HAL® 5xy Series, Switches (Solid State)

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HAL® 5xy
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypeTechnologyPackage / CaseOutput TypeTest ConditionVoltage - SupplyCurrent - Output (Max)FeaturesFunctionPolarizationSensing RangeCurrent - Supply (Max)Operating TemperatureSupplier Device Package
HAL523UA-A
MAGNETIC SWITCH UNIPOL TO92UA-1
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
42mT Trip, 18mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92UA-1
HAL503S-E
MAGNETIC SWITCH LATCH SOT89B-1
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Latch
South Pole
10mT Trip, -10mT Release
4.2mA
-40°C ~ 140°C (TA)
SOT-89B-1
HAL504UA-A
MAGNETIC SWITCH UNIPOLAR TO92-3
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
14.5mT Trip, 5mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92UA-1
HAL516UA-A
MAGNETIC SWITCH UNIPOLAR TO92-3
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
5mT Trip, 3.8mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92-3
HAL505UA-A
MAGNETIC SWITCH LATCH TO92-3
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Latch
South Pole
17mT Trip, -17mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92-3
HAL505SF-A
MAGNETIC SWITCH LATCH SOT89B-1
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Latch
South Pole
17mT Trip, -17mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL504SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
14.5mT Trip, 5mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL508UA-A
MAGNETIC SWITCH UNIPOL TO92UA-1
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
20.7mT Trip, 13.5mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92UA-1
HAL509UA-A
MAGNETIC SWITCH UNIPOL TO92UA-1
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
30.4mT Trip, 19.9mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92UA-1
HAL519UA-A
MAGNETIC SWITCH UNIPOL TO92UA-1
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
North Pole
-2mT Trip, -7.2mT Release
4.2mA
-40°C ~ 170°C (TJ)
TO-92UA-1
HAL503SF-A
MAGNETIC SWITCH LATCH SOT89B-1
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Latch
South Pole
10mT Trip, -10mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL508SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
1+
$5.2083
5+
$4.8611
10+
$4.5139
Quantity
2,000 Available
Can ship immediately
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
20.7mT Trip, 13.5mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL509SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
30.4mT Trip, 19.9mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL516SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
1+
$6.2500
5+
$5.8333
10+
$5.4167
Quantity
2,000 Available
Can ship immediately
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
5mT Trip, 3.8mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL519SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
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Quantity
1 Available
Can ship immediately
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
North Pole
-2mT Trip, -7.2mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL523SF-A
MAGNETIC SWITCH UNIPOL SOT89B-1
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
25°C
3.8V ~ 24V
20mA
Temperature Compensated
Unipolar Switch
South Pole
42mT Trip, 18mT Release
4.2mA
-40°C ~ 170°C (TJ)
SOT-89B-1
HAL509 SF-K
MAGNETIC SWITCH SOT-89B
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
-
3.8V ~ 24V
20mA
Temperature Compensated
-
-
-
5.2mA
-40°C ~ 140°C (TJ)
SOT-89B-1
HAL519 SF-K
MAGNETIC SWITCH SOT-89B
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
-
3.8V ~ 24V
20mA
Temperature Compensated
-
-
-
5.2mA
-40°C ~ 140°C (TJ)
SOT-89B-1
HAL523 SF-K
MAGNETIC SWITCH SOT89B
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Quantity
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PCB Symbol, Footprint & 3D Model
HAL® 5xy
Surface Mount
Hall Effect
TO-243AA, Variant
Open Drain
-
3.8V ~ 24V
20mA
Temperature Compensated
-
-
-
5.2mA
-40°C ~ 140°C (TJ)
SOT-89B-1
HAL509 UA-K
MAGNETIC SWITCH TO92UA-1
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
HAL® 5xy
Through Hole
Hall Effect
TO-226-3, TO-92-3 (TO-226AA) Formed Leads
Open Drain
-
3.8V ~ 24V
20mA
Temperature Compensated
-
-
-
5.2mA
-40°C ~ 140°C (TJ)
TO-92UA-1

About  Switches (Solid State)

The products included in this category employ advanced solid-state technology to detect the presence of a magnetic field above a specified threshold and/or polarity. They provide a two-state output that indicates whether or not a magnetic field is present. These devices are different from reed switches, which use mechanical parts to perform a similar function, as well as from linear or compass-type solid-state devices that offer a variable output indicative of the strength and/or orientation of a magnetic field. Solid-state magnetic field detectors offer a reliable and highly accurate means of detecting magnetic fields in a broad range of applications. They are often utilized in industrial environments where the presence or absence of a magnetic field needs to be determined quickly and without error. These devices are designed to operate with a wide variety of magnets, including both north and south poles. Compared to traditional reed switches, solid-state magnetic field detectors offer several advantages, including increased durability, longer service life, and higher precision. They are also less susceptible to mechanical wear and tear, making them ideal for use in harsh environments where mechanical stress may be a concern. Furthermore, these devices are different from linear or compass-type solid-state devices that provide a variable output proportional to the strength and/or orientation of an applied magnetic field. While these devices can offer precise measurements of magnetic fields, they are typically more complex and require additional processing to convert the measured signals into useful data. Overall, solid-state magnetic field detectors are a critical component in a wide range of industrial applications, offering reliable and accurate detection of magnetic fields in various settings. They are easy to install, highly durable, and offer a simple and straightforward means of detecting magnetic fields without the need for complex calculations or signal processing.