!精品国产99久久久久久宅男_日本一卡二卡手机高清在线_92无人无码精品人妻一区二区_亚洲日韩成人性AV网站_久久精品偷拍视频一二三区,盛世嫡妃 凤轻 小说,小说阅读网,完美世界txt下载

Omnipolar Hall Switch

HS271 omnipolar low power Hall switch

HS271 is an omnipolar Hall effect sensor based on mixed-signal CMOS technology. This IC uses advanced chopper stabilization technology to provide accurate and stable magnetic switch points.

In terms of circuit design, HS271 provides an embedded controlled clock mechanism to provide a clock source for the Hall device and analog signal processing circuit. At the same time, this controlled clock mechanism can send a control signal to make the circuit with high current consumption periodically enter the "sleep" mode; through this mechanism, the chip is periodically "woken up" and detects the strength of the magnetic field passing through the Hall device according to the predetermined magnetic field strength threshold. If the magnetic flux density is higher than the "operating point" threshold or lower than the "release point" threshold, the open-drain output transistor is driven and latched into the corresponding state. During the "sleep" cycle, the output transistor is locked in the previous state. In battery-powered applications, this design provides the best support for extending the working life.

The output transistor of HS271 will be locked in the open (BOP) state when there is a certain strong south or north magnetic field on the side facing the package marking, and locked in the closed (BRP) state when there is no magnetic field.

  • Product Detail

HS271 is an omnipolar Hall effect sensor based on mixed-signal CMOS technology. This IC uses advanced chopper stabilization technology to provide accurate and stable magnetic switch points.

In terms of circuit design, HS271 provides an embedded controlled clock mechanism to provide a clock source for the Hall device and analog signal processing circuit. At the same time, this controlled clock mechanism can send a control signal to make the circuit with high current consumption periodically enter the "sleep" mode; through this mechanism, the chip is periodically "woken up" and detects the strength of the magnetic field passing through the Hall device according to the predetermined magnetic field strength threshold. If the magnetic flux density is higher than the "operating point" threshold or lower than the "release point" threshold, the open-drain output transistor is driven and latched into the corresponding state. During the "sleep" cycle, the output transistor is locked in the previous state. In battery-powered applications, this design provides the best support for extending the working life.

The output transistor of HS271 will be locked in the open (BOP) state when there is a certain strong south or north magnetic field on the side facing the package marking, and locked in the closed (BRP) state when there is no magnetic field.


Product features

1. Micropower battery powered applications
2. Omnipolar output switch
3. Operating voltage can be as low as 2.5V
4. High sensitivity direct reed switch replacement
5. CMOS output

Main applications

1. Solid-state switch
2. Reminder switch for cordless mobile phones
3. Screen saver switch for flip-top mobile phones
4. Magnetic sensor switch with low duty cycle to replace reed tubes

Product parameters

上一個:HS471 omnipolar Hall magnetic induction switch

下一個:HS473 omnipolar magnetic induction Hall switch

Leave a Reply

86-0769-22115189

86-18929219585

lovefang92

+86 18929219585

sarah@icanskateboards.com

2858544609

Leave a message

主站蜘蛛池模板: 新巴尔虎右旗| 邢台县| 荣昌县| 德钦县| 东光县| 门头沟区| 壤塘县| 蒲城县| 贵德县| 鄂尔多斯市| 腾冲县| 太保市| 哈尔滨市| 邛崃市| 沾益县| 阿城市| 遂昌县| 长汀县| 牟定县| 项城市| 巴马| 孝义市| 高陵县| 巴中市| 龙州县| 汾阳市| 通许县| 佛山市| 威信县| 木兰县| 四会市| 四子王旗| 南乐县| 黎川县| 靖西县| 东台市| 昌宁县| 仪征市| 丁青县| 新乡市| 寿阳县|