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Bintel Glebe
Usually ready for pickup in 24 hours
Bintel 84 Wentworth park road, Glebe, 2073, NSW
Phone:(02) 9518 7255
Hours:
Monday9:30 am–5:30 pm
Tuesday9:30 am–5:30 pm
Wednesday9:30 am–5:30 pm
Thursday9:30 am–5:30 pm
Friday9:30 am–5:30 pm
Saturday9:30 am–4 pm
SundayClosed
Monochrome Deep Sky Cameras
44 products
44 products
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Multiple Readout Modes
Multiple Readout Modes are special for QHY 16-bit Cameras (QHY600/268/461/411). Different readout modes have different driver timing, etc., and result in different performance. See details at “Multiple Readout Modes and Curves” Part.
Random change thermal noise suppression function
You may find some types of thermal noise can change with time in some back-illuminated CMOS cameras. This thermal noises has the characteristic of the fixed position of typical thermal noise, but the value is not related to the exposure time. Instead, each frame appears to have its own characteristics. The QHY600/268/461/411 use an innovative suppression technology that can significantly reduce the apparent level of such noise.
UVLO Protection
UVLO(Under Voltage Locking) is to protect the electronic device from damage caused by abnormally low voltages.
Our daily life experience tells us that the actual operational voltage of an electrical device must not significantly exceed the rated voltage, otherwise it will be damaged. For such precision equipment as cameras, long-term work at too low input voltage can also be detrimental to the working life of the camera, and may even make some devices, such as power manager, burn up due to long-term overload. In the all-in-one driver and SDK after 2021.10.23 stable version, the camera will give a warning when the input voltage of the camera is below 11V.
Optimizing USB Traffic to Minimize Horizontal Banding
It is common behavior for a CMOS sensor to contain some horizontal banding. Normally, random horizontal banding can be removed with multiple frame stacking so it does not affect the final image. However, periodic horizontal banding is not removed with stacking so it may appear in the final image. By adjust the USB traffic in Single Frame mode or Live Frame mode, you can adjust the frequency of the CMOS sensor driver and it can optimize the horizontal banding appeared on the image. This optimized is very effective to remove the periodic banding in some conditions.
A typical Periodic Horizontal Noise under certain USB_TRAFFIC values.
After Adjusting the USB Traffic to avoid the periodic horizontal noise.
Reboot the camera by power off and on
The camera is designed to use the +12V to reboot the camera without disconnecting and reconnecting the USB interface. This means that you can reboot the camera simply by shutting down the +12V and then powering it back on. This feature is very handy for remote controlling the camera in an observatory. You can use a remotely controlled power supply to reboot the camera. There is no need to consider how to reconnect the USB in the case of remote control.
Specifications
| Model | QHY461PH |
| Image Sensor | SONY IMX461 BSI CMOS Sensor |
| Pixel Size | 3.76um x 3.76um |
| Color / Mono Version | Mono Only |
| Image Resolution | 11760 × 8896 |
| Effective Pixels | 102 Megapixels |
| Effective Image Area | 44mm x 33mm |
| Sensor Surface Glass | AR+AR Multi-Coating Clear Glass |
| Full Well Capacity (1×1, 2×2, 3×3) | 50ke- / 200ke- / 450ke- in Standard Mode 80ke- / 320ke- / 720ke- in Extend Full Well Mode |
| A/D | 16-bit (0-65535 greyscale) for 1X1Binning18bit in 2X2 19BIT in 3X3 20BIT in 4*4 software Binning |
| Sensor Size | TYPICAL 3.4inch |
| Read Noise | 1e to 3.7e (in HGC mode) |
| Dark Current | Approx 0.003e/pixel/sec @ -20C |
| Exposure Time Range | 50us – 3600sec |
| Frame Rate | 2.7FPS @ 8BIT 1.3FPS@16BIT on USB3.0 2.7FPS @ 16BIT 6FPS @ 14BIT on 10Gigabit Fiber |
| Shutter Type | Electric Rolling Shutter |
| Computer Interface | USB3.0 |
| Filter Wheel Interface | 4PIN QHYCCD CFW Port |
| Built-in Image Buffer | 1GByte DDR3 Buffer |
| Cooling System | Dual Stage TEC cooler(-35C below ambient with air cooling). |
| Anti-Dew Heater | Yes |
| Telescope Interface | – |
| Optic Window Type | AR+AR High Quality Multi-Layer Anti-Reflection Coating |
| Back Focal Length | 32.5mm |
Camera Curves
From $56,360.00
The Kepler KL6060 FI camera delivers an expansive field of view (FOV), exceptional low-noise performance, high frame rates, and outstanding dark current specifications. As our most cost-effective large-format camera, it is perfectly suited for space domain awareness and other high-precision imaging applications that demand both reliability and performance.
| Sensor | GSENSE6060 FI |
| Diagonal Size (mm) | 83.9mm |
| Resolution | 6144 x 6144 |
| Pixel Size | 10um |
| Bit depth | 16-bit |
| Full Well | 95ke- |
| Read Noise | 4.2 e- |
| Dark current | 0.07 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 73%% |
| Interface | USB 3 QSFP |
| Frame Rate | 19 FPS (QSFP) |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
From $143,850.00
The Kepler KL6060 BI camera features a back-illuminated sensor, offering unparalleled sensitivity for even the most challenging low-light environments. With its large field of view (FOV), low-noise performance, and high frame rates, the KL6060 BI is ideal for Space Domain Awareness and other critical low-light imaging applications, where both reliability and performance are paramount.
| Sensor | GSENSE6060 BI |
| Diagonal Size (mm) | 83.9mm |
| Resolution | 6144 x 6144 |
| Pixel Size | 10um |
| Bit depth | 16-bit |
| Full Well | 95ke- |
| Read Noise | 3.0 e- |
| Dark current | 0.1 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 95% |
| Interface | USB 3 QSFP |
| Frame Rate | 11 FPS (QSFP) |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
From $25,090.00
The KL4040 shares the same large area as the KAF-16803 CCD, but with a giant improvement in throughput, substantially lower noise, and higher quantum efficiency. The KL4040 has become an industry favorite for time-resolved applications such as space domain awareness.
| Sensor | GSENSE4040 FI |
| Diagonal Size (mm) | 52.1mm |
| Resolution | 4096 x 4096 |
| Pixel Size | 9um |
| Bit depth | 16-bit |
| Full Well | 70ke- |
| Read Noise | 3.7e |
| Dark current | 0.15 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 73% |
| Interface | USB 3 QSFP |
| Frame Rate | 23 FPS (QSFP) |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
From $41,660.00
For years we dreamed of a back-illuminated version of the KAF-16803 CCD – and here it is, except with high throughput and lower noise. The KL4040 BI has the high sensitivity of a CCD42-40, but with twice the area and 20% lower cost.
| Sensor | GSENSE4040 BI |
| Diagonal Size (mm) | 52.1mm |
| Resolution | 4096 x 4096 |
| Pixel Size | 9um |
| Bit depth | 16-bit |
| Full Well | 70ke- |
| Read Noise | 2.3e |
| Dark current | 0.15 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 94% |
| Interface | USB 3 QSFP |
| Frame Rate | 23 FPS (QSFP) |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
From $16,470.00
The Kepler KL400FI provides high sensitivity, ultra-low noise with high frame rates, all at a game-changing price to performance ratio. An ideal camera for those applications requiring a sensor without microlenses.
| Sensor | GSENSE400 FI |
| Diagonal Size (mm) | 31.9mm |
| Resolution | 2048x2048 |
| Pixel Size | 11um |
| Bit depth | 16-bit |
| Full Well | 120ke- |
| Read Noise | 1.5e- |
| Dark current | 0.15 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 68% |
| Interface | USB 3 QSFP |
| Frame Rate | 24 FPS HDR / 48 FPS LDR |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
From $20,530.00
Extreme sensitivity, including excellent QE at 240 nm, coupled with ultra-low noise make this camera ideal for challenging applications requiring high dynamic range despite short exposures at high frame rate.
| Sensor | GSENSE400 BI |
| Diagonal Size (mm) | 31.9mm |
| Resolution | 2048x2048 |
| Pixel Size | 11um |
| Bit depth | 16-bit |
| Full Well | 120ke- |
| Read Noise | 1.6e- |
| Dark current | 0.4 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 95% |
| Interface | USB 3 QSFP |
| Frame Rate | 24 FPS HDR / 48 FPS LDR |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
$9,749.00
Designed and manufactured in the USA with same extreme reliability as the thousands of FLI OEM cameras. Install in remote observatories around the world with complete confidence in a long, trouble-free life. High sensitivity with exceptionally low noise and dark current. Great combination of resolution and frame rate.
| Sensor | IMX571 |
| Diagonal Size (mm) | 28.2 |
| Resolution | 6244 x 4168 |
| Pixel Size | 3.76um |
| Bit depth | 15-bit |
| Full Well | 50ke- |
| Read Noise | 1e- |
| Dark current | 0.002 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 91%% |
| Interface | USB 3 QSFP |
| Frame Rate | 7FPS |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
$8,439.00
Designed and manufactured in the USA with same extreme reliability as the thousands of FLI OEM cameras. Install in remote observatories around the world with complete confidence in a long, trouble-free life. High sensitivity CMOS camera with 90% quantum efficiency and 15.9 mm diagonal field of view is an ideal replacement for 1" format CCDs.
| Sensor | IMX533 |
| Diagonal Size (mm) | 16mm |
| Resolution | 3003 x 3003 |
| Pixel Size | 3.76um |
| Bit depth | 14-bit |
| Full Well | 50ke- |
| Read Noise | 1e- |
| Dark current | 0.002 EPS @ -20c |
| Shutter | Rolling |
| Peak QE | 91%% |
| Interface | USB 3 QSFP |
| Frame Rate | 20FPS |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
$14,699.00
Designed and manufactured in the USA with same extreme reliability as the thousands of FLI OEM cameras. Install in remote observatories around the world with complete confidence in a long, trouble-free life. Full frame sensor with 90% quantum efficiency and massive 43.1mm diagonal field of view to increase throughput.
| Sensor | IMX455 |
| Diagonal Size (mm) | 43.2 |
| Resolution | 9568 x 6300 |
| Pixel Size | 3.76um |
| Bit depth | 16-BIT |
| Full Well | 50ke- |
| Read Noise | 1e- |
| Dark current | 0.002 EPS @ -20C |
| Shutter | Rolling |
| Peak QE | 91% |
| Interface | USB 3 QSFP |
| Frame Rate | 4FPS |
Optional Accessories
Quantum Efficiency
Quantum efficiency (QE) measures how effectively a detector converts incoming photons into electrons. In our graphs, QE is expressed as a percentage. A sensor’s QE typically varies based on its architecture, coatings, and materials. High QE remains a crucial consideration for applications such as astronomy, space debris imaging, and life science research.
$5,699.00
- Sensor Type: CCD - Sony ICX814
- Horizontal Resolution: 3380 pixels
- Vertical Resolution: 2704 pixels
- Pixel Size: 3.69 µM x 3.69 µM
- ADC: 16 bit
- Readout Noise: 5e- typical value
- Interface: USB 2.0 High Speed, with embedded hub
- Power: 12v DC 2A
- Maximum Exposure Length: Unlimited
- Minimum Exposure Length: 1/1000 s
- Cooling: Termoelectric set point with max ΔT=-38°C
- Weight: approx. 900 gr
- Backfocus: ~27mm
- Exclusively as mono
Convenience of use has been key during the design. The Atik One also features an internal USB hub and accessory power port, so that you can keep the cable clutter under control. Only 2 cables for your imaging gear! In addition to this, two 1/4” tripod mounting holes are available, to give you more options for mounting the camera, other accessories, or for managing the cables.
The 5 position integrated 1.25″ filter wheel features a mechanical roller for filter location ensuring the highest levels of reproducibility image after image. The filter wheel is natively controlled from our software or has an Ascom driver for 3rd party programs. To make filter changing less of a chore the camera comes with a tool to allow filters to be loaded without opening the camera.
Atiks own capture software (Artemis) is included for camera control and data acquisition, and plug-ins are included to allow use with Astroart and Maxim DL.
Dawn image processing software is also included.
System Requirements:
- Pentium IV PC with 512MB RAM
- Windows XP/Vista/Win7/Win8/Win8 (not RT)
- CD-ROM drive
- USB 2.0 port
A universal (110-230V) power adapter is optional.
$2,299.00
Atik Infinity Mono
Technical Specification
- Sensor Type: CCD - Sony ICX825
- Horizontal Resolution: 1392 pixels
- Vertical Resolution: 1040 pixels
- Pixel Size: 6.45 µm x 6.45 µm
- ADC: 16 bit
- Readout Noise: 6e- typical value
- Gain Factor: 0.37e-/ADU
- Full Well: ~24,000e-
- Speed: 2-3 frames per second
- Interface: USB 2.0 High Speed and ST4 compatible guide port
- Power: 12v DC 1A
- Maximum Exposure Length: 120 s
- Minimum Exposure Length: 1/1000 s
- Cooling: Passive
- Weight: approx. 340 gr
- Backfocus: 13mm
Link to Video from the Atik You tube channel below:
$5,599.00
Specifications
| Sensor Type: | CCD - Sony ICX814 |
| Horizontal Resolution: | 3380 pixels |
| Vertical Resolution: | 2704 pixels |
| Pixel Size: | 3.69 µM x 3.69 µM |
| ADC: | 16 bit |
| Readout Noise: | 5e- typical value |
| Interface: | Mini-USB 2.0 High Speed |
| Power: | 12v DC 1A |
| Maximum Exposure Length: | Unlimited |
| Minimum Exposure Length: | 1/1000 s |
| Cooling: | Thermoelectric set point with max ΔT=-25°C |
| Weight: | approx. 400 grams |
| Backfocus: | 13mm |
The Atik 490EX fully supports 1.25" filters down to f/2, so you won't need to replace any of your current investment in wheel or filters. This is an added advantage when looking to invest in a CCD camera that may go through multiple telescopes.
The Atik-4 Series cameras are a development of the renowned 3-Series cameras, featuring better cooling and narrower body. They benefit from setpoint cooling to make taking matching dark frames a snap, and simple 12V power requirement to facilitate field operation. The impressive sensitivity, great cooling and narrow profile, make the Atik Series 4 outstanding CCD cameras to use on modern telescopes, including Hyperstar/Fastar systems.
$5,199.00
Specifications
| Sensor Type: | CCD - Sony ICX694 |
| Horizontal Resolution: | 2750 pixels |
| Vertical Resolution: | 2200 pixels |
| Pixel Size: | 4.54 µM x 4.54 µM |
| ADC: | 16 bit |
| Readout Noise: | 5e- typical value |
| Interface: | Mini-USB 2.0 High Speed |
| Power: | 12v DC 1A |
| Maximum Exposure Length: | Unlimited |
| Minimum Exposure Length: | 1/1000 s |
| Cooling: | Thermoelectric set point with max ΔT=-25°C |
| Weight: | approx. 400 grams |
| Backfocus: | 13mm |
The Atik 460EX fully supports 1.25" filters down to f/2, so you won't need to replace any of your current investment in wheel or filters. This is an added advantage when looking to invest in a CCD camera that may go through multiple telescopes.
The Atik-4 Series cameras are a development of the renowned 3-Series cameras, featuring better cooling and narrower body. They benefit from setpoint cooling to make taking matching dark frames a snap, and simple 12V power requirement to facilitate field operation. The impressive sensitivity, great cooling and narrow profile, make the Atik Series 4 outstanding CCD cameras to use on modern telescopes, including Hyperstar/Fastar systems.
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