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MS46LR-20-870-Q1-10X-15R-NO-FN

MS46LR-20-870-Q1-10X-15R-NO-FN

Product Overview

Category

The MS46LR-20-870-Q1-10X-15R-NO-FN belongs to the category of automotive radar sensors.

Use

It is used for advanced driver assistance systems (ADAS) in vehicles to enable features such as adaptive cruise control, collision avoidance, and automatic emergency braking.

Characteristics

  • Long-range detection capability
  • High accuracy and reliability
  • Compact and durable design
  • Integration with vehicle communication systems

Package

The MS46LR-20-870-Q1-10X-15R-NO-FN comes in a protective housing suitable for automotive applications, ensuring resistance to environmental factors and mechanical stress.

Essence

The essence of this product lies in its ability to enhance vehicle safety by providing accurate and timely information about the surrounding environment.

Packaging/Quantity

Each unit is packaged individually to prevent damage during transportation and handling. The standard quantity per package is one.

Specifications

  • Model: MS46LR-20-870-Q1-10X-15R-NO-FN
  • Operating Frequency: 24 GHz
  • Detection Range: Up to 200 meters
  • Angular Resolution: 0.1 degrees
  • Power Supply: 9-16 V
  • Operating Temperature: -40°C to 85°C
  • Dimensions: 100mm x 80mm x 30mm

Detailed Pin Configuration

The detailed pin configuration of the MS46LR-20-870-Q1-10X-15R-NO-FN is as follows: 1. Power Supply (Vcc) 2. Ground (GND) 3. CAN Bus Interface 4. Digital Output 5. Analog Output 6. Control Input 7. Diagnostic Interface 8. Antenna Connection

Functional Features

  • Long-range detection with high angular resolution
  • Integration with vehicle network for data exchange
  • Digital and analog output for compatibility with different vehicle systems
  • Built-in diagnostics for fault detection and reporting

Advantages and Disadvantages

Advantages

  • Enhanced safety through long-range and accurate object detection
  • Compatibility with various vehicle platforms
  • Robust construction for reliable performance in harsh conditions

Disadvantages

  • Higher cost compared to short-range radar sensors
  • Requires precise installation and calibration for optimal performance

Working Principles

The MS46LR-20-870-Q1-10X-15R-NO-FN operates based on the principles of frequency-modulated continuous wave (FMCW) radar. It emits radio waves and analyzes the reflected signals to determine the distance, speed, and angle of objects in its detection range.

Detailed Application Field Plans

The MS46LR-20-870-Q1-10X-15R-NO-FN is designed for integration into various vehicle models across different segments, including passenger cars, commercial vehicles, and autonomous driving platforms. Its application extends to scenarios requiring long-range object detection and tracking, such as highway driving, urban traffic, and parking assistance.

Detailed and Complete Alternative Models

  • MS36LR-18-750-Q1-8X-12R-NO-FN
  • MS52LR-22-920-Q1-12X-18R-NO-FN
  • MS60LR-24-980-Q1-15X-20R-NO-FN

In conclusion, the MS46LR-20-870-Q1-10X-15R-NO-FN represents a cutting-edge solution for long-range automotive radar sensing, offering high performance, reliability, and integration capabilities essential for modern ADAS implementations.

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技術ソリューションにおける MS46LR-20-870-Q1-10X-15R-NO-FN の適用に関連する 10 件の一般的な質問と回答をリストします。

  1. What is the purpose of MS46LR-20-870-Q1-10X-15R-NO-FN in technical solutions?

    • MS46LR-20-870-Q1-10X-15R-NO-FN is a high-performance sensor used for precise measurement and control in various technical applications.
  2. How does MS46LR-20-870-Q1-10X-15R-NO-FN contribute to technical solutions?

    • This sensor provides accurate data on pressure, temperature, and flow rates, enabling efficient monitoring and regulation of processes in technical systems.
  3. What are the key features of MS46LR-20-870-Q1-10X-15R-NO-FN that make it suitable for technical solutions?

    • The sensor offers high accuracy, reliability, and robustness, making it ideal for demanding technical environments. It also has a wide operating temperature range and excellent long-term stability.
  4. In what types of technical systems can MS46LR-20-870-Q1-10X-15R-NO-FN be integrated?

    • MS46LR-20-870-Q1-10X-15R-NO-FN can be integrated into industrial automation, HVAC (heating, ventilation, and air conditioning) systems, hydraulic and pneumatic equipment, and process control applications.
  5. How does MS46LR-20-870-Q1-10X-15R-NO-FN help improve efficiency in technical solutions?

    • By providing precise measurements and real-time data, this sensor enables optimization of processes, leading to improved energy efficiency, reduced waste, and enhanced overall system performance.
  6. What are the installation and maintenance requirements for MS46LR-20-870-Q1-10X-15R-NO-FN in technical solutions?

    • Proper installation following manufacturer guidelines and periodic calibration are essential for optimal performance. Regular maintenance checks ensure continued accuracy and reliability.
  7. Can MS46LR-20-870-Q1-10X-15R-NO-FN be customized for specific technical solution requirements?

    • Yes, the sensor can be customized to meet specific application needs, such as different pressure ranges, output signals, or environmental conditions.
  8. What are the typical challenges associated with integrating MS46LR-20-870-Q1-10X-15R-NO-FN into technical solutions?

    • Challenges may include compatibility with existing control systems, ensuring proper signal conditioning, and addressing any environmental factors that could affect sensor performance.
  9. Are there any industry standards or certifications relevant to MS46LR-20-870-Q1-10X-15R-NO-FN for technical solutions?

    • The sensor may comply with industry standards such as ISO 9001, IECEx, ATEX, or other relevant certifications, depending on the specific application requirements.
  10. What are the potential future developments or advancements for MS46LR-20-870-Q1-10X-15R-NO-FN in technical solutions?

    • Future developments may focus on enhancing communication protocols, increasing miniaturization, and further improving the sensor's performance in extreme operating conditions.