Metallized Polyester Film Capacitor KYET PE474J2A0504 CL23B Series with High Temperature Wax Sealing
Price:
Negotiable
MOQ:
Negotiable
Delivery Time:
Negotiable
Product Description
Product Overview
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.
Product Attributes
- Brand: (Keya Electronics)
- Origin: Dongguan, China
- Material: Dielectric - Polyethylene terephthalate film (polyester film); Electrode - Aluminum coating; Leads - Tinned copper-clad steel wire; Encapsulation - Plastic case
- Color: Yellow shell (for the specific model PE474J2A0504)
- Certifications: IEC384-2, GB/T7332-96
Technical Specifications
| 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 | 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) |
| 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) |
| 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)=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 |
Get in Touch
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Company
Beijing Silk Road Enterprise Management Services Co., Ltd.
Location
16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person
Sellina