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SWIR Thermography Camera | SIMTRUM Photonics Store

SWIR Thermal Imaging Camera
SIMTRUM'S online SWIR Thermography Camera is equipped with high-performance short-wave infrared detectors, short-wave infrared lenses, and signal processing circuits, and is embedded with advanced image processing algorithms.
 
It features a compact size, low power consumption, rapid startup, excellent imaging quality, precise temperature measurement, and a wide temperature measurement range, making it suitable for ultra-high temperature measurement scenarios. The component selection of the camera fully considers the requirements for high and low temperature working performance, ensuring that the entire machine has excellent environmental adaptability. 

 

Features

  • All-weather passive thermal imaging
  • High frame rate design, with the maximum frame rate up to 125Hz
  • Self-developed temperature correction algorithm for precise temperature measurement
  • Full-stream lossless 16-bit data
  • Supports secondary development and system integration 

 

Applications

  • Security Monitoring
  • Industrial Inspection
  • Medical Diagnosis
  • Material Research

Interface diagram

There are two external interfaces of the short-wave infrared thermal imager, which are 2PIN SH interface (power supply) and RJ45 interface:

  • 2-pin SH connector (power supply) provides 12V power interface;
  • RJ45 connector provides one network digital video output.
 
Dimensions

General Specifications
Model HJ01-SWIR-384x288 HJ01-SWIR-640×480 HJ01-SWIR-1280×1024
Detector type Uncooled focal plane microbolometer
Number of pixels 384x288 640×480 1280×1024
Pixel spacing 7μm 4μm
Wavelength range 0.8~2μm
Frame Frequency <125Hz (Configurable)
Image processing and display
Color Palettes Multiple color palettes including white heat, black heat, iron red, rainbow, etc
Contrast, brightness Automatic / Manual
Data format 16Bit temperature data (full stream)
Temperature Measurement Analysis
Temperature measurement accuracy ±1%
Temperature range 600°C~2500°C (expandable to 3000°C)
Electrical characteristics
Data interface RJ45
Network standard Gigabit networks
Protocol support GigEVisionV2.0 protocol and GenlCam standard
Power interface 2EDGKD-3.81mm/2P
Input supply voltage 12 VDC
Steady-state power consumption <2.5W
Reverse protection yes
Over and under voltage protection yes
Lens
Focal Length Optional
Focusing Method Manual
 
 
Other Specification
Environmental parameter
Operating temperature -20°C~60°C
Storage temperature -40°C~70°C
Thermal shock resistance 5°C/min (-40°C~60°C)
Vibration resistance 4.3g, x, y, z axis 2 hours per axis
Impact resistance Half sine wave, acceleration 30g, pulse width 6ms,
installation direction impact 3 times
Humidity <95%(Noncondensing)
Physical Characteristics
Dimensions 45mm×45mm×79mm
Weight <160g
Mounting Holes M3×4 around
Client - side
Real - time Temperature Display Support
Multiple Temperature - measuring Objects Support
Alarm Function Support
Recording/Taking Photos/Replaying Support
SDK Development Kit
Operating Environment Supports win32, x64, Linux(x86/ARM)
Data Acquisition Obtain 16 - Bit temperature data (full code stream)
through callback functions
 
 
Optional lens parameters
Focal length Dimension F# Detector resolution Field Angle(°) Spatial resolution
(mm) (mm) Parallel Vertical Pixel size(μm) Parallel Vertical (mrad)
8 ∅33-h43 2.8-16 384 288 7 18 13 0.85
12 ∅33-h46 2.8-16 384 288 7 11 9 0.58
25 ∅30-h30 1.4-16 384 288 7 6 4 0.28
35 ∅31-h35 1.6-16 384 288 7 4 3 0.2
50 ∅31-h40 2.4-22 384 288 7 3 2 0.14
75 ∅38-h69 2.8-32 384 288 7 2 1.5 0.09
8 ∅33-h43 2.8-16 640 480 7 29 22 0.85
12 ∅33-h46 2.8-16 640 480 7 19 14 0.58
25 ∅30-h30 1.4-16 640 480 7 10 7 0.28
35 ∅31-h35 1.6-16 640 480 7 7 5 0.2
50 ∅31-h40 2.4-22 640 480 7 5 3 0.14
75 ∅38-h69 2.8-32 640 480 7 3 2 0.09
8 ∅33-h43 2.8-16 1280 1024 4 28 23 0.5
12 ∅33-h46 2.8-16 1280 1024 4 19 15 0.33
25 ∅30-h30 1.4-16 1280 1024 4 10 7 0.16
35 ∅31-h35 1.6-16 1280 1024 4 7 5 0.11
50 ∅31-h40 2.4-22 1280 1024 4 5 4 0.08
75 ∅38-h69 2.8-32 1280 1024 4 3 2 0.01

1.Real-time display: all-weather real-time display of full radiation imaging.

 

2.Temperature curve: Support to draw the real-time temperature curve of global or specific temperature measurement objects, so as to help users to determine the temperature trend, and preview the real-time temperature change of each key area of the coal pile in real time on the Kanban interface;

 

3.Temperature tracking: Support high and low temperature tracking function, automatically analyze the temperature change trend of the entire screen of the thermal image or a specific area, automatically capture the highest/lowest temperature point, early detection of hidden areas;

 

4.Temperature marking: Support high temperature marking function, can automatically mark the high temperature position on the image, assist users to find the location of the overtemperature point faster, so as to accurately make the corresponding decision;

 

5.Custom temperature alarm: 11 different alarm types are supported. According to the different temperature changes of the object to be measured, it is mainly divided into 11 types such as overtemperature alarm, temperature rise alarm, temperature drop alarm, high temperature interval alarm, low temperature alarm, low temperature interval alarm, outside the temperature interval alarm, regional temperature difference alarm and average temperature alarm. Help users quickly grasp the temperature change of the object to be measured, so that early warning and early processing;

 

6.Alarm capture: Support alarm capture, record the alarm instant image, and record the alarm video, when there is an alarm event, the system will automatically capture the current monitoring screen, and can record the alarm video;

 

7.Data storage: alarm data, detection data, and file data are stored on the corresponding data page for users to quickly call and analyze;

 

8.Multidimensional data supervision: the system can be divided into alarm data, detection data, file data, classified management according to different ways of data generation, can be more targeted data analysis;

 

9.Historical data analysis: The system can analyze the pictures and videos stored manually and automatically by alarm offline, so as to facilitate users to trace the temperature change of the measured target and judge the cause of abnormal conditions.

 

10.Automatic recovery: Supports automatic recovery after power failure and restart, and automatically saves the last device connection properties;

 

11.Temperature measurement correction: Support temperature correction, you can manually set the temperature measurement parameters to correct the temperature measurement accuracy;

 

12.System management: System operation management can set multi-dimensional data such as system language, file storage, alarm data storage, account management and role rights, and record system operation logs.


Model Pixels Spectral Range Temperature Range
SWIR Thermal Imaging Camera 384*288/512*384/640*480/768*576/1280*1024 0.8~2μm 600-3000℃
MWIR Thermal Imaging Camera 640*480 3~5μm/4.8~5.2μm 200-700℃
MWIR Thermal Imaging Camera
For Flame Temperature
640*480/640*512 3.9μm/4.5μm 600-1600℃/1000-2000℃
Cooling MWIR Thermal Imaging Camera 640*512 3.7~4.8μm/1.5~5.2μm -10~1200℃(extended to 2000℃)
LWIR Thermal Imaging Camera 384*288/640*480/640*512 8~14μm -20~650 ℃
High-temperature range:350~1600℃
Cooling LWIR Thermal Imaging Camera 640*512 7.7~9.5μm -10~1200℃(extended to 2000℃)
Macro Infrared Thermal Imaging Camera 384*288/640*512 8~14μm Normal temperature range:-20~200℃
Medium temperature range:150~650℃

 


Sale Guide
If you need our technical team for guidance on product selection or customization,please help to provide below technical information, it helps to speed up the process.
Items Detail Unit Remark
 What is your application scenario?      Power inspection, monitoring the operating status of high-temperature   equipment,  fire early warning, etc
 What is the required spectral response   range?      SW/MW/LWIR
 What is the temperature range you need to  measure?    eg: -20~500℃
 What is the required resolution?      384*288/640*480/640*512/1280*1024, etc. For specific resolutions, please refer   to the detail page
 What is the required thermal sensitivity   (NETD) ?   mK  NETD represents the instrument's ability to detect minute temperature   differences. A NETD<50mK indicates that a temperature difference of 0.05℃ can   be identified, and it is suitable for the detection of precision electronic instruments
 What are the requirements for the focusing   function?      Manual or automatic, manual focusing is suitable for fixed distance measurement   in simple scenes. Autofocus is suitable for rapid scanning in complex scenes
 What is the motion state of the measured  object?      Whether stationary or moving, the moving target requires a high frame rate to   avoid image trailing
 Lens options?      Telephoto, macro and other lenses are available for selection
 Selection suggestions      If high-temperature targets need to be measured or high precision is required, it   is recommended to give priority to shortwave measurement. For medium-   temperature targets or those with anti-interference requirements, medium-wave   should be selected.If it is a normal-temperature target and all-weather detection   is required, long-wave detection should be given priority.
 What's the difference between an infrared   pyrometer and an infrared thermal imager?      Infrared pyrometers can only measure the temperature at a single point. By   detecting the infrared radiation energy at a certain point on the surface of an   object, it is converted into a temperature value through an algorithm, and the   measurement result is directly presented in digital form. 
 Infrared thermal imagers can measure surface temperature and generate a   thermal map of the temperature distribution on the surface of the object being   measured. They scan the infrared radiation energy at each point on the object to     form a two-dimensional thermal image, with each pixel corresponding to a   temperature value. The measurement results are presented.as pseudo-color or   grayscale images and superimposed with temperature data.
 What's the difference between an infrared   thermal imager and an infrared camera?      Infrared thermal imagers receive the infrared radiation emitted by objects through   infrared detectors and generate thermal images of the temperature distribution on   the surface of the reflected objects, which can be displayed intuitively.The   temperature distribution on the surface of an object cannot present the detailed   features of the object; only the thermal profile of the object can be seen.
 Infrared cameras are divided into passive infrared cameras and active infrared   cameras. The images they output are similar to those taken by ordinary cameras.   With the appearance and infrared features of black and white or color images, they   can present the general shape, outline and some detailed information of objects.

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Compare Model Drawings & Specs Availability Reference Price
(USD)
HJ01-SWIR-384x288
Number of pixels:384x288 ,Pixel spacing:7μm ,Wavelength range:0.8~2μm, Frame Frequency:<125Hz (Configurable) ,Temperature measurement accuracy:±1% ,Temperature range:600°C~2500°C (expandable to 3000°C)
4-6 Weeks Request for quote
HJ01-SWIR-640×480
Number of pixels:640×480,Pixel spacing:7μm, Wavelength range:0.8~2μm, Frame Frequency:<125Hz (Configurable), Temperature measurement accuracy:±1% ,Temperature range:600°C~2500°C (expandable to 3000°C)
4-6 Weeks Request for quote
HJ01-SWIR-1280×1024
Number of pixels:1280×1024 ,Pixel spacing:4μm ,Wavelength range:0.8~2μm ,Frame Frequency:<125Hz (Configurable) ,Temperature measurement accuracy:±1% ,Temperature range:600°C~2500°C (expandable to 3000°C)
4-6 Weeks Request for quote

HJ01-SWIR-1280×1024 - Parameter

HJ01-SWIR-640×480 - Parameter

HJ01-SWIR-384x288 - Parameter

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HJ01-SWIR-640×480 - Download

HJ01-SWIR-384x288 - Download

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