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規格
| 屬性 | 價值 |
| Manufacturer | PANASONIC |
| Package / Case | SMD,D8xL10.2mm |
| Voltage Rating | 35V |
| Capacitance | 100uF |
| Diameter | 8mm |
| Height - Seated (Max) | 10.5mm |
| Lifetime | 5000hrs@105℃ |
| Ripple Current | 450mA@120Hz |
| Operating Temperature | -55℃~+105℃ |
| Tolerance | ±20% |
概述
Equivalent
The EEEFK1V101P is a 10µF, 100V aluminum electrolytic capacitor from Panasonic. Equivalent alternatives include:
- United Chemi-Con (UCC): EKXJ101ELL100ML25S
- Nichicon: UEP1A100MDD
- Rubycon: 100YXJ100MEFC10X20
Ensure matching parameters: 10µF, 100V, radial lead, ±20% tolerance, and similar dimensions (e.g., 10mm diameter, 20mm height). Verify datasheets for exact compatibility.
- United Chemi-Con (UCC): EKXJ101ELL100ML25S
- Nichicon: UEP1A100MDD
- Rubycon: 100YXJ100MEFC10X20
Ensure matching parameters: 10µF, 100V, radial lead, ±20% tolerance, and similar dimensions (e.g., 10mm diameter, 20mm height). Verify datasheets for exact compatibility.
Features
The EEEFK1V101P is a 10 µF, 100V aluminum electrolytic capacitor from Panasonic (part of the EEEFK series). Key features:
- Capacitance: 10 µF ±20%
- Voltage Rating: 100V DC
- Low ESR: Designed for high-ripple current applications
- Long Life: 2000 hours at 105°C (extended lifespan under high temps)
- Compact Size: Radial lead type, space-saving design
- Operating Temp: -40°C to +105°C
- Applications: Power supplies, automotive electronics, industrial devices
Ideal for circuits requiring stable performance in harsh conditions.
- Capacitance: 10 µF ±20%
- Voltage Rating: 100V DC
- Low ESR: Designed for high-ripple current applications
- Long Life: 2000 hours at 105°C (extended lifespan under high temps)
- Compact Size: Radial lead type, space-saving design
- Operating Temp: -40°C to +105°C
- Applications: Power supplies, automotive electronics, industrial devices
Ideal for circuits requiring stable performance in harsh conditions.
Pinout
The EEE-FK1V101P is a 2-pin aluminum electrolytic capacitor with the following key specifications:
- Pin Count: 2 (radial lead type)
- Function: Smoothing, filtering, or energy storage in DC circuits.
- Capacitance: 100 µF
- Voltage Rating: 35V
- Polarity: Polarized (must observe correct + and - orientation).
Commonly used in power supplies, audio circuits, and consumer electronics.
- Pin Count: 2 (radial lead type)
- Function: Smoothing, filtering, or energy storage in DC circuits.
- Capacitance: 100 µF
- Voltage Rating: 35V
- Polarity: Polarized (must observe correct + and - orientation).
Commonly used in power supplies, audio circuits, and consumer electronics.
Manufacturer
The EEE-FK1V101P is an aluminum electrolytic capacitor manufactured by Panasonic, a leading Japanese multinational electronics corporation.
Panasonic is renowned for producing high-quality electronic components, including capacitors, batteries, and semiconductors, serving industries like consumer electronics, automotive, and industrial applications. The company is known for its innovation, reliability, and global presence in the electronics market.
This specific capacitor is part of Panasonic's FK series, designed for long life, low impedance, and high ripple current performance, commonly used in power supplies and other demanding circuits.
Panasonic is renowned for producing high-quality electronic components, including capacitors, batteries, and semiconductors, serving industries like consumer electronics, automotive, and industrial applications. The company is known for its innovation, reliability, and global presence in the electronics market.
This specific capacitor is part of Panasonic's FK series, designed for long life, low impedance, and high ripple current performance, commonly used in power supplies and other demanding circuits.
Package
The EEEFK1V101P is a surface-mount aluminum electrolytic capacitor from Panasonic. It features a V-chip package (5.3mm x 5.3mm), 100µF capacitance, 35V rating, and operates from -55°C to +105°C. Designed for high reliability, it’s used in automotive, industrial, and consumer electronics for power supply filtering and decoupling.