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C420C472C2G5HA7200中文資料基美數(shù)據(jù)手冊PDF規(guī)格書
廠商型號 |
C420C472C2G5HA7200 |
功能描述 | Axial Leaded Multilayer Ceramic Capacitors |
文件大小 |
2.5536 Mbytes |
頁面數(shù)量 |
15 頁 |
生產(chǎn)廠商 | KEMET Corporation |
企業(yè)簡稱 |
KEMET【基美】 |
中文名稱 | 基美公司官網(wǎng) |
原廠標識 | |
數(shù)據(jù)手冊 | |
更新時間 | 2024-11-1 16:54:00 |
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C420C472C2G5HA7200規(guī)格書詳情
Overview
KEMET’s Aximax conformally coated axial leaded ceramic capacitors in C0G dielectric feature a 125°C maximum operating temperature. The Electronics Industries Alliance (EIA) characterizes C0G dielectric as a Class I “stable” material. Components of this classifcation are temperature compensating and are suited for resonant circuit applications or those where Q and stability of capacitance characteristics are required. C0G exhibits no change in capacitance with respect to time and voltage and boasts a negligible change in capacitance with reference to ambient temperature. Capacitance change is limited to ±30ppm/oC from ?55°C to +125°C.
These devices meet the ?ame test requirements outlined in UL Standard 94V–0.
Benefts
? Axial leaded form factor
? Conformally coated
? Operating temperature range of ?55°C to +125°C
? Lead (Pb)-free, RoHS and REACH compliant
? DC voltage ratings of 25 V, 50 V, 100 V, 200 V and 250 V
? Capacitance offerings ranging from 1.0 pF up to 0.1 μF
? Available capacitance tolerances of ±0.1 pF, ±0.25 pF, ±0.5 pF, ±1, ±2, ±5, and 10
? Extremely low ESR and ESL
? High thermal stability
? High ripple current capability
? No capacitance change with respect to applied rated DC voltage
? Negligible capacitance change with respect to temperature from ?55°C to +125°C
? No capacitance decay with time
? 100 pure matte tin-plated lead fnish allowing for excellent solderability
? SnPb-plated lead fnish option available upon request (Sn60/Pb40)
? Encapsulation meets ?amability standard UL 94V–0
? Non-polar device, minimizing installation concerns
Applications
Typical applications include critical timing, tuning, circuits requiring low loss,
circuits with pulse, high current, decoupling, bypass, fltering, transient voltage
suppression, blocking and energy storage.