| Tolerance | ±5% |
| Capacitance | 470nF |
| Dielectric Material | Metallized Polyester |
| Description | ±5% 470nF Metallized Polyester Through Hole,P=5mm Thin Film Capacitors RoHS |
| Mfr. Part # | PE474J2A0504 |
| Package | Through Hole,P=5mm |
| Model Number | PE474J2A0504 |
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Product Specification
| Tolerance | ±5% | Capacitance | 470nF |
| Dielectric Material | Metallized Polyester | Description | ±5% 470nF Metallized Polyester Through Hole,P=5mm Thin Film Capacitors RoHS |
| Mfr. Part # | PE474J2A0504 | Package | Through Hole,P=5mm |
| Model Number | PE474J2A0504 |
The CL23B series metallized polyester film capacitors are designed for DC or pulsating circuits. They feature a non-inductive metallized structure, high-temperature wax sealing for excellent insulation, moisture resistance, flame retardancy, low loss, and self-healing properties for high stability and reliability. These capacitors are widely used in communication equipment, tape recorders, televisions, VCD players, and various other electronic devices.
| Part No. | Item Name | Item Specification | Dimensions W*H*T (+/-0.5 MM) | D 0.05 | Marking (Top Laser) | P ( 0.5mm) | L (MM-Min) | Remarks |
| PE474J2A0504 | CL23B | 474J100V | 7.2*7.5*3.5 | 0.6 | 474J100 | 5 | 18(Min) | Yellow shell, loose component |
| Capacity (uF) | Capacity Tolerance | Voltage | Dimensions (W*H*T) | Marking Code |
| 0.0010 | M1 | 63V | 7.2*6.5*2.5 | M1 |
| 0.0010 | M1 | 100V | 7.2*6.5*2.5 | M1 |
| 0.0010 | M1 | 250VDC | 7.2*6.5*2.5 | M1 |
| 0.0010 | M1,M2 | 400VDC | 7.2*6.5*2.5 | M1,M2 |
| 0.0010 | M2,M3 | 630VDC | 7.2*6.5*2.5 | M2,M3 |
| 0.0015 | M1 | 63V | 7.2*7.5*3.5 | M1 |
| 0.0015 | M1 | 100V | 7.2*7.5*3.5 | M1 |
| 0.0015 | M1 | 250VDC | 7.2*7.5*3.5 | M1 |
| 0.0015 | M1,M2 | 400VDC | 7.2*7.5*3.5 | M1,M2 |
| 0.0015 | M2,M3 | 630VDC | 7.2*7.5*3.5 | M2,M3 |
| 0.0022 | M1 | 63V | 7.2*9.5*4.5 | M1 |
| 0.0022 | M1 | 100V | 7.2*9.5*4.5 | M1 |
| 0.0022 | M1 | 250VDC | 7.2*9.5*4.5 | M1 |
| 0.0022 | M1,M2 | 400VDC | 7.2*9.5*4.5 | M1,M2 |
| 0.0022 | M2,M3 | 630VDC | 7.2*9.5*4.5 | M2,M3 |
| 0.0033 | M1 | 63V | 7.2*10*5 | M1 |
| 0.0033 | M1 | 100V | 7.2*10*5 | M1 |
| 0.0033 | M1 | 250VDC | 7.2*10*5 | M1 |
| 0.0033 | M1,M2 | 400VDC | 7.2*10*5 | M1,M2 |
| 0.0033 | M2,M3 | 630VDC | 7.2*10*5 | M2,M3 |
| 0.0047 | M1 | 63V | 7.2*11*6 | M1 |
| 0.0047 | M1 | 100V | 7.2*11*6 | M1 |
| 0.0047 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.0047 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.0047 | M2,M3 | 630VDC | 7.2*11*6 | M2,M3 |
| 0.0068 | M1 | 63V | 7.2*11*6 | M1 |
| 0.0068 | M1 | 100V | 7.2*11*6 | M1 |
| 0.0068 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.0068 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.0068 | M2,M3 | 630VDC | 7.2*11*6 | M2,M3 |
| 0.010 | M1 | 63V | 7.2*11*6 | M1 |
| 0.010 | M1 | 100V | 7.2*11*6 | M1 |
| 0.010 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.010 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.010 | M3 | 630VDC | 7.2*11*6 | M3 |
| 0.015 | M1 | 63V | 7.2*11*6 | M1 |
| 0.015 | M1 | 100V | 7.2*11*6 | M1 |
| 0.015 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.015 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.015 | M3,M4 | 630VDC | 7.2*11*6 | M3,M4 |
| 0.022 | M1 | 63V | 7.2*11*6 | M1 |
| 0.022 | M1 | 100V | 7.2*11*6 | M1 |
| 0.022 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.022 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.022 | M4,M5 | 630VDC | 7.2*11*6 | M4,M5 |
| 0.033 | M1 | 63V | 7.2*11*6 | M1 |
| 0.033 | M1 | 100V | 7.2*11*6 | M1 |
| 0.033 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.033 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.033 | M4,M5 | 630VDC | 7.2*11*6 | M4,M5 |
| 0.047 | M1 | 63V | 7.2*11*6 | M1 |
| 0.047 | M1 | 100V | 7.2*11*6 | M1 |
| 0.047 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.047 | M1,M2 | 400VDC | 7.2*11*6 | M1,M2 |
| 0.047 | M2,M3 | 630VDC | 7.2*11*6 | M2,M3 |
| 0.068 | M1 | 63V | 7.2*11*6 | M1 |
| 0.068 | M1 | 100V | 7.2*11*6 | M1 |
| 0.068 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.068 | M2,M3 | 400VDC | 7.2*11*6 | M2,M3 |
| 0.068 | M3,M4 | 630VDC | 7.2*11*6 | M3,M4 |
| 0.10 | M1 | 63V | 7.2*11*6 | M1 |
| 0.10 | M1 | 100V | 7.2*11*6 | M1 |
| 0.10 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.10 | M3 | 400VDC | 7.2*11*6 | M3 |
| 0.10 | M4 | 630VDC | 7.2*11*6 | M4 |
| 0.15 | M1 | 63V | 7.2*11*6 | M1 |
| 0.15 | M1 | 100V | 7.2*11*6 | M1 |
| 0.15 | M1 | 250VDC | 7.2*11*6 | M1 |
| 0.15 | M3,M4 | 400VDC | 7.2*11*6 | M3,M4 |
| 0.15 | M4,M5 | 630VDC | 7.2*11*6 | M4,M5 |
| 0.22 | M1 | 63V | 7.2*11*6 | M1 |
| 0.22 | M1 | 100V | 7.2*11*6 | M1 |
| 0.22 | M1,M2 | 250VDC | 7.2*11*6 | M1,M2 |
| 0.22 | M5 | 400VDC | 7.2*11*6 | M5 |
| 0.22 | M5 | 630VDC | 7.2*11*6 | M5 |
| 0.33 | M2,M3 | 63V | 7.2*11*6 | M2,M3 |
| 0.33 | M2,M3 | 100V | 7.2*11*6 | M2,M3 |
| 0.33 | M2,M3 | 250VDC | 7.2*11*6 | M2,M3 |
| 0.33 | M5 | 400VDC | 7.2*11*6 | M5 |
| 0.33 | M5 | 630VDC | 7.2*11*6 | M5 |
| 0.47 | M2,M3,M4 | 63V | 7.2*11*6 | M2,M3,M4 |
| 0.47 | M2,M3,M4 | 100V | 7.2*11*6 | M2,M3,M4 |
| 0.47 | M2,M3,M4 | 250VDC | 7.2*11*6 | M2,M3,M4 |
| 0.47 | M2,M3,M4 | 400VDC | 7.2*11*6 | M2,M3,M4 |
| 0.47 | M2,M3,M4 | 630VDC | 7.2*11*6 | M2,M3,M4 |
| 0.68 | M3,M4,M5 | 63V | 7.2*11*6 | M3,M4,M5 |
| 0.68 | M3,M4,M5 | 100V | 7.2*11*6 | M3,M4,M5 |
| 0.68 | M3,M4,M5 | 250VDC | 7.2*11*6 | M3,M4,M5 |
| 0.68 | M3,M4,M5 | 400VDC | 7.2*11*6 | M3,M4,M5 |
| 0.68 | M3,M4,M5 | 630VDC | 7.2*11*6 | M3,M4,M5 |
| 1.0 | M3,M4,M5 | 63V | 7.2*11*6 | M3,M4,M5 |
| 1.0 | M3,M4,M5 | 100V | 7.2*11*6 | M3,M4,M5 |
| 1.0 | M3,M4,M5 | 250VDC | 7.2*11*6 | M3,M4,M5 |
| 1.0 | M3,M4,M5 | 400VDC | 7.2*11*6 | M3,M4,M5 |
| 1.0 | M3,M4,M5 | 630VDC | 7.2*11*6 | M3,M4,M5 |
| 1.5 | M5 | 63V | 7.2*11*6 | M5 |
| 1.5 | M5 | 100V | 7.2*11*6 | M5 |
| 1.5 | M5 | 250VDC | 7.2*11*6 | M5 |
| 1.5 | M5 | 400VDC | 7.2*11*6 | M5 |
| 1.5 | M5 | 630VDC | 7.2*11*6 | M5 |
| 2.2 | M5 | 63V | 7.2*11*6 | M5 |
| 2.2 | M5 | 100V | 7.2*11*6 | M5 |
| 2.2 | M5 | 250VDC | 7.2*11*6 | M5 |
| 2.2 | M5 | 400VDC | 7.2*11*6 | M5 |
| 2.2 | M5 | 630VDC | 7.2*11*6 | M5 |
| Parameter | Test Condition | Requirement |
| Capacitance Tolerance | Frequency: 1KHZ 0.1KHZ; Measuring Voltage: 1Vrms | J (5%), K (10%), M (20%) |
| Dissipation Factor (DF) | Frequency: 1KHZ 0.1KHZ; Measuring Voltage: 1Vrms | 0.8% |
| Insulation Resistance | Test Voltage: UR100VDC (100VDC test), UR <100VDC (50VDC test); Temperature: 2015; Duration: 605sec | C0.33uF: 9000M; C0.33uF: IR*C3000M*uF |
| Withstand Voltage | Between leads: Test Voltage: 1.6UR (P=5mm), 1.8UR (P=7.5mm), Duration: 5sec; Between leads and case: Test Voltage: 2UR, Duration: 5sec | No breakdown or flashover |
| Rapid Temperature Change | Temperature: A=-40, B=+110; Exposure time at high/low temp: 30min; Transition time: 23min; Cycle: 5 times | Appearance: No visible damage; c/c5%; tg0.8% |
| Lead Tensile Strength | Pull force based on lead diameter | No mechanical damage (e.g., lead breakage, looseness) |
| Lead Bending Strength | Load based on lead diameter; 90 bend in both directions, twice each | No mechanical damage (e.g., lead breakage, looseness) |
| Solderability | Soldering Temperature: 2455; Soldering Time: 2.00.5sec; Solder: Lead-free | 95% of area tinned |
| Endurance Test (Temperature Cycling) | 5 cycles of -40 to +110 | Appearance: No obvious change; Capacitance change rate (C/C) +/- 5%; Dissipation (DF)< 0.20% (1KHz) |
| Endurance Test (High Temperature Load) | +110 2 , 125% rated voltage for 1000 +24/-0 hours | Appearance: No obvious change, marking legible; Withstand Voltage: Meets No. 4; Capacitance change rate (C/C) +/- 8%; Dissipation (DF)< 0.20% (1KHz); Insulation Resistance (I.R.) 50% of limit in No.5.2 |
| Endurance Test (Humidity Load) | +40 2 , 90% to 95% R.H., rated voltage for 500 +24/-0 hours | Appearance: No obvious change, marking legible; Withstand Voltage: Meets No. 4; Capacitance change rate (C/C) +/- 10%; Dissipation (DF)<0.20% (1KHz); Insulation Resistance (I.R.) >=50% of limit in No.5.2 |
| Solder Heat Resistance | Soldering Temperature: 260 5; Immersion Time: 5 0.5 sec (P=5mm), 10 0.5 sec (P=7.5mm) | End-to-end withstand voltage: Meets No. 4; Capacitance change rate (C/C) +/- 3%; Connections: Stable |
| Dry Heat Resistance | +110 2 , 16 +1/-0 hours | Appearance: No obvious change, marking legible; Withstand Voltage: Meets No. 4; Capacitance change rate (C/C) +/- 5% |
| Cold Resistance | -40 2 , 2 1 hours | Appearance: No obvious change, marking legible; Withstand Voltage: Meets No. 4; Capacitance change rate (C/C) +/- 5% |
| Vibration Resistance | 10--500 Hz, 0.75 mm amplitude, X, Y, Z directions for 2 hours each | Connection strength: No open circuit or short circuit; Connection: Stable; Appearance: No mechanical damage |
| Extreme Temperature Cycling | +110 5 to -40 5, 30 minutes at each temp | Appearance: No obvious change; Withstand Voltage: Meets No. 5.1; Appearance: No mechanical damage |
Company Details
Business Type:
Manufacturer,Distributor/Wholesaler,Agent,Importer
Year Established:
2009
Employee Number:
>>300
Ecer Certification:
Verified Supplier
Company Profile Beijing Silk Road Enterprise Management Services Co.,Ltd. is a professional company focus on integrated circuit ic business. Beijing Silk Road will also responsible with exporting and logistic business. there is professional factory Beijing Silk Road which focus on desigining an... Company Profile Beijing Silk Road Enterprise Management Services Co.,Ltd. is a professional company focus on integrated circuit ic business. Beijing Silk Road will also responsible with exporting and logistic business. there is professional factory Beijing Silk Road which focus on desigining an...
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