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Supplier: Honeywell Sensing & IoT
Description: The SS400 Series and SS500 Series are small and versatile digital Hall-effect devices that are operated by the magnetic field from a permanent magnet or an electromagnet, and are designed to respond to alternating North and South poles, or to a South pole only. They are available in bipolar
- Input (Supply) Voltage: 3.8 to 30 volts
- Operating Temperature: -40 to 150 C
- Package Type / Mounting: Other
- Sensor Grade / Operating Range: Medical, Automotive, Industrial
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Supplier: Honeywell Sensing & IoT
Description: The SS400 Series and SS500 Series are small and versatile digital Hall-effect devices that are operated by the magnetic field from a permanent magnet or an electromagnet, and are designed to respond to alternating North and South poles, or to a South pole only. They are available in bipolar
- Input (Supply) Voltage: 3.8 to 30 volts
- Operating Temperature: -40 to 150 C
- Package Type / Mounting: Other
- Sensor Grade / Operating Range: Medical, Automotive, Industrial
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Supplier: Honeywell Sensing & IoT
Description: The SS400 Series and SS500 Series are small and versatile digital Hall-effect devices that are operated by the magnetic field from a permanent magnet or an electromagnet, and are designed to respond to alternating North and South poles, or to a South pole only. They are available in bipolar
- Input (Supply) Voltage: 3.8 to 30 volts
- Operating Temperature: -40 to 150 C
- Package Type / Mounting: Other
- Sensor Grade / Operating Range: Medical, Automotive, Industrial
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Supplier: Honeywell Sensing & IoT
Description: The SS400 Series and SS500 Series are small and versatile Hall-effect digital sensor ICs that are operated by the magnetic field from a permanent magnet or an electromagnet, and are designed to respond to alternating North and South poles, or to a South pole only. They are available in
- Input (Supply) Voltage: 3.8 to 30 volts
- Operating Temperature: -40 to 150 C
- Package Type / Mounting: Other
- Sensor Grade / Operating Range: Medical, Automotive, Industrial
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Supplier: OMEGA Engineering, Inc.
Description: shieldedENVIRONMENTA LTemperature Range: -50 to 120°C (-58 to 248°F)Vibration Limit: 500 g peakShock Limit: 5000 g peakElectromagnetic Sensitivity, Equiv. g, Max: 70 µg/gaussSealing: HermeticBase Strain Sensitivity, Max: .0002 g/microstrainPHYSICA LSensing Element Design: PZT
- Acceleration: 80 g
- Device Type: Sensor / Transducer
- Features: Battery Powered, Corrosion Resistant, Sealed
- Frequency Range: 0.5000 to 14000 Hz
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Supplier: OMEGA Engineering, Inc.
Description: Voltage: 12 VdcGrounding: Isolated case, internally shieldedENVIRONMENTA LTemperature Range: -50 to 120°C (-58 to 248°F)Vibration Limit: 500 g peakShock Limit: 5000 g peakElectromagnetic Sensitivity, Equiv. g: 30 µg/gaussBase Strain Sensitivity: 0.002 g/microstrainPHYSICA
- Acceleration: 50 g
- Device Type: Sensor / Transducer
- Features: Corrosion Resistant
- Frequency Range: 1 to 12000 Hz
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Supplier: OMEGA Engineering, Inc.
Description: ENVIRONMENTA LTemperature Range: -50 to 120°C (-58 to 248°F)Vibration Limit: 500 g peakShock Limit: 5000 g peakElectromagnetic Sensitivity, Equiv. g, Max: 70 µg/gaussSealing: Hermetic to 10-8 cc/sBase Strain Sensitivity, Max: 0.002 g/microstrainPHYSICA LWeight: 145 g (5.1
- Acceleration: 80 g
- Device Type: Sensor / Transducer
- Features: Corrosion Resistant, Sealed
- Frequency Range: 0.7000 to 10000 Hz
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Supplier: Security Engineered Machinery Co., Inc.
Description: The Model TS-1 NSA Listed Electromagnetic degausser uses proven solid-state technology to provide a 20,000 gauss erasing field ensuring complete and tape erasure of classified data. A built-in magnetic field verification system confirms field strength of every erasure cycle. Hard
- Degaussing Force: 20000 Gauss
- Standards: NSA Aprroved
- Type: Hard Drive Degausser
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New technique for crystal growth and Phase Transition in TlInS 2 Crystals
In this experiment we used an electromagnet (PHEWE mark) which generates 5000 gauss .
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Room temperature GaN-based spin polarized emitters
This testing was performed in a Faraday configuration, in which the LED is placed inside the poles of an electromagnet capable of generating up to 5000 Gauss magnetic field.
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Hall Effect Measurements are Essential for Characterizing High Carrier Mobility in Materials - Nasa Tech Briefs :: NASA Tech Briefs
• A permanent magnet or an electromagnet capable of generating field magnitudes from 500 to 5000 gauss .
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Studies on a new method of preparation of zinc sulphide useful for luminescent phosphors
A Polytronic Electromagnet type EM-100 giving a field of about 5000 gauss at 3 A for a pole-gap of 3 cm was used.
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Preparation and characterisation of some transition metal complexes with the tetraaza-16-tetraene macrocycles; dibenzo(f,n)-2,10-dimethyl-4,12-diphenyl-1,5,9,1...
The electromagnet was fed from a polytronic constant current regulator type CP 200 with the current adjusted to produce a magnetic field of 5000 gauss , The instrument was calibrated using a standard pure nickel pellet and cross- checked against Hg[Co(CNS …
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Synthesis and characterisation of some transition metal complexes with tetraaza-14-tetraene macrocyclic ligand; 2,4,9,11-tetraphenyl-1,5,8,12-tetraazacyclotetr...
The electromagnet was fed from a Polytronic constant regulator type CP-200, with the current adjusted to produce a magnetic field of 5000 gauss .
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Studies on resonance radiation of the mercury vapor
The curve could be investigated not by the Feldstiirken uber 5000 gauss because the electromagnet was already iiberlastet by the vergroBerten pole distance (it was the insertion of the AbsorptionsgefiiSes fiir notig up to 22 mms how) at these Feldstiirken, This attempt …
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Rules of Thumb in Engineering Practice
… magnet 1T 1 mT 2 mT 0.1 mT 0.2 T esu gauss gamma kiloline/in2 A/m … … Wb/A 5 cm length of 1 mm diameter wire 10 nH for very high radio mH frequencies usual radio mH to mH frequencies audio frequencies H iron core electromagnet at a scrap yard … … of very fine wire: 5000 H stathenry esu inductance …
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http://dspace.mit.edu/bitstream/handle/1721.1/53757/RLE_QPR_066_IV.pdf?sequence=1
The electromagnet has been successfully operated to fields up to 17, 000 gauss , and when new power supplies are available the field may be doubled. The present maximum operating level is 5000 amps, 180 volts (900 kilowatts).
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http://trs-new.jpl.nasa.gov/dspace/bitstream/2014/8523/1/02-1019.pdf
… 7 mm discharge chamber because of its small size and potentially high operating temperatures of the electromagnets . While medium scale Hall thrusters with 100 mm discharge chamber diameters require magnetic fields of 300 Gauss , the 50 W thruster required magnetic fields exceeding 5000 Gauss.
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