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The high-performance infrared camera ImageIR® 9400 hp from InfraTec is suitable for solving extremely demanding tasks. It impresses with absolute top figures for geometrical, thermal and temporal resolution.
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InfraTec ImageIR® 9400 HP – Flexible High-speed Camera in HD Format
The high-performance infrared camera ImageIR® 9400 hp from InfraTec is suitable for solving extremely demanding tasks. It impresses with absolute top figures for geometrical, thermal and temporal resolution.
Efficient measurement of the smallest structures on large-scale objects
(2.560 × 2.048) IR pixels by genuine camera hardware
Analysis of extreme temperature changes and gradients in full frame
Highly accurate and repeatable measurements
Precise measurement of the smallest temperature differences
High-speed, long-distance interference-proof data transmission
Increases frame rates and thermal resolution at the same time using binning technology
Due to binning technology, infrared cameras have an additional high-speed mode in which the frame rate increases to more than three times, and the thermal resolution can be doubled.
Quadruple Geometrical Resolution
By using a fast-rotating MicroScan wheel, the number of pixels used can be quadrupled compared to the native pixel count of the FPA detector, significantly improving image quality.
Guaranteed Flexibility and Measurement Accuracy
Due to this innovative feature, the cameras’ measurement accuracy remains unchanged even when integration times or measurement ranges are altered. This will save users both time and money.
The Auto Calibration option expands the HighSense function to include automatic, dynamic adaptation of the integration time. This ensures the utmost temperature measuring accuracy and an optimised signal-to-noise ratio throughout the process. The wellfill of a detector is usually optimal in certain areas of the dynamic range. If the measured object signal is outside these or user-specified limits, the integration time is readjusted.
Display of Large Temperature Ranges Simultaneously
The HDR function enables thermograms with different integration times and filters to be created in quick succession and combined into a single image with large temperature differences.
Temperature Measurements Across Multiple Calibration Ranges
This function allows continuous temperature measurements to be carried out with constant aperture and filter settings, covering more than one calibration range.
Customised Configuration and Retrofitting
Due to their modular design, the cameras in the ImageIR® series can be adapted to user requirements and retrofitted or converted if measurement requirements change.
Interface for Incoming and Outgoing Control Signals
Trigger signals to or from the camera can be used to control and synchronise image data acquisition. Thermographic measurements can also be used to control processes.
Ultra-fast Data Transfer
High-resolution detectors and high frame rates generate large amounts of data. With the 10 Gigabit Ethernet interface, this data can be transferred quickly, reliably and without loss.
Precision Lenses for a Wide Range of Requirements
Whether measuring the smallest details or monitoring over long distances, InfraTec provides high-quality, fast precision lenses for all types of thermographic analysis.
In order to make particularly small structures clearly visible, an infrared camera with a large detector format is suitable. In some cases, special measurement and testing tasks require a further increase in spatial resolution. In the field of micro-thermography, high-performance infrared microscopic lenses are used for this purpose.
Their benefits can be further increased in conjunction with Solid Immersion Lenses (SIL). Mounted on the optics, these immersion media significantly improve the resolution of even the smallest structures in the µm range.
The infrared camera is equipped with a separate filter and aperture wheel with up to six free positions, which allows 30 combinations. A necessity for measurements of high object temperatures and spectral thermography.
| Spectral range | (1,.5… 5.5) µm |
| Pitch | 10 µm |
| Detector | InSb |
| Detector format (IR pixels) | (1,280 × 1,024) |
| Image format with opto-mechanical MicroScan (IR pixels) | (2,560 × 2,048) |
| Image recording principle | Snapshot |
| Readout mode | ITR / IWR |
| Aperture ratio | f/2.2 or f/3.0 |
| Detector cooling | Stirling cooler |
| Temperature measuring range | (-40 … 1,500) °C, up to 3,000 °C* |
| Measurement accuracy | ± 1 °C or ± 1 % |
| Temperature resolution at 30 °C | Better than 0.03 K / 0.02 K in high-speed mode |
| Frame rate (full/half/quarter/sub frame) | Up to 180 / 342 / 622 / 2,601 Hz; High-speed mode: up to 622 / 1,053 / 1,615 / 3,343 Hz |
| Window mode | Yes |
| Focus | Manual, motorised or automatically* |
| Dynamic range | Up to 16 bit* |
| Integration time | (1 … 20,000) µs |
| Rotating aperture wheel | Up to 5 positions |
| Rotating filter wheel | Up to 7 positions |
| Interfaces | 10 GigE, HDMI*, GigE*, CAMLink |
| Trigger | 4 IN / 2 OUT, TTL |
| Analog signals*, IRIG-B* | 3 IN / 2 OUT, yes |
| Tripod adapter | 1/4″ and 3/8″ photo thread, 2 × M5 |
| Power supply | 24 V DC, wide-range power supply (100 … 240) V AC |
| Storage and operation temperature | (-40 … 70) °C, (-20 … 50) °C |
| Protection level | IP54, IEC 60529 |
| Shock vibration resistance in operation | 2 G DIN EN 60068-2-6, 25 G DIN EN 60086-2-27 |
| Dimensions; weight | (241 × 123 × 160) mm, 4,3 kg (without lens) |
| Further functions | High-speed mode*, Multi Integration Time; HighSense |
| Analysis and evaluation software* | IRBIS® 3, IRBIS® 3 view, IRBIS® 3 plus*, IRBIS® 3 professional*, IRBIS® 3 control*, IRBIS® 3 online*, IRBIS® 3 process*, IRBIS® 3 active*, IRBIS® 3 mosaic*, IRBIS® 3 vision* |
| * Depending on the model | |
| ** In selected measurement ranges | |
| *** Simulated values acc. to Johnson criteria for detection, recognition and identification with atmospheric extinction coefficient of 0.2/km and a probability of 50%. | |