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MQX.tracE 2.5D X-ray inspection cabinet with operator console

MQX.tracE · 2.5D X-ray for electronics

Engineered to reveal the invisible.

India's first indigenous 2.5D PCB X-ray inspection system, built for micron-level defect detection in high-density electronic assemblies, revealing solder voids, cracks, bridging, missing BGAs and PTH fill issues that visual inspection cannot catch.

India's first indigenous 2.5D system2D and 3D CT in one platformAERB type-approvedUp to 7,500× (CT variant)

One platform. Three depths of answer.

Where 2D leaves ambiguity, MQX.tracE CT adds 3D slicing and reconstruction to isolate layers, verify internal geometry and generate evidence-ready reports without destructive sectioning. MQX.tracE | IN-3D brings inline 2D / 2.5D / 3D inspection and automated defect analysis directly into the production line. All three systems share an AI-powered imaging suite.

MQX.tracE · 2.5DHigh-magnification X-ray inspection with oblique viewingFast PCB screening and detection of known solder and assembly defects are required
MQX.tracE CTAdds CT slicing and reconstruction for layer-by-layer analysisOverlapping structures make conventional X-ray views ambiguous or detailed failure analysis is required
MQX.tracE | IN-3DInline 2D / 2.5D / 3D X-ray inspection with automated defect analysis and production-line board handlingInspection must happen directly within the SMT production flow without moving boards to an offline inspection station

MQX.tracE · 2.5D

Micron-level defect detection for electronics.

01

Micron-level defect detection

For BGAs, QFNs, QFPs and PTH solder joints, defects measured in microns rather than millimetres.

02

AI-powered software

Standardized inspection and faster reporting, with less operator subjectivity.

03

High-throughput ready

Macros and batch inspection to scan boards in sequence.

04

Large inspection coverage

Very high magnification across dense assemblies.

05

AERB-certified safety

Leakage radiation below 1 µSv/hr for operator-safe use.

System features at a glance.

MQX.tracE inspection cabinet with operator console and imaging software on screen

MQX.tracE CT

2D gives answers. CT gives certainty.

For complex electronics, 2D views can be ambiguous because layers overlap. MQX.tracE CT combines high-clarity 2D screening with 3D slicing and reconstruction, so teams can isolate layers, verify internal geometry, confirm root cause and generate evidence-ready reports, without cutting a board apart.

Acquire (2D)Slice (CT)AnalyzeReport
01

Layer-by-layer CT visibility

Separate overlapping features and reduce escapes.

02

Faster failure analysis and R&D cycles

Evidence-ready slices with no physical sectioning.

03

Standardized inspection workflows

Manual, semi-automatic and automatic modes, plus macros.

04

Advanced measurement tools

Package and semiconductor analysis with pass/fail support.

05

Safe, compliant operation

Radiation safety below 1 µSv/hr at the cabinet surface.

MQX.tracE | IN-3D inline X-ray inspection system

MQX.tracE | IN-3D

Inspection built into the SMT production flow.

An inline X-ray solution for PCB and electronic assemblies, combining 2D / 2.5D / 3D inspection, automated defect analysis, in-line board handling and Industry 4.0 integration without moving boards to an offline station.

01

Inline multimode inspection

Run routine 2D screening, oblique 2.5D inspection and full 3D analysis on one production-line platform.

02

Automated defect analysis

Standardize defect detection and retain inspection results and per-joint measurements for production traceability.

03

Production-line board handling

A linear motor and pneumatic clamping move boards through inspection without transferring them to an offline station.

04

Industry 4.0 integration

Write inspection results back to ERP and SPC systems for closed-loop quality monitoring.

Technical Specifications

Three systems, quoted separately. For 2.5D and CT, JIMA resolution describes the smallest feature the system can resolve. IN-3D detector resolution is stated as pixel pitch.

MQX.tracE · 2.5D

X-ray energy range
20 – 160 kV
Max target power
25 W
Tube type
Microfocus, open type, transmission target
JIMA resolution
0.9 µm
Detector active area
161 × 161 mm
Pixel pitch / frame rate
105 µm / 40 fps
Manipulator
6-axis, servo motors with encoder
Magnification
Geometric above 1,900×; system above 7,000×
Radiation safety
AERB type-approved; leakage below 1 µSv/hr
Footprint / weight
2200 (H) × 1800 (W) × 1900 (D) mm; approx. 4500 kg

MQX.tracE CT

Power
AC mains 220 – 230 V, 50 Hz, single phase
Anode voltage
30 – 160 kV
Target power
Up to 15 W
X-ray source
Open tube, transmission target
Resolution
0.75 µm or better
Magnification
Geometric up to 3,000×; total up to 7,500×
Imaging
Above 1 MP; 10 fps; 16-bit ADC
Manipulator
Five-axis; 360° rotation, ±70° tilt
PCB capacity
Max 440 × 550 mm; inspection area 310 × 310 mm; sample weight 5 kg
Inspection modes
Manual / semi-automatic / automatic, plus macros
CT capability
3D CT slicing and reconstruction
Radiation safety
Below 1 µSv/hr at cabinet surface
Image export
RAW / JPEG / TIFF / GIF / BMP
Vibration mitigation
Anti-vibration supports for stability

MQX.tracE | IN-3D

X-ray source
Sealed microfocus source, 130 kV, 39 W, 11 µm focal spot
Detector
High-resolution flat panel detector, 105 µm pixel pitch, 16-bit depth, 40 fps, real-time acquisition
Imaging modes
2D / 2.5D / 3D
PCB capacity
Minimum 50 × 50 mm; maximum 610 × 510 mm
PCB thickness
0.4 – 6 mm
Maximum board weight
5 – 8 kg
Board handling
Linear motor with pneumatic clamping
Dimensions with conveyor
3000 × 2186 × 1860 mm
Dimensions without conveyor
1600 × 2186 × 1860 mm
System weight
2500 kg
Software
MQS Imaging Suite on Windows, with acquisition, review and manipulator control
Production integration
Results and per-joint measurements written back to ERP and SPC

Compare all three on your own boards

Request a demonstration of MQX.tracE 2.5D, MQX.tracE CT and MQX.tracE | IN-3D against your inspection requirement.

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