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quality Compact X2 safety capacitor JURCC JWX2103KP10C2 with zinc aluminum alloy electrodes and flame retardant PBT plastic shell factory
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quality Compact X2 safety capacitor JURCC JWX2103KP10C2 with zinc aluminum alloy electrodes and flame retardant PBT plastic shell factory
>
Specifications
Capacitance:
10nF
Operating Temperature:
-40℃~+110℃
Ratings:
X2
Tolerance:
±10%
Mfr. Part #:
JWX2103KP10C2
Package:
Through Hole,P=10mm
Key Attributes
Model Number: JWX2103KP10C2
Product Description

JURCC X2 Class Capacitors for EMI Suppression

JURCC X2 class capacitors are designed for suppressing electromagnetic interference (EMI) in power supply circuits. They utilize a metallized polypropylene film as the dielectric and a zinc-aluminum alloy layer as electrodes, manufactured through a winding process. Encased in a flame-retardant PBT plastic shell and sealed with epoxy resin, these capacitors offer a compact design suitable for high-density applications. They are specifically intended for X-class (line-to-line) applications with a rated voltage of up to 310VAC and a frequency of 50-60Hz. They are not suitable for RCD step-down circuits, for which JURCC offers specialized capacitors.

Product Attributes

  • Brand: JURCC
  • Product Name: X2 Safety Capacitor
  • Material: Polypropylene film dielectric, zinc-aluminum metal layer electrodes, PBT flame-retardant plastic shell, epoxy resin sealing.
  • Certifications: UL, CSA, ENEC, VDE, CE, CQC, CB, KTC
  • Standards: GB/T 2693-2001, GB/T 6346.14-2015, IEC60384-14:2013, GB/T2828.1-2003, and relevant national and international safety standards.

Technical Specifications

JURCC Part Number Specification (Capacitance & Voltage) Pitch (P1mm) Lead Length (L1mm) Dimensions (W*T*H0.5mm) Lead (mm) Remarks
JUR00001 JWX2104KP10C3 10 12 C3(12*6*12) 0.6
JUR00002 JWX2184KP10C3 10 12 C3(12*6*12) 0.6
JUR00003 JWX2154KP10C 10 12 C3(12*6*12) 0.6
JUR00004 JWX2334KP15D4 15 15 D4(17*8.4*14.5) 0.7
JUR00005 JWX2224KP15D4 15 15 D4(17*8.4*14.5) 0.7
JUR00006 JWX2104KP15D2 15 15 D2(17*6*12) 0.7
JUR00007 JWX2225KP22.5E 7 22.5 E7(25*12*22.5) 0.8
JUR00008 JWX2474KP15D5 15 15 D5(17*10*15.8) 0.7
JUR00009 JWX2223KP10C2 10 13 C2(12*5*11) 0.6
JUR00010 JWX2105KP22.5E 3 22.5 E3(25*8*17.5) 0.78
JUR00013 JWX2103KP10C2 10 13 C2(12*5*11) 0.6
JUR00015 JWX2105KP27.5F 1 27.5 F1(31*10.4*19) 0.8
JUR00016 JWX2684KP15D5 15 15 D5(17*10*15.8) 0.7
JUR00017 JWX2224KP10C3 10 12 C3(12*6*12) 0.6
JUR00018 JWX2333KP10C2 10 13 C2(12*5*11) 0.6
JUR00020 JWX2225KP27.5F 2 27.5 F2(30.5*13*22) 0.8
JUR00021 JWX2154KP15D2 15 15 D2(17*6*12) 0.7
JUR00022 JWX2224KP15D2 15 15 D2(17*6*12) 0.7
JUR00023 JWX2683KP10C2 10 13 C2(12*5*11) 0.6
JUR00026 JWX2474KP22.5E 2 22.5 E2(24.5*7*16.5) 0.78
JUR00033 JWX2155KP22.5E 4 22.5 E4(25*10*19) 0.78
JUR00042 JWX2105KP15D3 15 15 D3(17*9.5*16.5) 0.78
JUR00048 JWX2102KP10C2 10 13 C2(12*5*11) 0.6
JUR00056 JWX2153KP10C2 10 13 C2(12*5*11) 0.6
JUR00059 JWX2473KP10C2 10 12 C2(12*5*11) 0.6
JUR00060 JWX2564KP15D5 15 15 D5(17*10*15.8) 0.7
JUR00061 JWX2824KP15D8 15 15 D8(17*11*19) 0.7
JUR00068 JWX2823KP10C2 10 13 C2(12*5*11) 0.6
JUR00069 JWX2474KP15D4 15 15 D4(17*8.4*14.5) 0.7
JUR00113 JWX2274KP10C5 10 15 C5(12*7.6*13.5) 0.7
JUR00178 JWX2124KP10C3 10 12 C3(12*6*12) 0.6
JUR00214 JWX2334KP15D2 15 15 D2(17*6*12) 0.7
JUR00249 JWX2334KP10C5 10 15 C5(12*7.6*13.5) 0.7
JUR00263 JWX2684KP22.5E 4 22.5 E4(25*10*19) 0.78
JUR00311 JWX21245KP22.5 E4 22.5 20 E4(25*10*19) 0.78
JUR00312 JWX2224KP22.5E 1 22.5 E1(25*6*14.5) 0.78
JUR00330 JWX2474KP10C6 10 15 C6(12*8*15) 0.7
JUR00334 JWX2334KP22.5E 2 22.5 E2(24.5*7*16.5) 0.78
JUR00338 JWX2104KP10C2 10 13 C2(12*5*11) 0.6
JUR00346 JWX2684KP22.5E 3 22.5 E3(25*8*17.5) 0.78
JUR00394 JWX2205KP22.5E 7 22.5 E7(25*12*22.5) 0.8
JUR00438 JWX2155KP15D8 15 15 D8(17*11*19) 0.78
JUR00573 JWX2564KP15D4 15 15 D4(17*8.4*14.5) 0.7

Electrical Performance Tests

Test Item Test Conditions (Method) Judgment Standard (Performance Requirement)
Capacitance and Dissipation Factor 1KHz, 1.0VDC Capacitance within range, Dissipation 0.1%
Dielectric Withstanding Voltage (Inter-terminal) 1200VDC, 1 minute; Note: Set leakage current limit of withstand voltage tester to maximum. Read leakage current manually after voltage reaches 1200VDC (approx. 0). No breakdown or flashover
Dielectric Withstanding Voltage (Case-to-terminal) 2120VAC, 1 minute No breakdown or flashover
Insulation Resistance 100VDC, 1 minute 1. For C > 0.3uF, RC > 2000S; 2. For C 0.3uF, R > 6000M
Solderability Solder temperature: 2355; Immersion time: 2.00.5S. Leads immersed up to 2.00.5MM from the body, shielded by an insulating board of 1.50.5MM thickness. At least 95% of the lead terminal area is evenly covered with solder, and the body has no visible damage.
Resistance to Soldering Heat Solder bath temperature: 2605; Immersion time: 10S0.5S. 1. No visible damage; 2. Capacitance change rate 5%.
Marking Resistance to Solvents At 235, 705%RH, immerse capacitor in a mixture of trichlorotrifluoroethane and 305% isopropanol for 50.5 MIN, wipe 10 times with absorbent cotton. Marking clear, no visible damage.
Damp Heat, Steady State No voltage applied; Temperature: 402, Humidity: 93(+2,-3)%RH, Duration: 56 days. 1. No visible external damage; 2. Capacitance change 5%; 3. Dissipation factor change: 0.008 (Cr1.0uF), 0.005 (Cr1.0uF); 4. No breakdown or flashover under voltage test at initial conditions; 5. IR 50% of initial value.
Endurance Capacitors placed in a 1103 oven, with a minimum spacing of 25MM between capacitors. Applied voltage: 1.25Ur for 1000H. Every hour, voltage is increased to 1000VAC for 0.1S, applied through a 475% resistor to each capacitor. 1. No visible external damage; 2. Capacitance change 10%; 3. Dissipation factor change: 0.008 (Cr1.0uF), 0.005 (Cr1.0uF); 4. No breakdown or flashover under voltage test at initial conditions; 5. IR 50% of initial value.
Mounting or Impact 1000 or 4000 times, acceleration 390M/s, pulse duration 6MS. 1. No visible external damage; 2. Capacitance change 5%; 3. Dissipation factor change: 0.008 (Cr1.0uF), 0.005 (Cr1.0uF); 4. No breakdown or flashover under voltage test at initial conditions; 5. IR 50% of initial value.
Vibration Capacitor leads are firmly soldered. Vibration frequency range 10-55Hz, amplitude 0.75MM. Vibration from 10Hz to 55Hz and back to 10Hz, approximately 1 minute. Total time 6 hours, 3 times in mutually perpendicular directions every 2 hours. No visible external damage.
Rapid Change of Temperature Capacitors shall undergo 5 temperature cycles. No visible external damage.
Lead Strength Tensile test: 0.5MM < d 0.8MM, 10N (lead direction), 10S. Bending test: 0.5MM < d 0.8MM, 5N, rotate capacitor body to 90 degrees, release to 180 degrees opposite position, return to origin. 2 continuous bends in each direction. 1. No visible damage to leads; 2. Capacitance change 5%.

Sample Marking (Example)

  1. JURCC: Company registered trademark.
  2. X2: Capacitor category.
  3. 104K: Capacitance and tolerance (104=100000PF=100NF=0.1UF, K10%).
  4. MPX/MKP: Capacitor model.
  5. 40/110/56: Climatic category (lower category temperature -40; upper category temperature 110; damp heat days 56 days).
  6. UL/CSA: Underwriter Laboratories Inc. and Canadian Standards Association marks.
  7. ENEC: European Norms Electrical Certification mark.
  8. VDE: German Association of Electrical Engineers mark.
  9. CE: Conformit Europenne (European Conformity) mark.
  10. CQC: China Quality Certification Centre voluntary certification mark.
  11. CB: International Electrotechnical Commission (IECEE) mutual recognition system mark.
  12. KTC: Korea Testing Certification mark.
  13. 275VAC / 305VAC: Rated working voltage.

Certification Certificate Numbers

Serial No. Mark Certificate Number
1 UL E343072
2 CSA 40034920
3 CQC CQC12001069051
4 VDE HU03030-16006E (104K), HU03030-16003D (334K), HU03030-16004D (105K), HU03030-16002D (305K), HU03030-16001D (505K), HU03030-16005D (106K)

Storage Conditions and Time

  • Storage Temperature and Humidity: -1040, 2565RH
  • Storage Time: Three years

Precautions

Film capacitors are not suitable for reflow soldering, as thermal shrinkage may cause performance issues.


2504101957_JURCC-JWX2103KP10C2_C47278728.pdf

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