FBI10E | 現(xiàn)場總線隔離器 | 用于在工業(yè)環(huán)境中隔離和保護(hù)現(xiàn)場總線網(wǎng)絡(luò)
FOXBORO FBI10E技術(shù)說明:
電源電壓:10.5~45VDC。
負(fù)載電壓:24VDC.
負(fù)載電流:最大100mA。
負(fù)載隔離電壓:2500VDC:
浪涌保護(hù):最大600W。
信號隔離電壓:最大1500VDC。
信號隔離頻率:最大10MHZ。
信號隔離電阻:最大10kΩ.
FOXBORO FBI10E特點:
FOXBORO FBI10E 現(xiàn)場總線隔離器,用于在工業(yè)環(huán)境中隔離和保護(hù)現(xiàn)場總線網(wǎng)絡(luò)
防止電氣噪音和干擾,與廣泛的現(xiàn)場總線協(xié)議兼容。
結(jié)構(gòu)緊湊,易于安裝,應(yīng)用領(lǐng)域廣泛,
隔離器是一種采用線性光耦隔離原理的設(shè)備,用于將輸入信號進(jìn)行轉(zhuǎn)換輸出。其特點在于輸入、輸出和工作電源三者相互隔離,特別適合與需要電隔離的設(shè)備儀表配用。隔離器又名信號隔離器,是工業(yè)控制系統(tǒng)中重要的組成部分。
在工業(yè)生產(chǎn)過程中,F(xiàn)OXBORO FBI10E 實現(xiàn)監(jiān)視和控制需要使用各種自動化儀表、控制系統(tǒng)和執(zhí)行機(jī)構(gòu),它們之間的信號傳輸既包含微弱到毫伏級、微安級的小信號,也有幾十伏,甚至數(shù)千伏、數(shù)百安培的大信號,既有低頻直流信號,也有高頻脈沖信號等。由于這些信號的復(fù)雜性,儀表和設(shè)備之間的信號傳輸可能會互相干擾,導(dǎo)致系統(tǒng)不穩(wěn)定甚至誤操作。其中,一個重要的因素是由于儀表和設(shè)備之間的信號參考點之間存在電勢差,形成“接地環(huán)路”,造成信號傳輸過程中失真。隔離器的作用就在于斷開過程環(huán)路,同時又不影響過程信號的正常傳輸,從而解決接地環(huán)路問題。
FOXBORO FBI10E Technical Description:
Power supply voltage :10.5~45VDC.
Load voltage :24VDC.
Load current: Maximum 100mA.
Load isolation voltage :2500VDC:
Surge protection: up to 600W.
Signal isolation voltage: 1500VDC Max.
Signal isolation frequency: maximum 10MHZ.
Signal isolation resistance: maximum 10kΩ.
FOXBORO FBI10E Features:
The FOXBORO FBI10E Fieldbus isolator is used to isolate and protect fieldbus networks in industrial environments
Prevents electrical noise and interference and is compatible with a wide range of fieldbus protocols.
Compact structure, easy to install, wide range of applications,
Isolator is a device that uses the principle of linear optocoupler isolation to convert the input signal to the output. Its characteristic is that the input, output and working power supply are isolated from each other, especially suitable for use with equipment and meters that need electrical isolation. The isolator, also known as the signal isolator, is an important part of the industrial control system.
In the industrial production process, FOXBORO FBI10E to achieve monitoring and control requires the use of a variety of automated instruments, control systems and actuators, the signal transmission between them contains both weak to millivolt level, microampere level of small signals, there are tens of volts, even thousands of volts, hundreds of amperes of large signals, both low-frequency DC signals, but also high-frequency pulse signals. Due to the complexity of these signals, signal transmission between instruments and devices may interfere with each other, leading to system instability and even misoperation. Among them, an important factor is that there is a potential difference between the signal reference points between the instrument and the device, forming a "ground loop", resulting in distortion during signal transmission. The role of the isolator is to disconnect the process loop without affecting the normal transmission of the process signal, so as to solve the ground loop problem.