MAX6675

Les images sont à titre de référence seulement

MAX6675

Sensor Interface

  • Fabricant
  • Mfr. Partie #MAX6675
  • Paquet
  • Fiche de données
  • En stock11590

100% original & Nouveau

24 heures prêtes à expédier

Garantie 365 jours

RFQ et Obtenez plus de rabais

Spécifications

Vue d'ensemble

Description

The MAX6675 is a digital temperature sensor designed to measure temperatures from 0°C to 1024°C using a thermocouple, specifically the K-type thermocouple. It communicates via a Serial Peripheral Interface (SPI), allowing for easy integration with microcontrollers like Arduino and Raspberry Pi.
Key features include a built-in cold-junction compensation mechanism, a resolution of 0.25°C, and an output that is digital, minimizing noise and simplifying data retrieval. The MAX6675 operates on a supply voltage of 3V to 5V and has a low power consumption, making it suitable for battery-operated devices.
Typical applications include industrial temperature monitoring, HVAC systems, and any project requiring precise temperature measurements over a wide range. Its ease of use and reliability make it a popular choice among hobbyists and professionals alike.

Features

The MAX6675 is a digital temperature sensor designed for precise thermocouple measurements. Key features include:
1. Thermocouple Compatibility: Specifically designed to interface with K-type thermocouples.
2. Digital Output: Provides a 12-bit digital output via a Serial Peripheral Interface (SPI), enabling easy microcontroller integration.
3. Temperature Range: Operates within a wide temperature range of 0°C to 1024°C.
4. Built-in Cold Junction Compensation: Automatically compensates for temperature variations at the connection point, ensuring accurate readings.
5. Low Power Consumption: Operates on a supply voltage of 3.0V to 5.5V, making it suitable for battery-powered applications.
6. Fast Conversion: Offers a temperature conversion time of approximately 100 ms.
7. Compact Design: Available in a small surface-mount package, facilitating space-efficient designs.
8. User-Friendly Interface: Simple 4-wire SPI interface promotes straightforward communication with microcontrollers.
These features make the MAX6675 ideal for applications requiring accurate temperature measurements in industrial and consumer electronics.

Package

The MAX6675 is typically available in a 8-pin MSOP (Mini Small Outline Package) or a 8-pin SOIC (Small Outline Integrated Circuit) package type. These compact packages are designed for surface-mount applications, making them suitable for limited space on PCBs.

Pinout

The MAX6675 is a thermocouple-to-digital converter with a 8-pin configuration. Here are the pin counts and their functions:
1. VCC (Pin 1): Power supply input (3V to 5V).
2. GND (Pin 2): Ground reference.
3. SCK (Pin 3): Serial Clock input for SPI communication.
4. CS (Pin 4): Chip Select input, active low; used to initiate communication with the device.
5. MISO (Pin 5): Master In Slave Out; the data line used to send temperature data to the microcontroller.
6. Thermocouple (+) (Pin 6): Positive terminal for K-type thermocouple connection.
7. Thermocouple (-) (Pin 7): Negative terminal for K-type thermocouple connection.
8. NC (Pin 8): Not Connected; typically left unconnected.
The MAX6675 digitizes the temperature from a K-type thermocouple and communicates the data via the SPI interface, providing a temperature range of 0°C to 1024°C with a 0.25°C resolution.

Manufacturer

The MAX6675 is manufactured by Maxim Integrated, a company known for designing and manufacturing high-performance analog and mixed-signal integrated circuits. Founded in 1983, Maxim Integrated specializes in solutions for automotive, industrial, healthcare, communications, and consumer markets. The company's products include sensors, amplifiers, voltage regulators, and data converters, among others. In 2021, Maxim Integrated was acquired by Analog Devices, Inc., further expanding its portfolio and capabilities in the semiconductor industry.

Application

The MAX6675 is commonly used for temperature measurement in various applications such as industrial temperature monitoring, HVAC systems, and climate control. It's also utilized in food processing, metalworking, and laboratory experiments. Additionally, it finds applications in 3D printing and automotive systems, where accurate temperature readings are essential for performance and safety. Its SPI interface makes it suitable for integration with microcontrollers in embedded systems.

Equivalent

Equivalent products to the MAX6675 chip include the MCP9600, which also measures temperature using thermocouples, and the MAX31855, a similar thermocouple-to-digital converter with improved features. Other alternatives are the AD8495 and the TI TMP007, both of which offer thermocouple interfacing. While these products serve similar functions, they may have variations in specifications and performance, so it's essential to review datasheets for specific application requirements.

Expédition

Méthodes d'expéditionNous

offrir des services d'expédition mondiaux par DHL, FedEx, TNT, UPS ou tout autre expéditeur de votre choix.


Référence des frais d'expédition (DHL/FedEx):

DHL: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 2 à 5 jours ouvrables.

FedEx: Les frais d'expédition varient de 25 à 40 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

UPS: Les frais d'expédition vont de 25 à 45 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

TNT: Les frais d'expédition varient de 25 à 65 $ (0,5 kg), avec un délai de livraison estimé de 3 à 7 jours ouvrables.

EMS: Les frais d'expédition varient de 30 à 50 $ (0,5 kg), avec un délai de livraison estimé de 7 à 15 jours ouvrables.

Courrier aérien enregistré: Le coût d'expédition est de 2 à 4 $ (0,1 kg), avec un délai de livraison estimé de 5 à 20 jours ouvrables.

Paiements

Payment Methods

Le terme de paiement est 100% prépayé.

Actuellement, nous n'acceptons que les méthodes de paiement ci-dessous:

1. PayPal

2. Carte de crédit/débit

3. Transfert bancaire