Honeywell Through Hole Linear Position Sensor -0.5 V dc 18V dc, SIP, 3-Pin
- RS庫存編號:
- 650-532
- 製造零件編號:
- 91SS12-2
- 製造商:
- Honeywell
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TWD5,073.00
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TWD5,326.65
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- 加上 514 件從 2026年8月03日 起發貨
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* 參考價格
- RS庫存編號:
- 650-532
- 製造零件編號:
- 91SS12-2
- 製造商:
- Honeywell
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選取全部 | 屬性 | 值 |
|---|---|---|
| 品牌 | Honeywell | |
| Product Type | Linear Position Sensor | |
| Sensor Type | Hall Effect Sensors | |
| Technology | Analogue | |
| Mount Type | Through Hole | |
| Magnetic Type | Linear | |
| Minimum Supply Voltage | -0.5V dc | |
| Maximum Supply Voltage | 18V dc | |
| Package Type | SIP | |
| Minimum Operating Temperature | -40°C | |
| Sensitivity | 3.75mV/g | |
| Pin Count | 3 | |
| Maximum Operating Temperature | 150°C | |
| Width | 0.6in | |
| Series | 91SS | |
| Height | 0.07mm | |
| Length | 7.62mm | |
| Standards/Approvals | RoHS | |
| Response Time | 3s | |
| Automotive Standard | No | |
| Supply Current | 19mA | |
| 選取全部 | ||
|---|---|---|
品牌 Honeywell | ||
Product Type Linear Position Sensor | ||
Sensor Type Hall Effect Sensors | ||
Technology Analogue | ||
Mount Type Through Hole | ||
Magnetic Type Linear | ||
Minimum Supply Voltage -0.5V dc | ||
Maximum Supply Voltage 18V dc | ||
Package Type SIP | ||
Minimum Operating Temperature -40°C | ||
Sensitivity 3.75mV/g | ||
Pin Count 3 | ||
Maximum Operating Temperature 150°C | ||
Width 0.6in | ||
Series 91SS | ||
Height 0.07mm | ||
Length 7.62mm | ||
Standards/Approvals RoHS | ||
Response Time 3s | ||
Automotive Standard No | ||
Supply Current 19mA | ||
- COO (Country of Origin):
- US
Honeywell 91SS12 Series Hall Effect Sensor, 3.75mV/g Sensitivity, 19mA Supply Current - 91SS12-2
This hall-effect sensor is a three-pin analogue magnetic sensor designed for inline detection of magnetic fields in electronic and electromechanical systems. It operates from a low-voltage supply and provides a linear magnetic output suited to signal conditioning in control and measurement circuits. The component is supplied in a single in-line package for through-hole mounting and is RoHS compliant.
Features and Benefits:
• 3.75mV/g sensitivity for precise magnetic-to-voltage conversion
• 19mA supply current ensuring predictable power draw for designs
• Operates from -0.5V to 18V enabling flexible supply choices
• -40°C to 150°C operating range for extreme temperature environments
• Linear magnetic response for straightforward signal processing
• Three-pin SIP through-hole format for simple PCB assembly
• 19mA supply current ensuring predictable power draw for designs
• Operates from -0.5V to 18V enabling flexible supply choices
• -40°C to 150°C operating range for extreme temperature environments
• Linear magnetic response for straightforward signal processing
• Three-pin SIP through-hole format for simple PCB assembly
Applications
• Suitable for motor commutation feedback in industrial drives
• Ideal for position sensing in factory automation equipment
• Used for magnetic proximity detection in safety interlocks
• Can be used for vibration-related magnetic monitoring systems
• Used with analogue signal chains in instrumentation panels
• Ideal for position sensing in factory automation equipment
• Used for magnetic proximity detection in safety interlocks
• Can be used for vibration-related magnetic monitoring systems
• Used with analogue signal chains in instrumentation panels
What electrical input limits should be observed to prevent damage?
Do not exceed the maximum supply voltage of 18V and avoid negative supply excursions beyond -0.5V to protect the internal circuitry.
How does the sensor behave under varying temperature conditions?
It is specified to operate over a wide temperature span from -40°C to 150°C, maintaining linear magnetic output across that range.
What mechanical mounting considerations apply for PCB integration?
The single in-line package is intended for through-hole mounting with three pins, permitting secure soldered attachment to printed circuit boards.
What current budget should designers allocate per device?
Allocate approximately 19mA of supply current per sensor when planning power distribution and thermal considerations.
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