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PWLL10-10R0 Datasheet(PDF) 1 Page - RCD COMPONENTS INC. |
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PWLL10-10R0 Datasheet(HTML) 1 Page - RCD COMPONENTS INC. |
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1 / 1 page 5W TO 50 WATT POWER RESISTORS CERAMIC ENCASED, RADIAL LEADS PWLL & PWH SERIES Low cost, fireproof construction 0.1 Ω to 150KΩ, ±5% is standard (0.5% to 10% avail.) OPTIONS Option X: Non-Inductive Option P: Increased pulse capability Option G: 1/4x.032” male fast-on terminals (PWH & PWHM15-50) RESISTORS CAPACITORS COILS DELAY LINES PWLL and PWH resistors are designed for general purpose and semi-precision power applications. The ceramic construction is fireproof and resistant to moisture & solvents. The internal element is wirewound on lower values, power film on higher values (depending on options, e.g. opt. P parts are always WW). If a specific construction is preferred, specify opt.’WW’ for wirewound, opt.’M’ for power film (not available in all values). PERFORMANCE (typ.) PWHM (PWH with metal mounting bracket) P2 .156± .032 [4 ± .8] P3 P1 .12 [3] .086 [2.2] Note: for unbent flange specify opt.U (add .12” [3mm] to dim P2) * Tightened TC’s available, consult factory L PWLL → ← ↑ ↓ H P2 P3 P1 → ← LS 12 12 12 12 12 12 12 12 Suggested Mounting Holes: 5 to10W =.032 [.8] W x .07[1.8] L 15 to 25W = .040 [1] W x .13 [3.3] L .020 ± .005 [.508 ± .127] ← W → PWH 1 Max voltage determined by E=(PR)1/2, E not to exceed MCWV (increased voltage levels avail). 2 When mounted on suitable heatsink, PWHM wattage may be increased by 25% (use thermal grease) 3 PW5LL,7LL,10LL also avail. with 15 or 25mm standoff terminals (specify opt.15 or 25); PW15LL & 25LL avail. with 10.5mm or 30mm, specify options 10 or 30. 4 1.39”[35mm] avail., specify opt. 35 LS ↑ ↓ H .31[8] min. L Opt.G 1/4x.032 male terminals avail. on PWH & PWHM15-50 ↓ D C R e p y T e g a t t a W ) C ° 5 2 ( . s i s e R e g n a R . t n o C . x a M g n i k r o W e g a t l o V 1 m m ( h c n I : S N O I S N E M I D ) ) x a m ( Lx a m ( W ) H) x a m (LS 1 P2 P3 P 3 ] 5 . 1 [ 6 0 . ± 5 L L W P 51 . Ω K 0 5 -0 5 3] 8 2 [ 0 1 . 1] 5 . 0 1 [ 3 1 4 .] 5 . 0 1 [ 3 1 4 .] 5 . 1 ± 5 1 [ 6 0 . ± 9 5 .] 5 2 . ± 4 . 1 [ 1 0 . ± 5 5 0 .n i m ] 8 . 2 [ 1 1 .] 5 . 0 1 [ 3 1 4 . 3 7 L L W P 71 . Ω K 0 0 1 -0 0 5] 6 3 [ 2 4 . 1] 5 . 0 1 [ 3 1 4 .] 5 . 0 1 [ 3 1 4 .] 5 . 1 ± 5 . 2 2 [ 6 0 . ± 9 8 .] 5 2 . ± 4 . 1 [ 1 0 . ± 5 5 0 .n i m ] 8 . 2 [ 1 1 .] 5 . 0 1 [ 3 1 4 . 3 0 1 L L W P 0 12 . Ω K 0 0 1 -0 0 7] 9 4 [ 3 9 . 1] 5 . 0 1 [ 3 1 4 .] 5 . 0 1 [ 3 1 4 .6 0 . ± 6 2 . 1 4 ] 5 . 1 ± 2 3 [] 5 2 . ± 4 . 1 [ 1 0 . ± 5 5 0 .n i m ] 8 . 2 [ 1 1 .] 5 . 0 1 [ 3 1 4 . 3 5 1 L L W P 5 15 . Ω K 0 0 1 -0 5 7] 5 . 9 4 [ 5 9 . 1] 5 . 3 1 [ 2 3 5 .] 5 . 3 1 [ 2 3 5 .] 2 ± 2 3 [ 8 0 . ± 6 2 . 1] 3 . ± 5 7 . 2 [ 2 1 0 . ± 8 0 1 .n i m ] 8 . 3 [ 5 1 .] 5 1 [ 1 9 5 . 3 5 2 L L W P 5 25 . Ω K 0 0 1 -0 0 0 1] 5 . 4 6 [ 4 5 . 2] 5 1 [ 1 9 5 .] 5 1 [ 1 9 5 .] 2 ± 5 4 [ 8 0 . ± 7 7 . 1] 3 . ± 5 7 . 2 [ 2 1 0 . ± 8 0 1 .n i m ] 8 . 3 [ 5 1 .] 5 1 [ 1 9 5 . 3 0 1 M H W P , 0 1 H W P0 1 2 5 . Ω K 0 5 -0 0 7] 0 5 [ 7 9 . 1] 0 . 1 1 [ 3 3 4 .] 5 . 2 1 [ 3 7 4 .0 3 . 18 0 . ±3 3 [± ] 20 7 4 .0 . ±2 1 [ 41 ±] 2 2 .0 . ±5 . 5 [ 41 ±] ] 7 [ 5 7 2 . 5 1 M H W P , 5 1 H W P5 1 2 5 . Ω K 0 5 1 -0 5 7] 0 5 [ 7 9 . 1] 5 . 3 1 [ 1 3 5 .] 5 . 4 1 [ 2 7 5 .0 3 . 18 0 . ±3 3 [± ] 20 7 4 .0 . ±2 1 [ 41 ±] 4 2 .0 . ±6 [ 41 ±] 8 [ 5 1 3 .] 5 2 M H W P , 5 2 H W P5 2 2 5 . Ω K 0 5 1 -0 0 0 1] 5 6 [ 6 5 . 2] 2 . 5 1 [ 8 9 5 .] 5 1 [ 1 9 5 .7 7 . 12 1 . ±5 4 [± ] 30 7 4 .0 . ±2 1 [ 41 ±] 4 2 .0 . ±6 [ 41 ±] 8 [ 5 1 3 .] 0 4 M H W P , 0 4 H W P0 4 2 1 Ω K 2 -0 0 0 1] 7 7 [ 3 0 . 3] 0 . 0 2 [ 7 8 7 .] 5 . 1 2 [ 7 4 8 .7 1 . 28 0 . ±5 5 [± ] 39 6 .0 . ±5 . 7 1 [ 41 ±] 8 2 .0 . ±7 [ 65 . 1 ±] ] 0 1 [ 4 9 3 . 0 5 M H W P , 0 5 H W P0 5 2 1 Ω K 2 -0 0 0 1] 2 9 [ 2 6 . 3] 0 . 0 2 [ 7 8 7 .] 5 . 1 2 [ 7 4 8 .2 7 . 22 1 . ±9 6 [± ] 39 6 .0 . ±5 . 7 1 [ 41 ±] 8 2 .0 . ±7 [ 65 . 1 ±] ] 0 1 [ 4 9 3 . e r u t a r e p m e T f e o C 0 0 1 T o t 5 2 T 1 Ω e v o b a &* x a m m p p 0 0 3 , . p y t C ° / m p p 0 0 1 1 w o l e B Ω * . x a m m p p 0 0 6 , . p y t C ° / m p p 0 0 2 . p m e T g n it a r e p O5 5 - ° ) li a v a C ° 5 7 2 ( C ° 5 3 2 + o t h t g n e r t S l a n i m r e Tm u m i n i m . s b l 5 h t g n e r t S c i r t c e l e i DV 0 0 0 1 ( d a o l r e v o . c e S 5 ≤1 ) V x a m x 5 .) X 5 = W W . t p O ( e g a t t a w d e t a r X 3 e c n a t s i s e R e r u t s i o M% 0 . 3 e r u s o p x E . p m e T h g i H% 0 . 1 ) s r u o h 0 0 0 1 ( e f i L d a o L% 0 . 3 g n il c y C e r u t a r e p m e T% 0 . 2 n o it a r b i V d n a k c o h S% 0 . 1 s t r a p d r a d n a t s ( e c n a t c u d n I X . t p o y f i c e p s , e v it c u d n i e r a e c n a t c u d n i w o l r o f ) n o i s r e v : r e ll a m s & W 5 2 X . t p O ≤ 0 5 Ω , x a m H u 3 . 0 = 0 5 > Ω . x a m H u 6 . 0 = : r e g r a l & W 0 3 X . t p O ≤ 0 5 Ω , x a m H u 1 = 0 5 > Ω .l i a v a . c u d n i d e c u d e R . ) x a m H u 2 = e s i R e r u t a r e p m e T 0 4 1 o t 0 0 10 0 2 , r e w o p d e t a r % 0 5 t a p y t C ° r e w o p d e t a r ll u f t a p y t C ° 0 5 2 o t g n it a r e D y b e g a tl o v d n a e g a t t a w e t a r e D / % 8 4 .C ° 5 2 e v o b a C ° FA051D Sale of this product is in accordance with GF-061. Specifications subject to change without notice. RoHS Term.W is RoHS compliant & 260°C compatible .10 [2.5] dia. typ. → ← → ← → ← → ← → ← ←W→ .24 [6] P/N DESIGNATION: PWH 10 - 102 - J B W Options: X, WW, P, M, G, 10, 15, 25, 30 (leave blank if std) RCD Type (PWLL, PWH, PWHM) Tolerance: D=0.5%,F=1%,G=2%,J=5%(std),K=10% Packaging: B = Bulk (standard) Wattage Resis.Code .5%-1%: 3 signif. figures & multiplier, e.g. R100=0.1 Ω,1R00=1Ω,10R0=10Ω,1000=100Ω,1001=1K Resis.Code 2%-10%: 2 signif. figures & multiplier, e.g. R10=0.1 Ω, 1R0=1Ω, 100=10Ω, 101=100Ω,102=1K, etc. Termination: W= Lead-free, Q= Tin/Lead, leave blank if either is acceptable RCD Components Inc, 520 E.Industrial Park Dr, Manchester, NH, USA 03109 rcdcomponents.com Tel: 603-669-0054 Fax: 603-669-5455 Email:sales@rcdcomponents.com 49 5 - 10W= 10.5mm (15 & 25mm avail.) 3 15 - 25W= 15mm (10.5 & 30mm avail.) 3 ↓ ↑ |
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