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  js C 12 m e C k t C v3 [example] (a) (*) (b) (c) (d) (e) (f) (j) n features l ul, csa, vde, sev, semko, fimko, ?ve, bsi recognized l ul class b (130c) insulation l 1 form a (spst-no) or 1 form c (spdt) contact l low profle and space savingheight: 12.5 mm mounting space: 290 mm 2 l high sensitivity in small package operating power ............. 0.11 to 0.14 w nominal power ................ 0.22 to 0.29 w l high isolation in small package insulation distance : 8 mm dielectric strength : 5,000 vac (between coil and contacts) surge strength : 10,000 v l plastic materials ul 94 fame class v-0 ul cti level class 2 l plastic sealed type l rohs compliant since date code: 0438b9, 0434r - please see page 6 for more information js series power relay 1 pole 8 a (medium load control) 1 n ordering information (a) series name js : js series (b) nominal voltage refer to the coil data chart (c) contact arrangement nil : 1 form c (spdt) m : 1 form a (spst-no) (d) contact material nil : gold plate silver cadmium oxide d : silver nickel e : silver cadmium oxide f : silver nickel gold overlay n : silver tin oxi de gold overlay (e) enclosure k : plastic sealed type (f) construction nil: 3.2 mm t : 5.0 mm (only js-mn, md, mf) (j) for low current application nil: 0.3 gold overlay (available with nil, n and f contact) v3: 3 gold overla y for lower current applications (available with nil, n and f contact) note: actual marking omits the hyphen (-) of (*) rohs compliant
2 js series n specifications 1 - contact material silver cadmium oxide (agcdo) type: nil, e type n safety standard and file numbers ul508, 873 (file no. e56140, e108658) c22.2 no. 14 (file no. lr35579) vde 0435, 0631, 0700 (file no. 11039-4940-1010) nominal voltage contact rating 1/3 hp 125 vac, 1/2 hp 250 vac 5 to 60 vdc 10a 30vdc/250 vac, resistive 3a 250 vac inductive (pf = 0.4) pilot duty b 300, c150 m e t i k - ) ( s j k - e ) ( s j k - m ) ( s j k - e m ) ( s j t c a t n o c t n e m e g n a r r a ) t d p s ( c m r o f 1 ) o n - t s p s ( a m r o f 1 l a i r e t a m o d c g a + u a o d c g a o d c g a + u a o d c g a ) l a i t i n i ( e c n a t s i s e r ) m 3 . 0 u a ( s m h o m 0 0 1 , ) m 3 u a ( s m h o m 0 3 c d v 6 a 1 g n i t a r c d v 4 2 / c a v 0 5 2 a 8 t n e r r u c g n i y r r a c . x a m a 0 1 r e w o p g n i h c t i w s . x a m w 2 9 1 / a v 0 0 0 , 2 e g a t l o v g n i h c t i w s . x a m c a v 0 0 4 / c d v 0 5 1 d a o l g n i h c t i w s . n i m c d v 5 a m 0 1 t n e r r u c g n i h c t i w s . x a m a 0 1 l i o c e r u t a r e p m e t g n i t a r e p o ) t s o r f o n ( c ? 5 8 + o t c ? 0 4 - e u l a v e m i t e t a r e p o ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 0 1 . x a m ) e d o i d t u o h t i w ( e s a e l e r ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 5 . x a m n o i t a l u s n i ) c d v 0 0 5 t a ( e c n a t s i s e r s m h o m 0 0 0 , 1 . n i m c i r t c e l e i d h t g n e r t s s t c a t n o c t / b e t u n i m 1 , c a v 0 0 0 , 1 s t c a t n o c d n a l i o c t / b e t u n i m 1 , c a v 0 0 0 , 4 h t g n e r t s e g r u s ) . c e s 0 5 x 2 . 1 t a ( v 0 0 0 , 0 1 e f i l l a c i n a h c e m 0 1 x 0 2 6 m u m i n i m s n o i t a r e p o ) d a o l e v i t s i s e r ( l a c i r t c e l e 0 1 x 0 0 1 3 . n i m s n o i t a r e p o n o i t a r b i v e c n a t s i s e r n o i t a r e p o s i m m m 5 6 . 1 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 e c n a r u d n e m m 3 . 3 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 k c o h s e c n a t s i s e r n o i t a r e p o s i m s / m 0 0 2 . n i m 2 ) s m 1 1 1 ( e c n a r u d n e s / m 0 0 0 , 1 . n i m 2 ) s m 1 6 ( t h g i e w g 8 . x o r p p a
3 js series 2 - contact material silver tin oxide (agsno 2 ) type: n type m e t i k - n ) ( s j k - n m ) ( s j t k - n m ) ( s j t c a t n o c t n e m e g n a r r a c m r o f 1 a m r o f 1 l a i r e t a m o n s g a + u a 2 ) l a i t i n i ( e c n a t s i s e r ) c d v 6 a 1 t a ( s m h o m 0 0 1 . x a m g n i t a r c d v 4 2 / c a v 0 5 2 a 8 t n e r r u c g n i y r r a c . x a m a 0 1 r e w o p g n i h c t i w s . x a m w 2 9 1 / a v 0 0 0 , 2 e g a t l o v g n i h c t i w s . x a m c a v 0 0 4 / c d v 0 5 1 d a o l g n i h c t i w s . n i m c d v 5 a m 0 1 t n e r r u c g n i h c t i w s . x a m a 0 1 l i o c e r u t a r e p m e t g n i t a r e p o ) t s o r f o n ( c ? 5 8 + o t c ? 0 4 - e u l a v e m i t e t a r e p o ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 0 1 . x a m ) e d o i d t u o h t i w ( e s a e l e r ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 5 . x a m n o i t a l u s n i ) c d v 0 0 5 t a ( e c n a t s i s e r s m h o m 0 0 0 , 1 . n i m c i r t c e l e i d h t g n e r t s s t c a t n o c t / b e t u n i m 1 , c a v 0 0 0 , 1 s t c a t n o c d n a l i o c t / b e t u n i m 1 , c a v 0 0 0 , 4 h t g n e r t s e g r u s ) . c e s 0 5 x 2 . 1 t a ( v 0 0 0 , 0 1 e f i l l a c i n a h c e m 0 1 x 0 2 6 m u m i n i m s n o i t a r e p o ) d a o l e v i t s i s e r ( l a c i r t c e l e 0 1 x 0 5 3 . s p o . n i m 0 1 x 0 0 1 3 . n i m . s p o n o i t a r b i v e c n a t s i s e r n o i t a r e p o s i m m m 5 6 . 1 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 e c n a r u d n e m m 3 . 3 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 k c o h s e c n a t s i s e r n o i t a r e p o s i m s / m 0 0 2 . n i m 2 ) s m 1 1 1 ( e c n a r u d n e s / m 0 0 0 , 1 . n i m 2 ) s m 1 6 ( t h g i e w g 8 . x o r p p a
4 js series * 1 minimum switching loads mentioned above are reference values. please perform the confrmation test with the actual load before production since reference values may vary according to switching frequencies, environmental conditions 3 - contact material silver nickel (agni) type: d, f type m e t i k - f ) ( s j k - d ) ( s j k - f m ) ( s j t k - f m ) ( s j k - d m ) ( s j t k - d m ) ( s j t c a t n o c t n e m e g n a r r a c m r o f 1 a m r o f 1 l a i r e t a m i n g a + u a i n g a i n g a + u a i n g a ) l a i t i n i ( e c n a t s i s e r ) m 3 . 0 u a ( s m h o m 0 0 1 , ) m 3 u a ( s m h o m 0 3 c d v 6 a 1 g n i t a r c d v 4 2 / c a v 0 5 2 a 8 t n e r r u c g n i y r r a c . x a m a 0 1 r e w o p g n i h c t i w s . x a m w 2 9 1 / a v 0 0 0 , 2 e g a t l o v g n i h c t i w s . x a m c a v 0 0 4 / c d v 0 5 1 d a o l g n i h c t i w s . n i m c d v 5 a m 0 1 t n e r r u c g n i h c t i w s . x a m a 0 1 l i o c e r u t a r e p m e t g n i t a r e p o ) t s o r f o n ( c ? 5 8 + o t c ? 0 4 - e u l a v e m i t e t a r e p o ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 0 1 . x a m ) e d o i d t u o h t i w ( e s a e l e r ) e c n u o b t u o h t i w , e g a t l o v l a n i m o n t a ( s m 5 . x a m n o i t a l u s n i ) c d v 0 0 5 t a ( e c n a t s i s e r s m h o m 0 0 0 , 1 . n i m c i r t c e l e i d h t g n e r t s s t c a t n o c t / b e t u n i m 1 , c a v 0 0 0 , 1 s t c a t n o c d n a l i o c t / b e t u n i m 1 , c a v 0 0 0 , 4 h t g n e r t s e g r u s ) . c e s 0 5 x 2 . 1 t a ( v 0 0 0 , 0 1 e f i l l a c i n a h c e m 0 1 x 0 2 6 m u m i n i m s n o i t a r e p o ) d a o l e v i t s i s e r ( l a c i r t c e l e 0 1 x 0 2 3 . n i m s n o i t a r e p o n o i t a r b i v e c n a t s i s e r n o i t a r e p o s i m m m 5 6 . 1 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 e c n a r u d n e m m 3 . 3 f o e d u t i l p m a e l b u o d t a z h 5 5 o t 0 1 k c o h s e c n a t s i s e r n o i t a r e p o s i m s / m 0 0 2 . n i m 2 ) s m 1 1 1 ( e c n a r u d n e s / m 0 0 0 , 1 . n i m 2 ) s m 1 6 ( t h g i e w g 8 . x o r p p a
5 js series n coil data chart nominal coil resistance must operate must release nominal model voltage (10%) voltage voltage power js- 5(m)(nil,e,n,d,f)-k(t) 5 vdc 112? 3.5 vdc 0.5 vdc 225 mw js- 6(m)(nil,e,n,d,f)-k(t) 6 vdc 160? 4.2 vdc 0.6 vdc 225 mw js- 9(m)(nil,e,n,d,f)-k(t) 9 vdc 360? 6.3 vdc 0.9 vdc 225 mw js-12(m)(nil,e,n,d,f)-k(t) 12 vdc 660? 8.5 vdc 1.2 vdc 220 mw js-18(m)(nil,e,n,d,f)-k(t) 18 vdc 1,455? 12.7 vdc 1.8 vdc 225 mw js-24(m)(nil,e,n,d,f)-k(t) 24 vdc 2,350? 16.8 vdc 2.4 vdc 245 mw js-48(m)(nil,e,n,d,f)-k(t) 48 vdc 8,000? 33.4 vdc 4.8 vdc 290 mw js-60(m)(nil,e,n,d,f)-k(t) 60 vdc 12,500? 41.7 vdc 6.0 vdc 290 mw n characteristic data     2 4 v d c r e s i s t i v e 2 5 0 v a c c o s ? = 0 . 7 2 5 0 v a c c o s ? = 0 . 4 2 4 v d c = 1 5 m s 2 4 v d c = 7 m s 2 5 0 v a c r e s i s t i v e maximum switching power
6 js series n reference data
7 js series 0.25 +0.2 1 +0.2 10 0.3 (1.19) (2.1) 0.8 +0.2 3.3 +0.4 - 0.2 12.5 +0.3 0.4 +0.2 0.2 +0.2 18.9 0.25 29 0.3 5 0.2 soldering 7.62 0.2 n dimensions l dimensions l schematics (bottom view) l pc board mounting hole layout (bottom view) js-mk type js-k type unit: mm js-m( )-kt type com 5 1 3 4 no 3 -? .5 0.1 5 0.1 2 -? 1.3 0.1 18.9 0.1 7.62 0.1 (1.19) (2.1)
8 js series 1. general information l relays produced after the specifc date code that is indicated on each data sheet are lead-free now. most of our signal and power relays are lead-free. please refer to lead-free status info. (http://www.fujitsu.com/us/downloads/micro/fcai/relays/lead-free-letter.pdf) l lead free solder paste currently used in relays is sn-3.0ag-0.5cu. l all signal and most power relays also comply with rohs. please refer to individual data sheets. relays that are rohs compliant do not contain the 5 hazardous materials that are restricted by rohs directive (lead, mercury, chromium iv, pbb, pbde). l it has been verifed that using lead-free relays in leaded assembly process will not cause any problems (compatible). l lf is marked on each outer and inner carton. (no marking on individual relays). l to avoid leaded relays (for lead-free sample, etc.) please consult with area sales offce. l we will ship leaded relays as long as the leaded relay inventory exists. note: cadmium was exempted from rohs on october 21, 2005. (amendment to directive 2002/95/ec) 2. recommended lead free solder profle l recommended solder paste sn-3.0ag-0.5cu. rohs compliance and lead free relay information refow solder condtion 3. moisture sensitivity l moisture sensitivity level standard is not applicable to electromechanical realys. 4. tin whisker l dipped snagcu solder is known as low risk tin whisker. no considerable length whisker was found by our in house test. we highly recommend that you confrm your actual solder conditions flow solder condtion: pre-heating: maximum 120?c soldering: dip within 5 sec. at 260?c soler bath solder by soldering iron: soldering iron temperature: maximum 360?c duration: maximum 3 sec.
9 js series japan fujitsu component limited gotanda-chuo building 3-5, higashigotanda 2-chome, shinagawa-ku tokyo 141, japan tel: (81-3) 5449-7010 fax: (81-3) 5449-2626 email: promothq@ft.ed.fujitsu.com web: www.fcl.fujitsu.com north and south america fujitsu components america, inc. 250 e. caribbean drive sunnyvale, ca 94089 u.s.a. tel: (1-408) 745-4900 fax: (1-408) 745-4970 email: marcom@fcai.fujitsu.com web: http://www.fujitsu.com/us/services/edevices/components/ europe fujitsu components europe b.v. diamantlaan 25 2132 wv hoofddorp netherlands tel: (31-23) 5560910 fax: (31-23) 5560950 email: info@fceu.fujitsu.com web: http://www.fujitsu.com/emea/services/components/ asia pacifc fujitsu components asia ltd. 102e pasir panjang road #04-01 citilink warehouse complex singapore 118529 tel: (65) 6375-8560 fax: (65) 6273-3021 email: fcal@fcal.fujitsu.com web: http://www.fujitsu.com/sg/services/micro/components/ fujitsu components international headquarter offces ?2005 fujitsu components america, inc. all rights reserved. all trademarks or registered trademarks are the property off their respective owners. fujitsu components america does not warrant that the content of datasheet is error free. in a continuing effort to improve our products fujitsu components america, inc. reserves the right to change specifcations/datasheets without prior notice. rev. 12/12/2005.


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