Showing posts with label Nitro. Show all posts
Showing posts with label Nitro. Show all posts

Monday, November 9, 2015

R9 380 Nitro Volt mod guide

As you all know I wanted to make an Sapphire R9 380 Nitro(review of the card) volt mod guide. However me being me I royal messed up my R9 380 and had to leave for the UK before I fixed it. However a kind gentleman on Facebook has provided PCB pictures. They aren't exactly what I need however they are good enough to do the guide with. Lets get to it.

DISCLAIMER: Everything past this point will void your warranty! If the GPU stops working due to you doing any of the things described bellow I am at no fault what so ever.

So first lets breakdown that PCB into what's important.










































There isn't much to modding the card. Hook some sensing wires to the memory and core voltage VRMs and pull a GND from where ever you want to. I highlighted some good candidates in brown.

First up core voltage and core current limits. The current limit is simple to disable just cut the 2 traces highlighted in green. Now your card will think it's pulling 0W regardless of what the powerdraw actually is. So power related throttling is history. However it does make it easy to blow up the VRM by running Furmark since there is nothing to stop the card from pulling too much power. This should only be a risk when going over 1.45V core voltage. To cut the traces I suggest digging into them with a needle. This picture also shows how you could try modding core voltage however I recommend that you avoid soldering onto a pin or trace because it is really hard to not screw up. 

Instead solder a 22K(+/-5K) ohm variable resistor from the red point to ground. This will give you free control over core voltage. I recommend not going over 1.35V on air cooling for daily usage. For benching 1.45V is my ceiling. More than that seems to rapidly degrade 28nm GPUs.

The VRAM is an easy mod. All you do is hook a 220K(+/-50K) ohm variable resistor from the pin highlighted in orange to ground and you'll have VRAM voltage on manual control. There is no power limit for the VRAM so you don't have to worry about that. I don't rember the stock voltage of the VRAM on the 380 but don't go over 1.7V for daily usage. On sub zero 1.85-1.95V should be optimal.

Practical Tips
Use a fine chisel tip for all the soldering. A needle tip will make everything much harder because the tip of the pen won't actually melt anything.

If you have a temperature regulated iron set it to 240-250C for everything.

When you finish soldering one of the connections to an SMD component I recommend using plastidip to hold it in place. Hot glue is harder to apply without breaking a weak soldering joint and is very bulky which might prevent you from fitting the heatsink back on the card.


Please donate if you want to see more guides! I can't do mods on GPUs I don't have and unfortunately I'm not important enough to get free samples yet...
If just 200 of you were to donate 5$ I would be able to do almost any GPU you're interested in.

Sunday, August 23, 2015

Live Stream on Monday

If you follow AHOC on Facebook you probably know that I've figured out what I did wrong with the R9 380. I've decided that I'm going to clean the card up and make it what I would call my ideal card. I'll be streaming this on Monday and hopefully I'll get the card to scale with voltage an I'll hopefully get it to hit 1.2Ghz like I originally wanted.

Thursday, August 20, 2015

Sapphire R9 380 Nitro Physical review










Buildzoid's GPU reviews explained

Specs
1792 stream processors clocked at 985mhz
4GB of VRAM clocked at 1450mhz on a 256bit bus
2 6pin power connectors officially supporting up to 225W
Core clock throttling temperature 85C°
1 DVI-I port
1 DVI-D port
1 HDMI port
1 DisplayPort

Cooling: 7/10

 



  














I currently don't have the equipment necessary to do proper noise testing but just ot give you an idea of the fan noise I'll tell you this. With the GPU at 0RPM my sound meter reads about 51.2dB sitting 8cm from the GPU. With the fans at 50% it reads 53 dB. At 65% it reads 59 dB. At 75% it reads 63dB and at 100% it reads 72dB. I'd recommend running the card around 55-65% fan speed since that's when the noise temperature trade off is quite reasonable.

VRM: 8/10
Core
- 5 true phases provided by an OnSemi NCP81022???
- 2 low side OnSemi 4C10N MOSFETs in parrallel providing a total of 68A per phase at 80C case temperature
- 1 high side OnSemi 4C10N MOSFET providing 34A per phase at 80C case temperature
- Unknow switching frequency
VRAM
- 1 phase
- 2 low side OnSemi 4C10N MOSFETs in parrallel providing a total of 68A per phase at 80C case temperature
- 2 high side OnSemi 4C10N MOSFETs in parrallel providing a total of 68A per phase at 80C case temperature
VAUX
- 1 phase
These VRMs kicks ass. They might not look like much but it can push up to 340A to the core at 80C operating temperature. That's enough current for the card not to burn up even above 1.5V core voltage. The memory VRM can also easily handle 68A which explains why Sapphire didn't even bother with a heatsink for it. Finally the VAUX VRM is another 68A single phase. There isn't much to improve with this VRM. Sure it could be an 8 phase on the core and a 2 phase on the other voltages but other than that the VRM setup of the R9 380 Nitro from Sapphire is good enough even for LN2 overclocking. After all at stock an R9 380 only needs about 150A for the core but this card is built for twice that.

Extras:
+1 Dual BIOS
+1 0RPM fans in idle 
+1 VRAM cooling

Overclocking
The highest I've managed to push this card to was 1110/1650mhz. The VRAM is made by Hynix and has  a stock voltage of 1.6V the core on the other hand has a stock voltage of 1.2V. The only downsides with overclocking this GPU is that there is no software voltage control support and the 20% power limit seems to be causing crashes because it's too low. The last issue is that you need to restart your system if the drivers crash because after one crash many previously stable settings will be unstable. Luckily this card uses an NCP81022 so it's quite easy to get rid of theses problems with a few simple mods and hopefully there will be software support for voltage control some time soon.

Conclusion: 18/20
I like this card. The VRM is plenty powerful even for extreme overclocking and the cooler is capable enough for gaming but also benchmarking runs with raised Vcore when run at 100%. Overall I'd say this is a very well balanced card especially considering that it's the cheapest R9 380 I could find.

Thank you to CoolerMaster for providing the V1000 PSU that was used for this review.