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Pixii launches 24MP Pixii Max, its first full-frame rangefinder

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Pixii launches 24MP Pixii Max, its first full-frame rangefinder


Image: Pixii

French camera maker Pixii has announced the Pixii Max, a 24MP full-frame rangefinder camera that accepts Leica M-mount lenses.

The Pixii Max (Model A3410) is the company’s fifth camera and the first to move from an APS-C sensor to full frame. Like the previous, 26MP A2572+ and A2572 models, the Max uses a fully 64-bit processing pipeline, allowing fine-precision manipulation of the sensor’s 14-bit output.

Also like its predecessors, the camera’s true rangefinder viewfinder has framelines projected into it (35mm in this instance), meaning they can correct for parallax as you focus to closer distances. The outer limits of the finder represent a 28mm angle of view. The camera’s core exposure settings are also projected into the viewfinder.

Photo: Pixii

It also has a mono option that takes into account the relative perceptual lightness of its sensor’s Red, Green and Blue filters, to create a monochrome DNG Raw file. This should give the sharpness benefit of not having to demosaic the results, but won’t gain the ∼1EV improvement at any given ISO that completely removing the filter array would bring.

The Pixii Max is available for pre-order from July 5th at a cost of €3999, without taxes (approx $4325 at current exchange rates) for the version with 32GB of internal memory or €4249 (∼$4595). As before, the company says there are options to upgrade previous models to the latest specifications. We’ve asked the company for more details of this upgrade path.

Press Release:

Pixii SAS announces Pixii Max, its first full-frame camera with a high-performance 24.5MP sensor, wide-angle optical viewfinder and a seamless upgrade option for existing Pixii owners. Available for pre-order on July 5, with a launch price of 3999 euros w/o taxes.

Pixii SAS, the rising French startup, unveils Pixii Max today, its first full-frame digital rangefinder camera.

Building on the success of its predecessors, Pixii Max marks a significant leap forward with exciting new features:

New 24.5MP full-frame sensor: The carefully selected, high-resolution 24.5MP full-frame sensor, builds on the strength of its pixel technology to deliver outstanding image quality, with exceptional dynamic range surpassing even its top-ranked predecessors. Photographers will appreciate the familiar feel of the 24×36 sensor paired with their rangefinder lenses of choice.

Wide-Angle Viewfinder: The new optical viewfinder complements the sensor capabilities, with high-index optical glass and fully multi-coated anti-reflective surfaces, to offer unmatched clarity and a wider field of view. The new design features comfortable frame lines for 35mm lenses, while offering an ultra-wide field of view, up to 28mm.

Upgrade option: Pixii Max isn’t just a new camera; it’s also another new upgrade path for existing Pixii camera owners. It packs all the power of Pixii Max into the existing compact form factor, with even a slight reduction in overall depth. The new upgrade confirms Pixii’s commitment to preserving the investment made by photographers in their cameras.

Additional Key Features of Pixii Max:

Modern 64-bit Platform, shared with the current Pixii cameras models, providing exceptional performances, connectivity and seamless over-the-air software upgrades.

Native Monochrome, Pixii’s exclusive feature to capture true B&W digital negatives with a bayer sensor. Pixii Max is also fully capable of producing native monochrome files.

Interactive Rangefinder Viewfinder, another Pixii exclusive feature providing real-time controls and indicators right inside the optical viewfinder, for a truly modern and immersive experience.

The Pixii Max joins the Pixii camera family, offering photographers a new option for rangefinder photography. Pixii remains committed to producing and developing the well-loved APS-C model, proposing two exceptional cameras to choose from for photographers with different needs.

Pricing and Availability

Pixii Max (Model A3410) will offer photographers a new entry point into the world of full-frame digital rangefinders, with special introductory prices:

  • Pixii Max (32GB): 3999 EUR w/o taxes.
  • Pixii Max (128GB): 4249 EUR w/o taxes.

Pixii Max will be available for pre-order on July 5.



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How one photographer turned a DIY dream into a full-frame reality

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How one photographer turned a DIY dream into a full-frame reality


The Sitina S1

Photo: Wenting Zhang

Here at DPReview, we love DIY photography projects, and one recently came to our attention that we just had to share.

Boston-based engineer and photographer Wenting Zhang has been experimenting with DIY electronics for over a decade and also loves taking photos, so building his own camera was a natural extension of these interests.

“I initially had the idea of building my own camera during middle school. Back then, I wasn’t allowed to use my parents’ camera and couldn’t afford a real camera. I naively thought it would be possible, and cheaper, if I just built one myself,” Zhang told DPReview. His initial attempt didn’t go well, and he eventually saved enough to buy a used Nikon D90, but the itch to build his own camera stayed. Whenever he saw someone posting about a DIY camera project, he thought, “If other people can pull that off, I should be able to as well.”

In this recently published video, Wenting Zhang walks through assembly of his current prototype camera.

Zhang says he started the project in 2017, and it’s not finished yet. “Engineers are usually bad at estimating how long things will take. I am probably particularly bad at that. I expected this project to be challenging, so it would take a bit longer, like probably one year. Turned out my estimation was off,” he says.

He makes clear to point out that this is a hobby project, purely for fun, and that his camera isn’t going to achieve the level of image quality found in commercially available products from established companies. Despite that, his project provides a fascinating look into what’s involved in building a camera from the ground up. What’s more, Zhang has open-sourced his entire project on GitLab for anyone else who might want to build upon it.

Zhang took this photo with a monochrome version of the Sitina, which uses the same sensor but without the Bayer color filter array.

Photo: Wenting Zhang

Although CMOS has become the dominant sensor technology in consumer cameras, owing to factors like speed, lower power consumption and cost, Zhang’s camera is built around a 10MP Kodak KAI-11000CM CCD sensor with a global electronic shutter, which he selected for a rather pragmatic reason: it was easy to source. “Most manufacturers (like Sony) aren’t going to just sell a sensor to a random hobbyist, so I have to buy whatever is available on eBay. This 10MP CCD turned out to be available,” he explains.

Zhang attaches the CCD sensor to his heat sink.

Photo: Wenting Zhang

The choice of sensor has a useful benefit. As he explains in one of his videos, designing and building a mechanical shutter is complicated and beyond his area of expertise, so his DIY design is based on using an electronic shutter. For similar reasons, he chose to use an LCD screen as a viewfinder rather than a prism-based optical design, resulting in a mirrorless camera.

Photo captured with the Sitina S1.

Photo: Wenting Zhang

Zhang wanted his design to be compatible with existing lenses. His mirrorless design, with a short flange distance, provided a great deal of flexibility to adapt different lenses to the camera, and he’s currently using E-mount with active electrical contacts.

And that’s just the start. Zhang also needed to integrate a CCD signal processor with an ADC (analog to digital converter), a CPU, battery, an LCD screen and buttons. He also designed and built his own circuit board with a power-only USB port, flash sync terminal, power button and SD card slot, and create the software and user interface to tie it all together.

In order to build his camera, Zhang had to design and print his own circuit boards.

Image: Wenting Zhang

Finally, everything fits inside a 3D-printed enclosure that, to my eye, looks rather attractive.

As for the camera’s name, the Sitina S1? “I simply put the word ‘silicon’ and ‘retina’ together to form the word ‘sitina’. I don’t have any better ideas of naming the camera model, so I simply call it the ‘Sitina S1’, he explains. “But the name may change in the future if I ever have better ideas.”

Zhang was kind enough to share some photos from his DIY ‘for fun’ camera.

Photos: Wenting Zhang

Now that he’s built his own camera, Zhang has an appreciation for how much work goes into the design, development and optimization of a modern consumer camera. “I would imagine it would take an army of designers and engineers of various disciplines to build a modern consumer camera,” he says. “There are so many different components but few ‘off the shelf’ parts.”

“On top of the hardware, we still have layers of software. There’s no standard camera operating system (like Android or Windows) so each vendor is developing its own OS. On top of the OS, you have image processing algorithms where each vendor probably has their own secret sauce for better color, lower noise, etc. I think it’s quite incredible that camera vendors are able to do all these things in-house.”

In this video, Wenting Zhang dives into the technical details of what’s required to design a working camera.

Zhang is still working to address issues in his current prototype. “I think in another year or two it could reach a state where it can be a useable and useful camera. I do wish to sell the camera either as a kit people can put together or as an assembled machine. Not for profit, but so people can play with it, and my effort on this project won’t go to waste.”

If you’re curious to learn more about how a camera is built, I encourage you to watch both of Zhang’s videos in their entirety as he goes into great detail about the process. And, if you have the technical skills and interest to try this type of DIY project yourself, his open source project could be invaluable. I’ll be the first to admit it goes beyond my level of engineering know-how, but I would be first in line to order a Sitina camera DIY kit if the opportunity arose.



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The Sitina S1: How a determined DIY photographer built his own full-frame camera (and open-sourced the project)

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How one photographer turned a DIY dream into a full-frame reality


The Sitina S1

Photo: Wenting Zhang

Here at DPReview, we love DIY photography projects, and one recently came to our attention that we just had to share.

Boston-based engineer and photographer Wenting Zhang has been experimenting with DIY electronics for over a decade and also loves taking photos, so building his own camera was a natural extension of these interests.

“I initially had the idea of building my own camera during middle school. Back then, I wasn’t allowed to use my parents’ camera and couldn’t afford a real camera. I naively thought it would be possible, and cheaper, if I just built one myself,” Zhang told DPReview. His initial attempt didn’t go well, and he eventually saved enough to buy a used Nikon D90, but the itch to build his own camera stayed. Whenever he saw someone posting about a DIY camera project, he thought, “If other people can pull that off, I should be able to as well.”

In this recently published video, Wenting Zhang walks through assembly of his current prototype camera.

Zhang says he started the project in 2017, and it’s not finished yet. “Engineers are usually bad at estimating how long things will take. I am probably particularly bad at that. I expected this project to be challenging, so it would take a bit longer, like probably one year. Turned out my estimation was off,” he says.

He makes clear to point out that this is a hobby project, purely for fun, and that his camera isn’t going to achieve the level of image quality found in commercially available products from established companies. Despite that, his project provides a fascinating look into what’s involved in building a camera from the ground up. What’s more, Zhang has open-sourced his entire project on GitLab for anyone else who might want to build upon it.

Zhang took this photo with a monochrome version of the Sitina, which uses the same sensor but without the Bayer color filter array.

Photo: Wenting Zhang

Although CMOS has become the dominant sensor technology in consumer cameras, owing to factors like speed, lower power consumption and cost, Zhang’s camera is built around a 10MP Kodak KAI-11000CM CCD sensor with a global electronic shutter, which he selected for a rather pragmatic reason: it was easy to source. “Most manufacturers (like Sony) aren’t going to just sell a sensor to a random hobbyist, so I have to buy whatever is available on eBay. This 10MP CCD turned out to be available,” he explains.

Zhang attaches the CCD sensor to his heat sink.

Photo: Wenting Zhang

The choice of sensor has a useful benefit. As he explains in one of his videos, designing and building a mechanical shutter is complicated and beyond his area of expertise, so his DIY design is based on using an electronic shutter. For similar reasons, he chose to use an LCD screen as a viewfinder rather than a prism-based optical design, resulting in a mirrorless camera.

Photo captured with the Sitina S1.

Photo: Wenting Zhang

Zhang wanted his design to be compatible with existing lenses. His mirrorless design, with a short flange distance, provided a great deal of flexibility to adapt different lenses to the camera, and he’s currently using E-mount with active electrical contacts.

And that’s just the start. Zhang also needed to integrate a CCD signal processor with an ADC (analog to digital converter), a CPU, battery, an LCD screen and buttons. He also designed and built his own circuit board with a power-only USB port, flash sync terminal, power button and SD card slot, and create the software and user interface to tie it all together.

In order to build his camera, Zhang had to design and print his own circuit boards.

Image: Wenting Zhang

Finally, everything fits inside a 3D-printed enclosure that, to my eye, looks rather attractive.

As for the camera’s name, the Sitina S1? “I simply put the word ‘silicon’ and ‘retina’ together to form the word ‘sitina’. I don’t have any better ideas of naming the camera model, so I simply call it the ‘Sitina S1’, he explains. “But the name may change in the future if I ever have better ideas.”

Zhang was kind enough to share some photos from his DIY ‘for fun’ camera.

Photos: Wenting Zhang

Now that he’s built his own camera, Zhang has an appreciation for how much work goes into the design, development and optimization of a modern consumer camera. “I would imagine it would take an army of designers and engineers of various disciplines to build a modern consumer camera,” he says. “There are so many different components but few ‘off the shelf’ parts.”

“On top of the hardware, we still have layers of software. There’s no standard camera operating system (like Android or Windows) so each vendor is developing its own OS. On top of the OS, you have image processing algorithms where each vendor probably has their own secret sauce for better color, lower noise, etc. I think it’s quite incredible that camera vendors are able to do all these things in-house.”

In this video, Wenting Zhang dives into the technical details of what’s required to design a working camera.

Zhang is still working to address issues in his current prototype. “I think in another year or two it could reach a state where it can be a useable and useful camera. I do wish to sell the camera either as a kit people can put together or as an assembled machine. Not for profit, but so people can play with it, and my effort on this project won’t go to waste.”

If you’re curious to learn more about how a camera is built, I encourage you to watch both of Zhang’s videos in their entirety as he goes into great detail about the process. And, if you have the technical skills and interest to try this type of DIY project yourself, his open source project could be invaluable. I’ll be the first to admit it goes beyond my level of engineering know-how, but I would be first in line to order a Sitina camera DIY kit if the opportunity arose.



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Fujifilm says X-H2/S and GFX 100S II will get AF improvements and new F-Log2 C mode

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Fujifilm says X-H2/S and GFX 100S II will get AF improvements and new F-Log2 C mode



Today, Fujifilm announced an upcoming firmware update for the X-H2, X-H2S, and GFX 100S II that’s meant to improve the cameras’ video capabilities.

In a YouTube video, the company says the update will improve the stability of autofocus subject tracking while shooting video. It’s also adding support for Ambient’s wired Lockit timecode synchronization devices and introducing a new F-Log2 C mode, which the company says will provide a much wider color gamut than the traditional F-Log2 that the cameras already had.

F-Log2 C uses a wider color gamut than the standard F-Log2.

The company says it’s currently “considering further enhancements” and that people should stay tuned. There’s clearly an appetite for more updates among Fujifilm users: currently, the video’s comment section is essentially wall-to-wall people asking why the update isn’t also coming to the X-T5 and the X-S20, and saying that they’re still hoping for additional improvements to autofocus performance in those cameras’ stills modes as well.

The updates for the X-H2, X-H2S, and GFX 100S II are expected to come out in November. We’ll be sure to let you know when they’re officially released and ready to be installed on your camera.



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