市場調查報告書
商品編碼
1623303
管式電阻器的全球市場規模:按產品、按應用、按地區、範圍和預測Global Tubular Resistors Market Size By Product (< 50 Ohms, 50-200 Ohms), By Application (Frequency Conversion, High-Frequency Balancing), By Geographic Scope And Forecast |
過去幾年,管狀電阻器市場規模以溫和的速度成長,成長率顯著,預計市場在預測期內(2021-2028)將顯著成長。
變頻、高頻平衡和緩衝器等應用對管電阻器的需求不斷增長,正在推動該市場向前發展。管式電阻器的全球市場報告提供了對市場的整體評估。它對關鍵細分市場、趨勢、市場推動因素、競爭格局以及在市場中發揮關鍵作用的因素進行了全面分析。
管式電阻器的全球市場定義
在電子電路中,電阻器是控製或調節電流通過的電氣元件。電阻器也用於向電晶體等主動元件提供設定電壓。800 系列和 1000 系列管狀無感體陶瓷電阻器為高峰值功率或高能量脈衝提供出色的性能。整體結構形成天然無感電阻,確保能量和功率均勻分佈在整個陶瓷電阻體中。
一對電極和引線連接到導電材料上,電流通過它,形成一個實用的電阻器。為了保護導體免受周圍環境的影響,反之亦然,電阻器上塗有絕緣層。電阻器有多種構造方法和主體設計或封裝,適用於特定範圍的施加電壓、功耗或其他因素。如果沒有緩衝器,任何電力電子設備都是不完整的。緩衝器是一個由小元件組成的網絡,用於控制電源開關電路中電路電抗的影響。緩衝器的主要作用是從電源電路的電抗中吸收能量。
對緩衝電路進行分類的第一個方法是它們是在管理電壓的同時吸收能量還是在管理電流的同時吸收能量。其他電路元件上的電壓由與其並聯的電容器控制。流經其他電路元件的電流由與其串聯的電感器控制。可以採用 RC 緩衝電路來減少開關節點處的電壓尖峰。當整流二極體關閉(高側開關導通)時,RC緩衝電路將二極體結中儲存的電荷放電,並透過電阻器將PCB走線的寄生電感、電容和電感進行電壓轉換。
電子管電阻器的世界市場概況
對節能產品的需求不斷增長以及電子設備對功率增加的需求正在推動管電阻器市場的發展。電源和其他應用中使用的高壓電阻器的需求正在增加。變頻、高頻平衡、緩衝器等各種應用中對管式電阻器的需求不斷增加,以及安全氣囊、安全帶和煞車等汽車應用中管式電阻器的使用不斷增加,正在推動這一市場的擴張。
為這些應用選擇管電阻器是因為它們具有薄型並且可以安裝在印刷電路板上,而不需要額外的組件或空間。管式電阻器在馬達、發電機和變壓器等工業應用中的使用越來越多,也將促進市場的成長。市場成長可能會受到電阻器散熱和穩定性問題的限制。需要更大的電阻器來散發高功率應用中產生的熱量。寬管狀基板為電阻材料應用提供了更大的表面積,並且更耐用。這些巨型電阻器無法直接安裝到 PCB 板上,因此需要安裝硬體。
例如,繞線技術或厚膜技術可用於基板。線繞電阻器是市場上最穩定的電阻器之一,容差低至 0.1%。線繞電阻器是將電阻絲纏繞在絕緣形狀上並用絕緣材料覆蓋來製成的。薄膜電阻器是形成在絕緣體上的薄電阻器。有碳膜電阻器、合金膜電阻器、金屬氧化膜電阻器三種。金屬膜電阻器是一個塗有金屬膜的陶瓷圓柱體。金屬陶瓷是此電阻器最常用的材料之一。金屬陶瓷是陶瓷和金屬的複合材料。
大多數固定電阻器,無論是元件電阻器或繞線電阻器,都採用帶有軸向引線的圓柱形封裝。電阻器有各種形狀和尺寸,有厚的和薄的。薄膜電阻網路的封裝方式與積體電路類似,採用塑膠雙列直插式封裝 (DIP)、單列直插式封裝 (SIP)、扁平封裝及圓形金屬封裝。晶片和顆粒可用於封裝單一電阻器。晶片是包含微電子電路或組件的一小塊(通常是正方形或矩形)材料。直接沉積在電路板上的厚膜電阻通常用於混合電路。
Tubular Resistors Market size is growing at a moderate pace with substantial growth rates over the last few years and is estimated that the market will grow significantly in the forecasted period i.e. 2021 to 2028.
The growing need for tubular resistors in applications like frequency conversion, high-frequency balancing, and snubbers is propelling this market forward. The Global Tubular Resistors Market report provides a holistic evaluation of the market. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that are playing a substantial role in the market.
Global Tubular Resistors Market Definition
In an electronic circuit, a resistor is an electrical component that controls or regulates the passage of electrical current. Resistors can also be used to supply a set voltage to an active device like a transistor. Tubular Non-Inductive Bulk Ceramic Resistors in Series 800 and 1000 provide outstanding performance for high peak power or high-energy pulses. Bulk construction generates a resistor that is naturally non-inductive and allows energy and power to be dispersed uniformly across the whole ceramic resistor body.
A pair of electrodes and leads are attached to a piece of conducting material to allow current to flow and make it into a practical resistor. To protect the conducting material from the surrounding environment and vice versa, the resistor is coated with an insulating layer. There are a variety of resistor construction methods and body designs or packages available, each tailored to a specific range of applied voltage, power dissipation, or other factors. Power electronics would not be complete without snubbers. Snubbers are small networks of elements that control the effects of circuit reactance in power-switching circuits. A snubber's primary role is to absorb energy from the power circuit's reactance.
The first way to classify snubber circuits is whether they absorb energy while managing voltage or current. The voltage across other circuit elements is controlled by a capacitor connected in parallel with them. The current through other circuit elements is controlled by an inductor connected in series with them. With the intention of reducing spike voltage at a switch node, an RC snubber circuit can be implemented. When a rectifying diode is turned off (when the high-side switch is on), the RC snubber circuit discharges the electric charge accumulated in the diode junction, as well as the parasitic inductance, parasitic capacitance, and inductance in the PCB trace, converting the voltage into heat through resistance to reduce spikes.
Global Tubular Resistors Market Overview
The growing demand for energy-efficient products and the requirement for increased power in electronic gadgets are driving the Tubular Resistors Market. Demand for high-voltage resistors, which are used in power supply and other applications, is on the rise. The growing demand for tubular resistors in various applications such as frequency conversion, high-frequency balancing, and snubbers, as well as the increasing use of tubular resistors in automotive applications such as airbags, seat belts, and brakes, will drive the expansion of this market.
Tubular resistors are employed in these applications because of their low profile and ability to be installed on PCBs without the need for additional components or space. The growing use of tubular resistors in industrial applications such as motors, generators, and transformers will all contribute to the market's growth. Market growth may be limited by heat dissipation of resistors and stability issues. To disperse the heat generated by higher power applications, bigger resistors are required. Wide tubular substrates have a large surface area for resistive materials to be applied to and are extremely durable. The mounting hardware for these huge resistors is required because they are not directly attached to the PCB board.
Wirewound and thick film technologies, for example, can be used on substrates. The wire-wound resistor is one of the most stable resistors, with tolerances as low as.1% commercially available. Wire-would resistors are made by wrapping a resistive wire around an insulated shape and then covering it with insulating material. A thin layer of resistive material is formed onto an insulated form to create film resistors. Carbon-film, metal-alloy, and metal-oxide are the three types of film resistors that are most widely employed. A metal film resistor is made by coating a ceramic cylinder with a metal film. The material 'cermet' is one of the most often utilized for these resistors. Cermet is a composite material made up of ceramic and metal components.
The majority of fixed resistors, both composition, and wire-wound, are packaged in a cylindrical form with axial leads. Resistors, both thick and thin, come in a range of shapes and sizes. Film resistor networks are packaged similarly to integrated circuits in plastic dual-in-line packages (DIP), single-in-line packages (SIP), flatpack packages, and circular metal packages. Chips and pellets can be used to package individual resistors. A chip is a small (typically square or oblong) piece of material that includes a circuit or component in microelectronics. Thick film resistors, which are deposited directly onto the circuit substrate, are often employed in hybrid circuits.
The Global Tubular Resistors Market is Segmented on the basis of Product, Application, And Geography.
Based on Product, The market is segmented into < 50 Ohms, 50-200 Ohms, 200-500 Ohms, and > 500 Ohms. The impedance corresponding to minimum loss, maximum power, and maximum voltage is 50 Ohms, which is the least terrible compromise. Indeed, 50 Ohms is close to the mean between 77 and 30 Ohms, and it's close to 60 Ohms, therefore it's reasonable to conclude that this is why the 50 Ohm impedance standard exists. However, with a PTFE-filled coaxial cable with minimal loss, the impedance with minimum loss is only about 50 Ohms.
Based on Application, The market is segmented into Frequency Conversion, High-Frequency Balancing, and Snubbers. An electrical device that transforms a sinusoidal input frequency into a proportionate current or output voltage is known as a frequency to voltage converter. Operational amplifiers and RC circuits are included in the basic circuit (Resistor Capacitor networks). Signal processing is done with operational amplifiers. The frequency converter has dynamic resistance, which is used to utilize some of the energy on the DC bus capacitance via brake resistance, avoiding the capacitor's high voltage.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.