3A-QUAD
The BeamTrack series 3A-QUAD laser measurement sensor measures laser beam position well as power and energy. It has a 9.5mm aperture and can measure beam position to 0.15mm accuracy. It measures power from 100µW to 3W and energy from 20µJ to 2J.
The sensor comes with a 1.5m cable that connects it to the electronic box, and another 0.5m cable that connects the box to a Meter or PC interface.
Specification
- Low power broadband
- Ø9.5mm
- 0.19-20µm
- 100µW-3W
- 20µJ-2J
- N.A.
- Ø70 W x 30 D (mm)
- 2J
- 1kW/cm²
- 1.8 s
- 0.3J/cm²
- 2J/cm²
- 3W
- Power/Energy/Position
- CE, UKCA, China RoHS
Catalog & Manuals
FAQ
Can I measure position and size of a pulsed laser using a BeamTrack sensor?
When using a BeamTrack sensor with StarLab on a PC, can I have StarLab log Position and Size data? At what sampling rate?
Yes StarLab can log beam position. The BeamTrack sensors are thermal sensors. The power measurements for all Ophir power sensors are logged at 15 times a second. When a BeamTrack sensor is connected to StarLab via a Juno, the position / size measurements are also logged 15 times a second. When a BeamTrack sensor is connected to StarLab via a Vega/ Nova II, the position / size measurements are logged once a second. This is because in the Vega / Nova II we sample these parameters slower.
CloseAre BeamTrack sensors backwards compatible with the Nova-II, Vega and Juno devices?
The hardware of all of these devices supports the BeamTrack sensors however, the firmware may need to be upgraded. Click here for a free download of the latest firmware from our web site
CloseFor what type of laser spots can we measure position and size with BeamTrack sensors?
What meters support the BeamTrack (PPS) sensors?
Do I need to recalibrate my instrument? How often must it be recalibrated?
When using a BeamTrack sensor, is the response time for Position and Size measurements the same as it is for Power measurements?
The specified response time is only for the power and not for the size or position; response time is intentionally given in the Power section of the spec.
We haven't defined a position and size measurement response time because it depends on too many different parameters. For example:
- Small changes in size or position will respond quickly, large changes are much slower.
- Going from a large spot size to a smaller one is faster than going the other way.
- Position and size can change at the same time.
- If the power also changes it is even more complicated.
So the response time for size and position cannot be meaningfully specified by a single number. Having said all that, however:
In general, unlike the power reading which is accelerated by the predictive “speedup” function, the size and position measurements can't use the speedup so they are a bit slower.
The rise time for Position and Size is typically 5x – 10x the specified power response time.
Fall times for a decrease in power density (i.e. increase in size relative to power, as above) can be longer.
Can I use my BeamTrack Sensor with a Pulsed Laser?
The answer to this is, of course, it depends. It depends on the pulse frequency and it depends on which sensor you want to use. Thermopile detectors do not have very fast response times, so frequencies above 100Hz are effectively the same as CW to them and all BeamTrack functions will perform as expected. Below 100 Hz the response time of the detectors becomes relevant. Low power sensors generally have faster response times so they will be more susceptible to fluctuating readings when used with a pulsed laser. The position measurement function uses the same thermopile detector as the power reading. If the laser frequency is high enough for the sensor to provide a stable power reading without fluctuations then the position measurement function will perform well too. All of our BeamTrack sensors will provide reliable position measurements for pulse frequencies down to below 10 Hz. The beam size function employs a detector that has a faster response time. At low frequencies the size measurement reading will fluctuate. We don't recommend relying on the size reading for laser pulse frequencies below 100 Hz. In any event, you can always try the sensor with your laser. If the readings are stable, without significant fluctuations, then they will be reliable.
CloseBeamTrack with StarLab
Support for BeamTrack sensors with Vega, Nova II, Juno, EA-1, StarLite, and StarBright in StarLab application is now available.
For all other meters and interfaces the BeamTrack sensor behaves like a standard thermopile sensor, and therefore it is not necessary to upgrade the embedded software of the sensor.
Download Steps
In order to upgrade the embedded software in the BeamTrack sensor with the StarLab application:- Attach BeamTrack sensor to a Juno (version 1.23 or higher), a Vega / Nova-II (version 2.28 or higher), a StarLite (version 1.22 or higher), or StarBright (version 1.30 or higher).
To download the latest version of Juno, Vega, Nova-II, StarLite or StarBright firmware press here - Connect the meter to the PC and run StarLab (with version 3.20 or higher).
To download the latest StarLab version press here - Enter the diagnostic screen and select to upgrade sensor firmware (version 1.05 or higher).
To download the latest BeamTrack version press here
Note: BeamTrack sensors can't be upgraded via EA-1 interface.
- Attach BeamTrack sensor to a Juno (version 1.23 or higher), a Vega / Nova-II (version 2.28 or higher), a StarLite (version 1.22 or higher), or StarBright (version 1.30 or higher).
Videos

In this short “Basics” video we review in general how one goes about measuring laser beam power, so that you’ll have a clear basic understanding of what the different sensor types are, and when you would use which type.
Ophir new BeamTrack Sensor Series, the industry’s first thermal sensors that combine power and energy measurement, beam position, and beam size in a single compact device.
Tutorials
Ophir Power/Energy Meter Calibration Procedure and Traceability/Error Analysis
This document discusses the interpretation and basis for stated measurement accuracy of Ophir Laser Power/Energy meters.
1. General Discussion
2. Combination of Errors and Total Error
3. Analysis of Power and Energy Calibration Errors
4. Detailed Analysis of Power and Energy Calibration Errors
Laser Power Sensors introduction
As described in the general introduction, the thermopile sensor has a series of bimetallic junctions. A temperature difference between any two junctions causes a voltage to be formed between the two junctions. Since the junctions are in series and the «hot» junctions are always on the inner, hotter side, and the «cold» junctions are on the outer, cooler side, radial heat flow on the disc causes a voltage proportional to the power input. Laser power impinges on the center of the thermopile sensor disk (on the reverse side of the thermopile), flows radially and is cooled on the periphery. The array of thermocouples measures the temperature gradient, which is proportional to the incident or absorbed power. In principle, the reading is not dependent on the ambient temperature since only the temperature difference affects the voltage generated and the voltage difference depends only on the heat flow, not on the ambient temperature.
 Read more...Laser Measurements in Materials Processing: How and When They Absolutely, Positively Must Be Made
How do I know what range, or scale, to set my power/energy meter to? And what happens if I go over range?
Each given range represents one level of gain of an internal amplifier. The electronics, as always, have a limited Dynamic Range. If the measured signal is too low, in other words near the bottom of the range, then it may be lost in the noise and the reading will be inaccurate and noisy. If it’s too high – there may be saturation issues. To give an instrument a usefully wide dynamic range, multiple scales or ranges are used. Switching from range to range can be automatic (“Autorange”), or manual. Autoranging simply starts automatically at the least sensitive range and works its way down the ranges, sampling the signal as it goes, till it finds a range at which the signal is properly detected. Note, by the way, that only in POWER mode is Autoranging available. If we are working in Single Shot Energy mode, there is no Autoranging – simply because when we are measuring a single pulse, the instrument has no opportunity to work its way down the ranges as in Power mode.
 Read more...Types of power / Energy Laser Sensors General Introduction
Power and Single Shot Energy Sensors
Ophir provides two types of power sensors: Photodiode sensors and Thermal sensors. Photodiode sensors are used for low powers from picowatts up to hundreds of milliwatts and as high as 3W. Thermal sensors are for use from fractions of a milliwatt up to thousands of watts.
Thermal sensors can also measure single shot energy at pulse rates not exceeding one pulse every ~5s.
Repetitive Pulse Energy Sensors
For higher pulse rates, Ophir has pyroelectric energy sensors able to measure pulse rates up to tens of KHz. These are described in the energy sensor section, section 1.3.
5 Situations Where Laser Performance Measurement is Necessary
Specification
- Low power broadband
- Ø9.5mm
- 0.19-20µm
- 100µW-3W
- 20µJ-2J
- N.A.
- Ø70 W x 30 D (mm)
- 2J
- 1kW/cm²
- 1.8 s
- 0.3J/cm²
- 2J/cm²
- 3W
- Power/Energy/Position
- CE, UKCA, China RoHS
BeamTrack with StarLab
Support for BeamTrack sensors with Vega, Nova II, Juno, EA-1, StarLite, and StarBright in StarLab application is now available.
For all other meters and interfaces the BeamTrack sensor behaves like a standard thermopile sensor, and therefore it is not necessary to upgrade the embedded software of the sensor.
Download Steps
In order to upgrade the embedded software in the BeamTrack sensor with the StarLab application:- Attach BeamTrack sensor to a Juno (version 1.23 or higher), a Vega / Nova-II (version 2.28 or higher), a StarLite (version 1.22 or higher), or StarBright (version 1.30 or higher).
To download the latest version of Juno, Vega, Nova-II, StarLite or StarBright firmware press here - Connect the meter to the PC and run StarLab (with version 3.20 or higher).
To download the latest StarLab version press here - Enter the diagnostic screen and select to upgrade sensor firmware (version 1.05 or higher).
To download the latest BeamTrack version press here
Note: BeamTrack sensors can't be upgraded via EA-1 interface.
- Attach BeamTrack sensor to a Juno (version 1.23 or higher), a Vega / Nova-II (version 2.28 or higher), a StarLite (version 1.22 or higher), or StarBright (version 1.30 or higher).
Accessories
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SC Fiber Adapter
7Z08227This fiber adapter is used for connecting power and energy sensors to a standard SC-type fiber. Many sensors need an additional mounting bracket to connect to all fiber adapters. More information can be found in the datasheet below. -
ST Fiber Adapter
7Z08226This fiber adapter is used for connecting power and energy sensors to a standard ST-type fiber. Many sensors need an additional mounting bracket to connect to all fiber adapters. More information can be found in the datasheet below. -
FC Fiber Adapter
7Z08229This fiber adapter is used for connecting power and energy sensors to a standard FC-type fiber. Many sensors need an additional mounting bracket to connect to all fiber adapters. More information can be found in the datasheet below. -
SMA Fiber Adapter
1G01236AThis fiber adapter is used for connecting power and energy sensors to a standard SMA-type fiber. Many sensors need an additional mounting bracket to connect to all fiber adapters. More information can be found in the datasheet below. -
5m Molded Cable
7E01176B5m molded cable to connect PPS / Quad electronic box to power meter or interface. Order along with sensor to receive this instead of 0.5m cable from electronic box.
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10m Assembled Cable
7Z10299A10m assembled cable to connect PPS / Quad electronic box to power meter or interface. Order along with sensor to receive this instead of 0.5m cable from electronic box.
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SH to BNC Adapter
7Z11010Allows connection of smart sensors to voltage measuring device for measurement of raw voltage output
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Extended Warranty for Sensor
XWAR-SENSOROphir-Spiricon meters and sensors include a standard manufacturers warranty for one year. Add a one year Extended Warranty to your meter or sensor, which includes one recalibration. More info