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Laser Line Scan Confocal Microscope | SIMTRUM Photonics Store

Laser Line Scan Confocal Microscope
SIMSCOP L Series Line Scan Confocal Microscopy

 

Line Scan Confocal microscope(L series) is a powerful imaging tool that combines the principles of confocal microscopy with the capability to rapidly acquire images along a single line, or linear scan, at exceptionally fast rates. This innovative microscopy technique has revolutionized the study of dynamic biological processes and the examination of rapid events in materials science.

 

Unlike traditional confocal microscopy, where images are acquired pixel by pixel in a raster scan pattern, a line-scan confocal microscope captures an entire line of information simultaneously. This dramatic reduction in acquisition time is ideal for observing fast-moving objects, dynamic cellular processes, and live biological specimens with minimal motion artifacts.

 

The heart of the high-speed line-scan confocal microscope is its ability to scan laser light or illumination across a sample along a line, while simultaneously collecting emitted fluorescence or reflected light from that same line. This synchronized approach not only provides rapid image acquisition but also minimizes out-of-focus light and enhances image contrast, similar to conventional confocal microscopy.

SIMSCOP_L_Series

Product Brochure Link: 

The introduction of high-speed line-scan confocal microscopy has opened up new frontiers in research, offering a window into the previously inaccessible world of fast biological and materials events. Its ability to provide detailed, time-resolved images with minimal photobleaching and phototoxicity makes it a valuable tool for scientists and researchers across a wide range of disciplines. 

 

Furthermore, our XY Microscope Piezo Stages has been designed for use our SIMSCOP Series Microscopes to provide motorized XY positioning of microscopy  samples. Access for SIMTRUM's XY Microscope Stages can be click here.

 

SIMSCOP_L_opticalpath

Features & Benefits

  • High-speed acquisition (50fps@1024x1000 pixels)
  • Strong optical sectioning
  • Single molecule imaging
  • Multi-color fluorescence (Max. 4 channels)
  • High sensitivity
  • Deep imaging module(Max. depth:600µm)
  • Large field of view(60X: 0.36mm, 40X: 0.54mm)
  • Low photobleaching and phototoxicity
  • Strong optical sectioning
   
Applications

L series Industry: Single-wavelength ordinary linear array detector, designed for simple strong fluorescence imaging and reflection imaging, used for materials science, compound fluorescence detection and surface defect detection.

 

L Series Research: Four-wavelength high-sensitivity back-illuminated CMOS detector, designed for biological weak fluorescence imaging and used for the study of life science cells and pathological tissues. The depth module can be used for in vivo imaging of thick tissue and small animals, targeting major research projects in biomedical research institutes and users of public instrument platforms, as well as medical laboratory testing institutions.

 

 

 Left: Wafer(10X) Right: Calcium Titanium Quantum Dots (10X)

     3-day post-fertilized zebrafish heart labelled by EGFP

L Series Industry L Series Research

 

 

High-speed Acquisition (50fps@1024x1000 pixels)

 

Due to the different scanning methods, the capture speed of line scan copolymerization is at least 100 times faster than that of conventional confocal technology, and the phototoxic reaction and photobleaching reaction are low. It is not only the best choice for imaging living cells and tissues, but also very suitable for fixation. Rapid volumetric collection of samples, even from small live animals.

 

 

Large FOV & High Sensitivity

 

With a large usable field of view (FOV), our scientific-grade CMOS cameras offer up to a 5.5-megapixel sensor with both a 60x objective lens (0.36mm) and a 40x objective lens (0.54mm) for maximum field of view. Maximizing the field of view of fluorescence microscopy is becoming increasingly important in a wide range of applications, including high-content scanning of large areas of cells, imaging of developing embryos, neuronal mapping, and tissue imaging.

SIMSCOP_L_Spectral_Response

 

 

Deep Imaging Module (Max. imaging depth: 600µm)

 

The line scan focus modulation module is a novel microscopy observation method that achieves deeper penetration depth based on confocal microscopy. Using a combination of an electro-optical modulator and a self-designed liquid crystal phase plate, only the intensity of the signal fluorescence at the focus is modulated, while stray light and background light are not modulated. Through the principle of modulation and demodulation technology, a strong focal area signal is extracted, thereby improving the signal-to-noise ratio and signal-to-background ratio of the image by 20-30dB, thereby improving the imaging depth. This penetration depth is approximately two to four times that of conventional confocal microscopy.

 

 

Wafer defect inspection system detects physical defects (foreign substances called particles) and pattern defects on wafers and obtains the position coordinates (X, Y) of the defects. 

 

Using line-scan confocal technique can speed up the inspection time by more than 10 times

SIMSCOP_L_006r

 

 

 

SIMSCOP_L_series_007

 

 

Detection Speed Reference

 

Detector High-speed CCD High-speed sCMOS 
Pixels per Line 4096 x 256  9072 x 256 
Pixels per Line (Horizontal) 4096  9072
Pixel Width (mm) 0.0050  0.0050
Linear Array Camera Scan Rate
(Lines/Second)
200000  510000
Magnification (Dry Lens) 20X 60X 20X 60X
NA 0.50 0.90 0.50 0.90
Imaging Resolution(nm): 0.61λ/NA 494nm 274nm 494nm 274nm
Scan Time(s):
Sample Area/Scanning Area per Second
397.3 2136.6 72.0 379.9
Single Wafer Inspection Time 6m37s 35m36s 1m12s 6m20s
with Traditional Microscope Series 60X Objective lens detection time 1 - 1.5 hours

Product specifications and Brochures

Product Brochure Link: 

 

Parameters L Series Industry L Series Research
Laser Light Source Standard wavelength:405±5 nm
Output mode:single-mode polarization-maintaining fiber (TEM00)
Single wavelength output power: >20mW;
Power stability: <1%
Spectral linewidth: <3nm
TTL modulation, 1kHz
Accuracy of laser power adjustment:1%
Optional single wavelengths include 375nm/445nm/473nm/515nm/525nm/532nm/
633nm/660nm/685nm/785nm/808nm
Standard wavelength:405±5nm / 488nm±5nm /561nm±1nm / 640nm±5nm
Output mode:single-mode polarization-maintaining fiber (TEM00)
Single wavelength output power: >20mW;
Power stability: <1%
Spectral linewidth: <3nm
TTL modulation, 1kHz
Accuracy of laser power adjustment:1%,
multi-wavelength AOTF power adjustment
Optional multi-wavelengths include 375nm/445nm/473nm/515nm/525nm/532nm/ 633nm/660nm/ 685nm/785nm/808nm
Detectors TDI line-scan camera; Resolution: 4095x256;
Wavelength: 380nm-1000nm;
Pixel bit width: 8/10/12bit,Peak quantum efficiency (QE):85%@480nm;
Read noise: 16e-
Frame rate: 200kHz
Back-illuminated CMOS; Resolution: 9072x256;
Wavelength: 200nm-1100nm;
Pixel bit width: 8/10/12bit;
Peak quantum efficiency (QE):82%@550nm50%@350nm,
Read noise: 3.5e-
Frame rate: 12bit
300kHZ
10bit
350kHZ8bit510kHZ
Scan Module Scanning pixels 100x100-2048x2048
Frame rate:20fps (1024x1000 pixels),
200fps (1024x100 pixels) fast scanning mode
Scanning pixels 100x100-2048x2048
Frame rate:50fps(1024x1000pixels)
500fps(1024x100pixels) fast scanning mode
XY Resolution Standard scanning module:
230nm@100x Oil objective
Standard scanning module:
230nm @ 100x Oil objective
Deep scanning module: 150nm-200nm
Image Depth Surface scanning Standard scanning module< 100um
Deep scanning module< 600um
FOV 5x1mmx1mm | 10x0.51mmx0.51mm |  20x0.26mmx0.26mm
40x
0.13mmx0.13mm | 60x85umx85um | 100x51umx51um
Filter Unit 1 set from:
DAPI EM 445nm/50nm
FITC EM 530nm/50nm
TRITC EM 605nm/60nm
Cy5 EM 695nm/40nm
4 sets:
DAPI EM 445nm/50nm
FITC EM 530nm/50nm
TRITC EM 605nm/60nm
Cy5 EM 695nm/40nm
Eyepiece WF10X/23 wide field eyepiece; High eye point; Centering telescope
Eyepiece Tube 45°inclined,50‒75mm adjustable interpupillary distance; Adjustable diopter
Objective Converter Converter with five-hole internal positioning ; Ball bearing for internal positioning
Stage Manual: 240mm x 260mm fixed stage; Range of movement:135mm x 85mm
Motorized: Minimum step size:50nm; Repeatability +/- 0.1 μm
Maximum speed
≥100mm/s; Stage size:≥270x170mm
Stroke : X:110mm,Y:75mm; Maximum load capacity >1KG (Horizontal)
Z Driver Focusing resolution/minimum step size: 0.05μm; Repeatability: +/-0.2μm; Maximum stroke:10mm
Focusing Mechanism Coaxial coarse/ fine adjustment with limit and locking devices,
 Low level coaxial focusing handwheel ; Handwheel graduations of fine adjustment:1μm
Transmitted Illumination
System
Warm LED light, continuously adjustable brightness
Brightness adjuster with LED rotation
Condenser:72mm ultra-long working distance,NA=0.30,Equipped with a three-hole phase contrast annular plate
Epi-fluorescence
Illumination System
Multi-band LED light source MG-100
6-hole fluorescence module
UV(U)EX:375/30nm
           DM:415EM:460/50nm
Blue(B)EX:475/30nm
         DM:505EM:530/40nm
Yellow(Y)EX:540/25nm
     DM:565EM:605/55nm
Red(R)EX:620/50nm
         DM:655EM:692/45nm
Software Feature Multi-color fluorescence localization processingZ-stack data processing; Large image stitching
Image analysis; Imaging data management3D imaging constrution

 


Upgrade to Confocal Raman Microscope

● 532,785,1064 Raman

● Upright Microscope setup

● High Resolution with Raman image mapping

Details Click here

     

Upgrade to Fluorescence lifetime imaging microscopy (FLIM) 

FLIM is a type of microscopy that allows for the visualization and analysis of biological samples based on the fluorescence lifetime of the fluorophore being used. FLIM measures the time between the excitation and emission of photons in a sample, which can provide information about the properties of the fluorophore and the environment in which it is located.

 

FLIM can be used to study a wide range of biological processes, including protein-protein interactions, enzyme activity, and ion concentration changes. It is often used in combination with other imaging techniques, such as confocal microscopy, to provide more detailed information about the sample.

FILM
     

Upgrade to Single / Two /Multi Photon Microscope

In two-photon microscope, a laser emits light at a specific wavelength that is absorbed by the fluorescent molecules in the sample. When two photons of this light are absorbed simultaneously, they provide enough energy to excite the fluorescent molecule and cause it to emit light at a longer wavelength, which can be detected by the microscope. Because two photons are required to excite the molecule, the probability of fluorescence emission is low and only occurs at the focal point of the microscope, allowing for high-resolution imaging and greater depth than conventional microscopes.

 

Two-photon microscopy has a number of applications in neuroscience, biology, and biomedical imaging. For example, it has been used to study the activity of individual neurons in the brain, visualize the structure and function of blood vessels, and track the behavior of cells in living tissues.

     

Upgrade to Confocal Spectral Microscope (Near IR I/II Confocal)

● Upgrade to Confocal Spectral Microscope (NIR I/II confocal)

● Wavelength Range UV to NIR (200nm-2.5nm)

● Spectral resolution up to 0.2nm

● Large NA setup for high-sensitivity application

Details Click here

     

Upgrade to Terahertz Confocal Microscope System

100GHz, output power: 80mW

● Spatial resolution 150-200um

 

 

The terahertz confocal microscope uses a focused beam of terahertz radiation to scan the sample being analyzed. This beam is then reflected back and collected by a detector, which creates an image of the sample based on the intensity of the reflected radiation. By using a confocal design, this microscope can achieve high resolution and can selectively focus on different depths within a sample.

 

 it can be used to study the microstructure and properties of materials, such as polymers, ceramics, and semiconductors, and to detect defects or anomalies in their structures. In biology and medicine, it can be used to image and study biological tissues, including skin, teeth, and cartilage, which are transparent to terahertz radiation.

     

Upgrade to Super Resolution Confocal Re-scan Structure illumination Microscope

 

A "re-scan" confocal microscope is a type of confocal microscope that uses a rapidly moving mirror or scanner to scan the laser beam across the sample multiple times, producing even higher resolution and better contrast images than standard confocal microscopes.

 

Overall, re-scan confocal microscopes are very powerful tools for studying biological tissues, cells, and other samples, and are widely used in research labs, medical facilities, and other scientific settings

Confocal_Re-scan_Structure_illumination_Microscope

     
Upgrade to Low Temperature Confocal Microscope

 

Compatible with SIMTRUM Cryostat to perform Low-temperature Raman measurements -190 to 600 degrees

● 8 probe arm able to upgrade to adjustable probe arm

● Reflection or transmission mode available

 


 

Line Scan Confocal Microscope Acquistion Atlas
High-Definition Visual Assets: Should you require high-resolution authentic images and video footage, we invite you to get in touch with us.

 

3D rendering of mouse brain neurons, 60X objective lens 3D rendering of mouse brain neurons, 60X objective lens
Plant pollen grain, SIMSCOP L series, 20X objective lens, single-layer scanning
(Original Image)
3D reconstruction after layer scanning of pollen segment
 
Mouse neurons, SIMSCOP L series, 40X objective lens, single-layer scanning
(Original image, the thickness of the mouse sample is >600microns)
 
BPAE cells #1, SIMSCOP L series, 60X objective lens NA 1.2 BPAE cells #2, SIMSCOP L series, 60X objective lens NA 1.2
BPAE cells 1, SIMSCOP L series, 60X objective lens NA 1.2
DAPI, FITC & Cy5(Original Image)
BPAE cells 2, SIMSCOP L series, 60X objective lens NA 1.2
DAPI, FITC & Cy5(Original Image)
   
 
High-speed line scans 8-inch wafer surface inspection,
SIMSCOP L series, 10X objective lens, full-chip inspection time 50s
The image is an industrial-grade CMOS rendering without post-image processing
 
High-speed line scans 6-inch wafer surface inspection High-speed line scans 6-inch wafer surface inspection
High-speed line scans 6-inch wafer surface inspection,
SIMSCOP L series, 20X objective lens, Micro-pit diametr 5.5µm
Defect diameter 1.5µm, 0.7µm & 0.65µm (the image without post-image processing)
High-speed line scans 6-inch wafer surface inspection,
SIMSCOP L series, 20X objective lens, defect diameter 1.1µm, 0.9µm & 0.65µm
(the image without post-image processing)
 

 

 

Thick Beads Phantom Imaging (20x/0.45)
Routine Confocal
Advance L Series

Routine Confocal                                    Advance L Series

 


Parameters

Basic

P Series Box

Basic

P Series

Advance

P Series

Basic

L Series

Advance

L Series

SpinDisk

Basic

SpinDisk

 Advance

SIM Basic SpinDisk SIM
Image Frame Rate 4fps@512x512 4fps@512x512 4fps@512x512 10fps@1024x1024 14fps@1024x1024 100fps@2048x2048 100fps@2048x2048 13fps@1024x1024 13fps@1024x1024
Resolution ~230 nm  ~230 nm  ~230 nm  ~230 nm  150-200nm ~230 nm  ~230 nm  ~100 nm  ~100 nm 
Image Depth <100µm <100µm <100µm <100µm <600µm <200µm <200µm <50µm <200µm
No. of Laser  1 1 4 1 4 4 4 4 4
Wavelength Choice 

405/445/488

/525/561/640(nm)

405/445/488/

525/561/640(nm)

405/488/561/

640(nm)

405/445/488/

525/561/640(nm)

405/488/561/

640(nm)

405/445/470/520/

528/555/640(nm)

405/445/470/520/

528/555/640(nm)

405/445/470/520/

528/555/640(nm)

405/445/470/520/

528/555/640(nm)

Detectors Detector Detector Detector CMOS Camera sCMOS Camera sCMOS Camera Dual sCMOS Camera(Single sCMOS optional) sCMOS Camera Dual sCMOS Camera(Single sCMOS optional)
Microscope  Non Inverted (Upright Customizeable) Inverted (Upright Customizeable) Inverted (Upright Customizeable) Inverted (Upright Customizeable)

Inverted or

Upright 

Inverted or

Upright 

Inverted or

Upright 

Inverted
Stages Non

Z Motorized

XY Manual

XYZ Motorized  Z Motorized
XY Manual
XYZ Motorized  XYZ Motorized  XYZ Motorized  XYZ Motorized  XYZ Motorized 
Electronics system     Motorized Filter
Motorized Pin hole
  Motorized Filter Motorized Filter Motorized Filter Motorized Filter Motorized Filter
image contrast Medium Medium High Medium High High High High High
Upgrade option Non Non Upgrade to 30fps high Speed  Non Non Non Upgrade to SPIN Disk SIM 100nm resolution Upgrade to SPIN Disk SIM 100nm resolution Non
Customized Option     Yes   Yes Yes Yes    
Applications Biomedicine: monochromatic fluorescence microscopic   observation of cells, 3D scanning; Biomedicine: monochromatic fluorescence microscopic   observation of cells, 3D scanning;
Biomedicine: three-dimensional fluorescence microscopy imaging observation of cells and tissues, multi-channel fluorescence detection
Reflective 3D microscopic imaging, surface shape detection,   rapid analysis and measurement of materials and microelectronic device   surface shape Fast 3D imaging of thick tissue, 3D histopathological image   detection, 3D histomorphological research of small animal tissues and organs   such as brain neurons, liver, kidney, etc. Dynamic fluorescence imaging of living cells/tissues,   microscopic observation of small animals such as zebrafish and nematodes Dynamic fluorescence imaging of living cells/tissues,   microscopic in vivo observation of small animals such as zebrafish and nematodes, and in vivo observation of multi-channel fluorescent organelles. Dynamic fluorescence super-resolution imaging of living cells   can be used for live cell dynamics, allowing tracking of biological changes   at cellular and subcellular levels Dynamic fluorescence super-resolution imaging of living cells,   3D imaging of tissues, organoids, spheroids and small organisms.

 

Wide Field Raman Microscope Fluorescence / Photoluminescence Microscope Time Correlated Single Photon Counting (TCSPC) For SPAD Testing 

 

XY Microscope Piezo Stages
Model ST-XY3-11075 ST-XY2-7550
Image    
Stroke(mm) 110 X 75 75 X 50
Driver Piezoelectric Motor Piezoelectric Motor
Maximum Load Capacity(KG) 1 1
Maximum Speed(mm/s) 100 100
Minimum Step Size(nm) 20 (50, 100nm for option) 50
Repeatability(nm) +/-200 +/-200
Position Sensor Grating Grating
Material Aluminum Alloy Aluminum Alloy
Weight(KG) 3.3 2.5

 

Multi-Line CW Single-Mode Laser
Item Number ST4LS-A ST4LS-B ST4LS-C
Image
Wavelength 405/488/532/640mm 405/488/561/640mm Based on our standard laser configurations (405/488/561/640 and 405/488/532/640), we offer customizable options for additional wavelengths, including but not limited to: UV: 375nm,VIS: 445nm, 473nm, 515nm, 525nm, 532nm, 633nm, 660nm, 685nm,NIR: 785nm, 808nm. For further customization beyond these options, please contact us for assistance
Fiber FC/APC
Length: 1 Meter
Core Diameter: 4-6 Micrometers
Customization is avaible
Output Power 20mW
Power Stability(rms, over 4 hours) <1%
Laser Noise 4%
Spectral Linewidth 3nm
Laser Power Adjustment Accuracy  Multiple Wavelength AOTF Power Adjustment Accuracy:0.1%; Without AOTF: 0.5mW
Working Mode Continuous Output, TTL Modulation, Analog Modulation for Option
Operating Temperature 10~35()
Power Supply 100~240VAC

 

 

 


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Compare Model Drawings & Specs Availability Reference Price
(USD)
Laser Line Scan Confocal Microscope Basic L Series
Laser Line Scan Confocal Microscope Basic L Series, Image frame rate 10fps@1024x1024, Resolution ~230nm, image depth <100um, No. of Laser - 1, Wavelength choice 405/445/488/525/561/640nm, CMOS Camera detectors, Inverted microscope(upright customizable), Z motorized / XY Manual stages, Medium image contrast
6-10 Weeks Request for quote
Advance L Series
Laser Line Scan Confocal Microscope Basic L Series, Image frame rate 14fps@1024x1024, Resolution 150-2000nm, image depth <600um, No. of Laser - 4, Wavelength choice 405/488/561/640nm, sCMOS Camera detectors, Inverted microscope(upright customizable), XYZ motorized stages, High image contrast, Motorized filter Electronics system.
6-10 Weeks Request for quote

Advance L Series - Parameter

Laser Line Scan Confocal Microscope Basic L Series - Parameter

Advance L Series - Download

Laser Line Scan Confocal Microscope Basic L Series - Download

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