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Курс ЦБ на 02.05.2024
$91,78
€98,03

Honeywell SS495A2-SP

артикул SS495A2-SP
Honeywell
производитель
Hall Effect Sensor 10mA Ratiometric 5V/9V 3-Pin T/R
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Технические параметры
EU RoHS
Compliant
ECCN (US)
EAR99
Part Status
Active
HTS
8541.40.60.50
Automotive
No
PPAP
No
Magnetic Type
Ratiometric
Module/IC Classification
IC
Maximum Output Current (mA)
10
Minimum Operating Supply Voltage (V)
4.5
Typical Operating Supply Voltage (V)
5; 9
Maximum Operating Supply Voltage (V)
10.5
Maximum Supply Current (uA)
8700
Minimum Operating Temperature (В°C)
-40
Maximum Operating Temperature (В°C)
150
Packaging
Tape and Reel
Pin Count
3
Mounting
Surface Mount
Package Height
1.6
Package Length
4.06
Package Width
3
PCB changed
3
Lead Shape
Gull-wing
Описание

Board Mount Hall Effect / Magnetic Sensors Flat TO-92, 4.5Vdc Ratiometric, SMT

Sensors, Magnetic Position Sensors, PCB level Position Sensors (Miniature Plastic package)

SS41 Series Bipolar Hall Effect sensors respond to alternating North and South poles. A built-in regulator provides stable operation over 4.5 Vdc to 24 Vdc supply voltage range, and internal circuitry prevents sensor damage in case the supply voltage polarity is accidentally reversed. The SS41 Series Bipolar Hall-effect sensors are small, versatile digital Hall-effect devices that are operated by the magnetic field from a permanent magnet or an electromagnet. The open-collector sinking output voltage is easily interfaced with a wide variety of electronic circuits. NOTE: These digital Hall sensors have an operating temperature range of -40 °C to 125 °C [-40 °F to 257 °F], appropriate for commercial, consumer, and industrial environments.

SS490 Series MRL (Miniature Ratiometric Linear) sensors have a ratiometric output voltage, set by the supply voltage. It varies in proportion to the strength of the magnetic field.A new Hall effect integrated circuit chip provides increased temperature stability and sensitivity. Laser trimmed thin film resistors on the chip provide high accuracy and temperature compensation to reduce null and gain shift over temperature. The quad Hall sensing element minimizes the effects of mechanical or thermal stress on the output. The positive temperature coefficient of the sensitivity helps compensate for the negative temperature coefficients of low cost magnets, providing a robust design over a wide temperature range.

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