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MK02 Reed Sensor

Description

The MK02 reed proximity switches operate when in the presence of magnetically conductive material. Instead of an actuating magnet, only a simple piece of iron is required to operate the sensor from the front or from above. These sensors are available as Form A and Form B switches.  The standard cable is a UL-listed round twin core 2 x 0.35mm2 (AWG22). 

They are an excellent alternative to inductive proximity sensors and require no power to operate.  The MK02 Series provide user the ability to set tolerances, independent of a magnet.  They are suitable for a wide range of applications including end travel sensing limit switches, position control, and security uses such as door and window control, opening recognition contact and metal fire protection doors.

Metal Detection Reed Sensor Product Spotlight


Features

  • Form A and B are available
  • High power switches available
  • Other cables, connectors and colors available
  • A choice of cable terminations and lengths are available

Applications

  • Industrial applications
  • End travel sensing limit switch in pneumatic cylinders
  • Position control
  • Door and window control
  • Fire protection doors
  • Safety and interlock sensing
  • Control functions in plant and utility vehicles
  • Opening recognition contact

Specifications

Contact Form 1A, 1B
Rated Power (W) 0 to 10
Switching Voltage (VDC) 0 to 200
Switching Current (A) 0 to 0.5
Carry Current (A) 0 to 1.25
Breakdown Voltage (Minimum VDC) 100 to 300
Activate Distance (mm) 4.5 to 10 mm

Part Search


Product search MK02 Reed Sensors
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Enquiry 2220661124 2220661124 MK02/0-1A66-12000WA - NO180 V0.5 A10 W12000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220661144 2220661144 MK02/0-1A66-1400WA - NO180 V0.5 A10 W1400 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220661454 2220661454 MK02/0-1A66-4500WA - NO180 V0.5 A10 W4500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220661504 2220661504 MK02/0-1A66-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711004 2220711004 MK02/0-1A66-10000WA - NO180 V0.5 A10 W10000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711014 2220711014 MK02/0-1A66-50WA - NO180 V0.5 A10 W50 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711034 2220711034 MK02/0-1A66-300WA - NO180 V0.5 A10 W300 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711054 2220711054 MK02/0-1A66-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711064 2220711064 MK02/0-1A66-600WA - NO180 V0.5 A10 W600 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711074 2220711074 MK02/0-1A66-700WA - NO180 V0.5 A10 W700 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711084 2220711084 MK02/0-1A66-800WA - NO180 V0.5 A10 W800 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711104 2220711104 MK02/0-1A66-1000WA - NO180 V0.5 A10 W1000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711154 2220711154 MK02/0-1A66-1500WA - NO180 V0.5 A10 W1500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711164 2220711164 MK02/0-1A66-1600WA - NO180 V0.5 A10 W1600 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711204 2220711204 MK02/0-1A66-2000WA - NO180 V0.5 A10 W2000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711254 2220711254 MK02/0-1A66-2500WA - NO180 V0.5 A10 W2500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711404 2220711404 MK02/0-1A66-4000WA - NO180 V0.5 A10 W4000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220711604 2220711604 MK02/0-1A66-6000WA - NO180 V0.5 A10 W6000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220712004 2220712004 MK02/0-1A66-20000WA - NO180 V0.5 A10 W20000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2220902014 2220902014 MK02/0-1B90-150WB/C - NC175 V0.5 A10 W150 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220902054 2220902054 MK02/0-1B90-500WB/C - NC175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220902104 2220902104 MK02/0-1B90-1000WB/C - NC175 V0.5 A10 W1000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220902154 2220902154 MK02/0-1B90-1500WB/C - NC175 V0.5 A10 W1500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220902204 2220902204 MK02/0-1B90-2000WB/C - NC175 V0.5 A10 W2000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220902304 2220902304 MK02/0U-1B90-3000WB/C - NC175 V0.5 A10 W3000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220903054 2220903054 MK02/0-1C90-500WForm C - Changeover175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2220903104 2220903104 MK02/0-1C90-1000WForm C - Changeover175 V0.5 A10 W1000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2221661504 2221661504 MK02/1-1A66-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2221711054 2221711054 MK02/1-1A66-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C
Enquiry 2221711104 2221711104 MK02/1-1A66-1000WA - NO180 V0.5 A10 W1000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2221711174 2221711174 MK02/1-1A66-1700WA - NO180 V0.5 A10 W1700 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2221711204 2221711204 MK02/1-1A66-2000WA - NO180 V0.5 A10 W2000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2221711804 2221711804 MK02/1-1A66-8000WA - NO180 V0.5 A10 W8000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2221902054 2221902054 MK02/1-1B90-500WB/C - NC175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2221902154 2221902154 MK02/1-1B90-1500WB/C - NC175 V0.5 A10 W1500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2221902304 2221902304 MK02/1-1B90-3000WB/C - NC175 V0.5 A10 W3000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2221902404 2221902404 MK02/1-1B90-4000WB/C - NC175 V0.5 A10 W4000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2221903054 2221903054 MK02/1-1C90-500WForm C - Changeover175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2222661154 2222661154 MK02/2-1A66-1500WA - NO180 V0.5 A10 W1500 MM1.25 A-5-80 GRAD C
Enquiry 2222711054 2222711054 MK02/2-1A66-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2222711204 2222711204 MK02/2-1A66-2000WA - NO180 V0.5 A10 W2000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2222711504 2222711504 MK02/2-1A66-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2222902054 2222902054 MK02/2-1B90-500WB/C - NC175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2222902104 2222902104 MK02/2-1B90-1000WB/C - NC175 V0.5 A10 W1000 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2222902154 2222902154 MK02/2-1B90-1500WB/C - NC175 V0.5 A10 W1500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2223661304 2223661304 MK02/3-1A66-3000WA - NO180 V0.5 A10 W3000 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2223711054 2223711054 MK02/3-1A66-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C10-12 AT
Enquiry 2223902054 2223902054 MK02/3-1B90-500WB/C - NC175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-16 AT
Enquiry 2224712054 2224712054 MK02/4-1A66B-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C10-15 AT
Enquiry 2224712104 2224712104 MK02/4-1A66B-1000WA - NO180 V0.5 A10 W1000 MM1.25 A-5-80 GRAD C10-15 AT
Enquiry 2224712204 2224712204 MK02/4-1A66B-2000WA - NO180 V0.5 A10 W2000 MM1.25 A-5-80 GRAD C10-15 AT
Enquiry 2224712504 2224712504 MK02/4-1A66B-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C10-15 AT
Enquiry 2224713014 2224713014 MK02/4-1A66C-150WA - NO180 V0.5 A10 W150 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224713054 2224713054 MK02/4-1A66C-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224713204 2224713204 MK02/4-1A66C-2000WA - NO180 V0.5 A10 W2000 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224713254 2224713254 MK02/4-1A66C-2500WA - NO180 V0.5 A10 W2500 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224713404 2224713404 MK02/4-1A66C-4000WA - NO180 V0.5 A10 W4000 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224713504 2224713504 MK02/4-1A66C-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C15-20 AT
Enquiry 2224715054 2224715054 MK02/4-1A66E-500WA - NO180 V0.5 A10 W500 MM1.25 A-5-80 GRAD C25-30 AT
Enquiry 2224715504 2224715504 MK02/4-1A66E-5000WA - NO180 V0.5 A10 W5000 MM1.25 A-5-80 GRAD C25-30 AT
Enquiry 2224903054 2224903054 MK02/4-1C90C-500WForm C - Changeover175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-20 AT
Enquiry 2224903704 2224903704 MK02/4-1B90C-7000WB - NC175 V0.5 A10 W7000 MM1 A-5-80 GRAD C15-20 AT
Enquiry 2224904054 2224904054 MK02/4-1B90C-500WB - NC175 V0.5 A10 W500 MM1 A-5-80 GRAD C15-20 AT
Enquiry 2226000001 2226000001 MK02/6-0A - NO170 V0.5 A10 W91140100.5 A-20-80 GRAD C
Enquiry 2227000000 2227000000 MK02/7-0A - NO200 V0.4 A10 W999 MM0.5 A-30-80 GRAD C

Literature

Handling & Precautions

Applications

Safety & Security

Test & Measurement

Test & Measurement

Linear Distance

Stock Check


Stock Check

Item no. Distributor Region Quantity Cart RFQ Inventory Date
MK02/0-1A66-500WONLINECOMPONENTS.COMUSA250RFQ5/23/2013 2:06:00 AM
MK02/0-1A66-500WMouser ElectronicsUSA193RFQ5/23/2013 1:13:00 AM
MK02/0-1A66-500WDIGI-KEYUSA5RFQ5/23/2013 12:53:00 AM
MK02/0-1A66-500WMASTER DISTRIBUTORSUSA250RFQ5/23/2013 12:00:00 AM


Magnetics


Reed Switch & Magnet Actuation
Click to AnimateActuator Type
PositionMovementActuation(s)Contact Form / Mode
Magnet Actuation 1

Bar Magnet

Parallel

Perpendicular

Single

Form A (Normally Open)


Magnet Actuation 2

Bar Magnet

Parallel

Parallel

Single

Form A (Normally Open)

Magnet Actuation 3

Bar Magnet

Parallel

Parallel

Multiple

Form A (Normally Open)

Magnet Actuation 4

Bar Magnet

Parallel

Parallel

Single

Form A (Normally Open)

Magnet Actuation 5

Bar Magnet

Adjacent

Rotary

Multiple

Form A (Normally Open)

Magnet Actuation 6

Ring Magnet

Adjacent

Rotary

Multiple

Form A (Normally Open)

Magnet Actuation 7

Ring Magnet

Adjacent

Rotary

Multiple

Form A (Normally Open)

Magnet Actuation 8

Bar Magnet

Above

Rotary

Multiple

Form A (Normally Open)

Magnet Actuation 9

Bar Magnet

Perpendicular

Perpendicular

Single

Form A (Normally Open)

Magnet Actuation 10

Bar Magnet

Perpendicular

Parallel

Multiple

Form A (Normally Open)

Magnet Actuation 11

Bar Magnet

Parallel

Parallel

Single

Form A (Normally Open)

Magnet Actuation 12

Bar Magnet

Parallel

Perpendicular

Single

Form B (Normally Closed)

Magnet Actuation 13

Bar Magnet

Parallel

Pivot

Single

Form A (Normally Open)

Magnet Actuation 14

Bar Magnet

Magnetic Shield

Fixed

Parallel

Single

Form A (Normally Open)

Magnet Actuation 15

Bar Magnet

Magnetic Shield

Fixed

Perpendicular

Single

Form A (Normally Open)

Magnet Actuation 16

Bar Magnet

Magnetic Shield

Fixed

Parallel

Single

Form A (Normally Open)

Associated Parts

Magnets in Housings

Pair any of these magnets in housings with the above corresponding reed sensor for a complete sensor system solution.  Other package styles may also be used, please consult the factory for more options.


Rectangular Magnets in Housings

M02 Magnet M04 Magnet M05 Magnet M12 Magnet M13 Magnet M21 Magnet

Cylindrical & Threaded Magnets in Housings

M11 Brass Magnet M11/M8 Plastic Magnet M11/M5 Stainless Magnet

PCB Through Hole Magnets in Housings

M06 Magnet

FAQ

Sensors

Are the hall, reed or emr sensors affected by EDI/RFI?

Are the hall, reed or emr sensors affected by EDI/RFI?

A hall sensor is affected by EDI and RFI and must be protected against them.  Reed sensors and emrs are not affected by EDI or RFI.

Are the hall, reed or emr sensors hermetically sealed?

Are the hall, reed or emr sensors hermetically sealed?

The reed sensor is the only sensor that is hermetically sealed.

What is the output dielectric strength for hall, reed or emr sensors?

What is the output dielectric strength for hall, reed or emr sensors?

A Hall sensors dielectric strength is less than 10 volts, for emrs its typically 250 VRMS, and reed sensors the dielectric strength can be up to 5000 volts.

What is the output capacitance for hall, reed or emr sensors?

What is the output capacitance for hall, reed or emr sensors?

The output capacitance for a Hall sensor is typically 100pf, a reed sensor is only 0.2 pico-farads, and emrs are typically 20 pico-farads.

What is the release time for hall, reed or emr sensors?

What is the release time for hall, reed or emr sensors?

The release time for a Hall sensor is typiclly 5µs, reed sensor 20µs and the emr 5 ms.

What is the operate time for hall, reed or emr sensors?

What is the operate time for hall, reed or emr sensors?

The operate time for a hall sensor is typically 5 µs, a reed sensor is 100µs and the emr is up to 10 ms.

How much current can be switched directly for hall, reed or emr sensors?

How much current can be switched directly for hall, reed or emr sensors?

Hall sensors can not switch any output current, the reed sensor and emr can typically switch up to 2 amps directly.

What is the output voltage range for hall, reed or emr sensors?

What is the output voltage range for hall, reed or emr sensors?

Hall sensors cannot switch any voltage directly.  Reed and emr sensors can switch up to 1000 volts directly.

How much power can you switch direcly with the hall, reed or emr sensors?

How much power can you switch direcly with the hall, reed or emr sensors?

Hall sensors supply a microwatt level signal, reed and emr sensors can switch up to 100 watts directly.

Can one switch loads directly for hall, reed or emr sensors?

Can one switch loads directly for hall, reed or emr sensors?

Only a reed and emr sensor can be switched directly.

What is the output on resistance for hall, reed or emr sensors?

What is the output on resistance for hall, reed or emr sensors?

Hall sensors are typically 200+ ohms, the reed and emr sensors are typically 50 milliohms.

Is hysteresis adjustable for hall, reed or emr sensors?

Is hysteresis adjustable for hall, reed or emr sensors?

Reed sensors can adjust the hysteresis from 35% to 95%.  Hall and EMR sensors have fixed hysteresis.

Is output polarity sensitivity critical for hall, reed or emr sensors?

Is output polarity sensitivity critical for hall, reed or emr sensors?

Yes output polarity is critical for proper switching operation with hall sensors only.

Are external circuits required for hall, reed or emr sensors?

Are external circuits required for hall, reed or emr sensors?

Yes - chopper circuits and drivers are required for the hall sensors only.

Is input polarity sensitivity an issue with hall, reed or emr sensors?

Is input polarity sensitivity an issue with hall, reed or emr sensors?

Only hall sensors are sensitive to input polarity.

Is an applied current required for a change of state with a hall, reed or EMR sensor?

Is an applied current required for a change of state with a hall, reed or EMR sensor?

A current is required for proper operation only on the Hall sensor.

Does a Hall Sensor require extra circuitry?

Does a Hall Sensor require extra circuitry?

Yes, they only supply a small milli-volt signal in the presence of a magnetic field. The signal needs to be amplified and then fed into a switching circuit.

What is Hall Effect?

What is Hall Effect?

A voltage is produced on a semiconductor material when in the presence of a magnetic field.  The voltage is proportional to the strength of the magnetic field.

What switch do I use when switching 5-15 Volts with 10 to 50 milliamps?

What switch do I use when switching 5-15 Volts with 10 to 50 milliamps?

Use ORD228, the ORD211 iridium, or the ORD311.

What switch do I use when switching 15-35 Volts with 10 to 250 milliamps?

What switch do I use when switching 15-35 Volts with 10 to 250 milliamps?

For a sensor use the ORD228 with iridium or the ORD2210 for a relay.

What reed switch do I use for low level switching?

What reed switch do I use for low level switching?

Small electromechanical relays are not good for switching low levels of voltages and currents.  Electromechanical relays need a hefty voltage and/or current to break any film buildup.  It is this film buildup that won't allow very low voltages and currents to pass through the contacts.   Reed switches are clearly the best.  Using sputtered ruthenium contacts or iridium contacts are the best materials for these low level loads.

When do you use an evacuated reed switch?

When do you use an evacuated reed switch?

Switching and breaking voltages of 250 volts and above is best done with a vacuum reed switch.  Up to 4000 volts can be effectively done with the ORD2210V as long as the current levels are not too high.  Above 4000 volts use the Hermetic reed switches.

How much voltage can a pressurized reed switch effectively open?

How much voltage can a pressurized reed switch effectively open?

Miniature reed switches less than 20 mm (0.80 inches) glass length can effectively break up to 250 Volts.  This depends on the pull-in AT (mT) used.  The higher the better.  Reed switches less than 10 mm will shrink this value to around 150 volts.  Minimizing the current flow at the time of opening will improve this value.

What is the signature of a load?

What is the signature of a load?

Reed switches whether they are used in sensors or relays all will be asked to switch some load.  Generally there are two aspects to this load.

  1. Its steady state load
  2. Is the actual switching taking place during the first 50 nanoseconds.  This is also called the signature of the load. 
This signature takes into consideration not only the steady state load but also any transient voltages or current that may be present during the first 50 nanoseconds.  These transients may be from stray capacitance, inductance in the line and/or common mode voltages.  From a reed switch designer standpoint, the signature is all there is.  The most important time during the switching of a load is that first 50 nanoseconds.  That is when all the damage to the contacts with occur if you are switching the contacts 'hot'.  If a customer is having a problem with early failures, this is the first place to look.  Equally important and not to be overlooked is what voltage and current is actually being broken when the contacts open.  Any healthy voltage and/or current present will chew up the contacts rapidly leading to sticking reed contacts.

How do I know what reed switch to select?

How do I know what reed switch to select?

There are several key factors:

  1. You need to have an idea of the required load.  What voltage and current is being switched at the time of closure for the first 50 nanoseconds?
  2. How many operations will be required during the life of the product?
  3. What are the size requirements?  How much room is needed?
  4. How will the product be mounted? Surface mount, thru hole, etc.
  5. For long life and low levels, use a ruthenium or an iridium sputtered/plated switch.
  6. For switching applications from 50 Volts to 200 volts use the Philips/Coto/Comus sputtered ruthenium switch.
  7. For switching currents 25 ma to 1 amp, the OKI thickly plated rhodium is good along with our KSK-1A35.
  8. For higher voltages above 200 volts  up to 4000 volts at relatively low current use the  OKI ORD2210V.
  9. For voltages above 1000 volts up to 10,000 volts with higher currents use the Hermetic vacuum switches.  This represents a start.  One could write a book on this subject.  Best to find out the exact customer load and run a life test with a few or several reed switches to make the final determination.

Can a magnet packaged with a reed switch be turned into a temperature sensor?

Can a magnet packaged with a reed switch be turned into a temperature sensor?

A magnet and reed switch can be turned into a temperature sensor by using a magnet that has a certain curie temperature for the temperature you want to sense.  When that curie temperature is reached the magnet loses its magnetic properties whereby the reed switch contacts open.  When the temperature drops below the curie temperature, the reed contacts will close.

Go to FAQs about Reed Switches

Go to FAQs about Reed Relays

Go to FAQs about Magnets & Magnetics

Go to FAQs about Level Sensors

Go to FAQs about Test & Operate Characteristics

Go to FAQs about Quality & Reliability

Can't find the answer for your question in our FAQ's? Please use our  contact form to submit a new question.