Teknik Belgeler
Özellikler
Marka
PanasonicKapasitans
330μF
Ürün Tipi
Alüminyum Elektrolitik Kondansatör
Gerilim
35 V dc
Montaj Tipi
Yüzey
Ambalaj
Taşıyıcı Bant
Yükseklik
10.2mm
Polarite
Kutuplu
Uzunluk
10.2mm
Paket/Kılıf
500
Minimum Çalışma Sıcaklığı
-55°C
Çap
8 mm
Pim Sayısı
2
Sonlandırma Tipi
Lehim
Maksimum Çalışma Sıcaklığı
105°C
Ömür Süresi
2000 h
Standartlar/Onaylar
RoHs
Tolerans (±)
20%
Dalgacık Akımı
850mA
Kaçak Akımı
115.5μA
Eşdeğer Seri Direnci (ESR)
80mΩ
Seri
FT
Otomotiv Standardı
AEC-Q200
Dağılım Faktörü
200%
Ürün Ayrıntıları
This aluminium electrolytic capacitor is designed to meet diverse electrical demands. Featuring a capacitance of 330 μF and a voltage rating of 35V DC, it supports various applications. With small dimensions of 8mm in diameter and a height of 10.2mm, it is perfect for space-constrained environments.
The polarised design ensures correct orientation during installation, enhancing circuit performance and preventing malfunctions that can occur from incorrect connections.
The surface mount configuration allows for a more Compact design on circuit boards, facilitating automated assembly processes and improving space efficiency in electronic devices.
The AEC-Q200 rating indicates that the capacitor meets stringent automotive requirements, ensuring reliability and durability in harsh conditions typical of automotive environments.
This component is engineered to function efficiently in a wide temperature range, from -55 °C to +105 °C, making it suitable for diverse applications across different industries.
The ripple current specification of 850 mA ensures that the capacitor can handle fluctuations in electrical current without degrading performance, which is Crucial for maintaining stability in power electronics.
Stok bilgileri geçici olarak kullanılamıyor.
1.409,10 TL
56,364 TL Each (Supplied on a Reel) (KDV Hariç)
1.690,92 TL
67,637 TL Each (Supplied on a Reel) KDV Dahil
Üretime Uygun Paketleme (Makara)
25

1.409,10 TL
56,364 TL Each (Supplied on a Reel) (KDV Hariç)
1.690,92 TL
67,637 TL Each (Supplied on a Reel) KDV Dahil
Stok bilgileri geçici olarak kullanılamıyor.
Üretime Uygun Paketleme (Makara)
25

| Miktar | Birim Fiyat | Per Makara |
|---|---|---|
| 25 - 45 | 56,364 TL | 281,82 TL |
| 50 - 95 | 52,536 TL | 262,68 TL |
| 100 - 245 | 48,972 TL | 244,86 TL |
| 250+ | 44,616 TL | 223,08 TL |
Teknik Belgeler
Özellikler
Marka
PanasonicKapasitans
330μF
Ürün Tipi
Alüminyum Elektrolitik Kondansatör
Gerilim
35 V dc
Montaj Tipi
Yüzey
Ambalaj
Taşıyıcı Bant
Yükseklik
10.2mm
Polarite
Kutuplu
Uzunluk
10.2mm
Paket/Kılıf
500
Minimum Çalışma Sıcaklığı
-55°C
Çap
8 mm
Pim Sayısı
2
Sonlandırma Tipi
Lehim
Maksimum Çalışma Sıcaklığı
105°C
Ömür Süresi
2000 h
Standartlar/Onaylar
RoHs
Tolerans (±)
20%
Dalgacık Akımı
850mA
Kaçak Akımı
115.5μA
Eşdeğer Seri Direnci (ESR)
80mΩ
Seri
FT
Otomotiv Standardı
AEC-Q200
Dağılım Faktörü
200%
Ürün Ayrıntıları
This aluminium electrolytic capacitor is designed to meet diverse electrical demands. Featuring a capacitance of 330 μF and a voltage rating of 35V DC, it supports various applications. With small dimensions of 8mm in diameter and a height of 10.2mm, it is perfect for space-constrained environments.
The polarised design ensures correct orientation during installation, enhancing circuit performance and preventing malfunctions that can occur from incorrect connections.
The surface mount configuration allows for a more Compact design on circuit boards, facilitating automated assembly processes and improving space efficiency in electronic devices.
The AEC-Q200 rating indicates that the capacitor meets stringent automotive requirements, ensuring reliability and durability in harsh conditions typical of automotive environments.
This component is engineered to function efficiently in a wide temperature range, from -55 °C to +105 °C, making it suitable for diverse applications across different industries.
The ripple current specification of 850 mA ensures that the capacitor can handle fluctuations in electrical current without degrading performance, which is Crucial for maintaining stability in power electronics.