SAMSUNG DOC-16C卡件
全面的軟件支持和直插式技術(shù)確保高效工藝流程
QUINT complete系列產(chǎn)品作為可靠供電的核心設備,擁有一系列創(chuàng )新技術(shù)和特色功能。
SFB Technology:選擇性觸發(fā)技術(shù)可以在在遇到某一路負載發(fā)生短路情況時(shí),瞬時(shí)在短路支路輸出最高6倍額定電流,輕松實(shí)現短路支路斷路器脫扣,同時(shí)保障其他支路負載的正常運行。
IQ Technology:QUINT系列UPS兼容不同類(lèi)型的儲能模塊滿(mǎn)足現場(chǎng)不同的供電緩沖時(shí)間需求,擁有智能化電池控制、管理及智能充電功能,能夠自動(dòng)檢測連接的電池類(lèi)型,傳輸儲能模塊的相關(guān)信息如功率,溫度,容量,壽命等,并且通過(guò)最優(yōu)化的充電匹配特性最大化電池的使用壽命。QUINT 系列UPS作為全球首款智能型UPS支持4種工業(yè)網(wǎng)絡(luò )通訊接口、5種通訊協(xié)議,輕松應對供電現場(chǎng)通訊要求。
SAMSUNG DOC-16C卡件為了進(jìn)一步提升供電系統的可靠性,菲尼克斯電氣提出“冗余到底”的解決方案,QUINT 4電源搭配S-ORING實(shí)現1:1冗余供電構建,同時(shí)也推出內置S-ORING功能的QUINT4+ AC/DC電源,同樣符合SIL3安全等級認證以及防爆認證。
電子式設備斷路器
保障負載的正常運行,從電源至負載側的保護也不容忽視。對于負載側的保護,菲尼克斯電氣電子式設備斷路器產(chǎn)品,能夠提供單通道以及多通道產(chǎn)品方案。
PTCB系列產(chǎn)品能夠在狹小空間內實(shí)現最完善的防護,可自由與端子產(chǎn)品橋接使用,電流可調,具備電壓監控和主動(dòng)電流限制功能,還具有多種遙信報警功能可以選擇。
使用CBM系列產(chǎn)品能夠在41mm的總寬內保護高達8個(gè)通道的負載,具備主動(dòng)電流限制技術(shù),每個(gè)通道均在0.5 A至10 A范圍內自由調節。CBMC系列多通道電子式設備斷路器,采用緊湊型設計和個(gè)性化調整選項,無(wú)需重新設計即可方便地更換設備;單個(gè)LED按鈕操作,無(wú)需其他工具便可調整所有設置;可訂購預組態(tài)斷路器,完美匹配系統的保護;內置電子鎖裝置,有效防止已組態(tài)的電流值在未經(jīng)授權的情況下被篡改。
電源分配器
合適的電位分配方案可以進(jìn)一步提高系統的可用性和可靠性。菲尼克斯電氣PTFIX配電塊可以完美解決配電過(guò)程中接線(xiàn)和分配問(wèn)題。電涌保護器
At that time, the situation of ASIC to FPGA was greatly changed. The starting point of ASIC design peaked at 11000 (1997), fell to 2000 (2004), and then fell to 1800 (2007). FPGA appeared in 1997, but increased to 86000 blocks (2006), and it is predicted to increase to 112000 blocks by 2010. Why change? In my 2004 article, I said, "FPGA technology has been significantly improved in the past four years, increasing their popularity and the way FPGA is used." Today, FPGA technology has been continuously improved. Each chip has more gates, lower cost and easier programming methods. In the FPGA market, there is no doubt that the two market leaders are Altera and Xilinx. Other companies in the automation industry have used their FPGA hardware andprogramming software。 Robert Oglesby, the manager of host engineering and the technology provider of automation guidance, said, "I wrote about a company in 2004: we are developing a new step
electric machinery
Controller. This controller has the functions of CPU, floating-point processor, special computing hardware and special pulse output hardware on a FPGA. A larger and faster CPU can accomplish the same thing, but it requires additional costs in price, power supply and size. " We recently interviewed Oglesby again and found that the use of FPGA of host