TLE4955CXAMA1 Overview
The TLE4955CXAMA1 is a high-precision Hall effect sensor IC designed for demanding industrial and automotive applications. Engineered for robust and reliable speed sensing, this device offers excellent performance in detecting rotational speeds and positions. Its advanced signal processing and noise immunity make it suitable for harsh operating environments. The TLE4955CXAMA1 integrates seamlessly into control systems, supporting efficient and accurate feedback for motion control, safety, and automation. For sourcing and technical details, visit IC Manufacturer.
TLE4955CXAMA1 Technical Specifications
| Parameter | Value |
|---|---|
| Technology | Hall Effect IC |
| Output Type | Open Drain |
| Supply Voltage | 4.5 V to 18 V |
| Operating Temperature Range | -40??C to 170??C |
| Package | PG-SSO-3-2 |
| Magnetic Type | Unipolar |
| Current Consumption | Low Power |
| Switching Frequency | Up to 15 kHz |
| Reverse Polarity Protection | Integrated |
TLE4955CXAMA1 Key Features
- High sensitivity Hall effect sensing enables precise speed and position detection, allowing accurate control in demanding systems.
- Wide operating voltage range (4.5 V to 18 V) supports compatibility with various industrial and automotive power supplies.
- Robust design with integrated reverse polarity protection enhances system reliability and reduces external component requirements.
- Low current consumption is ideal for energy-efficient designs, minimizing power losses in continuous operation.
- Open drain output provides flexible interfacing with logic circuits and microcontrollers.
- PG-SSO-3-2 package supports compact integration, optimizing PCB layout for space-constrained applications.
- Excellent temperature stability ensures consistent performance from -40??C to 170??C, even in harsh environments.
TLE4955CXAMA1 Advantages vs Typical Alternatives
This Hall effect sensor IC stands out due to its high sensitivity, wide temperature range, and robust noise immunity. Compared to typical alternatives, it offers reliable operation under extreme conditions, integrated reverse polarity protection, and low power consumption. These attributes lead to improved accuracy, longer system lifespan, and simplified circuit design, making it ideal for both automotive and industrial motion sensing applications.
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Typical Applications
- Rotational speed sensing in automotive transmission and engine control modules, where precise feedback is critical for performance and safety.
- Industrial automation systems requiring accurate detection of moving parts or conveyor belt speeds.
- Electric motor speed monitoring and position detection in robotics, enhancing control and efficiency.
- General-purpose proximity and position sensing in harsh industrial environments, benefiting from the sensor??s ruggedness and reliability.
TLE4955CXAMA1 Brand Info
This device is offered by a leading manufacturer specializing in advanced Hall effect sensor ICs for automotive and industrial markets. The TLE4955CXAMA1 demonstrates the brand??s commitment to high-quality, reliable signal processing technology. Designed for integration into demanding applications, it delivers robust performance, safety, and ease of use, reflecting the manufacturer??s reputation for innovation and technical excellence in sensor solutions.
FAQ
What makes this Hall effect sensor suitable for high-temperature environments?
Its operating temperature range extends from -40??C up to 170??C, ensuring reliable operation even in extreme thermal conditions commonly found in automotive and industrial equipment. This robustness enables consistent sensor output regardless of ambient temperature variations.
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How does the integrated reverse polarity protection benefit system design?
The built-in reverse polarity protection safeguards the IC from incorrect power supply connections, preventing device failure and reducing the need for additional external protection components. This simplifies the overall circuit design and enhances long-term reliability.
Can this device be used in low-power applications?
Yes, the low current consumption characteristic makes it ideal for energy-sensitive systems. Applications that require continuous monitoring or battery operation benefit from its efficient power usage, contributing to overall system energy savings.
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What output configuration does the device provide for interfacing?
The open drain output design allows for flexible interfacing with various logic levels and microcontrollers. This configuration supports easy integration into both new and existing system architectures, offering versatility across different control platforms.
Is the package suitable for compact or space-limited designs?
Absolutely. The PG-SSO-3-2 package is compact, making it well-suited for installations where PCB space is at a premium. This enables designers to incorporate the sensor into dense circuit layouts without compromising performance or reliability.





