pid_55075109_max1617amee2bt-dallas-semiconductor-datasheet-13733878.pdf  Pinout Diagram_1
pid_55075109_max1617amee2bt-dallas-semiconductor-datasheet-13733878.pdf  Pinout Diagram_1
pid_55075109_max1617amee2bt-dallas-semiconductor-datasheet-13733878.pdf  Pinout Diagram_2
pid_55075109_max1617amee2bt-dallas-semiconductor-datasheet-13733878.pdf  Pinout Diagram_3
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Analog Devices MAX1617AMEE+T

Manufacturer No:

MAX1617AMEE+T

Manufacturer:

Analog Devices

Utmel No:

153-MAX1617AMEE+T

Package:

16-SSOP (0.154, 3.90mm Width)

ECAD Model:

Description:

Tape and Reel Digital, Local/Remote 3V ~ 5.5V Surface Mount -55°C ~ 125°C Digital, I2C ±2°C (±3°C) 0.875 B

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MAX1617AMEE+T information

Specifications
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Product Details
Analog Devices MAX1617AMEE+T technical specifications, attributes, parameters and parts with similar specifications to Analog Devices MAX1617AMEE+T.
  • Type
    Parameter
  • Lifecycle Status

    Lifecycle Status refers to the current stage of an electronic component in its product life cycle, indicating whether it is active, obsolete, or transitioning between these states. An active status means the component is in production and available for purchase. An obsolete status indicates that the component is no longer being manufactured or supported, and manufacturers typically provide a limited time frame for support. Understanding the lifecycle status is crucial for design engineers to ensure continuity and reliability in their projects.

    Production (Last Updated: 3 weeks ago)
  • Contact Plating

    Contact plating (finish) provides corrosion protection for base metals and optimizes the mechanical and electrical properties of the contact interfaces.

    Tin
  • Mounting Type

    The "Mounting Type" in electronic components refers to the method used to attach or connect a component to a circuit board or other substrate, such as through-hole, surface-mount, or panel mount.

    Surface Mount
  • Package / Case

    refers to the protective housing that encases an electronic component, providing mechanical support, electrical connections, and thermal management.

    16-SSOP (0.154, 3.90mm Width)
  • Number of Pins
    16
  • Supplier Device Package

    The parameter "Supplier Device Package" in electronic components refers to the physical packaging or housing of the component as provided by the supplier. It specifies the form factor, dimensions, and layout of the component, which are crucial for compatibility and integration into electronic circuits and systems. The supplier device package information typically includes details such as the package type (e.g., DIP, SOP, QFN), number of pins, pitch, and overall size, allowing engineers and designers to select the appropriate component for their specific application requirements. Understanding the supplier device package is essential for proper component selection, placement, and soldering during the manufacturing process to ensure optimal performance and reliability of the electronic system.

    16-QSOP
  • Schedule B
    8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/8542390000/85
  • Manufacturer Lifecycle Status
    PRODUCTION (Last Updated: 3 weeks ago)
  • RoHS
    Compliant
  • Package
    Tape & Reel (TR);Cut Tape (CT);Digi-Reel®;
  • Base Product Number

    "Base Product Number" (BPN) refers to the fundamental identifier assigned to a component by the manufacturer. This number is used to identify a specific product family or series of components that share common features, characteristics, or functionality. The BPN is usually part of a larger part number or order code that includes additional information, such as variations in packaging, tolerance, voltage ratings, and other specifications.

    MAX1617
  • Mfr
    Analog Devices Inc./Maxim Integrated
  • Product Status
    Active
  • Test Conditions
    60°C ~ 100°C (-40°C ~ 125°C)
  • MSL
    MSL 1 - Unlimited
  • Maximum Operating Temperature

    the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    + 125 C
  • Supply Voltage-Max
    5.5 V
  • Minimum Operating Temperature
    - 55 C
  • Supply Voltage-Min
    3 V
  • Mounting Styles
    SMD/SMT
  • Interface Type
    2-Wire, I2C, SMBus
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Tape and Reel
  • Operating Temperature

    The operating temperature is the range of ambient temperature within which a power supply, or any other electrical equipment, operate in. This ranges from a minimum operating temperature, to a peak or maximum operating temperature, outside which, the power supply may fail.

    -55°C ~ 125°C
  • Series

    In electronic components, the "Series" refers to a group of products that share similar characteristics, designs, or functionalities, often produced by the same manufacturer. These components within a series typically have common specifications but may vary in terms of voltage, power, or packaging to meet different application needs. The series name helps identify and differentiate between various product lines within a manufacturer's catalog.

    -
  • Max Operating Temperature

    The Maximum Operating Temperature is the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    125 °C
  • Min Operating Temperature

    The "Min Operating Temperature" parameter in electronic components refers to the lowest temperature at which the component is designed to operate effectively and reliably. This parameter is crucial for ensuring the proper functioning and longevity of the component, as operating below this temperature may lead to performance issues or even damage. Manufacturers specify the minimum operating temperature to provide guidance to users on the environmental conditions in which the component can safely operate. It is important to adhere to this parameter to prevent malfunctions and ensure the overall reliability of the electronic system.

    -55 °C
  • Voltage - Supply

    Voltage - Supply refers to the range of voltage levels that an electronic component or circuit is designed to operate with. It indicates the minimum and maximum supply voltage that can be applied for the device to function properly. Providing supply voltages outside this range can lead to malfunction, damage, or reduced performance. This parameter is critical for ensuring compatibility between different components in a circuit.

    3V ~ 5.5V
  • Output Type

    The "Output Type" parameter in electronic components refers to the type of signal or data that is produced by the component as an output. This parameter specifies the nature of the output signal, such as analog or digital, and can also include details about the voltage levels, current levels, frequency, and other characteristics of the output signal. Understanding the output type of a component is crucial for ensuring compatibility with other components in a circuit or system, as well as for determining how the output signal can be utilized or processed further. In summary, the output type parameter provides essential information about the nature of the signal that is generated by the electronic component as its output.

    Digital, I2C
  • Operating Supply Voltage

    The voltage level by which an electrical system is designated and to which certain operating characteristics of the system are related.

    5.5 V
  • Configuration

    The parameter "Configuration" in electronic components refers to the specific arrangement or setup of the components within a circuit or system. It encompasses how individual elements are interconnected and their physical layout. Configuration can affect the functionality, performance, and efficiency of the electronic system, and may influence factors such as signal flow, impedance, and power distribution. Understanding the configuration is essential for design, troubleshooting, and optimizing electronic devices.

    Local, Remote
  • Interface

    In electronic components, the term "Interface" refers to the point at which two different systems, devices, or components connect and interact with each other. It can involve physical connections such as ports, connectors, or cables, as well as communication protocols and standards that facilitate the exchange of data or signals between the connected entities. The interface serves as a bridge that enables seamless communication and interoperability between different parts of a system or between different systems altogether. Designing a reliable and efficient interface is crucial in ensuring proper functionality and performance of electronic components and systems.

    2-Wire, I2C, SMBus
  • Max Supply Voltage

    In general, the absolute maximum common-mode voltage is VEE-0.3V and VCC+0.3V, but for products without a protection element at the VCC side, voltages up to the absolute maximum rated supply voltage (i.e. VEE+36V) can be supplied, regardless of supply voltage.

    5.5 V
  • Min Supply Voltage

    The minimum supply voltage (V min ) is explored for sequential logic circuits by statistically simulating the impact of within-die process variations and gate-dielectric soft breakdown on data retention and hold time.

    3 V
  • Operating Supply Current

    Operating Supply Current, also known as supply current or quiescent current, is a crucial parameter in electronic components that indicates the amount of current required for the device to operate under normal conditions. It represents the current drawn by the component from the power supply while it is functioning. This parameter is important for determining the power consumption of the component and is typically specified in datasheets to help designers calculate the overall power requirements of their circuits. Understanding the operating supply current is essential for ensuring proper functionality and efficiency of electronic systems.

    120 µA
  • Accuracy

    Accuracy in electronic components refers to the degree to which a measured value agrees with the true or accepted value. It evaluates the precision of a component in providing correct output or measurement under specified conditions. High accuracy indicates minimal deviation from the actual value, while low accuracy shows significant error in measurement. This parameter is crucial in applications where precise data is essential for reliable performance and decision-making.

    +/- 3 C
  • Resolution

    Resolution in electronic components refers to the smallest increment of measurement or change that can be detected or represented by the component. It is a crucial specification in devices such as sensors, displays, and converters, as it determines the level of detail or accuracy that can be achieved. For example, in a digital camera, resolution refers to the number of pixels that make up an image, with higher resolution indicating a greater level of detail. In analog-to-digital converters, resolution is the number of discrete values that can be represented in the digital output, determining the precision of the conversion process. Overall, resolution plays a significant role in determining the performance and capabilities of electronic components in various applications.

    0.875 B
  • Sensor Type

    In electronic components, the parameter "Sensor Type" refers to the specific type of sensor technology used in a particular component to detect and measure physical phenomena such as light, temperature, pressure, motion, or proximity. Different sensor types utilize various principles and mechanisms to convert the detected input into an electrical signal that can be processed by the electronic component. Common sensor types include photodiodes, thermistors, accelerometers, and proximity sensors, each designed for specific applications and environments. Understanding the sensor type is crucial for selecting the right component for a given task and ensuring accurate and reliable sensing capabilities in electronic systems.

    Digital, Local/Remote
  • Max Supply Voltage (DC)

    The parameter "Max Supply Voltage (DC)" in electronic components refers to the maximum voltage that can be safely applied to the component without causing damage. This specification is crucial for ensuring the reliable operation and longevity of the component within a given circuit. Exceeding the maximum supply voltage can lead to overheating, breakdown of internal components, or even permanent damage. It is important to carefully adhere to this specification when designing or using electronic circuits to prevent potential failures and ensure the safety of the components.

    5.5 V
  • Min Supply Voltage (DC)

    The parameter "Min Supply Voltage (DC)" in electronic components refers to the minimum voltage level required for the component to operate properly. It indicates the lowest voltage that can be safely applied to the component without causing damage or malfunction. This parameter is crucial for ensuring the reliable and stable operation of the component within its specified operating range. It is important for designers and engineers to adhere to the specified minimum supply voltage to prevent potential issues such as erratic behavior, reduced performance, or permanent damage to the component.

    3 V
  • Accuracy - Highest (Lowest)

    In electronic components, "Accuracy - Highest (Lowest)" refers to the range within which the actual value of a parameter can deviate from the ideal or specified value. The term "Highest" indicates the upper limit of this range, while "Lowest" indicates the lower limit. For example, if a component has an accuracy of ±5%, the highest accuracy would mean that the actual value could be within 5% above the specified value, while the lowest accuracy would mean it could be within 5% below the specified value. This parameter is crucial for ensuring the reliability and performance of electronic devices by determining how closely the component's output matches the desired value.

    ±2°C (±3°C)
  • Sensing Temperature - Local

    Sensing Temperature - Local refers to the capability of an electronic component to measure the temperature in its immediate environment or vicinity. This parameter is crucial for applications that require monitoring of temperature for performance, safety, or stability purposes. It often involves temperature sensors integrated within components like microcontrollers, power regulators, or other integrated circuits. The local sensing allows for accurate temperature readings that help in adjusting operational conditions, ensuring optimal performance, and preventing thermal-related failures.

    -55°C ~ 125°C
  • Sensing Temperature - Remote

    Sensing Temperature - Remote refers to the capability of electronic components to measure temperature at a location that is distant from the main control unit or sensor. This parameter typically involves the use of external temperature probes or sensors that are connected to a monitoring device, allowing for accurate temperature readings in environments that are difficult to access. Remote sensing is crucial in applications like HVAC systems, industrial processes, and environmental monitoring, where precise temperature data is needed from various locations.

    -55°C ~ 125°C
  • Features

    In the context of electronic components, the term "Features" typically refers to the specific characteristics or functionalities that a particular component offers. These features can vary depending on the type of component and its intended use. For example, a microcontroller may have features such as built-in memory, analog-to-digital converters, and communication interfaces like UART or SPI.When evaluating electronic components, understanding their features is crucial in determining whether they meet the requirements of a particular project or application. Engineers and designers often look at features such as operating voltage, speed, power consumption, and communication protocols to ensure compatibility and optimal performance.In summary, the "Features" parameter in electronic components describes the unique attributes and capabilities that differentiate one component from another, helping users make informed decisions when selecting components for their electronic designs.

    One-Shot, Standby Mode
  • Shutdown

    The parameter "Shutdown" in electronic components refers to a state in which a device is turned off or enters a low-power mode to conserve energy. In this mode, the component typically reduces its power consumption significantly and may disable its outputs or functions. The shutdown feature is often controlled by an external signal or voltage level, allowing for efficient power management in various applications. It is commonly used in integrated circuits, voltage regulators, and power amplifiers to enhance battery life and overall system efficiency.

    No Shutdown
  • REACH SVHC

    The parameter "REACH SVHC" in electronic components refers to the compliance with the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation regarding Substances of Very High Concern (SVHC). SVHCs are substances that may have serious effects on human health or the environment, and their use is regulated under REACH to ensure their safe handling and minimize their impact.Manufacturers of electronic components need to declare if their products contain any SVHCs above a certain threshold concentration and provide information on the safe use of these substances. This information allows customers to make informed decisions about the potential risks associated with using the components and take appropriate measures to mitigate any hazards.Ensuring compliance with REACH SVHC requirements is essential for electronics manufacturers to meet regulatory standards, protect human health and the environment, and maintain transparency in their supply chain. It also demonstrates a commitment to sustainability and responsible manufacturing practices in the electronics industry.

    Unknown
  • Radiation Hardening

    Radiation hardening is the process of making electronic components and circuits resistant to damage or malfunction caused by high levels of ionizing radiation, especially for environments in outer space (especially beyond the low Earth orbit), around nuclear reactors and particle accelerators, or during nuclear accidents or nuclear warfare.

    No
  • Lead Free

    Lead Free is a term used to describe electronic components that do not contain lead as part of their composition. Lead is a toxic material that can have harmful effects on human health and the environment, so the electronics industry has been moving towards lead-free components to reduce these risks. Lead-free components are typically made using alternative materials such as silver, copper, and tin. Manufacturers must comply with regulations such as the Restriction of Hazardous Substances (RoHS) directive to ensure that their products are lead-free and environmentally friendly.

    Lead Free
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Download datasheets and manufacturer documentation for Analog Devices MAX1617AMEE+T.

Product Description:

The MAX1617AMEE+T is a high-accuracy, digital temperature sensor from Analog Devices, designed for a wide range of applications. This 2-wire, I2C, and SMBus interface temperature sensor operates over a temperature range of -55°C to 125°C, making it suitable for various industrial, automotive, and consumer applications.

Features:

  • One-shot and standby mode for power-saving
  • High accuracy of ±2°C (±3°C) for precise temperature measurement
  • Operating supply voltage range of 3V to 5.5V
  • Low operating supply current of 120 μA
  • Lead-free and RoHS-compliant
  • Surface mount packaging for easy integration

Applications:

  • Industrial temperature monitoring and control systems
  • Automotive engine management and temperature monitoring
  • Consumer electronics, such as smart home devices and thermostats
  • Medical devices, including temperature monitoring and control systems

Alternative Parts:

  • MAX1617AMEE+T is a replacement for other temperature sensors, such as:
    • MAX1617AMEE+T
    • MAX1617AMEE+T
    • MAX1617AMEE+T

Embedded Modules:

  • This component is used in various embedded modules, including:
    • Industrial temperature monitoring and control systems
    • Automotive engine management and temperature monitoring
    • Consumer electronics, such as smart home devices and thermostats

FAQs:

Q: What is the operating temperature range of the MAX1617AMEE+T? A: The operating temperature range is -55°C to 125°C.

Q: What is the accuracy of the MAX1617AMEE+T? A: The accuracy is ±2°C (±3°C).

Q: What is the supply voltage range of the MAX1617AMEE+T? A: The supply voltage range is 3V to 5.5V.

Q: Is the MAX1617AMEE+T lead-free and RoHS-compliant? A: Yes, the MAX1617AMEE+T is lead-free and RoHS-compliant.

Q: What is the packaging type of the MAX1617AMEE+T? A: The packaging type is Tape and Reel (TR), Cut Tape (CT), and Digi-Reel?.