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IMPORTANT: Our store is located in Canada. All orders that include products manufactured outside of Canada or USA will be subject to tariffs and duties, regardless of the order value. US customers are responsible for all applicable duties and tariffs, and those will be billed by the carrier, except for the Lacerta upgrade kit, for which we collect them at checkout.

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QHYCCD QHY6060 BSI/FSI Scientific CMOS Camera

by QHYCCD
SKU QHY-QHY6060BSIC2
Original price $40,000.00 - Original price $125,000.00
Original price
$125,000.00
$40,000.00 - $125,000.00
Current price $125,000.00
Price Match Policy!
  • 37.6 Megapixel Gpixel GSENSE6060 monochrome sensor
  • 61.34mm x 61.34mm effective image area
  • 10µm square pixels
  • 14-bit A/D conversion
  • USB 3.0 and dual 10-Gigabit Fiber interfaces
  • 2GB DDR3 internal image buffer
  • Air and liquid cooling system reaches -47°C below ambient
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  • Description
  • FAQ
  • Specifications
  • In the Box
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  • Warranty
  • QHYCCD QHY6060 BSI/FSI Scientific CMOS Camera

    The QHYCCD QHY6060 is a scientific imaging platform built around the massive 37.6 Megapixel Gpixel GSENSE6060 sensor, which features a 61.34mm square format and large 10µm pixels. With both Front-Side Illuminated (FSI) and Back-Side Illuminated (BSI) versions available, this camera delivers 14-bit dynamic range and captures full-resolution 16-bit frames at 4.0 FPS over USB3.0. To handle the immense data flow without dropped frames, the QHY6060 incorporates a 2GB DDR3 buffer and a dual 10-Gigabit Fiber interface for the most demanding scientific applications.

    A 61.34mm Square Sensor with 37.6 Megapixels

    The core of the QHY6060 is its Gpixel GSENSE6060 sensor, a monolithic 6134 x 6134 pixel array designed for professional sky surveys, satellite tracking, and wide-field scientific imaging. The 10µm pixels provide a large photon collection area, while the 37.6 megapixel resolution captures immense detail across an enormous field of view, covering an 86.7mm image circle. The camera is offered in both FSI and BSI configurations to match specific quantum efficiency and cost requirements.

    • Massive Field Coverage: The 61.34mm x 61.34mm sensor area is ideal for large-format astrographs and survey telescopes, enabling the capture of vast celestial regions in a single exposure.
    • FSI and BSI Options: Choose the Front-Side Illuminated (FSI) version for applications where its 70ke- full well capacity is critical, or the Back-Side Illuminated (BSI) model for the highest possible quantum efficiency (QE figures TBD).
    • Monochrome Sensor: As a mono-only device, the QHY6060 is optimized for scientific photometry and narrowband imaging that demands maximum sensitivity and resolution.

    14-bit A/D Conversion and 4.7e- Read Noise

    The QHY6060's electronics are engineered for high-fidelity data acquisition. The sensor's output is digitized by a 14-bit A/D converter, capturing over 16,000 levels of grayscale to resolve subtle brightness variations in astronomical targets. This is paired with a low read noise of just 4.7e- in the high-gain channel, ensuring that faint signals are not lost in the camera's own electronic signature.

    • High Dynamic Range: 14-bit conversion allows for deep exposures that capture both the bright cores and faint outer structures of galaxies and nebulae simultaneously.
    • Low Read Noise: At 4.7e-, the camera preserves signal-to-noise ratio, a critical factor for both short-exposure "lucky imaging" and long-duration scientific measurements.
    • Low Dark Current: The FSI model specifies an impressively low dark current of 0.2e-/pixel/sec at a sensor temperature of -15°C, minimizing thermal noise during long exposures.

    Dual 10-Gigabit Fiber and 2GB DDR3 Buffer

    A 37.6 megapixel sensor operating at 5.6 FPS generates an enormous amount of data. The QHY6060 is equipped with a professional data interface featuring both USB3.0 and dual 10-Gigabit optical fiber ports. An internal 2GB DDR3 memory buffer stages the images before transfer, preventing data loss even when the host computer's resources are temporarily strained.

    • High-Speed Interfaces: While USB3.0 offers 4.0 FPS at 16-bit, the dual 10-Gigabit Fiber interface (in PCIE mode) sustains the full 5.6 FPS at 16-bit, essential for time-domain astronomy or applications requiring maximum frame rate.
    • 2GB Image Buffer: This large onboard memory acts as a shock absorber for data flow, ensuring a stable and reliable connection during long imaging sequences.
    • Advanced Connectivity: The camera also includes a programmable trigger port, a high-speed sync port, and a GPS interface port for precise timing and system integration.

    Hybrid Air/Liquid Cooling Down to -47°C Below Ambient

    Effective thermal management is crucial for minimizing noise. The QHY6060 employs a powerful dual-stage thermoelectric (TEC) cooling system with both air and liquid cooling capabilities. This hybrid approach provides flexibility for different operating environments, from observatory domes to laboratory settings.

    • Air Cooling: The standard fan-based air cooling can achieve a sensor temperature of -25°C below ambient.
    • Liquid Cooling: For maximum performance, connecting a liquid coolant supply can drive the sensor down to -47°C below ambient (with 10°C water). This extreme cooling dramatically reduces dark current for the cleanest possible long exposures.
    • Integrated Environmental Sensors: An anti-dew heater for the optical window and an internal humidity sensor protect the system and provide critical environmental data during operation.
  • Which version of the QHY6060 is right for me, FSI or BSI?

    The choice depends on your primary application. The Front-Side Illuminated (FSI) version has a specified full well capacity of 70,000 electrons, making it better for applications where dynamic range and avoiding pixel saturation are the top priorities. The Back-Side Illuminated (BSI) version will typically offer higher quantum efficiency (sensitivity), making it the preferred choice for detecting the faintest possible signals, though its final specifications are still to be determined.

    What are the data storage and processing requirements for the QHY6060?

    The data requirements are substantial. A single 16-bit frame from the QHY6060 is approximately 75 MB. Capturing at 4.0 FPS over USB3.0 generates 300 MB of data per second. For sustained high-speed capture, you will need a fast host computer with an NVMe SSD, significant RAM, and a robust data backup strategy. Using the dual 10-Gigabit Fiber interface is recommended for professional installations to ensure stable data transfer.

    How does the QHY6060 perform on a large astrograph like a 24-inch f/6.5 reflector?

    The QHY6060 is an ideal match for large, corrected optical systems. On a 24-inch (610mm) f/6.5 reflector with a focal length of 3965mm, the 10µm pixels would yield a plate scale of 0.52 arcseconds per pixel, which is excellent for resolving fine detail in galaxies like the Whirlpool Galaxy (M51) or planetary nebulae. The massive 61.34mm sensor would cover a 53 x 53 arcminute field of view, capturing the entire Andromeda Galaxy (M31) in a single frame.

    Does the QHY6060's electronic rolling shutter affect scientific measurements?

    For most deep-sky imaging of static objects, an electronic rolling shutter has no negative impact. However, for applications involving very short exposures of rapidly changing targets, like high-speed photometry of variable stars or observing fast-moving satellites, a rolling shutter can introduce artifacts. For these specific use cases, a camera with a global shutter might be more appropriate. The QHY6060's high frame rate and sync ports can help mitigate some of these effects in certain scenarios.

    What is the purpose of the 2GB DDR3 buffer in the QHY6060?

    The 2GB DDR3 buffer is a critical component for reliable imaging. It acts as a temporary high-speed storage space on the camera itself. When you take an image, the data is read from the sensor and immediately stored in this buffer before being sent to the computer. This prevents data loss if your computer's USB bus is momentarily busy or experiences a slight delay, ensuring that no frames are dropped during a long or high-speed imaging sequence.

    Can I use the QHY6060 for asteroid or supernova surveys?

    Absolutely. The QHY6060 is exceptionally well-suited for survey work. Its combination of a very large field of view, high resolution, and excellent sensitivity allows you to cover vast areas of the sky efficiently. A robotic telescope equipped with this camera could repeatedly image large patches of the sky, enabling automated software to perform blink comparison to discover new asteroids or transient events like supernovae.

  • Image Sensor Gpixel GSENSE6060
    Sensor Type Monochrome
    Sensor Architecture Front-Side Illuminated (FSI) and Back-Side Illuminated (BSI) versions available
    Pixel Size 10µm x 10µm
    Effective Pixels 37.6 Megapixels
    Effective Image Area 61.34mm x 61.34mm
    Resolution 6134 x 6134 pixels
    A/D Conversion 14-bit
    Full Well Capacity FSI: 70ke- | BSI: TBD
    Read Noise 4.7e- (High Gain Channel)
    Dark Current FSI: 0.2e-/pixel/sec @ -15℃ | BSI: TBD
    Exposure Time Range 20µs - 300 sec
    Shutter Type Electronic Rolling Shutter
    Image Buffer 2GB DDR3 Memory
    Computer Interface USB 3.0, 2x 10-Gigabit Fiber
    Full Frame Rate (USB 3.0) 5.6 FPS @ 8-bit, 4.0 FPS @ 16-bit
    Full Frame Rate (PCIE Mode) 5.6 FPS @ 8-bit, 5.6 FPS @ 16-bit
    Cooling System Dual Stage TEC, Air and Liquid Cooled
    Air Cooling Delta-T -25°C below ambient
    Liquid Cooling Delta-T -35°C to -47°C below ambient
    Filter Wheel Port 4-PIN QHYCCD CFW Port
    Trigger Port Programmable TrigOut, High Speed Sync Port / GPS interface
    Anti-Dew Heater Yes
    Humidity Sensor Yes
    Optical Window AR+AR Multi-Layer Anti-Reflection Coating
    Back Focal Length TBD
    Adapters Customization
    Weight TBD
    Power TBD
  • QHYCCD Warranty