Je préférerais qu’on nous aime, nous, les Argentins

© PHOTO LUIS ROBAYO/AFP

© PHOTO LUIS ROBAYO/AFP
After a nearly decade-long absence, we’re starting to see a revival of enthusiast compacts
Richard ButlerI’ve always liked enthusiast compacts: relatively small cameras with built-in lenses and a decent level of direct control. A camera I can travel with but still enjoy using. But, following a halcyon period in the early 2010s, the available options dwindled to the point that it became almost impossible to buy one.
However, things seem to have moved on since CP+ 2025, when we received relatively little enthusiasm from the manufacturers we asked about the prospects of a compact camera revival. The first flicker had already come the year before, from a slightly unexpected quarter, when Leica announced the D-Lux 8, a refreshed version of the enthusiast model last updated 6 years prior.

Then, perhaps even more unexpectedly, in mid 2025 Sony updated its full-frame, prime lens compact, the RX1, a decade after the previous version had been released. It was not a camera I expected to ever see, as I thought its job as a signifier that Sony ‘gets’ photography had been served, now that its full-frame Alpha cameras have received such widespread uptake. But, while some reviewers insisted it should have been more ambitious, I found the camera that actually existed to be one that addressed almost all the shortcomings of its predecessor, and added up to an excellent (albeit determinedly niche) photographers’ compact.
By 2026, the tone of many manufacturers has changed when asked about the market for compacts, and these past few months have seen the release of two major updates of well-liked, but seemingly abandoned models.
The Panasonic L10 is a substantial reworking of the LX100 series, eight years after the last model. It brought a larger body and the same, rather laggy zoom, but, like the RX1R III, it directly addressed the biggest criticisms we’d had with the previous versions. So again, while it’s easy for armchair R&Ders to demand more, the thing that you can buy is rather good.
And now we have the Sony RX10 V, which brings the latest autofocus and video performance levels along with a bigger battery, better viewfinder to a (comparatively) large-sensor superzoom, bringing into sharp relief the degree to which camera performance has continued to improve in the 9+ years since the last version. Even if image quality appears to have plateaued (or even peaked?) for now.

All four models have been met by derision from some quarters, not helped by the cumulative effect of inflation driving the prices up, in money terms at least. Others have criticized the degree to which these new cameras depend on existing parts for some of their key components (in all four cases, the lens designs date back around a decade, to the often less-demanding pixel counts of that time). And it’s true that none of these makers have shown the faith in the enthusiast photo sector that Canon and Sony did in the vlogging market, when they spent the money to develop new optics for the likes of the PowerShot V1 and ZV-1 II. But most of them got redesigned bodies and accommodate different batteries to their predecessors, so there’s more than just parts-bin diving going on.
Another criticism we’ve seen is that you can buy an ILC more cheaply. And this is sometimes true, even if you exclude second-hand and end-of-life bargains that no new camera can ever compete with. But, even in the (very) few instances where you can closely match the spec of these enthusiast compacts, while maintaining a similar level of hands-on, direct control and competing on size, it usually turns out that the person making the criticism simply doesn’t like the concept of fixed lens cameras, which can lead to the whole point of such cameras being dramatically missed.

There are times when you want the near-endless flexibility of an ILC (or ‘system camera’ if you prefer). But sometimes, some of us want a smaller camera, or a self-contained one. One that does the thing it’s designed to do, without constantly inviting the cost of additional lenses or forcing you to ponder which combination to pack.
I’m not, at this point anyway, suggesting we’re entering another golden age of enthusiast compacts. It’s clear that the cameras we’ve seen so far are updates of existing models (and not necessarily upgrades, to the extent you might hope). Sadly, I don’t think anybody is about to put the effort into delivering a larger-sensor successor to the Olympus XZ-2, which to me remains the high watermark for enthusiast compacts, in many regards. But at least, for whatever concerns we might each have about pricing or increased size, there are, after all this time, options.
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© PHOTO TONY KARUMBA/AFP
Having worked out where the L10’s extra bulk comes from, Richard wonders whether the benefits might be worth it.
Mitchell ClarkThe much larger battery in the L10 takes up almost 1/3rd of the body’s volume, so it’s no surprise that the camera is larger than the LX100 models.
The Panasonic L10 is appreciably larger than the LX100 models that came before it. This has caused some people to dismiss it as no longer making sense, once it’s comparable to the size of the smallest ILCs and their retractable lenses.
It’s also brought into question our use of the term “compact camera” which we’ve historically used for cameras with built-in lenses, but that’s an issue for another day.
Handling the L10, it quickly becomes apparent why it’s so much larger, with the new, much larger battery taking up approximately 1/3rd of the body space. This is because the L10 uses a battery with over twice the capacity of the one used in the LX100s: 15.8Wh, rather than 7.4.
The camera has also become a little deeper, because the screen is now articulated, rather than fixed (something we found frustrating on cameras with such a wide-angle lens). The L10 also has a separate door for its SD card, rather than it slotting in behind the battery, though sadly the door is so close to the tripod socket that this separation doesn’t bring any particular benefit.
Having traveled with the camera for a while, I found myself appreciating those two changes more than I was put off by the loss of pocketability. With a wrist-strap, it’s small enough to comfortably carry all day, but now with the battery life to sustain it over prolonged periods, and the ability to turn the rear screen in for protection, when stuffing it into a camera bag or carry-on luggage.
Does it have as much flexibility as an ILC? No, but its lens is brighter (in both absolute and equivalent terms) than ILC + kit lens pairings that come close to its size. And, like the Fujifilm X100 cameras, that are the same height and width as the L10, there’s a certain appeal to a self-contained device that does one particular thing, rather than a camera that could, theoretically, do anything. If you don’t see that appeal, then it’s not the L10, or its size, you dislike, it’s compact/fixed-lens cameras.
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Modern cameras are marvels of software engineering. But as physical objects, they’re much simpler than what came before.

I have an admission: there’s just something I don’t love about shooting with the Nikon Z8. Pressing the shutter and hearing the speaker go “click” just isn’t the same experience as hearing and, more importantly, feeling, a mechanical shutter fly open and slam closed at 1/200th of a second.
There are absolutely benefits to this approach: the e-shutter won’t wear out, no matter how many times it’s used, you don’t have to worry about shutter shock* and the sensor never being blocked means the EVF has a constant feed of what’s happening in front of the lens. Were the Z8 the only camera I shot with, I’m certain I’d grow used to it and, in time, probably come to love the experience of an e-shutter-only life.
I think, though, that this mild dissatisfaction has less to do with the Z8 specifically, and a… let’s not call it an issue, but perhaps a quirk of mirrorless cameras in general and how they interact with my specific experience. They are, unquestionably, technological marvels, better in almost every way than what came before. But they aren’t mechanical wonders.

I’m approaching 30 years old, which means my entire life has taken place after the digital revolution, both in cameras and the world at large. There is no Before Computers for me; some of my earliest memories are messing around with the settings of the family desktop when I was four.
As I grew older, I turned that interest into a job, building and fixing computers and, eventually, programming them and writing about technology. As a result, I understand how they work at a pretty fundamental level. While I might describe a mirrorless camera’s autofocusing and subject recognition capabilities as “magical,” I know they’re not. I’m familiar with how machine learning works, and could explain it in excruciating detail. I can recognize great software engineering, but I’m not astounded by it.
This isn’t the case for DSLRs. While I have a decent understanding of how they do what they do, I still find it incredible that it’s all possible at all. What do you mean you can use a system of mirrors, optical splitters and custom-made line sensors to let you look through the lens and autofocus at the same time? And the mirror and shutter coordinate to flip up and fire at precisely the right time to expose the sensor? 10 times a second? And they figured this out in the 90s?

It’s even truer for film, where you have a similar level of SLR complexity, but the computer part – the stuff I understand – is replaced by a strip of chemicals that physically change when exposed to light. Again, I have some knowledge of what’s actually going on. I’ve done the reading. But every time I pull developed film out of the tank and look at the negative, it just feels like witchcraft. How could pressing a button on a mirrorless camera and kicking off the take picture function in its computer ever compare?
Until you look at the pictures and realize that the Z8 can track a subject from the very edge of the frame, and have it in focus the entire time. And that it can capture it at 20fps, with no viewfinder blackout. And sync with flash at 1/250 of a second, without a mechanical shutter . It’s old news today, but versus any (D)SLR, it’s revolutionary.

This effect extends beyond cameras, too, in our increasingly computerized world. I’ve pretty much exclusively worn digital watches of some form, but my coworker Richard says the obvious point of comparison is intricately made and fully mechanical watches versus computer-powered smartwatches. The silicon models are simpler, easier to understand, and more accurate than a mechanical model could ever be. But where’s the soul?
For me, the more obvious point of comparison is one more familiar to me (but no less clichéd): internal combustion engine vehicles versus electric ones.** Like with mirrorless systems, I understand at a fundamental level how EVs work. And no matter how many truly excellent explainers I watch, and even how often I work on my own cars, I still can’t really wrap my mind around how a combustion engine does what it does. (You expect me to believe all these precise operations can be synchronized by a belt or a chain?) But like with cameras, that complexity, beautiful as it is, comes with a cost: I know some prefer the traditional experience, but driving an EV, it’s hard not to see it as the future.
I still can’t really wrap my mind around how a combustion engine does what it does
With all this said, there are still mechanical wonders around; both the kinds you’d expect, and ones that are a bit easier to overlook. As an example of the former, take Leica’s M-series cameras; the rangefinder mechanisms are intricate and precise, the kind of thing an unskilled technician could take apart, but not put back together. And while the company was, at one point, only producing a few hundred of its film rangefinders a year, they’ve seen a surge in popularity again, indicating a demand for that mechanical, analog experience.
There’s plenty of complex physical engineering to be found in the mirrorless world, too. Stabilization systems, both in-camera and in-lens, are an impressive dance between gyroscopic sensors, software and actuation mechanisms, and become even more so when coordinating together. And gimbals take this to an even higher level; seeing one in action can be so mesmerizing that you’d be forgiven for forgetting that the device that you’re watching corrects for the movement it’s detecting in real-time and moving a who-knows-how-heavy camera setup to match only costs $300.
I also fully realize that there will be those for whom the wonder is flipped; a mechanical engineer might be more awestruck by complex algorithms than mechanical linkages, no matter how delicate or ingenious. And some folks may be completely flummoxed by cameras new and old, alike. But whichever makes most sense with your brain, it’s worth stopping to remember that cameras aren’t just technology. They are, of course, impressive pieces of tech. But they’re also doing something special, whether we understand how it’s happening or not.
* – Which becomes an increasing concern as sensor resolution increases; there’s a reason the Sony a7R series use electronic front curtain, which avoids shutter shock, by default.
** – Apologies for choosing three particularly contentious examples.
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