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The NVE AD004-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 20Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD004 sensor outputs turn ON when the magnetic field exceeds the 20 Oe operate point, and OFF when the field drops below 10 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes along the standard axis (top to bottom) of the IC. The AD004 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated
Typical applications for the AD series include:
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The NVE AD005-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 40Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD005 sensor outputs turn ON when the magnetic field exceeds the 40 Oe operate point, and OFF when the field drops below 25 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes along the standard axis (top to bottom) of the IC. The AD005 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD006-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 80Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD006 sensor outputs turn ON when the magnetic field exceeds the 80 Oe operate point, and OFF when the field drops below 50 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes along the standard axis (top to bottom) of the IC. The AD006 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD021-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 20Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD021 sensor outputs turn ON when the magnetic field exceeds the 20Oe operate point, and OFF when the field drops below 10Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. The AD021 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD022-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 40Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD022 sensor outputs turn ON when the magnetic field exceeds the 40 Oe operate point, and OFF when the field drops below 25 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes across the axis of the IC. The AD022 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD024-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 28Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD024 sensor outputs turn ON when the magnetic field exceeds the 28Oe operate point, and OFF when the field drops below 14Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes across the axis of the IC. The AD024 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD024-10E precision digital magnetic sensor from NVE have a precision magnetic operate point of 28Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD024 sensor outputs turn ON when the magnetic field exceeds the 28 Oe operate point, and OFF when the field drops below 14 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes across the axis of the IC. The AD024 outputs are NPN open-collector and should have external pull-up resistors. For microcontroller interfaces, the microcontroller’s input pull-up resistors can be activated.
Typical applications for the AD series include:
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The NVE AD621-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 20Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD621 sensor outputs turn ON when the magnetic field exceeds the 20 Oe operate point, and OFF when the field drops below 10 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes across the axis of the IC. The AD621 outputs consist of one NPN open-collector current-sink and one PNP open collector current-source output. These outputs should have external pull-up and pull-down resistors. For microcontroller interfaces, the microcontroller’s input resistors can be activated.
Typical applications for the AD series include:
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The NVE AD824-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 28Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The AD824 sensor outputs turn ON when the magnetic field exceeds the 28 Oe operate point, and OFF when the field drops below 14 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes across the axis of the IC. The AD824 outputs consist of two NPN open-collector current-sink and integrated short circuit protection. The open-collector outputs should have external pull-up and pull-down resistors. For microcontroller interfaces, the microcontroller’s input resistors can be activated.
Typical applications for the AD series include:
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The NVE ADH025-00E precision digital magnetic sensor from NVE have a precision magnetic operate point of 28Oe (Typ.) with a frequency response of 0 to 100KHz and an excellent temperature and voltage perfomance. NVE’s AD Series of GMR switches are the industry standard for sensitivity and precision. These switches integrate GMR sensor elements with digital signal processing electronics, and are more precise than other magnetic sensors, with magnetic field operate points being stable over voltage and temperature extremes
The ADH025 sensor outputs turn ON when the magnetic field exceeds the 10 Oe operate point, and OFF when the field drops below 5 Oe. The output is “Omnipolar”, meaning the output will turn ON irrespective of the magnetic field polarity. Digital switching is achieved when the magnetic field passes along the standard axis (top to bottom) of the IC. The ADH025 has a NPN open-collector current-sink output and should have external pull-up and pull-down resistors. For microcontroller interfaces, the microcontroller’s input resistors can be activated.
Typical applications for the AD series include:
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The NVE ADL021-14E nanopower digital switch integrates NVE’s patented Spintronic GMR technology. Which offers a digital low-power CMOS circuitry and onboard signal processing. The ADL series from NVE is internally duty cycled at 55Hz to further reduce the power consumption which is ideal for operating from a 3.3V power supply or single lithium cell battery. The nanopower switch is extremely small in an ultraminiature ULLGA package and has a magnetic operate point of 20Oe (typ.).
The NVE ADL021-14E GMR nanopower digital switch covers the following applications:
The below table gives the full specifications of the NVE ADL series including the ADL021-14E
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The NVE ADL024-14E nanopower digital switch integrates NVE’s patented Spintronic GMR technology. Which offers a digital low-power CMOS circuitry and onboard signal processing. The ADL series from NVE is internally duty cycled at 55Hz to further reduce the power consumption which is ideal for operating from a 3.3V power supply or single lithium cell battery. The nanopower switch is extremely small in an ultraminiature ULLGA package and has a magnetic operate point of 28Oe (typ.).
The NVE ADL024-14E GMR nanopower digital switch covers the following applications:
The below table gives the full specifications of the NVE ADL series including the ADL024-14E
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The NVE ADL121-14E nanopower digital switch integrates NVE’s patented Spintronic GMR technology. Which offers a digital low-power CMOS circuitry and onboard signal processing. The ADL series from NVE is internally duty cycled at 30Hz to further reduce the power consumption which is ideal for operating from a 3.3V power supply or single lithium cell battery. The nanopower switch is extremely small in an ultraminiature ULLGA package and has a magnetic operate point of 20Oe (typ.).
The NVE ADL121-14E GMR nanopower digital switch covers the following applications:
The below table gives the full specifications of the NVE ADL series including the ADL121-14E
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The NVE ADL124-14E nanopower digital switch integrates NVE’s patented Spintronic GMR technology. Which offers a digital low-power CMOS circuitry and onboard signal processing. The ADL series from NVE is internally duty cycled at 30Hz to further reduce the power consumption which is ideal for operating from a 3.3V power supply or single lithium cell battery. The nanopower switch is extremely small in an ultraminiature ULLGA package and has a magnetic operate point of 28Oe (typ.).
The NVE ADL124-14E GMR nanopower digital switch covers the following applications:
The below table gives the full specifications of the NVE ADL series including the ADL124-14E
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The NVE ADL921-14E nanopower digital switch integrates NVE’s patented Spintronic GMR technology. Which offers a digital low-power CMOS circuitry and onboard signal processing. The ADL series from NVE is continuously operating to further reduce the power consumption which is ideal for operating from a 3.3V power supply or single lithium cell battery. The nanopower switch is extremely small in an ultraminiature ULLGA package and has a magnetic operate point of 20Oe (typ.).
The NVE ADL921-14E GMR nanopower digital switch covers the following applications:
The below table gives the full specifications of the NVE ADL series including the ADL921-14E
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