Lattice Series

● High-power X-ray diffractometer.
● Desktop XRD combines high-power X-ray & photon-counting 2D array.
● Photon-counting detector delivers lab-grade XRD in minutes.

Product Overview

Introduction

The Lattice Series redefines benchtop X-ray diffraction by combining high-power performance with compact design. Equipped with a powerful 600 W (Lattice Mini) or 1600 W X-ray source and a high-efficiency, direct-read 2D photon detector, the Lattice Series delivers exceptional data intensity and accuracy—making it ideal for demanding analytical environments.

Available in three configurations—Lattice MiniLattice Basic, and Lattice Pro—this series accommodates a wide range of technical and budgetary needs, from simple phase identification to complex in-situ studies. All models offer excellent signal-to-noise ratio and fast scan speeds, providing lab-grade data from a desktop system.

Whether you’re analyzing complex powders, crystalline materials, or conducting highthroughput measurements, the Lattice Series provides lab-grade results with speed, power, and precision—all in a desktop footprint.

Features

• High-Power X-ray Source

Choose between 600 W or 1600 W configurations for high-intensity data collection and rapid scanning.

• 2D Photon Direct-Read Detector

A 256 × 256 pixel array captures sharp, high-resolution diffraction patterns with an excellent signal-to-noise ratio.

• Exceptional Angular Accuracy

Achieve step sizes as small as ±0.01° 2θ and ensure a consistent peak matching with standard reference materials.

• Flexible Goniometer Options

Theta–2Theta geometry for standard analysis (Mini & Basic) or Theta–Theta for enhanced sample stability (Pro).

• Fast, Reliable Scanning

Obtain full-spectrum data in minutes—ideal for routine QA and high-throughput labs.

• Compact Benchtop Design

Fits seamlessly into modern lab environments without sacrificing performance or requiring floor space.

• Expandable Functionality (Lattice Pro)

Supports advanced modules for residual stress testing, high-temperature stages, in-situ battery studies, and thin film analysis.

• User-Friendly Operation

Intuitive software and streamlined hardware design simplify training and daily use.

Parameters

SpecificationLattice MiniLattice BasicLattice Pro
ModelLattice MiniLattice BasicLattice Pro
X-Ray Tube Power600 W1600 W1600 W
X-Ray Tube Target MaterialStandard Cu target, Co optional
TheodoliteTheta / 2-theta, radius 158 mmTheta / 2-theta, radius 170 mmTheta / theta, radius 170 mm
Maximum Scanning Range−3° to 156°
Theta Minimum Step Size±0.01°
DetectorPhoton direct-read 2D array detector
Detector Energy Resolution0.2
Volume & WeightL 25.6 in (650 mm) × W 19.7 in (500 mm) × H 15.8 in (400 mm), 132 lbs (60 kg)L 35.5 in (900 mm) × W 26.8 in (680 mm) × H 21.7 in (500 mm), 220 lbs (100 kg)L 35.5 in (900 mm) × W 26.8 in (680 mm) × H 21.7 in (500 mm), 220 lbs (100 kg)
Sample StageStandard chip stage
OptionsN/AFive-bit injector; In situ battery test accessoriesFive-bit injector; In situ battery test accessories; High-temp sample station (customizable up to RT–600°C / RT–1000°C); Residual stress fixture (custom); Film sample stage 2.4 in (60 mm) × 2.4 in (60 mm)

Examples

Miller IndicesXRD Peak Comparison
Miller IndicesTheoretical Peak PositionMeasured Peak PositionDifference
01225.57925.5770.0020
10435.15335.1500.0030
11657.49757.4970.0000
10̅1076.87176.8720.0010
02̅1088.99788.996-0.0010
01̅14116.612116.610-0.0020

Comparison of Theoretical Peak Positions and Measured Peak Positions for Corundum Standard Sample

Test Data for Corundum Powder (10°/min)
Graphitization Degree Measurement
Measurement Spectrum for Silicon Nitride Ceramic
Reflective In-Situ Battery Measurements

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