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PCN30HC-102-JT Datasheet(PDF) 1 Page - RCD COMPONENTS INC. |
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PCN30HC-102-JT Datasheet(HTML) 1 Page - RCD COMPONENTS INC. |
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1 / 1 page Industry’s widest range of composition resistors! High energy and voltage capability, non-inductive Standard tolerances of 10% & 20% (5% avail.) Type PCN resistors are manufactured from carbon and ceramic granules into a solid bulk composition enabling pulse capabilities unmatched by wirewound or film resistors. Marking is alpha-numeric or color band. Flexible manufactur- ing process enables customized rod or disk sizes up to 5” diameter and 18” long. Typical applications include snubber circuits, lightning surge, grounding resistors, RFI suppres- sion, dummy loads, etc. Depending on the application, PCN resistors can often satisfy requirements of UL217, 268, 294, 497A, 508, 913, 943, 991, 1459, & 1971; IEEE587, C37.90, & Bellcore TR357 & 1089; EN61000-4, 60601, & 50082. 1 Max. continuous voltage is determined by E= (PR)1/2, E not to exceed the Max.Working Voltage. 2 Peak pulse voltage is dependent on resistance and pulse waveform. Levels listed are based on 10X160 nS pulse, 10K Ω. Increased voltage available. Consult factory on each application. 3 Joule rating is dependent on resis.value, pulse duration, and repetition rate. Levels listed are based on 10mS pulse width X 20,000 cycles, 150 Ω, full cooling between pulses. Increased joule ratings available. Consult factory on each application. 4 Expanded resistance range available. PERFORMANCE* FA065B Sale of this product is in accordance with GF-061. Specifications subject to change without notice OPTIONS Option HC: special coating for oil immersion (+175°C max) Option 37: Group A screening per Mil-R-39008 Custom rod and disk sizes, expanded resistance range, custom metallization, increased voltage/dielectric/joule ratings avail. End caps, lug terminals, & mounting clips avail. *Typical performance 10 Ω to 1MΩ (consult factory for requirements outside this range) ** Specify Opt. HC for 500V dielectric or Opt.33 for 1KV (derate pulse voltage 50% & max temp to +175°C) D C R e p y T . g i Fe g a t t a W x a M g n i k r o W e g a t l o V 1 e s l u P e g a t l o V 2 e l u o J g n i t a R 3 e c n a t s i s e R e g n a R 4 AB C D M 4 / 1 N C P1 W 5 2 .V 0 5 2V K 22 1 Ω M 0 1 -] 8 . 0 ± 4 . 1 1 [ 2 3 0 . ± 0 5 4 .] 8 3 . ± 7 . 5 [ 5 1 0 . ± 5 2 2 .] 0 5 . ± 6 . 4 [ 0 2 0 . ± 0 8 1 .- M 2 / 1 N C P1 W 5 .V 0 5 3V K 5 . 27 1 Ω M 0 1 -] 8 . 0 ± 9 . 5 1 [ 2 3 0 . ± 5 2 6 .] 8 3 . ± 0 . 7 [ 5 1 0 . ± 6 7 2 .] 4 6 . ± 2 2 . 6 [ 5 2 0 . ± 5 4 2 .- M 1 N C P1 W 1V 0 0 5V K 38 12 Ω M 1 -] 5 . 0 ± 6 . 0 2 [ 0 2 0 . ± 1 1 8 .] 3 6 . ± 2 . 7 [ 5 2 0 . ± 3 8 2 .] 3 6 . ± 2 . 7 [ 5 2 0 . ± 3 8 2 .- S 2 / 1 N C P2 W 5 .V 0 5 2V K 22 1 Ω M 0 1 -] 0 6 . ± 5 . 6 [ 4 2 0 . ± 0 5 2 .] 0 7 . ± 5 . 2 [ 8 2 0 . ± 0 0 1 .- ] 4 6 . [ 5 2 0 . S 1 N C P2 W 1V 0 5 3V K 5 . 27 1 Ω M 0 1 -] 0 8 . ± 0 1 [ 2 3 0 . ± 4 9 3 .] 0 7 . ± 6 . 3 [ 8 2 0 . ± 0 4 1 .- ] 1 8 . [ 2 3 0 . S 2 N C P2 W 2V 0 0 5V K 86 12 Ω M 1 -] 5 . 1 ± 5 . 5 1 [ 6 0 . ± 0 1 6 .] 0 . 1 ± 9 5 . 5 [ 4 0 . ± 0 2 2 .- ] 6 8 . [ 4 3 0 . 2 N C P2 W 2V 0 0 5V K 45 26 . 5 Ω K 1 5 o t] 5 . 1 ± 7 . 9 1 [ 6 0 . ± 5 7 7 .] 7 2 . 1 ± 2 7 . 5 [ 5 0 . ± 5 2 2 .- ] 1 8 . [ 2 3 0 . 3 N C P2 W 3V 0 0 6V K 56 90 1 Ω K 0 2 o t] 7 2 . 1 ± 4 . 5 2 [ 5 0 . ± 0 0 . 1] 7 2 . 1 ± 1 6 . 8 [ 5 0 . ± 9 3 3 .- ] 1 8 . [ 2 3 0 . 5 N C P2 W 5V 0 0 7V K 0 10 6 10 1 Ω K 0 3 o t] 7 2 . 1 ± 1 . 0 4 [ 5 0 . ± 8 5 . 1] 7 2 . 1 ± 1 6 . 8 [ 5 0 . ± 9 3 3 .- ] 1 8 . [ 2 3 0 . 0 1 N C P3 W 0 1V 0 0 8V K 0 20 7 38 1 Ω K 3 2 o t] 7 2 . 1 ± 0 6 [ 5 0 . ± 6 3 . 2] 7 2 . 1 ± 4 1 [ 5 0 . ± 1 5 5 .] 8 [ 1 3 .] 0 1 [ 4 . 0 2 N C P3 W 0 2V 0 0 9V K 0 30 6 56 2 Ω K 8 2 o t] 7 2 . 1 ± 0 8 [ 5 0 . ± 5 1 . 3] 7 2 . 1 ± 4 1 [ 5 0 . ± 1 5 5 .] 8 [ 1 3 .] 0 1 [ 4 . 0 3 N C P3 W 0 3V 0 0 0 1V K 5 30 6 0 11 2 Ω K 3 2 o t] 7 2 . 1 ± 0 0 1 [ 5 0 . ± 4 9 . 3] 7 2 . 1 ± 0 2 [ 5 0 . ± 8 8 7 .] 4 1 [ 5 5 .] 3 1 [ 5 . S 0 3 N C P3 W 0 3V 0 0 2 1V K 0 50 0 0 , 0 10 1 Ω K 5 4 o t] 7 5 . 1 ± 7 2 1 [ 2 6 0 . ± 0 . 5] 7 2 . 1 ± 9 1 [ 5 0 . ± 0 5 7 .] 6 [ 4 2 . = T . t p o , d il o s = d t s] 5 1 [ 6 . 0 5 N C P3 W 0 5V 0 0 7 1V K 0 70 5 4 25 4 Ω K 8 5 o t] 2 ± 0 0 2 [ 8 0 . ± 7 8 . 7] 7 2 . 1 ± 0 2 [ 5 0 . ± 8 8 7 .] 4 1 [ 5 5 .] 5 1 [ 6 . S 0 5 N C P3 W 0 5V 0 0 7 1V K 0 60 0 0 , 0 26 . 5 Ω K 0 3 o t] 7 5 . 1 ± 2 5 1 [ 2 6 0 . ± 0 . 6] 7 2 . 1 ± 4 . 5 2 [ 5 0 . ± 0 . 1] 2 1 [ 8 4 . = T . t p o , d il o s = d t s] 3 1 [ 5 . S 5 7 N C P3 W 5 7V 0 0 8 1V K 0 80 0 0 , 0 38 Ω K 1 4 o t] 7 5 . 1 ± 3 0 2 [ 2 6 0 . ± 0 . 8] 7 2 . 1 ± 4 . 5 2 [ 5 0 . ± 0 . 1] 2 1 [ 8 4 . = T . t p o , d il o s = d t s] 2 2 [ 7 8 . 0 8 N C P3 W 0 8V 0 0 0 2V K 0 80 6 3 45 4 Ω K 0 5 o t] 2 ± 0 5 2 [ 8 0 . ± 4 8 . 9] 7 2 . 1 ± 5 2 [ 5 0 . ± 5 8 9 .] 8 1 [ 1 7 .] 2 2 [ 7 8 . 0 0 1 N C P3 W 0 0 1V 0 0 4 2V K 0 0 10 3 4 55 5 Ω K 0 0 1 o t] 2 ± 0 0 3 [ 8 0 . ± 1 8 . 1 1] 7 2 . 1 ± 5 2 [ 5 0 . ± 5 8 9 .] 8 1 [ 1 7 .] 2 2 [ 7 8 . S 0 0 1 N C P3 W 0 0 1V 0 0 4 2V K 0 2 10 0 0 , 0 42 1 Ω K 0 6 o t] 6 . 1 ± 5 0 3 [ 2 6 0 . ± 0 . 2 1] 7 2 . 1 ± 4 . 5 2 [ 5 0 . ± 0 . 1] 2 1 [ 8 4 . = T . t p o , d il o s = d t s] 2 2 [ 7 8 . 0 5 1 N C P3 W 0 5 1V 0 0 5 2V K 0 0 10 6 7 , 4 16 2 Ω K 8 2 o t] 2 ± 0 0 3 [ 8 0 . ± 1 8 . 1 1] 2 5 . 1 ± 0 4 [ 6 0 . ± 5 7 5 . 1] 8 2 [ 0 1 . 1] 2 2 [ 7 8 . S 0 5 1 N C P3 W 0 5 1V 0 0 5 2V K 0 6 10 0 0 , 0 65 1 Ω K 0 8 o t] 6 . 1 ± 6 0 4 [ 2 6 0 . ± 0 . 6 1] 7 2 . 1 ± 4 . 5 2 [ 5 0 . ± 0 . 1] 2 1 [ 8 4 . = T . t p o , d il o s = d t s] 2 2 [ 7 8 . 0 7 2 N C P3 W 0 7 2V 0 0 6 2V K 0 6 10 0 0 , 0 31 2 Ω K 3 2 o t] 2 ± 0 5 4 [ 8 0 . ± 2 7 . 7 1] 2 5 . 1 ± 0 5 [ 6 0 . ± 9 6 9 . 1] 8 3 [ 0 5 . 1] 5 2 [ 0 . 1 S 0 0 4 N C P3 W 0 0 4V 0 0 6 2V K 0 6 10 0 0 , 0 5 16 Ω K 0 3 o t] 6 . 1 ± 6 0 4 [ 2 6 0 . ± 0 . 6 1] 2 5 . 1 ± 4 . 1 4 [ 6 0 . ± 3 6 . 1] 2 1 [ 8 4 . = T . t p o , d il o s = d t s] 2 2 [ 7 8 . n o i t a c i f i c e p SS 2 N C P - M 4 / 1 N C PS 0 0 4 N C P - 2 N C P g n i l c y C e r u t a r e p m e T% 1% 1 t n e i c i f f e o C e r u t a r e p m e T. x a M C ° / % 5 1 .. x a M C ° / % 5 1 . e c n a t s i s e R e r u t s i o M% 5% 5 ) s r h 0 0 5 ( e f i L d a o L% 0 1 ±% 5 ± e g n a R . p m e T g n i t a r e p OC ° 5 2 1 + o t 5 5 -C ° 0 3 2 + o t 5 5 - ) k c o l b - V ( h t g n e r t S c i r t c e l e i DS 0 6 , V 0 0 5* * V 0 ) V W C R x 5 . 2 e t n ( d a o l r e v OS 5 , W d e t a R x 3S 5 , W d e t a R x 0 1 ) E & , V , W ( g n i t a r e DC ° 0 2 > C ° / % 2 5 9 .C ° 0 4 > C ° / % 6 2 5 . HIGH SURGE NON-INDUCTIVE COMPOSITION RESISTORS UP TO 400 WATT, 160KV & 150,000 JOULES PCN SERIES RCD PCN5 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 76 RESISTORS CAPACITORS COILS DELAY LINES DERATING 100 75 50 25 0 40 80 120 160 200 240 AMBIENT TEMPERATURE (°C) 230 PCN1/4M-2S PCN2-270 RCD PCN50 FIGURE 2 Axial Lead ← A → D typ. ↑ ↓ B ←1.0 [25.4] min → FIGURE 3 Rods Metallized Ends B C typ. ↑ ↓ ←D→ A FIGURE 1 Surface Mount → ←.032[.8]Min. ← → A ← → → ← .050[1.27]Min. B C P/N DESIGNATION: PCN30 - 102 - K B W RCD Type Options: T, HC, 37, 33 (other options as assigned by RCD. Leave blank if standard) Tolerance Code: J=5%, K = 10%, M = 20% Packaging: B = Bulk, T = T&R (PCN1/4M through PCN5 only) 3-Digit Resis. Code: 2 signif. digits & multiplier (1R0=1 Ω,100=10Ω,101=100Ω,102=1K,etc.) Termination: W= Lead-free, Q= Tin/Lead (leave blank if either is acceptable) RoHS Term.W is RoHS compliant & 260°C compatible |
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