Computerized Knife-Edge Tomography (CKET)
Beam Analyzer USB
High precision beam diagnostics for CW lasers. A wide spectral range from deep UV through 2700nm.
Wide dynamic range, beam size measurements down to 2 µm size and up to 10mm with 0.1 µm resolution.
The new USB version offers enhanced operation of the Beam Analyzer series, including: USB 2.0 interface, 12 bit device, and high resolution sampling for all blades simultaneously

Specifications
Parameters | Values |
---|---|
Sensor Type | Silicone (Si), UV-Silicon (UV-Si), InGaAs (IR), InGaAs Enhanced (IRE) |
Spectral Range | Si: 350 – 1100 nm, UV-Si: 190 – 1100 nm, IR: 800-1800 nm, IRE: 1200 – 2700 nm |
Number of Blades | 3 for BA3 heads, 7 for BA7 heads |
Beam Size Range | Depending on Sensor type- See Brochure |
Beam-width resolution | For beams > 100 μm in size: 1 μm. For beams <100 μm in size: 0.1 μm |
Beam-width accuracy | ±2% |
Power Range | For Si & UV-Si heads: 10 μW – 1 W (with filters). For InGaAs heads: 10 μW to 5 mW (no filters) |
Power Accuracy | Si & UV-Si heads:±5%, InGaAs heads: ±10% |
Position Resolution | For beams > 100 μm in size: 1 μm. For beams <100 μm in size: 0.1 μm |
Position Accuracy | ± 15 μm |
Saturation | (Si & UV-Si heads) 0.1 W/cm2 without filter, 20 W/cm2 with NG9 |
Measurement Rate | 5 Hz |
Weight | Sensor head with cable – 755 gr, manifold box 350 gr |
Operating Temperature | 0 – 35 C |
PC Interface | USB 2.0 (PCI optional) |
Optional Accessories: | |
SAM3-B | Beam Sampler, with mounting adapter- sampling reduction factor 0.0016 average |
BA-Fiber | A fiber adapter with an FC connector |
BA-Mount | A mount enabling head rotation about the optical axis |
Beam Analyzer IR10
Parameters | Values |
---|---|
Sensor Type | Silicone (Si), UV-Silicon (UV-Si), InGaAs (IR), InGaAs Enhanced (IRE) |
Spectral Range | Si: 350 – 1100 nm, UV-Si: 190 – 1100 nm, IR: 800-1800 nm, IRE: 1200 – 2700 nm |
Number of Blades | 3 for BA3 heads, 7 for BA7 heads |
Beam Size Range | Depending on Sensor type- See Brochure |
Beam-width resolution | For beams > 100 μm in size: 1 μm. For beams <100 μm in size: 0.1 μm |
Beam-width accuracy | ±2% |
Power Range | For Si & UV-Si heads: 10 μW – 1 W (with filters). For InGaAs heads: 10 μW to 5 mW (no filters) |
Power Accuracy | Si & UV-Si heads:±5%, InGaAs heads: ±10% |
Position Resolution | For beams > 100 μm in size: 1 μm. For beams <100 μm in size: 0.1 μm |
Position Accuracy | ± 15 μm |
Saturation | (Si & UV-Si heads) 0.1 W/cm2 without filter, 20 W/cm2 with NG9 |
Measurement Rate | 5 Hz |
Weight | Sensor head with cable – 755 gr, manifold box 350 gr |
Operating Temperature | 0 – 35 C |
PC Interface | USB 2.0 (PCI optional) |
Optional Accessories: | |
SAM3-B | Beam Sampler, with mounting adapter- sampling reduction factor 0.0016 average |
BA-Fiber | A fiber adapter with an FC connector |
BA-Mount | A mount enabling head rotation about the optical axis |
The application program is compatible with Windows 7/8/10 OS (32 & 64 bit). For custom integration, an SDK package software is offered as standard.
Ordering Information
Complete system including a measuring head with 2.5m long attached cable, a mounting post, a USB2.0 manifold box, software and user manual on CD, carrying case.
NG4 and NG9 filters in housing are provided for the Si and UV-Si heads only.
BA3-Si-USB: 3-blades, Si detector 5mm circular
BA7-Si-USB: 7-blades, Si detector 9mm square
BA3-UV-USB: 3-blades, UV-Si detector 5mm circular
BA7-UV-USB: 7-blades, UV-Si detector 9mm circular
BA3-IR3-USB: 3-blades, InGaAs detector 3mm circular
BA3-IR3E-USB: 3-blades,InGaAs Enhanced 3mm circular
BA7-IR3-USB: 7-blades, InGaAs detector 3mm circular
BA7-IR3E-USB: 7-blades, InGaAs Enhanced 3mm circular
BA3-IR5-USB: 3-blades, InGaAs detector 5mm circular
BA7-IR5-USB: 7-blades, InGaAs detector 5mm circular
NEW:
BA7-IR10-USB: 7-blades, InGaAs detector 10mm circular
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Duma Optronics Ltd.
Sales: sales@duma.co.il
Support: support@duma.co.il
SAM3-B Beam Sampler: with mounting adapter
Sampling reduction factor 0.0016 average
BA-Fiber: A fiber adapter with an FC connector
BA-Mount: A mount enabling head rotation about the optical axis