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H系列干簧继电器

描述

高压干簧继电器可切换到高达10kVDC和击穿电压15kVDC。特制的带PCB引脚线圈输出包装。开关触点可直接连线(天空布线)。M4螺丝安装。可取代水银湿簧继电器。

规格

线圈电压 (VDC)12, 24
线圈电阻 (Ω)230-700
触点形式1A(单刀单掷)常闭(N.O.), 1B(单刀单掷)常闭(N.C.)
额定功率最大值50W/10000VDC/3A

应用领域

电缆测试设备, 除颤器, 电烙电子外科手术刀, 医疗设备, 替代水银湿继电器 , 测试测量(ATE)

产品系列规格(PDF)
 
打印

库存查询

型号数据表数据表经销商地区数量购物车请求询价库存日期
H12-1A69 Heilind ElectronicsAmericas0 请求询价2023-08-01
H12-1B83 Digi-Key ElectronicsAmericas0 请求询价2023-08-01
H12-1A83 Digi-Key ElectronicsAmericas0 请求询价2023-08-01
H12Standex FactoryAmericas0 请求询价2024-03-19
H12-1A83 Mouser ElectronicsAmericas0 请求询价2024-03-19
H12-1B69 Mouser ElectronicsAmericas0 请求询价2024-03-19
H12-1A69 Mouser ElectronicsAmericas0 请求询价2024-03-19
H12-1B83 Mouser ElectronicsAmericas0 请求询价2024-03-19
H12-1B69 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H12-1B83 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H12-1A69 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H12-1A83 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H12-1A85TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H24-1A69 MASTER/ONLINEAmericas0 请求询价2023-08-01
H24-1A83 Digi-Key ElectronicsAmericas0 请求询价2023-08-01
H24-1A69 Digi-Key ElectronicsAmericas0 请求询价2023-08-01
H24-1A83 MASTER/ONLINEAmericas11 购买 请求询价2023-08-01
H24Standex FactoryAmericas0 请求询价2024-03-19
H24-1A83 Mouser ElectronicsAmericas38 购买 请求询价2024-03-19
H24-1A69 Mouser ElectronicsAmericas2 购买 请求询价2024-03-19
H24-1B69 Mouser ElectronicsAmericas0 请求询价2024-03-19
H24-1B83 Mouser ElectronicsAmericas0 请求询价2024-03-19
H24-1A83 Arrow ElectronicsAmericas0 请求询价2024-03-19
H24-1A83 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H24-1A69 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H24-1B83 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19
H24-1B69 TTI Inc Global HeadquartersAmericas0 请求询价2024-03-19

参数搜索

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相关的部分

高压干簧继电器可切换到高达10kVDC和击穿电压15kVDC。漏电距离>26mm。环氧树脂包装,多触点形式可选。选项包括在高压引脚上直接接线。M4螺丝安装。可取代水银湿簧继电器。双稳态,多脚位可选

高压干簧继电器可切换到高达10kVDC和击穿电压15kVDC。漏电距离>32mm。环氧树脂包装,多触点形式可选。选项包括在高压引脚上直接接线。M4螺丝安装。可取代水银湿簧继电器。双稳态,多脚位可选

高压/高绝缘环氧树脂封装干簧继电器能够切换高达1kVDC,击穿电压4.5kVDC,绝缘电压7kVDC。高绝缘电阻(IR)> 10 ^ 13Ω。UL认证

高压/高绝缘表面贴装(SMD)或插孔(THT)干簧继电器能切换高达1kVDC,击穿电压4.5kVDC,绝缘电压7kVDC。高绝缘电阻(IR)> 10 ^ 13Ω。提供热坚固型塑模封装。按照AEC-Q200标准进行了可靠性测试,UL认证。

UL Certificate of Compliance

SHV 单列串联系列是一种高压干簧继电器和仪表级干簧继电器,模制外壳,能够切换高达 1kVDC 和 4kVDC 的击穿电压。 该高压干簧继电器系列具有 >5 x 10^12 Ω 的绝缘电阻。适用于面积小的PCB 板,面积仅占 DIP 和 DIL 干簧继电器系列的 50%。 它甚至比以前的 SIL-HV 干簧继电器还要小。

UL – 合规证书

我们最通用的通用型干簧继电器系列有多触点形式可选,包括5个A型开关。提供双稳态或者高绝缘电阻 10^13 Ω。塑料或金属外壳,环氧树脂封装。

技术文件

应用领域

媒体

Standex Electronics Global Reed Switch Products and Capabilities

As the leader in reed switch technology, Standex impacts lives by contributing to effective product performance in household, automotive and utilities applications.

Standex Electronics Company Video_斯丹麦德公司介绍

Standex Electronics is a worldwide market leader in the design, development and manufacture of standard and custom electro-magnetic components, including magnetics products and reed switch-based solutions.

In this video we discuss our global manufacturing and supply chain capabilities and how WE MATTER™ by fueling the processes that we often take for granted every day. Through our diverse in-house capabilities and strong engineering designs we PARTNER with our customers to SOLVE their unique challenges, and DELIVER custom high-performing solutions...

Standex Electronics | Values

Standex Electronics new company video shares our global manufacturing and supply chain capabilities, and how “we matter” through our partner, solve, and deliver approach.

Standex Electronics dynamic engineering and diverse product line of custom and standard components deliver reliable high-quality solutions to customers across broad markets and applications. Our robust product offerings include Reed Switches, Relays, and Sensors, Planar Transformers and Inductors, and Fluid Level Sensors that provide solutions for the Automotive, HVAC, Alternative Energy, Lighting/LED, Appliance, Mil-Aero, Medical, and many others...

Standex Electronics Japan | Company Video

Standex Electronics Japan is a worldwide market leader in the design, development, and manufacturing of magnetic reed switches. Headquartered in Kofu City, Japan it was previously branded as the OKI Sensor Device Corporation prior to being acquired by Standex Electronics, Inc., a division of Standex International. The new name of OKI Reed Switches is KOFU, A Standex Electronics Brand.

Reed Switches for Smart Home Automation Systems

Reed Switches work well with smart home automation systems because they draw no power compared to other magnetic sensing elements. They can be married to a wireless or Bluetooth technology and placed in remote battery powered door sensors or window sensors, or anything where you’re looking for movement or proximity. They’re a very cost-effective and robust component suitable for the home environment, requiring fewer connections resulting in longer battery life.

In today’s homes and also commercial properties, there’s an increased necessity for control to improve efficiency and productivity. And with that control, you have different products that measure temperature, water levels, security, and locks, so within those products reed switches play a major role in making them “smart”.

Standex Electronics is a global leader in the design, development, and manufacturing of standard and custom Reed Switches.

Product Training Module – RF Reed Relays Part I

Welcome to Standex Electronics' RF Reed Relays Part I training module. Reed relays have long been known to have the capability to switch and carry RF signals and fast digital pulses. Hardly anyone thought reed relays were capable of switching and carrying RF up to 20 GHz, because the reed switch's leads are composed of nickel/iron which has a relatively high permeability or (MU). However, 20GHz is now a reality at Standex Electronics. We will be presenting the reasons Standex Electronics and their design team have made this possible.

Product Training Module – RF Reed Relays Part II

Welcome to Standex Electronics' RF Reed Relays Part II training module. This second RF presentation assumes you have already heard the first Standex Electronics RF Part I presentation. Understanding the simple physical layout of a reed relay makes it easy to design and rest reed relays for RF and fast digital pulse applications. RF is dependent on the physical layout or signal path it takes while going through circuits and the components that make up those circuits. We will show you how the physical layout of the reed relay will have a direct bearing on the RF signal's success going into and out of the reed relay. Coupled with the relay's physical layout, the materials making up the reed relay are also important.

Product Training Module – Reed Relay Overview

Welcome to Standex Electronics Reed Relay training module. This module will define key terms used in reed relays and their applications. The module will also describe the structure and function of reed relays and their vast number of applications.

Product Training Module – Magnet Technology & Their Uses

Welcome to Standex Electronics where we will be exploring what magnets are and how they are used in the electronic industry. We will define the key terms relating to magnets and we will explore what magnets are, what they do, and how they are used.

Product Training Module – Latching Form B Reed Relays & Sensors

Welcome to Standex Electronics' Latching and Form B Reed Relay and Sensor training module. This module will define key terms of Form B and Latching sensors and relays. The module will also describe the structure and function of latching and Form B reed relays and sensors.

干簧开关的原理 (CN)

磁簧管、磁簧继电器及磁簧开关是我们最重要的产品。这三种产品系列有一个简单的共通性,就是磁簧管是这些产品的核心组件。磁簧管是以磁场来驱动操作的组件,两片端点处重迭的可磁化的簧片、密封于一玻璃管中,两簧片分隔的距离仅约几个微米,玻璃管中装填有高纯度的惰性气体,在尚未操作时,两片簧片并未接触、外加的磁场使两片簧片端点位置附近产生不同的极性, 结果两片不同极性的簧片将互相吸引并闭合...

Standex -Meder社スイッチ生産工程 (JP)

リードスイッチを開発して設計することはとても難しい作業です. それで Thuringiaに位置している本社の工場はこの分野で最初に最新生産設備を取り揃えて超精密度を要する多様なリードスイッチを生産しています. その大きさは非常に小さくて薄いコーティング層で成り立っていて, 細心な工程段階を通さなければなりません. このような高度の精密度及び技術を持った生産環境で競争力がある価格と優秀な品質の製品たちが誕生することになるのです...

Standex Electronics社スイッチ生産工程 (CN)

リードスイッチを開発して設計することはとても難しい作業です. それで Thuringiaに位置している本社の工場はこの分野で最初に最新生産設備を取り揃えて超精密度を要する多様なリードスイッチを生産しています. その大きさは非常に小さくて薄いコーティング層で成り立っていて, 細心な工程段階を通さなければなりません. このような高度の精密度及び技術を持った生産環境で競争力がある価格と優秀な品質の製品たちが誕生することになるのです...

Reed Switch Technology

Standex Electronics expert discusses reed switch technology and why reed switches play such an important role in many applications.

リードスイッチの構造及び原理 (JP)

リードスイッチ、リードリレー及びリードセンサーは弊社の基本的に大事な製品ラインとしてこの3種類の製品ラインではリードスイッチという共同的な核心素子が入ってあります。リードスイッチは磁石による磁場の原理で駆動されるのに ,この原理は1940 年代初アメリカのベル研究所によって発明されました. 作動原理はとても簡単です。,二つの端に強い磁性体の性格を持った金属リード素子を約何マイクロメーターのとても微細な間隔で重なるようにした後ガラス管に入れて密封させます. そしてガラス管の内部には不活性ガスが満たされます。この時に二つのリード素子はお互いに離れてる状態だったが外部から磁石による磁場が形成になりながら極と極が発生して両極性を持った二つのリード素子はお互いに引き寄せて結合するようになります

3D Magnetic Mapping for Sensor Applications

Standex Electronics's technical expert describes their 3D Magnetic Mapping capabilities used in reed sensor applications

Reed Switch SMD Sensor & Magnet Actuation in 3-D

A Reed Switch Sensor on a surface mount PCB assembly shown in 3-D with actuating magnet. When viewed in three dimensions, the magnetic flux lines emanating from the magnet look like a beer barrel keg; and also in three dimensions, with the magnet parallel to the reed switch, the center magnetic lobe array looks like a donut and the two outside lobes look more like a boxer's punching bag -- the kind hung from the ceiling. Essentially the fields from the magnet and the fields for the lobes are symmetrical when viewed in three dimensions. As seen in two dimensions, when the magnet is brought into one of the lobes the reed switch contacts will close. Now, as seen in three dimensions the magnet can be brought into the lobes in any spherical direction for contact closure to occur. Here the magnet is moved into the sphere of influence of the lobes of the reed switch showing the closure and opening when the magnet enters the lobes and passes through them, The change in lighting signifies the closing and opening of the reed switch contacts.

Standex Electronics at AHR Expo 2013

Alex Vinnage talks about what attendees can expect from Standex Electronics at the 2013 AHR Expo.

리드스위치 구조 및 원리 (KR)

리드 스위치 리드 릴레이 및 리드센서는 본사의 가장 기본적인 중요한 제품군으로 이루어져 있으며, 이 세 가지 제품군에는 리드 스위치 라는 공통적인 핵심소자가 들어갑니다. 리드 스위치 는 자석에 의한 자기장의 원리로 구동되는데 ,이 원리는1940 년대 초 미국벨 연구소에 의해서 발명 되었습니다. 작동원리는 아주 간단하여 ,두 개의 끝단에 강한 자성체의 성격을 가진 금속 리드 소자를 약 몇 마이크로미터의 아주 미세한 간격으로 겹쳐지게 한 후 유리관에 넣고 밀봉시킵니다. 그리고 유리관 내부에는 불활성 가스가 채워집니다 이때에 두 개의 리드소자는 서로 떨어져 있는 상태였으나 외부로부터 자석에 인한 자기장이 형성이 되면서 극과 극이 발생하여 양극성을 가진 두 개의 리드 소자는 서로 끌어당겨 결합하게 됩니다.

메더스위치 생산 제조공정 (KR)

리드 스위치를 개발하고 설계한다는 것은 매우 어려운 작업입니다. 그래서 Thuringia에 위치하고 있는 본사의 공장은 이 분야에서 가장 먼저 최신생산설비를 갖추어 초 정밀도를 요하는 다양한 리드 스위치들을 생산하고 있습니다. 그 크기는 매우 작고 얇은 코팅층으로 이루어져 있어, 세심한 공정단계를 거쳐야 합니다. 이러한 고도의 정밀도 및 기술을 가진 생산 환경에서 비로소 경쟁력 있는 가격과 우수한 품질의 제품들이 탄생하게 되는 것입니다.

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