MMS815

Standex Electronics Permanent magnet NdFeB Round bar magnet Ø8,0mm 15,0mm

MMS815MMS815
Manufacturer Part No.
MMS815
Schukat Part No.
MMS815
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30 Pcs. in stock

Planned delivery time
Ø 21 Weeks
Life Cycle Status
The life cycle indicates which market phase the item is in. We distinguish between: • Active (green) • NRND = Not Recommended for New Designs (yellow) • LTB = Last Time Buy (yellow) • EOL = End of Life (red)
Active
Available (from stock)
Replacement / Follow-up View entire series
Data Sheet
ECAD Model
Downloads

Prices

Manufacturer bundle 100 Pcs.
Manufacturer's packaging unit (Mfr. PU) means the smallest original packaging unit of the manufacturer.
Price per 1 Pcs.

Quantity and Options

(at least 10 or multiple of 10)
All prices net plus VAT. We do not deliver to private customers.

Fact Sheet

Notice
Cross-references:
• Here you will find suitable reed contacts and reed sensors.

Type
Permanent magnet
Series
MMS
Housing
Round bar magnet
Material
NdFeB
Remanence
1,240 mT
Working temperature, max.
160 °C
Diameter
8 mm
Dimension: Length
15 mm
RoHS-Conform

Specifications

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General

Manufacturer
  • Standex Electronics
Type
  • Permanent magnet
Series
  • MMS
Product group
  • E4321
Material
  • NdFeB
Housing
  • Round bar magnet
Features
  • • Permanent Magnets made of NdFeB (neodymium-iron-boron) are recognised as having the most powerful permanent magnetic materials in the world. Other qualities include excellent stability and energy.
    • Actuating or removing the magnets is determined by the contact or the reed contact opening.
    • After installation and setting the required switching distance, the magnetic force must be selected to coordinate with the operate/decrease sensitivity of the reed switches.
    • The magnets must be axially magnetized.
    • Energy Product [EP]: 295 kJ/m³

Notice

Dimensions and Weights

Dimension: Length
  • 15 mm
Diameter
  • 8 mm

Operating conditions

Working temperature, max.
  • 160 °C

Technical Features

Material density
  • 7.6 g/cm3
Coercive field strength
  • 920 kA/m
Remanence
  • 1,240 mT