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MAX1619MEE+
+NomenclatureSENSOR DIGITAL -55C-125C 16QSOP
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FabricantAnalog Equipment GmbH / intégration Maxim
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Pièce fabricant #MAX1619MEE+
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Package QSOP-16
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En stock7137
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Spécifications
| Attribut | Valeur |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Series | Grid-EYE |
| Part Status | Active |
| Sensor Type | Digital, Infrared (IR) |
| Sensing Temperature - Remote | 0°C ~ 80°C (IR) |
| Output Type | I²C |
| Voltage - Supply | 3.3V |
| Features | Sleep Mode, Standby Mode, Thermal Array |
| Accuracy - Highest(Lowest) | ±2.5°C |
| Test Condition | 0°C ~ 80°C |
| Operating Temperature | 0°C ~ 80°C |
| Mounting Type | Surface Mount |
| Sensing Temperature - Local | -55°C ~ 125°C |
| Resolution | 7 b |
Présentation
Description
Key features of the MAX1619MEE+ include programmable temperature thresholds, which enable the activation of fans or other cooling mechanisms as needed, thereby optimizing energy efficiency. It also boasts high accuracy and reliability, making it ideal for applications in computing, telecommunications, and industrial systems.
Additionally, the MAX1619MEE+ comes in a compact 16-pin QSOP package, making it suitable for space-constrained designs. It operates over a wide temperature range, ensuring versatility across various environments. Overall, the MAX1619MEE+ is a robust solution for maintaining optimal operating temperatures and enhancing the longevity and performance of electronic systems.
Equivalent
1. LM75 by Texas Instruments - Digital temperature sensor with similar communication interface.
2. ADT7410 by Analog Devices - High accuracy digital temperature sensor.
3. TMP75 by Texas Instruments - Similar digital temperature sensor with I²C interface.
4. MCP9808 by Microchip Technology - High precision digital temperature sensor.
These alternatives offer similar functionality and communication protocols. Always verify pin compatibility and specifications for exact replacements.
Features
1. Temperature Monitoring: Measures remote and local temperatures with a high degree of accuracy. The remote sensor monitors external temperature using a diode-connected transistor, typically in a CPU or other ASIC, while local temperature is measured on the chip itself.
2. Interface: Communicates through a 2-wire SMBus/I²C-compatible interface, allowing for easy integration into system designs.
3. Alert Functionality: Provides overtemperature alarm outputs and programmable temperature limits, facilitating system protection against overheating.
4. Fan Control: Capable of controlling fan speed based on temperature measurements, optimizing cooling efficiency and noise reduction.
5. Resolution and Accuracy: Offers a high resolution of 0.125°C for temperature readings with typical accuracy levels suitable for precise thermal management.
6. Low Power Consumption: Designed to operate efficiently, minimizing impact on system power budgets.
7. Package and Operating Range: Available in a compact package, suitable for small form factor applications, and supports a wide operating temperature range.
These features make the MAX1619MEE+ ideal for use in computing and telecommunication applications where thermal regulation is critical.
Pinout
1. VCC: Power supply pin; typically connected to a 3V to 5.5V power source.
2. GND: Ground pin; serves as the reference point for all input and output voltages.
3. SDA: Serial Data Line; used for bi-directional communication on the SMBus/I²C.
4. SCL: Serial Clock Line; used to synchronize communication on the SMBus/I²C.
5. OT1: Over-Temperature Alarm Output 1; an open-drain output that indicates an over-temperature condition.
6. OT2: Over-Temperature Alarm Output 2; an additional open-drain output for a secondary threshold.
7. ADD: Address Selection Input; selects one of the possible I²C addresses for the device.
8. DXP: External Diode Connection; connects to an external diode for remote temperature sensing.
The MAX1619 is used for monitoring temperatures in various applications, providing both local and remote temperature readings.
Manufacturer
Application
1. Computers and Servers: Monitoring CPU and system temperatures to prevent overheating.
2. Networking Equipment: Ensuring optimal operating temperatures for routers, switches, and other network devices.
3. Industrial Automation: Temperature regulation in manufacturing processes and equipment.
4. Telecommunications: Managing thermal conditions in base stations and other telecom infrastructure.
5. Consumer Electronics: Used in devices like laptops and gaming consoles for thermal management.
Overall, the MAX1619MEE+ is ideal for environments where accurate and reliable temperature monitoring is crucial.