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quality Polypropylene film dielectric capacitors JURCC JWX2684KP22.5E3 for EMI suppression in power supplies factory
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quality Polypropylene film dielectric capacitors JURCC JWX2684KP22.5E3 for EMI suppression in power supplies factory
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Specifications
Capacitance:
680nF
Operating Temperature:
-40℃~+110℃
Ratings:
X2
Tolerance:
±10%
Mfr. Part #:
JWX2684KP22.5E3
Package:
Through Hole,P=22.5mm
Key Attributes
Model Number: JWX2684KP22.5E3
Product Description

JURCC X2 Class Capacitors for Suppressing Power Supply EMI

JURCC X2 class capacitors are designed for suppressing electromagnetic interference (EMI) in power supply circuits. They utilize a metallized polypropylene film dielectric with zinc-aluminum alloy 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 installations. They are strictly intended for X-class (line-to-neutral or line-to-line) applications with a rated voltage not exceeding 310VAC and a frequency of 50-60Hz. They are not suitable for capacitive power supply circuits; JURCC offers specialized capacitors for such applications.

Product Attributes

  • Brand: JURCC
  • Product Type: X2 Class Capacitors
  • Material: Polypropylene film dielectric, Zinc-aluminum alloy electrodes, PBT flame-retardant plastic shell, Epoxy resin encapsulation
  • 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/international safety standards.

Technical Specifications

JURCC Part NumberSpecification (Capacitance & Voltage)Pitch (P) 1mmLead Length (L) 1mmDimensions (W*T*H) 0.5mmLead mmCase Code
JUR00001JWX2104KP10C3101212*6*120.6C3
JUR00002JWX2184KP10C3101212*6*120.6C3
JUR00003JWX2154KP10C101212*6*120.6C3
JUR00004JWX2334KP15D4151517*8.4*14.50.7D4
JUR00005JWX2224KP15D4151517*8.4*14.50.7D4
JUR00006JWX2104KP15D2151517*6*120.7D2
JUR00007JWX2225KP22.5E722.525*12*22.50.8E7
JUR00008JWX2474KP15D5151517*10*15.80.7D5
JUR00009JWX2223KP10C2101312*5*110.6C2
JUR00010JWX2105KP22.5E322.525*8*17.50.78E3
JUR00013JWX2103KP10C2101312*5*110.6C2
JUR00015JWX2105KP27.5F127.531*10.4*190.8F1
JUR00016JWX2684KP15D5151517*10*15.80.7D5
JUR00017JWX2224KP10C3101212*6*120.6C3
JUR00018JWX2333KP10C2101312*5*110.6C2
JUR00020JWX2225KP27.5F227.530.5*13*220.8F2
JUR00021JWX2154KP15D2151517*6*120.7D2
JUR00022JWX2224KP15D2151517*6*120.7D2
JUR00023JWX2683KP10C2101312*5*110.6C2
JUR00026JWX2474KP22.5E222.524.5*7*16.50.78E2
JUR00033JWX2155KP22.5E422.525*10*190.78E4
JUR00042JWX2105KP15D3151517*9.5*16.50.78D3
JUR00048JWX2102KP10C2101312*5*110.6C2
JUR00056JWX2153KP10C2101312*5*110.6C2
JUR00059JWX2473KP10C2101212*5*110.6C2
JUR00060JWX2564KP15D5151517*10*15.80.7D5
JUR00061JWX2824KP15D8151517*11*190.7D8
JUR00068JWX2823KP10C2101312*5*110.6C2
JUR00069JWX2474KP15D4151517*8.4*14.50.7D4
JUR00113JWX2274KP10C5101512*7.6*13.50.7C5
JUR00178JWX2124KP10C3101212*6*120.6C3
JUR00214JWX2334KP15D2151517*6*120.7D2
JUR00249JWX2334KP10C5101512*7.6*13.50.7C5
JUR00263JWX2684KP22.5E422.525*10*190.78E4
JUR00311JWX21245KP22.5 E422.52025*10*190.78E4
JUR00312JWX2224KP22.5E122.525*6*14.50.78E1
JUR00330JWX2474KP10C6101512*8*150.7C6
JUR00334JWX2334KP22.5E222.524.5*7*16.50.78E2
JUR00338JWX2104KP10C2101312*5*110.6C2
JUR00346JWX2684KP22.5E322.525*8*17.50.78E3
JUR00394JWX2205KP22.5E722.525*12*22.50.8E7
JUR00438JWX2155KP15D8151517*11*190.78D8
JUR00573JWX2564KP15D4151517*8.4*14.50.7D4

Electrical Characteristics

Test ItemTest Conditions (Method)Judgment Standard (Performance Requirement)
Capacitance and Dissipation Factor1KHz, 1.0VDCCapacitance within range, Dissipation 0.1%
Inter-terminal Withstand Voltage1200VDC, 1 minuteNo breakdown or flashover
Case-to-terminal Withstand Voltage2120VAC, 1 minuteNo breakdown or flashover
Insulation Resistance100VDC, 1 minute1. For C > 0.3uF, RC > 2000S; 2. For C 0.3uF, R > 6000M
SolderabilitySolder temperature: 2355; Immersion time: 2.00.5SAt least 95% of the terminal area around the lead is uniformly tinned, with no visible damage to the body.
Resistance to Soldering HeatSolder bath temperature: 2605; Immersion time: 10S0.5S1. No visible damage; 2. Capacitance change rate 5%
Marking Resistance to SolventsImmersed in a mixture of trichlorotrifluoroethane and 305% isopropanol at 235, 705% RH for 50.5 min, wiped 10 times with absorbent cotton.Marking clear, no visible damage.
Damp Heat (Steady State)Unapplied voltage; Temperature: 402, Humidity: 93(+2,-3)%RH, Duration: 56 days1. 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 when tested at initial conditions voltage; 5. IR 50% of initial value.
EnduranceCapacitors placed in an oven at 1103, with a minimum spacing of 25mm between capacitors. Applied voltage: 1.25Ur for 1000H. Every hour, voltage 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 when tested at initial conditions voltage; 5. IR 50% of initial value.
Mounting or Impact1000 cycles or 4000 cycles, 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 when tested at initial conditions voltage; 5. IR 50% of initial value.
VibrationCapacitor leads firmly soldered, vibration frequency range 10-55Hz, amplitude 0.75mm. Vibration sweep from 10Hz to 55Hz and back to 10Hz, approximately 1 minute. Total time 6 hours, with 3 sweeps in mutually perpendicular directions every 2 hours.No visible external damage.
Rapid Change of TemperatureCapacitors shall undergo 5 temperature cycles.No visible external damage.
Lead StrengthTensile Test: 0.5MMd0.8MM, 10N (lead direction), 10S. Bending Test: 0.5MMd0.8MM, 5N, rotate capacitor body to 90 degrees, release to opposite 180 degrees, return to origin. 2 continuous bends in each direction.1. No visible damage to leads; 2. Capacitance change 5%

2504101957_JURCC-JWX2684KP22-5E3_C47278752.pdf

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