RECOMMENDED RIG LAYOUTS
Added this section as a separate post due to size limits on the original post.
All layouts used in this section, old and current, can be found
here.
There's rigs for each use case, some for the folk that just want as much performance as possible while keeping heat as low as possible, and those that would rather have something that never heats up, and everything in-between. The following is a collection of layouts that were deemed "the best" in their respective categories, based on the tags attached to them. If you find any improvements in the listed chassis feel free to post them!
In case none of the listed chassis fit your needs in terms of uses before overheating or overclocking access, I strongly suggest checking the
cracking rigs thread, where a library of rig designs that may fit your particular needs can be found.
For the sake of not making this guide even longer than it needs to be, only a few select layouts will be posted in this section. I suggest checking either the thread or the full archive posted above for other alternative designs.
Most layouts here were sent to me by Reshula [2644462], so assume the author is them unless stated otherwise.DISCLAIMER: All heat categorization is assuming you have the education course for heat reduction. Your results may differ if you don't have it yet.ZERO-HEAT LAYOUTS
Thermally stable layouts that can be used multiple times without critical components gaining heat.
[image: drive.google.com]TAGS: Single-chassis | Pre-OC | Zero-Heat | Budget
(Original design by Tiksu, Zuko49, Beesus, et al.)Simulator linkOne of if not the best budget zero-heat rigs. The price is very low and the parts are easy to get, with a fairly good performance. Arguably the best layout for folk just starting with their rigs
Requires:
- PSU x1
- CPU x2
- eCPU x19
- Computer Fan x2
[image: drive.google.com]TAGS: Single-chassis | Pre-OC | Zero-Heat
Simulator linkA very solid rig before overclocking comes into play. The price tag may be a bit high considering it requires five HPCPUs and four water blocks, but the performance is nothing to scoff at.
Requires:
- PSU x2
- CPU x 8
- eCPU x 4
- HPCPU x5
- Water Block x4
[image: drive.google.com]TAGS: Single-chassis | Post-OC | Zero-Heat
(Original design by Bug [1455582])Simulator linkA great rig all around, no heat gain by critical components and uses all power available. The layout for the cooling components is so good that pretty much most other layouts you'll find in this section will be using that. Still, very expensive and one of the main reasons for the spike in price for HPCPUs.
Requires:
- PSU x3
- HPCPU x10
- Water Block x4
- Heat Sink x5
[image: drive.google.com]TAGS: Double-chassis | Post-OC | Zero-Heat
Simulator LinkA very strong double-chassis rig with a price tag to match. Very few rigs come close to this one in performance, if keeping heat zero is the goal. Does need a LOT of HPCPUs, 20 to be precise, making it very expensive to assemble if you don't already have the parts for it.
Requires:
- PSU x7
- eCPU x3
- HPCPU x20
- Water Block x8
- Heat Sink x5
[image: drive.google.com]TAGS: Triple-chassis | Post-OC | Zero-Heat
Simulator linkA tried and tested design, heat remains low as ever, and the price increases even further, as does the performance.
Requires:
- PSU x10
- CPU x1
- eCPU x2
- HPCPU x32
- Computer Fan x2
- Water Block x8
- Heat Sink x10
LOW-HEAT LAYOUTS
Layouts with minor heat generation, can be used more than ten times before overheating becomes an issue[image: drive.google.com]TAGS: Single-chassis | Pre-OC | Low-Heat | Budget
(Posted by Beesus [2679467] here)Simulator linkA solid low-heat very strongly based on dance's design, slightly lower MIPS but can function 29 times without having issues. Dirt cheap as well.
Requires:
- PSU x1
- CPU x2
- eCPU x22
- Computer Fan x1
[image: drive.google.com]TAGS: Single-chassis | Pre-OC | Low-Heat
Simulator linkHalf the uses compared to the previous layout giving you 15 shots, but an increase of nearly 10% in MIPS. Significantly more expensive as well, with the use of HPCPUs.
Requires:
- PSU x2
- CPU x3
- eCPU x7
- HPCPU x7
- Water Block x4
[image: drive.google.com]TAGS: Single-chassis | Post-OC | Low-Heat
Simulator link18 uses and very strong performance, somewhat cheaper than its zero-heat counterpart with a similar performance. Uses no water blocks and a single fan for cooling, making it a good option if you have plenty of heat sinks.
Requires:
- PSU x3
- CPU x2
- HPCPU x9
- Computer Fan x1
- Heat Sink x7
[image: drive.google.com]TAGS: Double-chassis | Post-OC | Low-Heat
Simulator linkA strong double-chassis option, with up to 12 uses.
Requires:
- PSU x7
- CPU x3
- HPCPU x20
- Water Block x8
- Heat Sink x5
[image: drive.google.com]TAGS: Triple-chassis | Post-OC | Low-Heat
Simulator linkThe usual design with the usually high performance: 15 uses with an almost flat 6.5BFS. Very expensive as usual.
Requires:
- PSU x10
- CPU x1
- eCPU x3
- HPCPU x32
- Computer Fan x1
- Water Block x8
- Heat Sink x10
HIGH-HEAT LAYOUTS
Layouts that generate a ton of heat but are equally powerful, will function less than ten times before heat becomes an issue.[image: drive.google.com]TAGS: Single-chassis | Pre-OC | High-Heat
Simulator linkArguably the strongest pre-overclocking rig, will work exactly once, with heat almost touching 100% yet not quite overheating. Still pretty expensive.
Requires:
- PSU x3
- CPU x3
- eCPU x2
- HPCPU x13
- Water Block x1
[image: drive.google.com]TAGS: Single-chassis | Post-OC | High-Heat
(Original design by Fetheryhorse6 [2317488])Simulator linkAnother one-shot, with a very significant increase in performance.
Requires:
- PSU x4
- HPCPU x13
- Water Block x4
[image: drive.google.com]TAGS: Double-chassis | Post-OC | High-Heat
(Original design by Fetheryhorse6 [2317488])Simulator linkStandardized layout employing the single layout version. Still as effective
Requires:
- PSU x8
- HPCPU x26
- Water Block x8
[image: drive.google.com]TAGS: Triple-chassis | Post-OC | High-Heat
Simulator linkAn interesting design using a partial powerbank approach, only uses 9 cooling components and is the closest I've seen to 7BFS on a functional rig. The sheer amount of HPCPUs used in this design at the time of posting makes the price tag on this toaster a whopping 80M, or close enough to that.
Requires:
- PSU x12
- CPU x1
- eCPU x4
- HPCPU x37
- Water Block x9