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位相制御サイリスタ

N750DH40 Phase Control Thyristors Westcode Power Controller Scr New and Original N750DH40 In Stock

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T171-320-12 Russian Type Phase Control Thyristors

Phase Control Thyristor T253-1250 SCR Thyristor Module

In Stock Power Controller Scr Phase Control Thyristors Westcode N1467NC260

50RIA120 phase control thyristors power SCR

100% Original 5STP38N3600 Flat SCR Triac Thyristor for Phase Control in Stock and Fast Delivery

Phase control thyristor 2500V KK2000-2500V scr module controllers

Electronic Equipments Phase Control Scr Thyristor SM12PHR100 for westco

Electronic Equipments Thyristor Scr 800A 1600V Phase Control Thyristor Module PD110F80

SCR Thyristor Module R0809LS16A Phase Control Thyristor

5STP50Q1800 Hitachi Energy ABB Phase Control Thyristor PCT Semiconductor
| Type | VDRM/VRRM [V] | IT[AV] [あ] | ITSM [kA] | dv/dt [V/us] | di/dt [A/us] | IDRM/IRRM [mA] | IGT [mA] | VGT [V] | IH [mA] | VTM/ITM [V/A] |
|---|---|---|---|---|---|---|---|---|---|---|
| PDDN-Y24KPE | 1400-1600 | 340 | 4.1 | 300 | 100 | 16 | 30-200 | 0.8-2.0 | 20-150 | 2.06/750 |
| PDDN-Y30KPE | 1200-1600 | 727 | 8.7 | 300 | 100 | 30 | 35-250 | 0.8-2.5 | 20-200 | 1.78/1500 |
| PDDN-Y38KPE | 1200-1600 | 1224 | 14.7 | 300 | 100 | 40 | 35-300 | 0.8-2.5 | 20-250 | 1.4/1700 |
| PDDN-Y50KPE | 1200-1800 | 1625 | 19.5 | 300 | 150 | 80 | 40-300 | 0.8-3.0 | 20-300 | 1.5/2500 |
| PDDN-Y65KPE | 1200-1800 | 2418 | 29 | 300 | 200 | 120 | 40-300 | 0.8-3.0 | 20-300 | 1.35/3200 |
| PDDN-Y76KPE | 1200-1800 | 3075 | 37 | 300 | 250 | 200 | 40-300 | 0.8-3.0 | 20-300 | 1.43/3000 |
| PDDN-Y24KPC | 800-1200 | 416 | 5 | 300 | 100 | 16 | 30-200 | 0.8-2.0 | 20-150 | 1.65/900 |
| PDDN-Y30KPC | 800-1200 | 668 | 8 | 300 | 100 | 30 | 35-250 | 0.8-2.5 | 20-200 | 1.72/1200 |
| PDDN-Y38KPC | 800-1200 | 1129 | 13.5 | 300 | 100 | 40 | 35-250 | 0.8-2.5 | 20-250 | 1.43/1800 |
| PDDN-Y50KPC | 800-1200 | 1853 | 22.2 | 300 | 200 | 80 | 40-300 | 0.8-3.0 | 20-300 | 1.34/3000 |
| PDDN-Y65KPC | 800-1200 | 2754 | 33 | 300 | 250 | 120 | 40-300 | 0.8-3.0 | 20-300 | 1.3/5000 |
| PDDN-Y76KPC | 400-1000 | 4148 | 49.8 | 300 | 250 | 200 | 40-300 | 0.8-3.0 | 20-300 | 1.17/5000 |
| PDDN-Y50KPJ | 3100-4200 | 1011 | 12 | 800 | 150 | 80 | 40-300 | 0.8-3.0 | 20-300 | 2.21/1500 |
| PDDN-Y65KPJ | 3100-4200 | 1611 | 19.3 | 800 | 150 | 120 | 40-300 | 0.8-3.0 | 20-300 | 2.22/3000 |
| PDDN-Y76KPJ | 3100-4200 | 2205 | 26.5 | 800 | 250 | 200 | 40-300 | 0.8-3.0 | 20-300 | 2.11/3000 |
| PDDN-Y89KPJ | 3100-4200 | 3211 | 38.5 | 800 | 250 | 250 | 40-300 | 0.8-3.0 | 20-300 | 1.90/5000 |
| PDDN-Y50KPH | 1900-3000 | 1293 | 15.5 | 500 | 150 | 80 | 40-300 | 0.8-3.0 | 20-300 | 1.97/2400 |
| PDDN-Y65KPH | 1900-3000 | 2092 | 25 | 500 | 200 | 120 | 40-300 | 0.8-3.0 | 20-300 | 1.60/3200 |
| PDDN-Y76KPH | 1900-3000 | 3013 | 36.2 | 500 | 250 | 200 | 40-300 | 0.8-3.0 | 20-300 | 1.75/5000 |
| PDDN-Y89KPH | 1900-3000 | 3835 | 46 | 500 | 250 | 250 | 40-300 | 0.8-3.0 | 20-300 | 1.54/5000 |
| PDDN-Y100KPH | 1900-3000 | 4755 | 57 | 500 | 250 | 200 | 40-450 | 0.9-3.5 | 20-1000 | 1.36/5000 |
| PDDN-Y50KPM | 4300-5500 | 975 | 11.7 | 800 | 150 | 120 | 40-300 | 0.8-3.0 | 20-250 | 2.44/1500 |
| PDDN-Y65KPM | 4300-5500 | 1471 | 17.7 | 800 | 200 | 120 | 40-300 | 0.8-3.0 | 20-250 | 3.04/3000 |
| PDDN-Y76KPM | 4300-5500 | 2049 | 24.6 | 800 | 250 | 120 | 40-300 | 0.8-3.0 | 20-250 | 2.56/3000 |
| PDDN-Y50KPR | 5600-6500 | 872 | 10.5 | 800 | 100 | 200 | 40-300 | 0.8-3.0 | 20-250 | 2.3/1000 |
| PDDN-Y65KPR | 5600-6500 | 1648 | 19.8 | 800 | 150 | 200 | 40-300 | 0.8-3.0 | 20-250 | 1.89/1500 |
| PDDN-Y76KPR | 5600-6500 | 2434 | 29.2 | 800 | 200 | 250 | 40-300 | 0.8-3.0 | 20-250 | 1.65/1600 |
| PDDN-Y24KPA | 200-600 | 477 | 6 | 300 | 100 | 16 | 35-200 | 0.8-2.0 | 20-150 | 1.44/1000 |
| PDDN-Y30KPA | 200-600 | 945 | 11.3 | 300 | 100 | 20 | 35-250 | 0.8-2.5 | 20-200 | 1.25/1500 |
| PDDN-Y38KPH | 1900-3000 | 897 | 10.8 | 500 | 100 | 40 | 35-300 | 0.8-2.5 | 20-250 | 2.18/1800 |
Overview of Phase Control Thyristors
A phase control transistor is a particular type of semiconductor device that can control the conduction and turn off of current by controlling the phase. This type of device is widely used in power systems and automation control fields, such as motor control, switching power supplies, reactive power compensation, etc. Phase control transistors can operate in high-speed switching states, achieving high-precision power control, and have characteristics such as high reliability, low power consumption, and long lifespan. Therefore, it has been widely applied in many vital applications, such as reactive power compensation and active filtering in power systems. In addition, with the continuous development of power electronics technology, the application fields of phase control transistors are also constantly expanding, providing strong support for the intelligence and efficiency of modern industry and power systems.
The Characteristics ofPhase Control Thyristors
1. Fast switching speed: The phase-controlled thyristor adopts advanced triggering technology, which can achieve fast switching at high speeds.
2. 高い信頼性: 位相制御サイリスタの構造設計により、信頼性が向上し、過酷な環境条件下でも安定して動作します。.
3. 省エネと環境保護: 位相制御サイリスタは低損失、高効率という特徴を持っています。, エネルギー消費を削減し、省エネと環境保護の要件を満たすことができます。.
4. 幅広い応用範囲: 位相制御サイリスタは、高電圧および大電流の制御およびスイッチングを必要とするさまざまな状況に適用できます。, such as motor control, 電力変換, 新しいエネルギーの生成, その他の分野.
5. 統合が簡単: 位相制御されたサイリスタを他の電子コンポーネントと組み合わせて、システムの最適化と制御を実現できます。.
の適用Phase Control Thyristors
1. モーター制御: 位相制御サイリスタはモーター制御の分野で広く使用されています, ACモーターなど, DCモーター, etc. 位相制御サイリスタのスイッチング状態を制御することで, エンジンの速度と方向を制御できます.

(モーター制御)
2. 電力変換: 位相制御サイリスタは効率的な電力変換機能を備えており、無停電電源装置のコアコンポーネントとして使用できます。, インバータ, 周波数変換器, およびその他の機器. 位相制御サイリスタのスイッチング動作により, DCとAC間の変換を実現できます.

(電力変換)
3. 新しいエネルギーの生成: 位相制御サイリスタは新エネルギー発電の分野でも広く使用されています, 太陽光発電インバーターなど, 風力発電制御システム, etc. 位相制御サイリスタのスイッチング状態を制御することで, functions such as maximum power tracking and grid connection control can be achieved.

(新しいエネルギーの生成)
4. Power grid regulation: Phase-controlled thyristors can be used for power grid regulation and control, such as reactive power compensation, active power filtering, etc. By controlling the conduction and turn-off of phase-controlled thyristors, it is possible to regulate the voltage and current of the power grid.

(Power grid regulation)
5. Industrial automation: Phase-controlled thyristors are also widely used in the field of industrial automation, such as assembly line motor control, elevator control systems, etc. By controlling the switching status of phase-controlled thyristors, precise control and efficient operation of automated equipment can be achieved.


(Industrial automation)
会社概要
洛陽大唐エネルギー技術有限公司(sales@pddn.com) パワーエレクトロニクス技術とパワー製品の大手企業の1つです, 太陽光発電インバーターの開発に全面的に取り組んでいます, 変圧器, 電圧レギュレータ, 配電盤, サイリスタ, モジュール, ダイオード, ヒーター, およびその他の電子デバイスまたは半導体. ユーザーに高品質なサービスを提供することに尽力していきます, 効率的な製品と思いやりのあるサービス.
クレジットカードによる支払いを受け付けます, T/T, ウェストユニオン, とペイパル. PDDN は FedEx を通じて海外の顧客に商品を発送します。, DHL, 海によって, または空路で. If you want high-quality electronic devices or semiconductor products, お問い合わせをお送りください; 私たちはあなたを助けるためにここにいます.

PaymentMethods
信用状, T/T, ウエスタンユニオン, ペイパル, クレジットカードなど.
出荷
海沿い, 飛行機で, 速達で, 顧客の要求に応じて.
保管条件
1) 室温の乾燥した環境に保管してください.
2) 湿気や高温を避けてください.
3) 内包装袋開封後はすぐにご使用ください.
FAQ
Q1:
What is Phase Control Thyristors?
Re: Phase Control Thyristors, also known as thyristors, are semiconductor power electronic devices that can adjust the voltage and current of input AC power by controlling their conduction angle.
Q2:
What are the characteristics of Phase Control Thyristors?
Re: Phase Control Thyristors have the characteristics of high voltage resistance, high current, low conduction impedance, and fast response and are widely used in various power control and regulation systems, such as dimmers, speed regulators, 無停電電源装置, etc.
Q3:
What is the working principle of Phase Control Thyristors?
Re: Phase Control Thyristors is to control its conduction angle by controlling the voltage of its gate, thereby adjusting the voltage and current of the input AC power. When the gate voltage is zero, the thyristor is in the cut-off state. When the gate voltage reaches a specific value, the thyristor begins to conduct, and the magnitude of its conduction angle depends on the amplitude and width of the gate voltage.
Q4:
How do you choose the appropriate Phase Control Thyristors?
Re: Choosing the appropriate Phase Control Thyristors requires consideration of its rated voltage, rated current, reverse peak voltage, forward voltage drop, trigger sensitivity, and other parameters. At the same time, it is necessary to choose suitable models and specifications according to the actual application needs.
Q5:
How do you use and maintain Phase Control Thyristors correctly?
Re: When using Phase Control Thyristors, ensure that their operating voltage and current do not exceed their rated values and maintain appropriate heat dissipation conditions. At the same time, its appearance and performance should be regularly inspected, and any abnormalities and problems should be detected and dealt with in a timely manner to ensure its regular operation and extend its service life.




















































































