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RT500 UF753 C4538 74ACQ544 02M10 CS151 U7006B DS1033
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  o part numbering (part number) w q product id w series/terminal rp rh rd e e/d e radial lead type monolithic ceramic capacitors (dc25v-dc100v) radial lead type monolithic ceramic capacitors 150 c max. (for automotive) (dc50v-dc100v) radial lead type monolithic ceramic capacitors (only for commercial use) (dc25v-dc1kv) product id series/terminal rp q e e r7 r 1h t 104 u 2 i m1 y k o a03 !0 a t capacitance expressed by three figures. the unit is pico-farad (pf). the first and second figures are significant digits, and the third figure expresses the number of zeros that follow the two numbers. if there is a decimal point, it is expressed by the capital letter " r ." in this case, all figures are significant digits. y capacitance tolerance code c d j k m z c0g/x8g x7s/x7t/x7r/ x8l x7s/x7t/z5u/ x7r/x8l f/y5v radial lead type monolithic ceramic capacitors e temperature characteristics code 25 to 125 c 25 to 150 c -55 to 125 c -55 to 125 c 10 to 85 c -25 to 85 c -30 to 85 c -55 to 125 c 125 to 150 c -55 to 125 c temperature range 0 30ppm/ c 0 30ppm/ c 22% +22, -33% +22, -56% +30, -80% +22, -82% 15% +15, -40% 15% capacitance change or temperature coefficient -55 to 125 c -55 to 150 c -55 to 125 c -55 to 125 c 10 to 85 c -25 to 85 c -30 to 85 c -55 to 150 c -55 to 125 c operating temperature range c0g* x8g* x7s x7t z5u f y5v x8l x7r temperature characteristics 25 c 25 c 25 c 25 c 25 c 20 c 25 c 25 c 25 c reference temperature 5c 5g c7 d7 e4 f1 f5 l8 r7 r rated voltage code 1e 1h 2a 2e 2w 2j 3a dc25v dc50v dc100v dc250v DC450V dc630v dc1kv rated voltage char. c0g x8g 0 30 0.58 -0.24 0.40 -0.17 0.25 -0.11 nominal values (ppm/?c) *1 -55?c max. min. capacitance change from 25?c (%) -30?c max. min. -10?c max. min. temperature characteristics v 5pf : 1pf step 6 to 9pf : 1pf step u 10 : e12 series e6 series e3 series e3 series capacitance step 0.25pf 0.5pf 5% 10% 20% +80%, -20% capacitance tolerance continued on the following page. * please refer to table for capacitance change under reference temperature. ?capacitance change from each temperature *1: nominal values denote the temperature coefficient within a range of 25 to 125?c.
o i n d i v i d u a l s p e c i f i c a t i o n c o d e e x p r e s s e d b y t h r e e f i g u r e s i l e a d s t y l e c o d e l e a d s t y l e l e a d s p a c i n g a 1 / a 2 b 1 c 1 d b e 1 / e 2 k 1 m 1 / m 2 p 1 s 1 / s 2 2 . 5 m m 5 . 0 m m 1 0 . 0 m m 2 . 5 m m 5 . 0 m m 5 . 0 m m 5 . 0 m m 2 . 5 m m 2 . 5 m m s t r a i g h t l o n g s t r a i g h t l o n g s t r a i g h t l o n g s t r a i g h t t a p i n g s t r a i g h t t a p i n g i n s i d e c r i m p i n s i d e c r i m p t a p i n g o u t s i d e c r i m p o u t s i d e c r i m p t a p i n g l e a d d i s t a n c e b e t w e e n r e f e r e n c e a n d b o t t o m p l a n e s . m 1 , s 1 : h 0 = 1 6 . 0 0 . 5 m m m 2 , s 2 : h 0 = 2 0 . 0 0 . 5 m m e 1 : h = 1 7 . 5 0 . 5 m m e 2 : h = 2 0 . 0 0 . 5 m m ! 0 p a c k a g i n g c o d e a b a m m o p a c k b u l k p a c k a g i n g c o n t i n u e d f r o m t h e p r e c e d i n g p a g e . u d i m e n s i o n s ( l x w ) c o d e 0 1 2 3 4 5 6 7 8 u w 4 . 0 g 3 . 5 m m o r 5 . 0 g 3 . 5 m m ( d e p e n d s o n p a r t n u m b e r l i s t ) 4 . 0 g 3 . 5 m m o r 4 . 5 g 3 . 5 m m o r 5 . 0 g 3 . 5 m m ( d e p e n d s o n p a r t n u m b e r l i s t ) 5 . 0 g 3 . 5 m m o r 5 . 5 g 4 . 0 m m o r 5 . 7 g 4 . 5 m m ( d e p e n d s o n p a r t n u m b e r l i s t ) 5 . 0 g 4 . 5 m m o r 5 . 5 g 5 . 0 m m o r 6 . 0 g 5 . 5 m m ( d e p e n d s o n p a r t n u m b e r l i s t ) 7 . 5 g 5 . 0 m m 7 . 5 g 7 . 5 m m ( d c 6 3 0 v , d c 1 k v : 7 . 5 g 8 . 0 m m ) 1 0 . 0 g 1 0 . 0 m m 1 2 . 5 g 1 2 . 5 m m 7 . 5 g 5 . 5 m m 7 . 7 g 1 2 . 5 m m ( d c 6 3 0 v , d c 1 k v : 7 . 7 g 1 3 . 0 m m ) 5 . 5 g 7 . 5 m m d i m e n s i o n s ( l x w )


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