivity two-wire model model model 8-pin 61f-gp-n8h 61f-gp-n8d 61f-gp-n8r 61f-gp-n8hy example: 61f-gp-n [220 vac] desired supply voltage
61f-gp-n @ 2 compact plug-in models (11-pin type) specifications note: 1. the length when using completely insulated, 600- v , 3-conductor (0.75 mm 2 ) cabtire cables. usable cable lengths will become shorter as the cable diameter or number of conductors becomes larger. for details, refer to safety precautions for floatless level controllers . 2. the insulation resistance and dielectric str ength indicate values between power termi nals and electrode terminals, between powe r terminals and contact terminals, and between electrode term inals and contact terminals. for details, refer to safety precautions for floatless level controllers . 3. possible to use with 15 k or less, however, this may cause reset failure. 4. 61f-gp-nh high-sensitivity controller uses advanced operation. when the power supply voltage is applied, if there are some li quids between the electrodes (gr ound and operation electrodes), t he inter- nal relay will not operate. when the power supply voltage is applied, if there are no li quids between the electrodes (gr ound and operation electrodes), the internal relay will operate. if the advanced operation does not satisfy appl ications, consider using 61f-n8hy controller which uses sequential operation. item general-purpose controller 61f-gp-n high- temperature controller 61f-gp-nt long-distance controllers 61f-gp-nl 2km (for 2 km) 61f-gp-nl 4km (for 4 km) high-sensitivity controller 61f-gp-nh (see note 4) low-sensitivity controller 61f-gp-nd two-wire controller 61f-gp-nr controlling materials and operating condi- tions for control of ordi- nary purified water or sewage water for control of ordi- nary purified water or sewage where operating ambient temperature is high. for control of ordi- nary purified water in cases where the distance between sewage pumps and water tanks or between receiver tanks and supply tanks is long or where remote con- trol is required. for control of liq- uids with high spe- cific resistance such as distilled water for control of liq- uids with low spe- cific resistance such as salt water, sewage water, acid chemicals, al- kali chemicals for control of ordi- nary purified water or sewage water used in combina- tion with two-wire electrode holder (incorporating a resistor of 6.8 k ) supply voltage 24, 100, 110, 120, 200, 220, 230 or 240 v ac; 50/60 hz operating voltage range 85% to 110% of rated voltage interelectrode voltage 8 v ac interelectrode current approx. 1 ma ac max. approx. 0.12 ma ac max. approx. 1 ma ac max. power consumption approx. 3.5 v a max. interelectrode operate resistance 0 to approx. 4 k 0 to approx. 4 k 0 to approx. 1.3 k (for 2 km) 0 to approx. 0.5 k (for 4 km) appro x . 10 k to approx. 40 k (see note 3) 0 to approx. 1.3 k 0 to approx. 2 k interelectrode release resistance approx. 15 k to ? approx. 15 k to ? 4 k to ? (for 2 km) 2.5 k to ? (for 4 km) approx. 100 k to ? approx. 4 k to ? approx. 15 k to ? response time operate:80 ms max. release:160 ms max. cable length (see note 1) 1 km max. 600 m max. 2 km max. 4 km max. 50 m max. 1 km max. 800 m max. control output 1 a, 250 v ac (inductive load: cos = 0.4) 3 a, 250 v ac (resistive load) ambient temperature operating:?10 to 55 c (?10 to 70 c for high-temperature controller) ambient humidity operating:45% to 85% rh insulation resistance (see note 2) 100 m min. (at 500 v dc) dielectric strength (see note 2) 2000 v ac, 50/60 hz for 1 min. life expectancy electrical: 100,000 operations min. mechanical: 5,000,000 operations min. weight approx. 155 g accessories hold-down clip pfc-n8
61f-gp-n @ 3 internal circuit diagrams note: when applying a self-holding circuit, short betw een terminals 5 and 6 and use terminal 7 as e 2 . 61f-gp-n/-nt/-nl/-nd 61f-gp-nr 61f-gp-nh 3 9 1 4 10 11 u 24 v 8 v control circuit s 0 s 1 e 3 5 e 1 ta 1 tc 1 tb 1 8 6 7 u ta 2 tc 2 tb 2 3 9 1 4 10 11 u 24 v 8 v control circuit s 0 s 1 e 3 5 e 1 ta 1 tc 1 tb 1 8 6 7 u ta 2 tc 2 tb 2 3 9 1 4 10 11 u 24 v 8 v control circuit s 0 s 1 e 3 5 e 1 ta 1 tc 1 tb 1 u power supply power supply power supply (see note.) (see note.)
61f-gp-n @ 4 connections automatic water supply control automatic drainage control compact, plug-in type 61f-gp-n dimensions: page 14 automatic water supply and drainage control water supply source mccb rs m t commercial voltage 61f-gp-n ps-3s stop 3 9 e 2 e 3 e 1 p start 8 v power supply 0 v u u u 24 v control circuit (see note.) 4 876 5 10 11 1 2 contac- tor water tank motor protection relay note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf113a (front-connecting) pl11 (rear-connecting) connect terminal 1 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model. connections reservoir mccb rs m t commercial voltage 61f-gp-n ps-3s 39 e 2 e 3 e 1 p 8 v 0 v u u u 24 v control circuit (see note.) 4 876 5 10 11 1 2 start stop contac- tor power supply motor protection relay waste- water tank note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf113a (front-connecting) pl11 (rear-connecting) connect terminal 1 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model. connections e 1 e 2 e 3 p water supply (indicator on) pump off pump on (indicator off) the pump stops when the water level reaches e 1 (indicator on) and starts when the water level drops below e 2 (indicator off). principles of operation e 1 e 2 e 3 water drainage (indicator on) pump off pump on (indicator off) p the pump starts when the water level reaches e 1 (indicator on) and stops when the water level drops below e 2 (indicator off). principles of operation
61f-gp-n @ 5 liquid level indication liquid level indication (connection example) compact, plug-in type 61f-gp-n dimensions: page 14 e 1 e 2 e 3 e 4 water supply source intermediate upper limit lower limit mccb rs m t commercial voltage p ps-4s u u 61f-gp-n lower limit intermediate upper limit 56 7 8 4 8 v power supply power supply power supply 0 v 24 v 10 3 9 12 11 control circuit u u u 61f-gp-n 5 6 7 8 4 8 v 0 v 24 v 10 3 9 12 11 control circuit u u u 61f-gp-n 5 6 7 8 4 8 v 0 v 24 v 10 3 9 12 11 control circuit u (see note.) water tank note: the power supply phases (terminals 3 to 9) c an be matched to use the same ground for the common electrode (the longest electrode, terminal 4). connections ? terminals 6 and 7, and terminals 10 and 11 on the lower -lim it 61f-gp-n are shorted when the water level reaches e 3 (indicator on).  terminals 6 and 7, and terminals 10 and 11 on the intermediat e 61f-gp-n are shorted when the water level reaches e 2 (indicator on).  terminals 6 and 7, and terminals 10 and 11 on the upper-limit 61f-gp-n are shorted when the water level reaches e 1 (indicator on). principles of operation
61f-gp-n @ 6 replacing 61f-g3n functions replacing 61f-g3n functions (automatic water supply control with abnormal water increase and water shortage alarms) compact, plug-in type 61f-gp-n dimensions: page 14 e 1 e 2 e 4 e 5 contactor water supply source stop full tank start water shortage mccb rs m t commercial voltage water shortage pump control full tank p ps-5s e 3 u 3 u 3 61f-gp-n 56 7 8 4 8 v power supply power supply power supply 0 v 24 v 10 3 9 12 11 control circuit u 3 u 1 u 1 61f-gp-n 5 678 4 8 v 0 v 24 v 10 3 9 12 11 control circuit u 1 u 2 u 2 61f-gp-n 5678 4 8 v 0 v 24 v 10 3 9 12 11 control circuit u 2 b pl pl (see note.) upper limit lower limit alarm water tank motor protection relay note: the power supply phases (terminals 3 to 9) can be matc hed to use the same ground for the common electrode (the longest electrode, terminal 4). connections e 1 e 3 e 4 e 5 upper limit lower limit pump off pump on (u 1 indicator on) (u 2 indicator on) (u 2 indicator off) (u 3 indicator off) b l h b l l p water supply e 2  the pump stops when the water level reaches e 2 (u 2 indicator on) and starts when the water level drops below e 3 (u 2 indicator off).  if the water level rises to e 1 for any reason, the upper-limit indicator turns on and the alarm sounds (u 1 indicator on). if the water level drops below e 4 for any reason, the lower-limit indicator turns on and the alarm sounds (u 3 indicator off). principles of operation
61f-gp-n @ 7 automatic water supply control automatic drainage control two-wire connections automatic water supply and drainage control compact, plug-in type 61f-gp-nr dimensions: page 14 e 1 e 2 e 3 u u water supply source stop star t mccb rs m t commercial voltage 61f-gp-nr (see note.) 5 4 p 8 v power supply 0 v 24 v ps-3sr 10 3 9 12 11 control circuit r contac- tor water tank motor protection relay note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf113 (front-connecting) pl11 (rear-connecting)  connect terminal 1 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model.  with 2-wire connections, only two wires are required between the 61f-gp-nr and electrode ho lder, but three wires are required for the electrodes.  the electrode holder must be specified for 2-wire connections. (resistance r is built into electrode holders for 2-wire connections.) connections e 1 e 2 u u reservoir mccb rs m t 61f-gp-nr (see note.) 5 4 p r 8 v 0 v 24 v ps-3sr 10 3 9 1 2 11 control circuit e 3 contac- tor t commercial voltage power supply motor protection relay waste- water tank note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf113 (front-connecting) pl11 (rear-connecting)  connect terminal 11 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model.  with 2-wire connections, only two wires are required between the 61f-gp-nr and electrode ho lder, but three wires are required for the electrodes.  the electrode holder must be specified for 2-wire connections. (resistance r is built into electrode holders for 2-wire connections.) connections e 1 e 2 e 3 p water supply (indicator on) pump off pump on (indicator off) the pump stops when the water level reaches e 1 (indicator on) and starts when the water level drops below e 2 (indicator off). principles of operation e 1 e 2 e 3 water drainage (indicator on) pump off pump on (indicator off) p the pump starts when the water level reaches e 1 (indicator on) and stops when the water level drops below e 2 (indicator off). principles of operation
61f-gp-n @ 8 connection with three- phase four-line circuit when supplying power from n-phase to the co ntroller in three-phase f our-line circuit, refer to the following diagrams. line voltage (r-s, s-t, or r-t): 380 or 415 vac phase voltage (n-r, n-s, or n-t): 220 or 240 vac 61f-gp-n @ 220 or 240 vac note: 1. the diagram shows the connections for the water supply. when draining, change the connection from terminal 1 to terminal 11. 2. be sure to ground terminal 4. power source 380 or 415 vac r s t n * m water tank stop start e 2 e 3 e 1 p electromagnetic switch a * water supply source source voltage: between 3 and 9 61f-gp-n 0 v 220 or 240 v 8 v 24 v control circuit u u 7 865 21 1110 u 4 3 9 (see note 1) (see note 2.)
61f-gp-n @ 9 compact plug-in models (8-pin type) specifications note: 1. the length when using completely-ins ulated, 600-v, 3-conductor (0.75 mm 2 ) cabtire cables. usable cable lengths will become shorter as the cable diameter or number of conductors becomes larger. 2. the insulation resistance and dielectric strength indicate val ues between power terminals and electrode terminals, between powe r ter- minals and contact terminals, and between el ectrode terminals and contact terminals. 3. possible to use with 15 k or less, however, this may cause reset failure. 4. 61f-gp-n8h/-n8y high-s ensitivity controllers use advanced operation. when the power supply voltage is applied, if there are some liquids between the electrodes (g round and operation electrodes), t he inter- nal relay will not operate. when the power supply voltage is applied, if there are no li quids between the electrodes (ground and operation electrodes), the internal relay will operate. if the advanced operation does not satisfy ap plications, consider using 61f-n8hy controller which uses sequential operation. item general-purpose controller 61f-gp-n8 61f-gp-n8y (see note 4) long-distance controllers 61f-gp-n8l 2km (for 2 km) 61f-gp-n8l 4km (for 4 km) high-sensitivity controllers 61f-gp-n8h 61f-gp-n8hy (see note 4) low-sensitivity controller 61f-gp-n8d two-wire controller 61f-gp-n8r variable sensitivity controller 61f-gp-n8-v50 controlling mate- rials and operat- ing conditions for control of ordi- nary purified water or sewage water for control of ordi- nary purified water in cases where the distance between sewage pumps and water tanks or be- tween receiver tanks and supply tanks is long or where remote con- trol is required. for control of liq- uids with high spe- cific resistance such as distilled water for control of liq- uids with low spe- cific resistance such as salt water, sewage water, acid chemicals, alkali chemicals for control of ordi- nary purified water or sewage water used in combina- tion with two-wire electrode holder (incorporating a re- sistor of 6.8 k ) for control of cases where variable sen- sitivity control is re- quired such as detection of froth on the surface of a liq- uid, control of soil moisture content, or detection of de- gree of water pollu- tion supply voltage 24, 100, 110, 120, 200, 220, 230 or 240 vac; 50/60 hz 24, 110, 220 or 240 vac; 50/60 hz operating voltage range 85% to 110% of rated voltage interelectrode voltage 8 vac 24 vac 8 vac 24 vac interelectrode current approx. 1 ma ac max. approx. 0.4 ma ac max. approx. 1 ma ac max. approx. 3 ma ac max. power consump- tion approx. 3.5 va max. interelectrode op- erate resistance 0 to approx. 4 k 0 to 1.3 k (for 2km) 0 to 0.5 k (for 4km) approx. 15 k to appro x . 70 k (see note 3) 0 to approx. 1.3 k 0 to approx. 2 k 0 to 50 k (vari- able) interelectrode re- lease resistance approx. 15 k to ? 4 k to ? (for 2 km) 2.5 k to ? (for 4 km) approx. 300 k to ? approx. 4 k to ? approx. 15 k to ? operating resis- tance +50 k max. response time operate: 80 ms max. release: 160 ms max. cable length (see note 1) 1 km max. 2 km max. 4 km max. 50 m max. 1 km max. 800 m max. 50 m max. control output 1 a, 250 vac (inductive load: cos = 0.4) 3 a, 250 vac (resistive load) ambient tempera- ture operating: ?10 to 55 c ambient humidity operating: 45% to 85% rh insulation resis- tance (see note 2) 100 m min. (at 500 vdc) dielectric strength (see note 2) 2000 vac, 50/60 hz for 1 min. life expectancy electrical: 100,000 operations min. mechanical: 5,000,000 operations min. weight approx. 155 g accessories hold-down clip pfc-n8
61f-gp-n @ 10 internal circuit diagrams 24 v 24 v control circuit power supply control circuit 24 v power supply 8 v (see note) 61f-gp-n8/-n8l/-n8d/-n8hy 61f-gp-n8h 61f-gp-n8r 24 v 8 v power supply control circuit 2 243 61f-gp-n8y 24 v 8 v control circuit power supply note: 24 v for the 61f-gp-n8hy. control circuit 24 v power supply 24 v 61f-gp-n8-v50
61f-gp-n @ 11 automatic water supply control automatic drainage control automatic water supply and drainage control compact, plug-in type 61f-gp-n8 dimensions: page 14 water supply source mccb rs m t commercial voltage 61f-gp-n8 ps-3s stop e 2 e 3 e 1 p start 8 v 0 v u u u 24 v control circuit (see note.) 218 7 3456 water tank contac- tor power supply motor protection relay note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf083a (front-connecting) pl08 (rear-connecting)  connect terminal 2 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model. connections reservoir mccb rs m t 61f-gp-n8 p 8 v 0 v u u u 24 v (see note.) 3456 ps-3s e 2 e 3 e 1 start stop 218 7 control circuit contac- tor power supply motor protection relay waste- water tank commercial voltage note: be sure to ground the common electrode e 3 (the longest electrode). connection sockets pf083a (front-connecting) pl08 (rear-connecting)  connect terminal 3 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model. connections e 1 e 2 e 3 p water supply (indicator on) pump off pump on (indicator off) the pump stops when the water level reaches e 1 (indicator on) and starts when the water level drops below e 2 (indicator off). principles of operation e 1 e 2 e 3 water drainage (indicator on) pump off pump on (indicator off) p principles of operation the pump starts when the water level reaches e 1 (indicator on) and stops when the water level drops below e 2 (indicator off).
61f-gp-n @ 12 water supply automatic drainage two-wire connections automatic water supply and drainage control compact, plug-in type 61f-gp-n8r dimensions: page 14 e 1 e 2 e 3 u u a water supply source stop star t mccb rs m t 61f-gp-n8r 7812 p 8 v 0 v 24 v ps-3sr 356 4 control circuit r (see note.) water tank contac- tor commercial voltage power supply motor protection relay note: be sure to ground the common electrode e 3 (the longest electrode).  connect terminal 2 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model.  with 2-wire connections, only two wires are required between the 61f-gp-n8r and electrode ho lder, but three wires are required for the electrodes.  the electrode holder must be specified for 2-wire connections. (resistance r is built into electrode holders for 2-wire connections.) connections e 2 e 3 u u a reservoir mccb rs m t 61f-gp-n8r (see note.) 7812 p r 8 v 0 v 24 v ps-3sr 356 4 control circuit stop start e 1 contac- tor commercial voltage power supply motor protection relay waste- water tank note: be sure to ground the common electrode e 3 (the longest electrode).  connect terminal 3 to the contactor?s coil terminal. note: the power supply depends on t he specifications of the model.  with 2-wire connections, only two wires are required between the 61f-gp-n8r and electrode ho lder, but three wires are required for the electrodes.  the electrode holder must be specified for 2-wire connections. (resistance r is built into electrode holders for 2-wire connections.) connections e 1 e 2 e 3 p water supply (indicator on) pump off pump on (indicator off) the pump stops when the water level reaches e 1 (indicator on) and starts when the water level drops below e 2 (indicator off). principles of operation e 1 e 2 e 3 water drainage (indicator on) pump off pump on (indicator off) p the pump starts when the water level reaches e 1 (indicator on) and stops when the water level drops below e 2 (indicator off). principles of operation
61f-gp-n @ 13 connection with three-phase four-line circuit when supplying power from n-phase to the controller in thre e-phase four-line circuit, refer to the following diagrams. line voltage (r-s, s-t, or r-t): 380 or 415 vac phase voltage (n-r, n-s, or n-t): 220 or 240 vac 61f-gp-n8 @ , 220 or 240 vac note: be sure to ground terminal 1. power source 380 to 415 vac r s t n * m water tank stop start e 2 e 3 e 1 p 6 electromagnetic switch transformer 43 7 5 12 u 24 v 8 v a * u control circuit 8 water supply source
61f-gp-n @ 14 dimensions note: all units are in millimeter s unless otherwise indicated. safety precautions refer to safety precautions for all level controllers . 49.4 38 70 84 61f-gp-n pf113a 101 61f- g p-n, -nt, -nl, -nh, -nd, - nr, -n -tdl, -n14, -n15, -nh3 when mounting a display unit to a pf113a surface-mounting socket, secure the pf113a with the groove facing toward the bottom and then connect the 61f-gp- n the pfc- n8 accessory. pfc-n8 note: pfc- n8 mounting bracket (provided with the level controller) t = 0.3 4.5 83 4 6 approx. 80 38 70 84 49.4 61f-gp-n8 pf083a 91 61f-gp-n8, -n8l, -n8h , -n8hy, -n8d, -n8r use a pfc- n8 mounting bracket to mount the level controller to a pf0 83a rail-mounted socket. pfc-n8 note: pfc- n8 mounting bracket (provided with the level controller) 83 4 4.5 t=0.3 6 approx. 80 in the interest of product improvement, specif ications are subject to change without notice. all dime n sio n s show n are i n 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 2 . 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 2 a l l r i g h t r e s e r v e d .


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