Infineon Surface Hall Effect Sensor 2.4 V 5.5V, SC-59, 3-Pin
- RS Stock No.:
- 165-6613
- Mfr. Part No.:
- TLE4913HTSA1
- Manufacturer:
- Infineon
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PHP56,067.00
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PHP62,796.00
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Units | Per Unit | Per Reel* |
|---|---|---|
| 3000 - 12000 | PHP18.689 | PHP56,067.00 |
| 15000 + | PHP16.82 | PHP50,460.00 |
*price indicative
- RS Stock No.:
- 165-6613
- Mfr. Part No.:
- TLE4913HTSA1
- Manufacturer:
- Infineon
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Infineon | |
| Product Type | Hall Effect Sensor | |
| Sensor Type | Hall Effect Sensors | |
| Technology | Chopper Technique, CMOS | |
| Mount Type | Surface | |
| Magnetic Type | Omnipolar | |
| Minimum Supply Voltage | 2.4V | |
| Maximum Supply Voltage | 5.5V | |
| Package Type | SC-59 | |
| Minimum Operating Temperature | -40°C | |
| Pin Count | 3 | |
| Maximum Operating Temperature | 85°C | |
| Standards/Approvals | Mil. Std. 883D Method 3015.7, EOS/ESD Association Standard S5.1-1993 | |
| Height | 1.1mm | |
| Width | 1.6mm | |
| Series | TLE4913 | |
| Length | 3mm | |
| Supply Current | 20μA | |
| Response Time | 93μs | |
| Select all | ||
|---|---|---|
Brand Infineon | ||
Product Type Hall Effect Sensor | ||
Sensor Type Hall Effect Sensors | ||
Technology Chopper Technique, CMOS | ||
Mount Type Surface | ||
Magnetic Type Omnipolar | ||
Minimum Supply Voltage 2.4V | ||
Maximum Supply Voltage 5.5V | ||
Package Type SC-59 | ||
Minimum Operating Temperature -40°C | ||
Pin Count 3 | ||
Maximum Operating Temperature 85°C | ||
Standards/Approvals Mil. Std. 883D Method 3015.7, EOS/ESD Association Standard S5.1-1993 | ||
Height 1.1mm | ||
Width 1.6mm | ||
Series TLE4913 | ||
Length 3mm | ||
Supply Current 20μA | ||
Response Time 93μs | ||
Infineon TLE4913 Series Hall Effect Sensor, 2.4V Minimum Supply Voltage, 5.5V Maximum Supply Voltage - TLE4913HTSA1
This Hall effect sensor provides contactless magnetic detection for compact surface-mounted electronics. It operates from low-voltage supplies and detects omnipolar magnetic fields while consuming minimal current, making it suitable for embedded sensing in constrained-power designs and environments requiring a small footprint.
Features and Benefits:
• Operates from 2.4 V-5.5V enabling flexible supply-voltage choices
• Consumes 20 μA to extend battery or low-power system runtime
• Responds within 93 μs for rapid magnetic-event detection
• Omnipolar sensing simplifies alignment for bidirectional fields
• Chopper CMOS architecture reduces offset and drift during measurement
• Consumes 20 μA to extend battery or low-power system runtime
• Responds within 93 μs for rapid magnetic-event detection
• Omnipolar sensing simplifies alignment for bidirectional fields
• Chopper CMOS architecture reduces offset and drift during measurement
Applications
• Suitable for battery-powered position sensing in portable devices
• Ideal for reed switch replacement in compact assemblies
• Used with microcontrollers for contactless rotary position feedback
• Can be used for switch detection in industrial control panels
• Suitable for small-scale flow or proximity sensing modules
• Ideal for reed switch replacement in compact assemblies
• Used with microcontrollers for contactless rotary position feedback
• Can be used for switch detection in industrial control panels
• Suitable for small-scale flow or proximity sensing modules
What package type should I account for in PCB layout?
It arrives in a miniature SC-59 surface-mount package with three pins for straightforward SMD assembly and solder-reflow processing.
How does it behave across temperature extremes?
The device maintains operation from -40 °C up to 85 °C, allowing use in a wide range of ambient conditions.
Are there any specific robustness standards met for handling and testing?
It conforms to MIL‑STD‑883D Method 3015.7 and EOS/ESD Association Standard S5.1-1993 for electrostatic and mechanical handling assessments.
What magnetic polarity is required for activation?
Detection is omnipolar so either magnetic polarity will trigger sensing without the need for orientation-specific placement.
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