Eyefinity, SLI, 3DSurround, 3DVision, and CrossfireX. Multiple monitors. What does it all mean? What's the difference, in this epic pile of confusing terminology, and what do I need to make this work?
SLI and CrossfireX, for starters. These are multiple-GPU configurations designed for extra graphics power on a single display. These are the ones most people think of first in multi-GPU configurations, and the terms most likely to be generically thrown in as a placeholder value. SLI is the nVidia variant, CrossfireX is AMD. CrossfireX only requires multiple PCIE slots, SLI requires an SLI ready motherboard, which, as of recently, can include AMD motherboards.
3DVision: This is using funky technology and woogy glasses to make things pop out of the screen, like a bad '80s sci-fi flick. This hasn't been implemented all that well in a lot of games. It does, however, occasionally get mixed up with 3DSurround, due to the stupid similarity in naming.
3DSurround and Eyefinity are the methods of playing games across multiple displays. Not gaming on one and having a browser or other stuff going in a spare display, that's just a normal multiple display configuration. Some AMD cards will support Eyefinity off a single card, but it's pretty stupid. No nVidia solutions do that, which is really perfectly reasonable, since playing across multiple displays doesn't make a whole lot of sense if you're having to drop the settings to "fuzzy blob" to get the extra screen real estate. By the way, use an odd number of displays per row for this, you don't want lines in the middle of the game area.
Multiple monitor setups just include using two monitors, with at most one for gaming. This is pretty much supported by almost everything these days, since it's not all that harsh for non-3D use. It can be handy if you actually have a use for the screen real estate, but for a lot of people it's basically just a fancy thing.
Remember, for SLI, Eyefinity, 3DSurround, and CrossfireX, you need identical cards. You can't SLI a GTX 560Ti and a GT 9800. You could use the 9800 for dedicated PhysX, or for extra monitor outs, but you can't get the two different cards running SLI for alternate frame rendering.
No, this isn't long, really, but it's something that drives me nuts occasionally.
Tech tips, rants, and possibly occasional benchmarks and product reviews. Occasional Enthusiast PC component discussion, mockery of tech stuff, and vehement opinion, all from the rather unique viewpoint of an ex-Infantry, Stay-At-Home-Dad Geek. If you like it, subscribe to the feed.
Saturday, October 8, 2011
Bad Ripoff PC Seller.
Some guy decided to try and advertise on Team Liquid today, talking about his "friend's" hot gaming rigs.
http://jestercreativesolutions.com/gameprotech
I'd tell you to buy Cyberpower before this shit. AMD in this day and age? A 980 BE is in the i5 2400 price point, for 65% of the performance. He sells that with a 6850 for $1200. You can outperform that for $800...
Don't spam a site I hang out on the tech board of spamming ads for SHIT builds at STUPID prices. Dig?
http://jestercreativesolutions.com/gameprotech
I'd tell you to buy Cyberpower before this shit. AMD in this day and age? A 980 BE is in the i5 2400 price point, for 65% of the performance. He sells that with a 6850 for $1200. You can outperform that for $800...
Don't spam a site I hang out on the tech board of spamming ads for SHIT builds at STUPID prices. Dig?
Saturday, October 1, 2011
Airflow, Cases, Coolers, or DIY Wind Tunnel Kits.
Ok, so I've been thinking about a rant on this topic for a while anyway, but a good friend's predicament made me decide to go ahead and do it. For the sake of this post, we'll call him "Thomas", to avoid any potential embarrassment.
If you've ever seen a high end Enterprise workstation, or an older PC, you might remember something being vaguely different from a lot of PC's these days. If you can guess what I'm talking about, raise your hand. Then feel like a moron, since nobody can see your hand. The thing I'm talking about, of course, is the fact that those computers don't move enough air to achieve escape velocity. Holy shit, crazy talk, I know. No turbofan sitting next to your desk? How dare I blaspheme the pantheon of PC case manufacturers that way?
Don't get me wrong, there's absolutely nothing wrong with a case with a decent amount of airflow. But a decent amount of airflow and a decent amount of moving air that doesn't do a damn thing are entirely different animals. My friend "Thomas" is a great example of this. He has some cheap-ass gamer case that Ali-Baba and the CyberPower Thieves stuck him with. It has two front 120mm intakes, top-mounted isolated PSU intake, optional (in this case installed) 140mm top exhaust, the radiator for his (ugh) Corsair H50 mounted as an exhaust in the back, and one or two side 120mm fans. That's a metric asston of air moving around, in case you hadn't noticed. Somehow, though, he can't keep SLI GTX460's very cool. Granted, that's not always easy, but it's not insanely difficult, either, and he's hitting dangerous temps under load.
So. why am I bringing this up? Well, airflow is complicated, and I'm not going to claim to know everything (or even close) about aerodynamics. What I do know, though, is that a lot of things people think they know about PC cooling are very very wrong. A popular myth: "Get a bigger case to keep things cooler." Horribly wrong. Get a case that's got room for your components. Large amounts of dead airspace with no components create a path of least resistance for airflow that doesn't serve a purpose.
There's a couple of (general) rules to follow when trying to figure out your airflow.
1: Know your components. Nothing more important than knowing your configuration's needs. Granted, these can change later on with upgrades and whatnot, but it's still good to know.
2: Keep dead air space to a minimum within reason. Don't cramp your components, trapping heat is bad. But once your components fit reasonably, too much more space makes for bad airflow to where you need it.
3: No competing airflow. Avoid cases where your PSU is going to be fighting your CPU cooler or GPU airflow.
Here's the thing. Air follows the path of least resistance. Hot air rises, and heat is bad stuff. Because of this, if you can stand the slightly higher noise, External Exhaust graphics cards are good stuff, since they blow the hot air out of the case, unlike radial coolers that just get the heat away from the GPU and let it rise up through the CPU cooler. Negative pressure cases are ok for systems with limited restriction on airflow, but if there's a lot of stuff in there, actively directing the airflow with a positive pressure system is frequently better.
Don't forget to prioritize cooling. RAM doesn't need cooling as much as your CPU, so don't stick some retarded fan over your memory that thrashes airflow for your CPU. If you have a side panel, push air into your GPU if it's external exhaust, or pull air away before it can rise if it's radial cooling. If you're using a closed loop liquid cooler, I don't care how much it helps your CPU temps to use the radiator as an intake, just say no to pulling heat into your case.
Above all, apply common sense. The more directly cool air gets to your components, and hot air gets away from them, the better. Always. Avoid dead air, and avoid competing airflow. Avoid pointless restriction.
Remember, a lot of moving air doesn't mean good cooling. A space shuttle launch moves a shitload of air, and that's not cold at all.
If you've ever seen a high end Enterprise workstation, or an older PC, you might remember something being vaguely different from a lot of PC's these days. If you can guess what I'm talking about, raise your hand. Then feel like a moron, since nobody can see your hand. The thing I'm talking about, of course, is the fact that those computers don't move enough air to achieve escape velocity. Holy shit, crazy talk, I know. No turbofan sitting next to your desk? How dare I blaspheme the pantheon of PC case manufacturers that way?
Don't get me wrong, there's absolutely nothing wrong with a case with a decent amount of airflow. But a decent amount of airflow and a decent amount of moving air that doesn't do a damn thing are entirely different animals. My friend "Thomas" is a great example of this. He has some cheap-ass gamer case that Ali-Baba and the CyberPower Thieves stuck him with. It has two front 120mm intakes, top-mounted isolated PSU intake, optional (in this case installed) 140mm top exhaust, the radiator for his (ugh) Corsair H50 mounted as an exhaust in the back, and one or two side 120mm fans. That's a metric asston of air moving around, in case you hadn't noticed. Somehow, though, he can't keep SLI GTX460's very cool. Granted, that's not always easy, but it's not insanely difficult, either, and he's hitting dangerous temps under load.
So. why am I bringing this up? Well, airflow is complicated, and I'm not going to claim to know everything (or even close) about aerodynamics. What I do know, though, is that a lot of things people think they know about PC cooling are very very wrong. A popular myth: "Get a bigger case to keep things cooler." Horribly wrong. Get a case that's got room for your components. Large amounts of dead airspace with no components create a path of least resistance for airflow that doesn't serve a purpose.
There's a couple of (general) rules to follow when trying to figure out your airflow.
1: Know your components. Nothing more important than knowing your configuration's needs. Granted, these can change later on with upgrades and whatnot, but it's still good to know.
2: Keep dead air space to a minimum within reason. Don't cramp your components, trapping heat is bad. But once your components fit reasonably, too much more space makes for bad airflow to where you need it.
3: No competing airflow. Avoid cases where your PSU is going to be fighting your CPU cooler or GPU airflow.
Here's the thing. Air follows the path of least resistance. Hot air rises, and heat is bad stuff. Because of this, if you can stand the slightly higher noise, External Exhaust graphics cards are good stuff, since they blow the hot air out of the case, unlike radial coolers that just get the heat away from the GPU and let it rise up through the CPU cooler. Negative pressure cases are ok for systems with limited restriction on airflow, but if there's a lot of stuff in there, actively directing the airflow with a positive pressure system is frequently better.
Don't forget to prioritize cooling. RAM doesn't need cooling as much as your CPU, so don't stick some retarded fan over your memory that thrashes airflow for your CPU. If you have a side panel, push air into your GPU if it's external exhaust, or pull air away before it can rise if it's radial cooling. If you're using a closed loop liquid cooler, I don't care how much it helps your CPU temps to use the radiator as an intake, just say no to pulling heat into your case.
Above all, apply common sense. The more directly cool air gets to your components, and hot air gets away from them, the better. Always. Avoid dead air, and avoid competing airflow. Avoid pointless restriction.
Remember, a lot of moving air doesn't mean good cooling. A space shuttle launch moves a shitload of air, and that's not cold at all.
Subscribe to:
Posts (Atom)