AC-DC
Alternating current (AC) and direct current (DC) are the two fundamental forms of electric power used in modern technology. They differ in the way electric charge flows, how they are generated, and where they are most effectively applied.In direct current, electric charge flows in a single, constant direction. The voltage is either steady or changes very slowly over time. Common sources of DC include batteries, fuel cells, and solar panels. Electronic devices such as smartphones, laptops, LED lights, and many control circuits operate internally on DC because it is easier to handle in delicate components and digital systems. DC allows precise control of voltage and current, which is crucial in low‑voltage electronics, data processing, and communication hardware.Alternating current changes direction periodically, usually following a sine wave. In most regions, the direction of AC reverses 50 or 60 times per second, a rate described as its frequency (50 Hz or 60 Hz). This type of current is used almost universally for power distribution in buildings, factories, and public infrastructure. The main advantage of AC is that its voltage can be raised or lowered efficiently using transformers. High voltage is ideal for long‑distance transmission because it reduces energy loss in power lines, while lower voltage is safer and more practical for household and industrial use.The relationship between AC and DC is central to modern power systems. Large‑scale electricity generation typically produces AC, which is transmitted over long distances and then stepped down in voltage for local distribution. However, many end‑use devices require DC, so they incorporate power supplies that convert AC from the outlet into the required DC levels. Conversely, when DC sources such as solar arrays or batteries are used to feed electrical grids or drive AC motors, inverters are needed to convert DC into AC with a controlled frequency and voltage.Each form of current has technical strengths. AC systems are simpler and more economical for large‑scale generation, transmission, and distribution, especially over vast distances and varying load conditions. DC is often superior for applications that demand stable, low‑voltage power, high‑efficiency storage, or precise electronic control. High‑voltage DC transmission is also gaining importance for connecting distant grids and integrating renewable energy, because it can minimize certain types of losses and improve stability over very long routes.In practice, AC and DC complement each other rather than compete. The overall energy infrastructure relies on AC for efficient bulk power movement and on DC for storage and the operation of nearly all modern electronics. Advances in power electronics continue to make conversion between AC and DC more efficient, allowing engineers to choose whichever form of current best fits each part of an electrical system.
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CFAE2.5-L系列 ACDC电源模块
所属分类: ——>2.5-50W浏览次数: 531编号:发布时间: 2025-11-19 09:08:59AC-DC电源模块是一种集成了交流转直流功能的完整电源解决方案 -
AC-DC工业电源 CFAE5系列
所属分类: ——>2.5-50W浏览次数: 504编号:发布时间: 2025-11-19 10:00:10◆ 全球通用电压:85~265VAC/100~375VDC -
CFMV24C8X125B 替换Vicor
所属分类: 替换Vicor-V24C/V300C/V375C浏览次数: 535编号:发布时间: 2025-12-02 15:41:29数据下载Product Characteristics◆ Input voltage range: 18V-40V◆ Output voltage range: 75%-110%Vout◆ Efficiency≥87%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆ Three years warranty period -
CFJDCM28WBC03X80TX 替换Vicor
所属分类: 替换Vicor-DCM3623浏览次数: 480编号:发布时间: 2025-12-03 10:30:05数据下载◆ Input voltage range: 9VDC-50VDC◆ Output voltage :3.3VDC (3.0 ~ 3.6V adjustable)◆ Efficiency: Up to 89.1%◆ Volumetric power density: up to 218W/in3◆ Weight Power density: up to 13.2W/g◆ Over voltage, over current, under voltage,short circuit and over temperature protection◆ 2250VDC insulation withstand voltage◆ Supports 8 parallel expansion units◆ In-line Chip3623 package :38.7... -
CFMV300B03X150B 替换Vicor
所属分类: 替换Vicor-V24B/V300B/V375B浏览次数: 473编号:发布时间: 2025-12-03 10:54:18数据下载◆ Input voltage range: 180V-375V◆ Output voltage range: 75% -110% Vout◆ Efficiency ≥ 84%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆Three years warranty period -
CFMV300B5X200B 替换Vicor
所属分类: 替换Vicor-V24B/V300B/V375B浏览次数: 491编号:发布时间: 2025-12-03 10:56:44数据下载◆ Input voltage range: 180V-375V◆ Output voltage range: 75% -110% Vout◆ Efficiency ≥ 88%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆Three years warranty period -
CFMV300B8X200B 替换Vicor
所属分类: 替换Vicor-V24B/V300B/V375B浏览次数: 475编号:发布时间: 2025-12-03 10:59:09数据下载◆ Input voltage range: 180V-375V◆ Output voltage range: 75% -110% Vout◆ Efficiency ≥ 89%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆Three years warranty period -
CFMV300B24X250B 替换Vicor
所属分类: 替换Vicor-V24B/V300B/V375B浏览次数: 492编号:发布时间: 2025-12-03 11:03:04数据下载◆ Input voltage range: 180V-375V◆ Output voltage range: 75% -110% Vout◆ Efficiency ≥ 89%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆Three years warranty period -
CFMV300B28X250B 替换Vicor
所属分类: 替换Vicor-V24B/V300B/V375B浏览次数: 486编号:发布时间: 2025-12-03 11:09:31数据下载◆ Input voltage range: 180V-375V◆ Output voltage range: 75% -110% Vout◆ Efficiency ≥ 90%◆ Over-voltage, over-current, short-circuit and over-temperature protection◆ Interior patch design◆ International standard pin mode◆Three years warranty period -
CFDM20-110输入 DCDC20瓦铁路电源模块
所属分类: ——>10-20W浏览次数: 423编号:发布时间: 2025-12-04 08:06:49数据下载选型表认证产品型号①输入电压(VDC)输出满载效率③ (%)Min./Typ.最大容性负载(µF)标称值 (范围值)最大值②输出电压(VDC)输出电流(mA)Max./Min.CFDM20-110S03 110(40-160) 1703.35000/081/8310000CFDM20-110S0554000/086/8810000CFDM20-110S12121667/086/881600CFDM20-110S15151333/086/881000CFDM20-110S2424833/087/89470CFDM20-110D05±5±2000/±10086/884800CFDM20-110D12±12±834/±4286/881000CFDM20-110D15±15±667/±3386/88625注:①产品型号后缀加“S”为带散热片封装,后缀加“Z”为导轨式封装,如应用于对散热有更高要求的场合,可选用我司带散热片模块;②输入电压不能超过此值,否则可能会造... -
CFAME30瓦系列 ACDC电源
所属分类: ——>2.5-50W浏览次数: 453编号:发布时间: 2025-12-04 13:58:09选型表认证型号输出功率标称输出电压及电流效率(230VAC,Typ.)最大容性负载(µF)CFAME30S3V326.4W3.3V/8A804000CFAME30S05 30W5V/6A834000CFAME30S099V/3.33A833000CFAME30S1212V/2.5A861000CFAME30S1515V/2A861000CFAME30S1818V/1.66A87100024V/1.25A89470CFAME30S24CFAME30S4848V/0.625mA90470CFAME30D05±5V/3A80± 1000CFAME30D09±9V/1.666A87± 1000CFAME30D12±12V/1.25A87±470CFAME30D15±15V/1A87±470CFAME30D24±24V/0.625A88± 100注:尾缀Z为加装转接底座,例:CFAME30S18Z -
CFAF1500S54 ACDC电源
所属分类: ——>500-1500W浏览次数: 502编号:发布时间: 2025-12-04 14:39:03性能参数测试条件MinTyp.MaxUnit2.1绝对最大值输入电压(Vin)非工作状态,连续输入0315VAC最大输出功率(Pomax)在允许工作条件下1503W2.2 输入特性标称输入电压范围(Vin)100220240 VAC 输入工作电压范围 ·85290VAC200400VDC输入电压欠压保护点7080VAC输入电压欠压恢复点7485VAC输入电压过压保护点50/60Hz295310VAC输入电压过压恢复点50/60Hz290305VAC 输入电压频率范围 ·4750/6063 Hz360400800 功率因数(PF)50/60Hz,110~240VAC,Vonom,100% of rated load,Ta=25°C 0.95 0.99输入最大电流(Iimax)各输入输出条件下测试的输入...
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