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Products Home >> Incoherent Sources >> Light Emitting Diodes (LED) >> Mounted High-Power LEDs Print Friendly 
Mounted High-Power LEDs
 
 
Related Products


Mounted LED Overview

Item #ColorNominal Wavelength*Min Power
LED Output*
Max Current
M365L2UV365 nm190 mW700 mA
M385L2UV385 nm270 mW700 mA
M405L2UV405 nm410 mW1000 mA
M455L2Royal Blue455 nm900 mW1600 mA
M470L2Blue470 nm830 mW1600 mA
M505L1Cyan505 nm420 mW700 mA
M530L2Green530 nm220 mW1600 mA
M590L2Amber590 nm150 mW1600 mA
M617L2Orange617 nm390mW1600 mA
M625L2Red625 nm440 mW1600 mA
M660L2Deep Red660 nm270 mW1500 mA
M735L2Far Red735 nm260 mW1500 mA
M780L2IR780 nm160 mW1000 mA
M850L2IR850 nm320 mW1000 mA
M940L2IR940 nm320 mW1000 mA
MCWHL2Cold White6500 K650 mW1600 mA
* Specified by the LED vendor. These are typical values which may vary and depend on different parameters like the LED temperature.

Mounted LED Features

  • Optimized Thermal Properties Lead to Stable
    Output Power
  • Internal SM1 Threading for Mounting
  • Integrated EEPROM Stores LED Data
  • Collimation Adapters Available

Collimation Adapter Features

  • AR-Coated Aspheric Lens with Low f#
  • Compatible with Selected Leica, Nikon, Olympus, and Zeiss Microscopes
  • Easily Adjust Beam Collimation / Focus
  • LEDs Also Available with a Collimation Adapter Included

Each uncollimated, mounted LED consists of a single high-power LED with multiple emitters that has been mounted to the end of a heatsink (see the Stability tab). The heatsink has internal SM1 (Ø1.035"-40) threads and the same external diameter (1.20") as an SM1 lens tube, which makes it easy to integrate into most applications. The integrated EEPROM chip in each LED stores information about the LED (e.g., current limit, wavelength, and forward voltage) that can be read by Thorlabs' DC2100 and DC4100 LED Controllers. For more information about LED drivers, including the basic LEDD1B driver, see the LED Drivers tab.

Thorlabs offers three drivers, LEDD1B, DC2100, and DC4100 (requires DC4100-HUB) (see the LED Drivers tab for compatibility and driver features). The LEDD1B is capable of providing LED modulation frequencies up to 5 kHz, while DC2100 and DC4100 can modulate the LED at a rate up to 100 kHz. In addition, the DC2100 and DC4100 drivers are capable of reading the current limit from the EEPROM chip of the connected LED and automatically adjusting the max current setting to protect the LED.

Optimized Thermal Management

These high-power mounted LEDs possess good thermal stability properties, and hence, degradation of optical output power due to increased LED temperature is not an issue. For more details, please see the Stability tab.

Collimation & Microscope Adapters

Collimation adapters are available that contain an AR-coated aspheric lens and are designed to mate to the epi-illumination ports on Leica DMI (COP2), Nikon Eclipse (COP3), Olympus IX/BX (COP1), and Zeiss Axioskop (COP4) microscopes. See below for more details. Additionally, Thorlabs offers mounted LEDs with microscope adapters pre-attached. Please see the Collimated LED web page for more information.

Pin Connection

The diagram to the right shows the male connector of the MxxxLx mounted LED assembly. It is a standard M8x1 sensor circular connector. Pin 1 and 2 are the connection to the LED. Pin 3 and 4 are used for the internal EEPROM in the MxxxLx series. Please note that this pin connection diagram is not valid if you are using an LED driver that was not purchased from Thorlabs. 
Pin Out
PinSpecificationColor
1LED AnodeBrown
2LED CathodeWhite
3EEPROM GNDBlack
4EEPROM IOBlue

LED Specifications

Item #ColorDominant Wavelength*Minimum Power
LED Output*
Typical Power
LED Output*
Maximum Current
CW
Forward VoltageHalfwidth (FWHM)Typical Lifetime
M365L2UV365 nm190 mW360 mW700 mA4.4 V7.5 nm>10,000 h
M385L2UV385 nm270 mW430 mW700 mA4.3 V10 nm>10,000 h
M405L2UV405 nm410 mW760 mW1000 mA3.8 V13 nm100,000 h
M455L2Royal Blue455 nm900 mW1020 mW1600 mA3.5 V20 nm>50,000 h
M470L2Blue470 nm830 mW950 mW1600 mA3.5 V29 nm>50,000 h
M505L1Cyan505 nm420 mW420 mW700 mA6.8 V29 nm100,000 h
M530L2Green530 nm220 mW400 mW1600 mA3.5 V31 nm>50,000 h
M590L2Amber590 nm150 mW190 mW1600 mA2.5 V14 nm>50,000 h
M617L2Orange617 nm390mW570 mW1600 mA2.5 V16 nm>50,000 h
M625L2Red625 nm440 mW650 mW1600 mA2.5 V17 nm>50,000 h
M660L2Deep Red660 nm270 mW640 mW1500 mA3.0 V17 nm100,000 h
M735L2Far Red735 nm260 mW380 mW1500 mA2.5 V37 nm100,000 h
M780L2IR780 nm160 mW420 mW1000 mA2.0 V31 nm>10,000 h
M850L2IR850 nm320 mW450 mW1000 mA2.4 V34 nm100,000 h
M940L2IR940 nm320 mW460 mW1000 mA1.8 V64 nm100,000 h
MCWHL2Cold White6500 K650 mW700 mW1600 mA3.5 VN/A>50,000 h

* The specifications listed in the table above are nominal values specified by the LED manufacturer.

Stability of Optical Output Power

Normalized Power vs Timer after Switch On
Figure: Decrease of Optical Output Power due to Increasing LED Temperature

Optimized Thermal Management

The thermal dissipation performance of the MxxxL2-C series of mounted LEDs has been optimized. The heat sink is directly mounted to the LED mount so as to provide optimal thermal contact. By doing so, the degredation of optical output power that can be attributed to increased LED junction temperature is minimized (see the graph to the right).

Mounted LEDLED Drivers
Item #Color
 LEDD1B DriverDC2100 DriverDC4100 Driver
M365L2UVxxx
M385L2UVxxx
M405L2UVxxx
M455L2Royal Bluexxx
M470L2Bluexxx
M505L1Cyanxx-
M530L2Greenxxx
M590L2Amberxxx
M617L2Orangexxx
M625L2Redxxx
M660L2Deep Redxxx
M735L2Far Redxxx
M780L2IRxxx
M850L2IRxxx
M940L2IRxxx
MCWHL2Cold Whitexxx
Max. LED Driver Current Output1.2 A Max.2.0 A Max.1.0 A Max. Per Channel
Max Modulation Fequency Using External Input5 kHz100 kHz100 kHz (Simultaneous Across all Channels)
InterfaceAnalogUSB2.0USB2.0
Main Driver FeaturesVery Compact FootprintIndividual Pulse Width Control4-Channels c
EEPROM Compatible: Reads Out LED Data for LED Settings-xx
LCD Display-xx

a Automatically limits to LEDs max. current via EEPROM readout.
b LED sources with a forward voltage of greater than 5 V are not compatible with DC4100.
c The DC4100 can power and control up to four LEDs simultaneously when used with the DC4100-HUB. The LEDs on this page all require the DC4100-HUB when used with the DC4100.
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Posted Comments:
Poster: Thorlabs Posted Date: 2010-09-02 13:48:38.0
Response from Javier at Thorlabs to mjg: we offer a version of the M365L2 mounted LED which includes a condenser lens and a mounting adapter for Olympus BX & IX microscopes. The part number is M365L2-C1: http://www.thorlabs.com/NewGroupPage9.cfm?ObjectGroup_ID=2615
Poster: mjg Posted Date: 2010-09-01 18:00:01.0
Hello, Im looking to mount this unit onto the condenser column of an Olympus IX71 (i.e. to use it as a replacement for a white light source). Can you suggest a mounting solution? Thank you.
Poster: apalmentieri Posted Date: 2010-03-04 10:03:37.0
A response from Adam at Thorlabs to jrguest: The size of the LED on this device is 1x1mm^2. We will contact you directly so we can clarification on the optical invariant that you are looking for.
Poster: jrguest Posted Date: 2010-03-03 19:52:14.0
What is the size of the LED or LEDs on the device? I would like to know the optical invariant of this source.
Poster: apalmentieri Posted Date: 2010-02-17 08:48:10.0
A response from Adam at Thorlabs to Michael: It is possible to get an LED that outputs 385nm with a higher output power. I will contact you directly to get more information about your application.
Poster: michael.spurr Posted Date: 2010-02-16 06:25:57.0
Would it be possible to get an M385L1 that outputs a similar power (or as close as possible) to the M405L1? Thanks.
Poster: apalmentieri Posted Date: 2010-01-29 11:07:15.0
A response from Adam at Thorlabs to Michael: Thanks for the clarification. Just to clarify my previous statement, if you over drive the current beyond 1A, you will damage the LED beyond repair.
Poster: michael.spurr Posted Date: 2010-01-29 06:53:11.0
A response to Adam at Thorlabs: Sorry, I actually meant 1A (silly typo). The LED is currently being run at a constant voltage of just under 5V, so it is the current that I am concerned with. Thanks for the reply.
Poster: apalmentieri Posted Date: 2010-01-27 09:18:16.0
A response from Adam at Thorlabs to Michael: Typically LEDs are run at 5V or 12V. Using a voltage higher than 1V will not damage the LED if you can limit the amount of current reaching the device. LEDs are current run devices and will be damaged beyond repair if drive them with too much current. The M405L1 cannot be driven above 1000mA.
Poster: michael.spurr Posted Date: 2010-01-27 03:50:48.0
Can you tell me the risks associated with over-driving the M405L1 LED above 1V? What are the likely consequences in terms of output power and potential damage and how far above 1V would you have to go? Thanks.
Poster: klee Posted Date: 2009-10-05 16:14:12.0
A response from Ken at Thorlabs: Yes, these mounted LEDs are also plug and play compatible with the new DC2100.
Poster: acable Posted Date: 2009-10-03 15:43:41.0
Is this series of mounted LEDs plug and play compatible with the DC2100 driver.
Poster: javier Posted Date: 2009-05-06 12:56:23.0
Response from Javier at Thorlabs to booth: we currently do not offer a mounted LED with EEPROM in the 900-1500 nm range, but we can quote a special operating at 940 nm
Poster: booth Posted Date: 2009-05-05 16:27:53.0
I would like a product like the M850L1 LED source, but with longer wavelength. Something >900 and <1500nm.
Poster: Laurie Posted Date: 2008-10-31 09:50:24.0
Response from Laurie at Thorlabs to atashtoush: To modulate the MBLED you will need the LEDD1 T-Cube LED driver and a TPS001 15 V power supply. You will need to provide your own signal generator with the following requirements: Minimum Strobe Pulse Width: 50 µs Strobe Turn-On / Turn-Off Time: <25 µs. The maximum flash rate obtainable with the LEDD1 with full 100% modulation will be around 3 kHz with a maximum strobe effect up to 10 kHz. If you need to modulate at higher rates you would need to consider a laser driver. Depending on the driver, you can indirectly modulate to about 250 kHz. Above that value you need to RF modulation directly into the LED anode.
Poster: atashtoush Posted Date: 2008-10-30 15:13:41.0
Hi, can you tell me how can we modulate this led using square wave because. what voltage and offset ..... thanks
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Mounted LED with EEPROM
  Stable Output Intensity by Optimized Thermal Management
  Long Lifetime
  Output can be Modulated (with Suitable Controller)
  Compatible with Thorlabs' SM1 Lens Tubes
  Fits Inside a 30 mm Cage System
  Integrated EEPROM for Automated LED Settings
  Excel File Containing Spectrum Data for MxxxL2 Series LEDs

The diameter of the MxxxL2 heatsink equals the diameter of a standard SM1 series lens tube which can be threaded directly onto the internal SM1 threading of the LED housing.


Order
Based on your currency / country selection, your order will ship from our European warehouse  
  +1 QTY Part Number - Imperial Price Available/Ships
M365L2 Support Documentation M365L2 - UV (365 nm) Mounted High Power LED, 700 mA £272.55
Today
 
M385L2 Support Documentation M385L2 - UV (385 nm) Mounted High Power LED, 700 mA £272.55
Today
 
M405L2 Support Documentation M405L2 - UV (405 nm) Mounted High Power LED, 1000 mA £127.65
2-3 Days
 
M455L2 Support Documentation M455L2 - Royal Blue (455 nm) Mounted High Power LED, 1600 mA £87.98
2-3 Days
 
M470L2 Support Documentation M470L2 - Blue (470 nm) Mounted High Power LED, 1600 mA £87.98
2-3 Days
 
M505L1 Support Documentation M505L1 - Cyan (505 nm) Mounted LED with EEPROM, 420 mW £88.40
2-3 Days
 
M530L2 Support Documentation M530L2 - Green (530 nm) Mounted High Power LED, 1600 mA £87.98
  Lead Time
 
M590L2 Support Documentation M590L2 - Amber (590 nm) Mounted High Power LED, 1600 mA £87.98
2-3 Days
 
M617L2 Support Documentation M617L2 - Red Orange (617 nm) Mounted High Power LED, 1600 mA £87.98
  Lead Time
 
M625L2 Support Documentation M625L2 - Red (625 nm) Mounted High Power LED, 1600 mA £87.98
2-3 Days
 
M660L2 Support Documentation M660L2 - Deep Red (660 nm) Mounted High Power LED, 1500 mA £87.98
2-3 Days
 
M735L2 Support Documentation M735L2 - IR (735 nm) Mounted High Power LED, 1500 mA £87.98
Today
 
M780L2 Support Documentation M780L2 - IR (780 nm) Mounted High Power LED, 1000 mA £87.98
  Lead Time
 
M850L2 Support Documentation M850L2 - IR (850 nm) Mounted High Power LED, 1000 mA £87.98
Today
 
M940L2 Support Documentation M940L2 - IR (940 nm) Mounted High Power LED, 1000 mA £87.98
Today
 
MCWHL2 Support Documentation MCWHL2 - Cold White Mounted High Power LED, 1600 mA £87.98
2-3 Days
 

Collimation Adapter with AR Coated Aspheric Lens for Mounted LEDs

Thorlabs offers collimation adapters with AR-coated aspheric condenser lenses (EFL: 40 mm) for collimating the output from our mounted LEDs. Two AR coating options (-A: 350 - 700 nm and -B: 700 nm - 1050 nm) and four different collimator housings are available; each is designed to mate to the illumination port on a Olympus IX/BX, Leica DMI, Nikon Eclipse, or Zeiss Axioskop microscope.

The LED sources described above can be fitted to the collimators by using an SM2T2 Coupler and SM1A2 Adapter as shown opposite. The LED assemblies are then quickly interchangeable by unscrewing the LED housing and replacing it with an alternative.

LEDC29_MBLED
Compatible
Microscopes
Olympus BX
& IX Microscopes
Leica DMI
Microscopes
Nikon Eclipse
Microscopes
Zeiss Axioskop
Microscopes
AR Coating Collimating Adapters for Olympus BX \<br /\>& IX Microscopes Collimating Adapters for Leica DMI Microscopes Collimating Adapters for Nikon Eclipse Microscopes Collimating Adapters for Zeiss Axioskop Microscopes
A-Coated: 350 - 700 nm COP1-A COP2-A COP3-A COP4-A
B-Coated: 700 nm - 1050 nm COP1-B COP2-B COP3-B COP4-B

Order
Based on your currency / country selection, your order will ship from our European warehouse  
  +1 QTY Part Number - Imperial Price Available/Ships
COP1-A Support Documentation COP1-A - Collimation Adapter for Olympus BX & IX, AR Coating: 350 - 700 nm £121.23
Today
 
COP1-B Support Documentation COP1-B - Collimation Adapter for Olympus BX & IX, AR Coating: 650 - 1050 nm £141.45
Today
 
COP2-A Support Documentation COP2-A - Collimation Adapter for Leica DMI, AR Coating: 350 - 700 nm £121.23
Today
 
COP2-B Support Documentation COP2-B - Collimation Adapter for Leica DMI, AR Coating: 650 - 1050 nm £141.45
Today
 
COP3-A Support Documentation COP3-A - Collimation Adapter for Nikon Eclipse, AR Coating: 350 - 700 nm £121.23
Today
 
COP3-B Support Documentation COP3-B - Collimation Adapter for Nikon Eclipse, AR Coating: 650 - 1050 nm £141.45
Today
 
COP4-A Support Documentation COP4-A - Collimation Adapter for Zeiss Axioskop, AR Coating: 350 - 700 nm £121.23
Today
 
COP4-B Support Documentation COP4-B - Collimation Adapter for Zeiss Axioskop, AR Coating: 650 - 1050 nm £141.45
Today
 
SM1A2 Support Documentation SM1A2 - Adapter with External SM1 Threads and Internal SM2 Threads £15.30
Today
 
SM2T2 Support Documentation SM2T2 - SM2 (Ø2.035"-40) Coupler, External Threads £23.40
Today
 

Author: paul Last Updated: Jun 03, 2009
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