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MWM2E-1001 Datasheet(PDF) 1 Page - RCD COMPONENTS INC. |
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MWM2E-1001 Datasheet(HTML) 1 Page - RCD COMPONENTS INC. |
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1 / 1 page MWM SERIES Exceptional perfomance and reliability is achieved via highest grade materials and processing. An all-welded wirewound construction is standard, featuring premium-grade wire for superior stability and surge capability. Opt. L low profile models feature a non-inductive metal plate element. The power film version (Opt.M) achieves values as high as 1M Ω and is inherently low inductance thereby enabling stable operation at high frequencies. Widest selection in the industry! Tolerance to ±0.01%, T.C. to ±5ppm/°C Available on exclusive SWIFT TM delivery program! OPTIONS Option X: Non-inductive (refer to application note below) Option P: Increased Pulse Capability Option M: Power metal film element Option L: Low profile non-inductive metal plate design Option E: Low thermal EMF design Special marking, high current, flame retardant, fusible, temp.sensitive, hi-rel screening/burn-in, fusible, SnPb, etc. SM POWER RESISTORS, 1/2W - 5W, .0005 Ω Ω Ω Ω Ω - 1MΩ Ω Ω Ω Ω WIREWOUND, FILM, & METAL PLATE E P Y T D C R e g a t t a W g n i t a R x a M * e g a t l o V ] t n e r r u C [ s i s e R d t S e g n a R M t p O s i s e R e g n a R M t p O . x a M e g a t l o V ] m m [ h c n I S N O I S N E M I D AB ) x a M ( CD ) n i M ( EF G H 2 / 1 M W MW 5 . 0] A 0 1 [ V 3 31 0 . Ω K 2 -5 Ω M 1 -* V 0 0 2] 5 . ± 2 . 5 [ 2 0 . ± 4 0 2 .] 2 8 . 2 [ 1 1 1 .] 5 2 . ± 2 . 3 [ 1 0 . ± 5 2 1 .] 3 6 . [ 5 2 0 .] 4 . ± 4 1 . 1 [ 5 1 0 . ± 5 4 0 .] 0 . 2 [ 0 8 0 .] 5 . 2 [ 0 0 1 .] 2 [ 8 0 . 1 M W MW 1] A 0 2 [ V 8 51 0 0 . Ω K 0 1 -1 . Ω M 1 -* V 0 0 2] 5 . ± 5 5 . 6 [ 2 0 . ± 8 5 2 .] 7 1 . 3 [ 5 2 1 .] 4 . ± 8 . 3 [ 5 1 0 . ± 0 5 1 .] 8 . 0 [ 2 3 0 .] 4 . ± 0 5 . 1 [ 5 1 0 . ± 0 6 0 .] 5 . 2 [ 0 0 1 .] 2 . 3 [ 5 2 1 .] 3 [ 2 1 . 2 M W MW 2] A 0 3 [ V 0 2 12 0 0 . Ω K 5 2 -1 . Ω M 1 -* V 0 5 2] 8 . ± 4 . 1 1 [ 2 3 0 . ± 9 4 4 .] 8 2 . 5 [ 8 0 2 .] 4 . ± 7 . 5 [ 5 1 0 . ± 5 2 2 .] 5 . 1 [ 0 6 0 .] 5 . ± 8 7 . 1 [ 0 2 0 . ± 0 7 0 .] 0 . 4 [ 0 6 1 .] 0 . 4 [ 7 5 1 .] 5 [ 0 2 . S 2 M W MW 2] A 5 2 [ V 0 81 . Ω 0 0 2 - Ω 1Ω M 1 -* V 0 5 2] 5 . ± 5 . 7 [ 0 2 0 . ± 7 9 2 .] 9 1 . 4 [ 5 6 1 .] 4 . ± 8 . 3 [ 5 1 0 . ± 0 5 1 .] 1 . 1 [ 4 4 0 .] 4 . ± 7 2 . 1 [ 6 1 0 . ± 0 5 0 .] 5 . 2 [ 0 0 1 .] 2 . 3 [ 5 2 1 .] 6 . 3 [ 4 1 . 7 2 M W MW 7 . 2] A 0 3 [ V 0 8 15 0 0 . Ω K 0 2 -1 Ω M 1 -* V 0 5 2] 8 . ± 2 . 2 1 [ 2 3 0 . ± 0 8 4 .] 4 8 . 5 [ 0 3 2 .] 4 . ± 8 . 5 [ 6 1 0 . ± 8 2 2 .] 7 2 . 1 [ 5 0 .] 5 . ± 8 7 . 1 [ 0 2 0 . ± 0 7 0 .] 0 . 4 [ 0 6 1 .] 7 5 . 4 [ 8 1 .] 5 [ 0 2 . S 3 M W MW 3] A 0 3 [ V 0 0 25 0 0 . Ω K 5 2 -1 Ω M 1 -* V 0 0 3] 8 . ± 9 . 5 1 [ 2 3 0 . ± 5 2 6 .] 6 8 . 6 [ 0 7 2 .] 8 3 . ± 7 [ 5 1 0 . ± 5 7 2 .] 7 2 . 1 [ 5 0 .] 4 . ± 6 1 . 2 [ 6 1 0 . ± 5 8 0 .] 0 . 4 [ 0 6 1 .] 5 . 4 [ 5 7 1 .] 0 1 [ 0 4 . 3 M W MW 5 . 3] A 0 3 [ V 0 5 25 0 0 . Ω K 0 5 -1 Ω M 1 -* V 0 5 3] 5 . ± 6 . 0 2 [ 0 2 0 . ± 1 1 8 .] 9 4 . 7 [ 5 9 2 .] 5 . ± 9 . 6 [ 2 0 . ± 3 7 2 .] 6 . 1 [ 3 6 0 .] 7 . ± 6 . 2 [ 8 2 0 . ± 2 0 1 .] 0 . 5 [ 0 0 2 .] 0 . 5 [ 0 0 2 .] 5 1 [ 0 6 . 5 M W MW 5] A 2 3 [ V 0 0 35 0 0 . Ω K 0 0 1 -a / na / n] 5 . ± 6 . 0 2 [ 0 2 0 . ± 1 1 8 .] 9 4 . 7 [ 5 9 2 .] 5 . ± 9 . 6 [ 2 0 . ± 3 7 2 .] 6 . 1 [ 3 6 0 .] 7 . ± 6 . 2 [ 8 2 0 . ± 2 0 1 .] 4 . 6 [ 0 5 2 .] 4 . 6 [ 0 5 2 .] 5 1 [ 0 6 . S L E D O M E T A L P L A T E M E L I F O R P W O L L 2 / 1 M W MW 5 . 0 √ ] A 2 1 [ ) R P ( 3 0 0 . Ω 5 0 . - Ω a / na / n] 3 . ± 1 . 5 [ 2 1 0 . ± 0 0 2 .] 5 3 . 1 [ 3 5 0 .] 5 2 . ± 4 5 . 2 [ 1 0 . ± 0 0 1 .] 3 6 . [ 5 2 0 .n i m ] 5 . 1 [ 0 6 0 .] 0 . 2 [ 0 8 0 .] 5 . 2 [ 0 0 1 .] 2 [ 8 0 . L 1 M W MW 1 √ ] A 5 2 [ ) R P ( 1 0 0 . Ω 1 . 0 - Ω a / na / n] 3 . ± 3 . 6 [ 2 1 0 . ± 0 5 2 .] 5 4 . 1 [ 7 5 0 .] 3 . ± 2 . 3 [ 2 1 0 . ± 6 2 1 .] 3 6 . [ 5 2 0 .n i m ] 8 . 1 [ 0 7 0 .] 8 . 3 [ 0 5 1 .] 2 . 3 [ 5 2 1 .] 3 [ 0 2 1 . L 2 M W MW 2 √ ] A 0 3 [ ) R P ( 2 0 0 . Ω 2 . 0 - Ω a / na / n] 3 . ± 8 3 . 8 [ 2 1 0 . ± 0 3 3 .] 5 4 . 1 [ 7 5 0 .] 3 . ± 0 . 4 [ 2 1 0 . ± 7 5 1 .] 8 . 0 [ 2 3 0 .n i m ] 5 . 2 [ 0 0 1 .] 0 . 5 [ 7 9 1 .] 0 . 4 [ 7 5 1 .] 4 [ 7 5 1 . S L 2 M W MW 2 √ ] A 5 4 [ ) R P ( 5 0 0 . - 5 0 0 0 . Ω a / na / n] 3 . ± 3 . 6 [ 2 1 0 . ± 0 5 2 .] 0 . 2 [ 9 7 0 .] 3 . ± 2 . 3 [ 2 1 0 . ± 6 2 1 .] 8 . 0 [ 2 3 0 .n i m ] 0 2 . [ 0 8 0 .] 8 . 3 [ 0 5 1 .] 2 . 3 [ 5 2 1 .] 3 . [ 0 2 1 . *Voltage determined by E = , E not to exceed maximum voltage rating. Increased ratings available. Multiply by 0.7 for Opt. X √PR APPLICATION NOTES: 1. Power Rating: Resistors may be operated up to full rated power with consideration of mounting density, pad & trace geometery, PCB material, and ambient temperature. Standard parts should be derated (W&V) by .67%/°C when ambient exceeds 25°C, low profile parts by 1%/ °C above 70 °C 2. Inductance: Standard wound parts are 1 - 20uH typ. For “non-inductive” design, specify Opt.X (0.2uH max ≤50Ω, .37uH >50Ω, 50nH avail). Opt. L (metal plate element) and Opt.M (power film element) are inherently low inductance (1 to 10nH typ). Consult factory for assistance. 3. Pulse Capability: standard MWM (wirewound) and Opt. L (metal plate) offer excellent overload capability greatly exceeding that of film resistors. The overload level can often be economically enhanced by a factor of 50% or more via special processing (Opt.P). Pulse capability is highly dependent on size & resistance (available up to 50 joules). Consult factory for assistance. E C N A M R O F R E P ) p y T (e t a l P l a t e M L . t p O & W Wt n e m e l E m l i F M . t p O ) s r h 0 0 0 1 ( e f i L d a o L% 1 ±) % 2 = 7 2 , S 3 , S 2 M W M (% 1 ± e c n a t s i s e R e r u t s i o M% 5 2 . 0 ±% 5 . 0 g n il c y C e r u t a r e p m e T% 2 . 0 ±% 5 . 0 d a o l r e v O e m i T t r o h Sc e S 5 r o f W d e t a r x 5c e S 5 . r o f W d e t a r x 5 t n e i c i f f e o C . p m e T 4 2 0 R - 5 0 0 0 R 9 4 0 R - 5 2 0 R 9 9 0 R - 0 5 0 R 0 9 9 R - 0 0 1 R 0 9 R 9 - 0 0 R 1 e v o b a & 0 R 0 1 d r a d n a t Sl a n o i t p O 0 0 2 , 0 0 1 m p p 0 0 4 30 0 2 , 0 0 1 m p p 0 0 0 0 1 , 0 5 m p p 0 0 2 0 5 , 0 3 , 0 2 m p p 0 9 0 3 , 0 2 , 0 1 m p p 0 5 0 2 , 0 1 , 5 m p p 0 3 d r a d n a t Sl a n o i t p O a / n a / n a / n a / n a / n a / n 0 0 2 m p p 0 5 3 0 0 1 m p p 0 0 2 0 5 , 5 2 m p p 0 0 1 h t g n e r t S c i r t c e l e i D 1 . n i M V 0 0 5 1 . l i a v a V K 1 ,) . l i a v a V K 1 ( . n i M V 0 0 5 y t il i b a r e d l o S 2 e g a r e v o c % 5 9e g a r e v o c % 5 9 . p m e T g n i t a r e p O) li a v a ° 5 7 2 + ( C ° 5 7 1 + o t 5 5 -C ° 5 7 1 + o t C ° 5 5 - . l o T . s i s e R e l b a l i a v A% 0 1 o t % 1 0 . 0% 5 o t % 5 . 0 1 Dielectric strength for low profile Opt. Lis 100V ( 300V avail) 2 Tested within .032" [.8mm] of pcb surface → ← A ------ ------ B .010” MWM2 & 3S, .050” MWM3 & 5 D C ← E → ↑ ↓ ↓ ↑ ↓ SUGGESTED PAD LAYOUT F ↑ H G ← → FA015J Sale of this product is in accordance with GF-061. Specifications subject to change without notice. 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 RESISTORS CAPACITORS COILS DELAY LINES 23 P/N DESIGNATION: RCD Type Resis.Code .01%-1%: 3 signif. figures & multiplier, e.g. R010=0.01 Ω, R100=0.1Ω, 1R00=1Ω, 1000=100Ω, 1001=1K. Resis.Code 2%-10%: 2 signif. figures & multiplier, R01=0.01 Ω, R10=0.1 Ω, 1R0=1Ω, 100=10Ω, 101=100Ω, 102=1K. Use extra digits as needed: R005, R0075, R012, etc. Packaging: B = Bulk, T = Tape & Reel Tolerance Code: K=10%, J=5%, H=3%, G=2%, F=1%, D=0.5%, C=0.25%, B=0.1%, A=0.05%, Q=0.02%, T=0.01% Options: X,P,M,L,F,E (leave blank if std) TC (leave blank if standard): 5 = 5ppm, 10 = 10ppm, 20=20ppm, 30=30ppm,50=50ppm, 101=100ppm, 201=200ppm, 301=300ppm MWM2 - 1001 - F T W Termination: W= Lead-free, Q= Tin/Lead. Leave blank if either is acceptable (RCD will select based on lowest price and quickest delivery). RoHS Term.W is RoHS compliant & 260°C compatible |
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