Honeywell Sensing and Productivity Solutions FSS005WNSB
Honeywell Sensing and Productivity Solutions FSS005WNSB
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Honeywell Sensing and Productivity Solutions FSS005WNSB

Manufacturer No:

FSS005WNSB

Utmel No:

1114-FSS005WNSB

Package:

-

ECAD Model:

Description:

Force Sensors & Load Cells Force Products

Quantity:

Unit Price: $73.728058

Ext Price: $73.73

Delivery:

DHLTNTUPSFedExSF-Express

Payment:

paypalvisadiscovermastercard

In Stock : 53

Minimum: 1 Multiples: 1

Qty

Unit Price

Ext Price

  • 1

    $73.728058

    $73.73

  • 10

    $69.554772

    $695.55

  • 100

    $65.617709

    $6,561.77

  • 500

    $61.903499

    $30,951.75

  • 1000

    $58.399528

    $58,399.53

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Shipping Cost

Shipping starts at $40, but some countries will exceed $40. For example (South Africa, Brazil, India, Pakistan, Israel, etc.)
The basic freight (for package ≤0.5kg or corresponding volume) depends on the time zone and country.

Shipping Method

Currently, our products are shipped through DHL, FedEx, SF, and UPS.

Delivery Time

Once the goods are shipped, estimated delivery time depends on the shipping methods you chose:

FedEx International, 5-7 business days.

The following are some common countries' logistic time.transport
  • Prepare productStep1:Prepare product
  • Vacuum packagingStep2:Vacuum packaging
  • Anti-static bagStep3:Anti-static bag
  • Individual packageStep4:Individual package
  • Packaging boxStep5:Packaging box
  • Barcode shipping labelStep6:Barcode shipping label
FSS005WNSB information

Specifications
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Product Details
Product Comparison
Honeywell Sensing and Productivity Solutions FSS005WNSB technical specifications, attributes, parameters and parts with similar specifications to Honeywell Sensing and Productivity Solutions FSS005WNSB.
  • Type
    Parameter
  • Factory Lead Time
    9 Weeks
  • 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.

    -40°C~85°C
  • 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.

    Bulk
  • 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.

    FSS-SMT
  • Published
    2013
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Active
  • Moisture Sensitivity Level (MSL)

    Moisture Sensitivity Level (MSL) is a standardized rating that indicates the susceptibility of electronic components, particularly semiconductors, to moisture-induced damage during storage and the soldering process, defining the allowable exposure time to ambient conditions before they require special handling or baking to prevent failures

    1 (Unlimited)
  • Resistance

    Resistance is a fundamental property of electronic components that measures their opposition to the flow of electric current. It is denoted by the symbol "R" and is measured in ohms (Ω). Resistance is caused by the collisions of electrons with atoms in a material, which generates heat and reduces the flow of current. Components with higher resistance will impede the flow of current more than those with lower resistance. Resistance plays a crucial role in determining the behavior and functionality of electronic circuits, such as limiting current flow, voltage division, and controlling power dissipation.

    6kOhm
  • 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.

    85°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.

    -40°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.

    3.3V~12.5V
  • Output

    In electronic components, the parameter "Output" typically refers to the signal or data that is produced by the component and sent to another part of the circuit or system. The output can be in the form of voltage, current, frequency, or any other measurable quantity depending on the specific component. The output of a component is often crucial in determining its functionality and how it interacts with other components in the circuit. Understanding the output characteristics of electronic components is essential for designing and troubleshooting electronic circuits effectively.

    Analog, Ratiometric
  • Actuator Type

    The actuator type in electronic components refers to the specific mechanism or technology used to convert electrical energy into physical motion or action. Common actuator types include electric motors, solenoids, piezoelectric actuators, and hydraulic or pneumatic cylinders. Each type has its unique characteristics, advantages, and applications, allowing them to be utilized in diverse systems such as robotics, automation, and control processes. The choice of actuator type often influences the performance, efficiency, and functionality of the overall system.

    Ball
  • 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.

    Analog
  • Operating Supply Voltage

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

    12.5V
  • 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.

    12.5V
  • 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.

    3.3V
  • 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.

    ±0.5%
  • Operating Force

    Operating force is a key parameter in electronic components, particularly in devices such as switches and buttons. It refers to the amount of force required to actuate or trigger the component, typically measured in units like grams or newtons. The operating force determines the tactile feedback and feel of the component when it is pressed or activated. It is important for ensuring user comfort and usability, as components with too high or too low operating force may lead to user fatigue or accidental activations. Manufacturers specify the operating force of components to help designers select the right components for their applications based on the desired user experience and functionality.

    0 ~ 5N
  • Includes

    Includes is a parameter in electronic components that refers to the additional features or components that are included with the main product. This could include accessories, cables, software, or any other items that come packaged with the main electronic component. The "Includes" parameter is important for consumers to know exactly what they will be receiving when they purchase the product, and it can also help them determine the overall value and functionality of the product. Manufacturers often list the included items in the product description or packaging to provide transparency and help customers make informed purchasing decisions.

    Sensor
  • 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.

    Resistive
  • Linearity

    In electronic components, linearity refers to the relationship between the input and output signals of the component. A component is said to be linear if its output is directly proportional to its input over a specified range. In other words, when the input signal changes, the output signal changes in a consistent and predictable manner without introducing distortion or non-linear effects.Linearity is an important parameter in electronic components such as amplifiers, filters, and sensors, as it determines the accuracy and fidelity of signal processing. Non-linearities in components can lead to signal distortion, harmonic generation, and other undesirable effects that can degrade the performance of electronic systems.Engineers often characterize the linearity of components by measuring parameters such as gain error, harmonic distortion, and intermodulation distortion. By ensuring that components exhibit good linearity characteristics, designers can create electronic systems that accurately process signals and faithfully reproduce the desired output.

    0.5 %
  • Actuator Style/Size

    Actuator Style/Size in electronic components refers to the physical design and dimensions of the actuator mechanism within the component. The actuator is a device that is responsible for moving or controlling a mechanism within the component, such as a switch, valve, or motor. The style refers to the specific configuration or type of actuator, while the size indicates the physical dimensions of the actuator, such as length, width, and height. Understanding the actuator style and size is important for selecting the right component for a particular application, as it determines how the component will interact with other parts of the system.

    Round 1.98mm
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    RoHS Compliant
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Download datasheets and manufacturer documentation for Honeywell Sensing and Productivity Solutions FSS005WNSB.

Product Description: Honeywell FSS005WNSB Force Sensor

1. Description

The Honeywell FSS005WNSB is a high-precision force sensor designed to measure forces within the range of 0 to 5 Newtons. This compact, round sensor features a ball actuator style with a diameter of 1.98mm, making it ideal for applications requiring precise and reliable force measurement. The sensor is part of Honeywell Sensing and Productivity Solutions' FSS-SMT series, known for its robust performance and reliability.

2. Features

  • Accuracy: The FSS005WNSB offers an accuracy of ±0.5%, ensuring precise measurements in various applications.
  • Linearity: The sensor exhibits excellent linearity of 0.5%, ensuring consistent measurement across the operating range.
  • Operating Temperature: With an operating temperature range of -40°C to 85°C, this sensor can withstand a wide range of environmental conditions.
  • Supply Voltage: The sensor is compatible with supply voltages ranging from 3.3V to 12.5V, providing flexibility in system design.
  • Output Type: The FSS005WNSB provides an analog output that is ratiometric, allowing for easy integration into various measurement systems.
  • Moisture Sensitivity Level (MSL): The sensor has a moisture sensitivity level of 1 (Unlimited), indicating that it can be stored and used in environments with high humidity without degradation.

3. Applications

The Honeywell FSS005WNSB force sensor is suitable for a variety of applications including:

Primary Applications: - Industrial Automation: For monitoring and controlling forces in industrial machinery and equipment. - Medical Devices: In medical devices such as surgical instruments or patient monitoring systems where precise force measurement is critical. - Automotive Systems: In automotive applications like brake systems or seat adjustment mechanisms.

Secondary Applications: - Robotics: For force feedback in robotic arms or grippers. - Consumer Electronics: In devices requiring precise force measurement such as gaming controllers or smart home appliances.

4. Alternative Parts

If the Honeywell FSS005WNSB is not available, alternative parts could include:

  • Honeywell FSS001WNSB: A similar force sensor with slightly different specifications but comparable performance.
  • Other Resistive Force Sensors: From other manufacturers like Omron or TE Connectivity, offering similar characteristics but potentially different form factors or interfaces.

5. Embedded Modules

The Honeywell FSS005WNSB force sensor can be integrated into various embedded modules for enhanced functionality:

  • Microcontroller Boards: Such as Arduino or Raspberry Pi boards for IoT applications.
  • Industrial Control Systems: For monitoring and controlling industrial processes.
  • Medical Instrumentation Systems: For integrating force measurement into medical diagnostic tools.

In summary, the Honeywell FSS005WNSB force sensor is a reliable and accurate component designed to meet the needs of diverse applications requiring precise force measurement capabilities within a compact form factor.

The three parts on the right have similar specifications to Honeywell Sensing and Productivity Solutions & FSS005WNSB.
FSS005WNSB Relevant information

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