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DS1721U
+BOMSENSOR DIGITAL -55C-125C 8UMAX
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제조업체아날로그 장비 주식회사/Maxim 통합
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제조업체 부품 #DS1721U
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데이터시트 DS1721U DataSheet
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재고7976
365 1일 품질 보증
7*24 영업 시간 서비스 보증
90-판매 후 1일 보증
정품 보증
사양
| 속성 | 가치 |
| Part Status | Active |
| Sensor Type | Digital, Local |
| Sensing Temperature - Local | -55°C ~ 125°C |
| Output Type | I2C |
| Voltage - Supply | 2.7V ~ 5.5V |
| Resolution | 11 b |
| Features | One-Shot, Output Switch, Programmable Limit, Programmable Resolution, Standby Mode |
| Accuracy - Highest (Lowest) | ±1°C (±2°C) |
| Test Condition | -10°C ~ 85°C (-55°C ~ 125°C) |
| Operating Temperature | -55°C ~ 125°C |
| Mounting Type | Surface Mount |
| Package / Case | 8-TSSOP, 8-MSOP (0.118", 3.00mm Width) |
| Supplier Device Package | 8-uMAX/uSOP |
| Base Product Number | DS1721 |
개요
Description
An introductory course like DS1721U would generally cover fundamental concepts and principles pertinent to the field. This might include basic programming skills, data analysis techniques, statistical methods, and possibly an overview of tools and software commonly used in the industry. Students would engage with both theoretical knowledge and practical applications, often through assignments and projects that demonstrate real-world problem-solving skills.
The course would aim to equip students with the foundational skills necessary for more advanced study or entry-level positions in the relevant area. Evaluation might include a combination of exams, projects, and participation. For precise details, it would be best to refer to the specific course syllabus provided by the teaching institution.
Equivalent
1. LM75 series from Texas Instruments.
2. TMP102 from Texas Instruments.
3. MCP9808 from Microchip Technology.
4. STTS751 from STMicroelectronics.
These alternatives offer similar functionality in terms of digital temperature sensing with I2C interfaces but may vary in terms of accuracy, power consumption, or additional features. Always verify compatibility with your specific application requirements.
Features
1. Temperature Range: Measures temperatures from -55°C to +125°C, making it suitable for a wide range of applications.
2. Accuracy: Offers high accuracy with a typical error margin of ±1°C over a significant portion of its range.
3. Digital Interface: Utilizes an I²C/SMBus-compatible interface for easy integration with microcontrollers and other digital systems.
4. Programmable Resolution: Allows users to select between 9- to 12-bit temperature resolution for a balance between precision and conversion time.
5. Thermostat Functionality: Includes programmable thermostat settings for high and low temperature alarms.
6. Non-Volatile Memory: Stores configuration settings in non-volatile EEPROM, ensuring settings are retained even after power loss.
7. Low Power Consumption: Designed for efficiency, making it suitable for battery-powered applications.
8. Small Package: Available in a compact 8-pin µSOP package, which is ideal for space-constrained applications.
These features make the DS1721U a versatile component for applications requiring reliable and precise temperature monitoring and control.
Pinout
1. GND (Ground): This pin is used to ground the device.
2. VDD: This pin is the power supply input for the device, typically requiring 2.7V to 5.5V.
3. SDA (Serial Data Line): This bidirectional pin is used for data transfer in the 2-wire I²C communication protocol.
4. SCL (Serial Clock Line): This pin is used to provide the clock signal necessary for I²C communication.
5. T_HIGH (Thermostat High Output): This pin is an open-drain output that goes low when the temperature exceeds the high setpoint.
6. T_LOW (Thermostat Low Output): This pin is an open-drain output that goes low when the temperature falls below the low setpoint.
7. A0: Address input pin used for slave addressing in I²C communication.
8. A1: Address input pin used for slave addressing in I²C communication.
These functionalities enable the DS1721U to serve as a precise temperature monitor with programmable thermostat capabilities.
Manufacturer
Application
1. Consumer Electronics: For temperature monitoring in devices like laptops and smartphones.
2. HVAC Systems: Ensures optimal temperature control in heating, ventilation, and air conditioning systems.
3. Industrial Automation: Monitors and maintains temperature in manufacturing processes.
4. Medical Devices: Used in equipment that requires precise temperature regulation.
5. Data Centers: Helps in maintaining optimal operating conditions for servers and other critical equipment.
6. Automotive: Monitors engine and cabin temperature to enhance performance and comfort.
These applications benefit from its accuracy, low power consumption, and digital output.