Thorlabs Inc.
Visit the Polarization Maintaining Fiber Coupled Laser Sources page for pricing and availability information

Polarization Maintaining Fiber Coupled Laser Sources

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OVERVIEW

Class 1M Laser Warning

Class 3R Laser Warning

Class 3B Laser Warning

Features

  • Standard Available Wavelengths: 635 nm, 780 nm, 1310 nm, and 1550 nm
  • Single Mode FC/PC Fiber Interface
  • Slow-Axis of the PM Fiber Aligned to the Narrow Key of the FC/PC Bulkhead Connector
  • Low Noise, Stable Output
  • Custom Wavelengths Available

The Fabry-Perot laser diode inside each unit is pigtailed to a single mode PM fiber that is terminated at an FC/PC bulkhead attached to the front panel of the unit. During the pigtailing process, the fiber alignment is actively maintained so that the polarization axis of the laser diode is aligned with the slow-axis of the PM fiber. In addition, the slow-axis of the PM fiber is aligned to the narrow key of the FC/PC bulkhead connector on the front pannel of the benchtop unit. Also found on the front panel is a display that shows the output power in mW, an on / off key, an enable button, and a knob to adjust the laser power. The back pannel includes an input that allows the laser diode drive current to be controlled via an external voltage source and a remote interlock input. All of our fiber pigtailed lasers utilize an angled fiber ferrule at the internal laser/fiber launch point to minimize reflections back into the laser diode, thereby increasing the stability of the laser diode's output.

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SPECS

Item #S1FC635PMS1FC780PMS1FC1310PMS1FC1550PM
Wavelength*635 nm780 nm1310 nm1550 nm
Min Full Output Power2.5 mW2.5 mW1.5 mW1.5 mW
Extinction Ratio*>20 dB>20 dB>23 dB>23 dB
Stability15 min: ±0.05 dB, 24 hr:±0.1 dB
(After 1 hr Warm-up at 25 ± 10 °C Ambient)
Display Accuracy±10%
Setpoint Resolution0.01 mW
AdjustmentRange~0 mW to Full Power
Environmental
Operating Temperature15 to 35 °C
Storage Temperature0 to 50 °C
AC Input115 VAC / 230 VAC (Switch Selectable) 50 - 60 Hz
Modulation Input0 - 5 V = 0 - Full Power, DC or Sine Wave Input Only
Modulation Bandwidth5 kHz Full Depth of Modulation
30 kHz Small Signal Modulation
FiberPM630-HPPM780-HPPM1300-HPPM1550-HP

* The information provided in the specifications table is meant to serve as a guideline. However, since each pigtailed laser diode is unique, the specific data is included on a specifications sheet that is shipped with the product.

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PIN DIAGRAMS

Modulation Input

BNC Female

BNC Female

0 to 5 V Max, 50 Ω

Remote Interlock

2.5 mm Mono Phono Jack

 

2.5 mm Phono Jack

In order to enable the laser source, a short circuit must be
applied across the terminals of the Remote Interlock.

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LASER SAFETY

Laser Safety and Classification

Safe practices and proper usage of safety equipment should be taken into consideration when operating lasers. The eye is susceptible to injury, even from very low levels of laser light. Thorlabs offers a range of laser safety accessories that can be used to reduce the risk of accidents or injuries. Laser emission in the visible and near infrared spectral ranges has the greatest potential for retinal injury, as the cornea and lens are transparent to those wavelengths, and the lens can focus the laser energy onto the retina. 

Alignment Tools
Laser Barriers
Enclosure Systems
Blackout Materials
Laser Glasses
Laser Viewing Cards
Laser Safety Signs
Shutter and Controllers

Safe Practices and Light Safety Accessories

  • Thorlabs recommends the use of safety eyewear whenever working with laser beams with non-negligible powers (i.e., > Class 1) since metallic tools such as screwdrivers can accidentally redirect a beam.
  • Laser goggles designed for specific wavelengths should be clearly available near laser setups to protect the wearer from unintentional laser reflections.
  • Goggles are marked with the wavelength range over which protection is afforded and the minimum optical density within that range
  • Laser Barriers and Blackout Materials can prevent direct or reflected light from leaving the experimental setup area.
  • Thorlabs' Enclosure Systems can be used to contain optical setups to isolate or minimize laser hazards.
  • All beams should be terminated at the edge of the table, and laboratory doors should be closed whenever a laser is in use.
  • Do not place laser beams at eye level.
  • Carry out experiments on an optical table such that all laser beams travel horizontally.
  • Remove unnecessary reflective items such as reflective jewelry (e.g., rings, watches, etc.) while working near the beam path.
  • Be aware that lenses and other optical devices may reflect a portion of the incident beam from the front or rear surface.
  • Operate a laser at the minimum power necessary for any operation.
  • If possible, reduce the output power of a laser during alignment procedures.
  • Use beam shutters and filters to reduce the beam power.
  • Post appropriate warning signs or labels near laser setups or rooms.
  • Use laser sign lightboxes if operating Class 3R or 4 lasers (i.e., lasers requiring the use of a safety interlock).
  • Do not use Laser Viewing Cards in place of a proper Laser Barrier or Beam Trap.

 

Laser Classification

Lasers are categorized into different classes according to their ability to cause eye and other damage. The International Electrotechnical Commission (IEC) is a global organization that prepares and publishes international standards for all electrical, electronic, and related technologies. The IEC document 60825-1 outlines the safety of laser products. A description of each class of laser is given below:

ClassDescriptionWarning Label
1This class of laser is safe under all conditions of normal use, including use with optical instruments for intrabeam viewing. Lasers in this class do not emit radiation at levels that may cause injury during normal operation, and therefore the maximum permissible exposure (MPE) cannot be exceeded. Class 1 lasers can also include enclosed, high-power lasers where exposure to the radiation is not possible without opening or shutting down the laser. Class 1
1MClass 1M lasers are safe except when used in conjunction with optical components such as telescopes and microscopes. Lasers belonging to this class emit large-diameter or divergent beams, and the MPE cannot normally be exceeded unless focusing or imaging optics are used to narrow the beam. However, if the beam is refocused, the hazard may be increased and the class may be changed accordingly. Class 1M
2Class 2 lasers, which are limited to 1 mW of visible continuous-wave radiation, are safe because the blink reflex will limit the exposure in the eye to 0.25 seconds. This category only applies to visible radiation (400 - 700 nm).Class 2
2MBecause of the blink reflex, this class of laser is classified as safe as long as the beam is not viewed through optical instruments. This laser class also applies to larger-diameter or diverging laser beams. Class 2M
3RLasers in this class are considered safe as long as they are handled with restricted beam viewing. The MPE can be exceeded with this class of laser, however, this presents a low risk level to injury. Visible, continuous-wave lasers are limited to 5 mW of output power in this class. Class 3R
3BClass 3B lasers are hazardous to the eye if exposed directly. However, diffuse reflections are not harmful. Safe handling of devices in this class includes wearing protective eyewear where direct viewing of the laser beam may occur. In addition, laser safety signs lightboxes should be used with lasers that require a safety interlock so that the laser cannot be used without the safety light turning on. Class-3B lasers must be equipped with a key switch and a safety interlock.Class 3B
4This class of laser may cause damage to the skin, and also to the eye, even from the viewing of diffuse reflections. These hazards may also apply to indirect or non-specular reflections of the beam, even from apparently matte surfaces. Great care must be taken when handling these lasers. They also represent a fire risk, because they may ignite combustible material. Class 4 lasers must be equipped with a key switch and a safety interlock. Class 4
All class 2 lasers (and higher) must display, in addition to the corresponding sign above, this triangular warning signWarning Symbol
Hide Part Numbers
Part Number
Description
Price
Availability
S1FC635PM
Fiber Coupled Laser Source 635 nm, 2.5 mW, PM
$1,560.00
Today
S1FC780PM
Fiber Coupled Laser Source 780 nm, 2.5 mW, PM
$1,600.00
Today
S1FC1310PM
Fiber Coupled Laser Source 1310 nm, 1.5 mW, PM
$1,650.00
Today
S1FC1550PM
Fiber Coupled Laser Source 1550 nm, 1.5 mW, PM
$1,650.00
Today