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610-L100 Datasheet(PDF) 1 Page - RCD COMPONENTS INC. |
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610-L100 Datasheet(HTML) 1 Page - RCD COMPONENTS INC. |
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1 / 1 page 600 SERIES ALUMINUM HOUSED RESISTORS SPECIFICATIONS: Consult factory for dimensions on liquid cooled design up to 1000 Watt FA018F Sale of this product is in accordance with GF-061. Specifications subject to change without notice. Widest selection in the industry! 5 to 1000 Watt 0.005 Ω to1MΩ, tolerance to .01%, TC to 5ppm High power and high pulse capacity in compact size Welded wirewound construction, low noise Available on exclusive SWIFT TM delivery program! Option X: Non-inductive Option P: Increased pulse capability Option ER: 100 hour burn-in per MIL-PRF-39009 Option B: Increased power Additional modifications: unanodized cases, custom marking, increased dielectric/creepage & working voltage, low thermal emf (opt.E), etc. Customized components are an RCD Specialty! Standard units feature lug terminals (605 - 630) or threaded terminals (635 & 640). Option L (605-625): Insulated stranded wires embedded into the case. Black TFE 18awg x 12”L with ¼” strip is standard (16awg TFE & 14awg PVC avail). Also available with 4 insulated lead wires (Opt.4L), and with a wide variety of terminals... quick-connect male (Opt. LM=.25x.032); female (Opt. LF=.25x.032”, LFS=.187x.020); ring terminal (Opt. LR=.145” I.D., LRR=.25” I.D.). Option 2T & 4T (605-625): Straight leadwires. 2T is 2-terminal design, 4T is 4-terminal. Each have 18awg x 1” min lead length. 16awg x 1” and 12AWG x .5” also available (12 AWG not avail in Opt 4T). Option 4R (605-630): 4-terminal design. 16AWG lug terminals are welded to standard terminals. 1 Military part numbers are for reference only and do not imply qualification. 2 Max. voltage = ( PR)½ , not to exceed the value listed (increased ratings avail). Multiply by 0.7 for Opt.X. TYPICAL PERFORMANCE CHARACTERISTICS: 3 The dielectric strength on Opt. L resistors is 50% of standard (available up to 3KV) DERATING: Power rating is based on the use of a suitable heat sink and thermal compound to limit case temp. to 200°C. Derate wattage 0.44%/°C above 25°C. Recommended aluminum chassis area is 64in² x.040” thick for type 605 and 610, 83in² x.040” thick for type 615, 144in² x.060” thick for type 620, and 144in² x .125” for types 625 through 640. Without a heat sink, derate wattage rating by 60%. RESISTORS CAPACITORS COILS DELAY LINES 605-630 View From Top A C H E G B F L N D 635-640 View From Top A C E G B F L D 3.00±.01” (640 only) H 1/4-20,12-24 Type 630 & 640 have 4 mounting holes 605-630 View From Side 635-640 View From Side RoHS Term.W is RoHS compliant & 260°C compatible 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 D C R e p y T e p y T L I M 1 d e t n u o M , e g a t t a W . s i s e R ( e g n a R Ω Ω Ω Ω Ω) e g a t l o V g n i t a R 2 A 5 0 0 . ± B 5 0 0 . ± C 2 6 0 . ± D 2 6 0 . ± E 1 3 0 . ± F 1 3 0 . ± G 1 3 0 . ± H 0 1 0 . ± L 5 0 0 . ± N 5 0 0 . ± g t M w e r c S d t SB . t p OL I M 5 0 60 6 R E R / E R5 . 75 15 K 0 2 - 5 0 0 .0 6 1 4 4 4 . ] 3 . 1 1 [ 0 9 4 . ] 5 . 2 1 [ 0 0 6 . ] 2 . 5 1 [ 5 2 1 . 1 ] 6 . 8 2 [ 4 3 3 . ] 5 . 8 [ 6 4 6 . ] 4 . 6 1 [ 0 2 3 . ] 2 . 8 [ 5 6 0 . ] 6 . 1 [ 3 9 0 . ] 4 . 2 [ 0 5 0 . ] 3 . 1 [ 2 # ] 2 M [ 0 1 65 6 R E R / E R5 . 2 10 20 1K 0 0 1 - 5 0 0 .5 6 2 2 6 5 . ] 3 . 4 1 [ 5 2 6 . ] 9 . 5 1 [ 0 5 7 . ] 0 . 9 1 [ 5 7 3 . 1 ] 0 . 5 3 [ 0 2 4 . ] 8 . 0 1 [ 0 0 8 . ] 3 . 0 2 [ 5 0 4 . ] 3 . 0 1 [ 5 7 0 . ] 9 . 1 [ 3 9 0 . ] 4 . 2 [ 6 8 0 . ] 2 . 2 [ 2 # ] 2 M [ 5 1 60 7 R E R / E R5 25 30 2K 0 0 2 - 5 0 0 .0 5 5 9 1 7 . ] 3 . 8 1 [ 1 8 7 . ] 8 . 9 1 [ 2 6 0 . 1 ] 0 . 7 2 [ 8 3 9 . 1 3 . 9 4 [ 1 3 5 . ] 5 . 3 1 [ 0 8 0 . 1 ] 4 . 7 2 [ 6 4 5 . ] 9 . 3 1 [ 8 8 0 . ] 2 . 2 [ 5 2 1 . ] 2 . 3 [ 6 8 0 . ] 2 . 2 [ 4 # ] 5 . 2 M [ 0 2 65 7 R E R / E R0 50 60 3K 0 0 4 - 5 0 0 .0 5 2 1 3 6 5 . 1 ] 7 . 9 3 [ 4 4 8 . ] 5 . 1 2 [ 8 6 9 . 1 ] 0 . 0 5 [ 1 8 7 . 2 ] 6 . 0 7 [ 9 0 6 . ] 6 . 5 1 [ 0 4 1 . 1 ] 8 . 8 2 [ 0 1 6 . ] 5 . 5 1 [ 8 8 0 . ] 2 . 2 [ 5 2 1 . ] 2 . 3 [ 6 8 0 . ] 2 . 2 [ 4 # ] 5 . 2 M [ 5 2 6- 5 7- - K 0 0 5 - 1 0 .0 0 9 1 3 6 5 . 1 ] 7 . 9 3 [ 4 4 8 . ] 5 . 1 2 [ 0 5 8 . 2 ] 4 . 2 7 [ 3 6 6 . 3 ] 0 . 3 9 [ 9 0 6 . ] 6 . 5 1 [ 0 4 1 . 1 ] 8 . 8 2 [ 0 1 6 . ] 5 . 5 1 [ 8 8 0 . ] 2 . 2 [ 5 2 1 . ] 2 . 3 [ 6 8 0 . ] 2 . 2 [ 4 # ] 5 . 2 M [ 0 3 6- 0 0 1- - K 0 0 1 - 1 . 00 0 9 1 1 0 . ± 7 7 3 . 1 ] 0 . 5 3 [ 1 0 . ± 7 5 4 . 1 ] 0 . 7 3 [ 9 7 5 . 2 ] 5 . 5 6 [ 9 0 . ± 8 3 . 3 ] 9 . 5 8 [ 3 5 0 . 1 ] 7 . 6 2 [ 9 3 8 . 1 ] 7 . 6 4 [ 0 6 9 .5 0 . ± ] 4 . 4 2 [ 3 0 . ± 8 3 1 . ] 5 . 3 [ 1 0 . ± 3 7 1 . ] 4 . 4 [ n i M 6 8 0 . ] 2 . 2 [ 8 # ] 4 M [ 5 3 67 7 E R0 0 10 5 15 7K 0 0 6 - 1 . 00 0 9 1 1 0 . ± 5 7 . 2 ] 5 8 . 9 6 [ 1 0 . ± 5 2 . 2 ] 5 1 . 7 5 [ 0 5 . 3 ] 9 . 8 8 [ 9 0 . ± 8 4 . 5 ] 4 1 . 9 3 1 [ 2 1 8 . 1 ] 0 . 6 4 [ 2 1 8 . 2 ] 2 4 . 1 7 [ 5 7 . 1 ] 5 4 . 4 4 [ 3 0 . ± 8 8 1 . ] 8 7 . 4 [ 1 0 . ± 8 8 1 . ] 8 7 . 4 [ a / n 8 # ] 4 M [ 0 4 60 8 E R0 5 20 0 30 2 1M 1 - 1 . 00 0 3 2 1 0 . ± 5 7 8 . 3 ] 2 4 . 8 9 [ 1 0 . ± 0 5 . 2 ] 5 . 3 6 [ 0 5 . 4 ] 3 . 4 1 1 [ 9 0 . ± 0 0 . 7 ] 8 . 7 7 1 [ 5 2 1 . 2 ] 8 9 . 3 5 [ 0 0 . 3 ] 2 . 6 7 [ 8 8 1 . 2 ] 8 5 . 5 5 [ 3 0 . ± 0 5 2 . ] 5 3 . 6 [ 1 0 . ± 8 8 1 . ] 8 7 . 4 [ a / n 8 # ] 4 M [ t n e i c i f f e o C . p m e T 9 9 0 0 . - 5 0 0 . : Ω ) . t p o m p p 0 0 3 , 0 0 2 ( d t s m p p 0 0 6 9 4 0 . - 1 0 . : Ω ) . t p o m p p 0 0 2 , 0 0 1 ( d t s m p p 0 0 3 9 9 0 . - 5 0 . Ω:) . t p o m p p 0 0 1 , 0 5 ( d t s m p p 0 0 2 9 9 . - 1 . Ω:) t p o m p p 0 5 , 0 3 , 0 2 , 0 1 ( d t s m p p 0 9 9 . 9 - 1 Ω:) . t p o m p p 0 3 , 0 2 , 0 1 ( d t s m p p 0 5 0 1 Ω ) . t p o m p p 0 1 , 5 ( d t s m p p 0 2 : e v o b a & ) V W D ( c i r t c e l e i D 0 1 6 , 5 0 6 5 2 6 , 0 2 6 , 5 1 6 0 4 6 , 5 3 6 , 0 3 6 d r a d n a t S 3 l a n o i t p O ) 4 3 . t p O ( V K 5 . 2 , ) 6 3 . t p O ( V K 2 V K 1 ) 1 4 . t p O ( V K 3 , ) 4 3 . t p O ( V K 5 . 2 V K 2 ) 5 6 . t p O ( V K 4 , ) 1 4 . t p O ( V K 3 V K 5 . 2 X . t p O , e c n a t c u d n I 5 0 6 5 1 6 , 0 1 6 5 2 6 , 0 2 6 0 4 6 , 5 3 6 , 0 3 6 ≤≤≤≤≤ 0 5 Ω Ω Ω Ω Ω 0 5 > Ω Ω Ω Ω Ω x a M H u 7 3 . 0 x a M H u 2 . 0 x a M H u 6 . 0 x a M H u 3 . 0 x a M H u 2 . 1 x a M H u 5 6 . 0 x a M H u 0 . 3 x a M H u 5 . 1 ) s r h 0 0 0 1 ( e f i L d a o L e c n a t s i s e R e r u t s i o M d a o l r e v O h t g n e r t S l a n i m r e T . p m e T g n i t a r e p O ) B . t p O % 3 ± d n a , 0 4 6 - 5 2 6 r o f % 2 ± ( % 1 ± % 5 . 0 ± ) V W D d e e c x e o t t o n V ( c e S 5 , W d e t a r x 5 t s e t ll u p b l - 0 1 C ° 0 5 2 + o t C ° 5 5 - 610 - 1001 - F B W Optional TC (leave blank if std): 5=5ppm, 10=10ppm; 20=20ppm; 30=30ppm; 50=50ppm; 101=100ppm, 201=200ppm, 301=300ppm) RCD Type Options: X, Q2, Q, P, LRR, LR, LM, LFS, LF, L, ER, E, B, 65, 41, 36, 34, 16, 14, 4T, 4R, 4L (leave blank if std) Tolerance: 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% Packaging: B = standard Resis. Code: ≤≤≤≤≤1%: 3 signif. figures & multiplier, e.g. R010=0.01 Ω,R100= 0.1Ω, 1R00= 1Ω,1000= 100Ω,1001= 1KΩ Resis. Code 2% - 10%: 2 signif. figures & multiplier, e.g. R01=0.01 Ω, R10= 0.1Ω,1R0= 1Ω,100= 10Ω,102= 1KΩ P/N DESIGNATION: Termination: W= Lead-free, Q= Tin/Lead (leave blank if either is acceptable) Non-std lead length for option L (inches): (12” = std) 4”, 16”, etc. 46 Option Q (605-630): .187x.020” male fast-on terminal; Opt. Q2 (610-625) is .250x.032” male terminal. Opt. Q & Q2 add 0.9 ±0.125” to Dim. D. |
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