Posts Tagged ‘iBeLink DM384M

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The first batch of 50 units of the first on the market iBeLink DM384M X11 ASIC miner were shipped at the beginning of this month and everyone that has pre-ordered is probably quite happy at the moment. The profitability is quite good with selling X11 hashrate at NiceHash still the most profitable choice at the moment, based on our test of a unit we have purchased we can say that the miners are pretty good, even if they do lack some extra features both hardware wise and on the software side. If you re interested in the iBeLink DM384M X11 ASIC miner and you have missed our posts about different aspects of the device that we have published already, then you might want to check them out.

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It seems that the company making the iBeLink DM384M miners does not have a very large production capacity and they need some time to make another batch of miners (and probably money from the sales of the first batch). The answer they give at the moment when more units are expected to be available is “we expect to have next batch around mid of May“, definitely a good news for first batch owners and not so good for people that will want to purchase an X11 ASIC now. This low number of devices available however is generally good for the X11 coins as they will not be overwhelmed by a very big wave of new hashrate pouring in pushing out the GPU miners that mine X11. Actually a lot of the GPU miners are currently switching to Ethereum mining because of the better profitability it offers, so the X11 ASIC miners could fill the gap and offer enough supply to cover the hashrate demand. We are looking at at least a few more months before mining X11 with a GPU might become pointless, unless of course we see a bunch of other companies releasing more X11 ASICs on the market. It seems that this is not going to happen in the next few months, so don’t be in a hurry to write out the X11 algorithm as ASIC only yet…

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Time for a bit more in-depth look at the operating temperatures of the iBeLink DM384M X11 ASIC with the help of a thermal imaging camera. We are starting with the front and rear of the case that the mining ASIC uses, the front has four powerful Delta Electronics server fans that such cold air through the whole case where the mining blades are and the hot air exits directly through the back of the case. There are no other fans at the back, just open space for the hot air to exit the case of the device effectively cooling. The only other fan is the one of the server grade power supply that is mounted inside the case, another server grade Delta Electronics fan that is also powerful and noisy when in operation. The fans do not have power control, so they operate at maximum RPM all of the time making the device quite noisy, but also effectively cooled even in no so cool environment.

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The four blades with ASIC chips are located on the side of the cooling fans and on the other side of the case is the power supply with the Raspberry Pi controller mounted over it. The side with the RPi and the power supply is pretty cold compared to the side where the four blade with 48 chips each are located. As one might expect the hottest part inside the miner are the ASIC chips, the rest remains pretty cold thanks to the high airflow provided by the cooling fans. Even the heatsink that are on the back of the PCB with the chips remain pretty cool thanks to the high airflow passing through them.

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And now let us take a look at the chips themselves as the hottest element of the iBeLink DM384M X11 ASIC miners. Under the stock operating conditions they do remain with a surface temperature range of about 60-68 degrees Celsius as the temperature varies slightly depending on their position on the blade. As we’ve said already the cooling heatsink is not placed on top of the chips themselves, but instead is on the back of the PCB. This is the easier way to make things work, but not the most efficient for cooling as the chips use the PCB as a large heatspreader that then passes the heat to the large heatsink. This results in higher operating temperatures of the ASIC chips as there is no direct contact, but the temperatures are still Ok for normal operation. You should however be careful should you decide to overclock in order to get some extra hashrate as this will increase the operating temperatures of the chips. It seems that iBeLink has already chosen the optimal operating frequency for the device that results in very little HW errors while providing optimum performance. Further increasing the PLL frequency over the stock 110 MHz even with just a few Megahertz may result in increased percentage of HW errors.

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Looking at the official specifications of the iBeLink DM384M X11 ASIC miner state that the device should be capable of 384 MHS X11 hashrate (plus/minus 10 percent) with a power consumption of 715W measured at the wall with 25 degrees Celsius ambient temperature. This should be the numbers for the default configuration, however we did some measurements ourselves in order to get more accurate results in order to be able to do better calculations about the cost of operating the device. We have already measured on NiceHash an average hashrate that is slightly above the official number of 384 MHS, so this is good, but what about the actual power usage and more importantly noise level. In our first impressions from the device we already mentioned that it is pretty noisy and not suitable for use in room where people will be present, but let us see what is the exact noise level as well.

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The power supply built into the miner is an 850 Watts server grade one that is compatible with 100-240V range (for worldwide use). The exact model is ASPOWER U2A-A20850-D and according to the official specifications is it rated as 80 Plus Silver, so a high efficiency solution. At stock settings (110 MHz PLL) the power usage we have measured on the wall with 230V EU power input was 686 Watts as you can see on the photo, the power usage in Watts might be slightly higher in US and other 110-120V countries due to slightly lower power efficiency. Increasing the operating frequency with +1 MHz steps is resulting in the power usage going up with about 5-6W on each step, so the 850W capacity of the PSU should be able to take up some nice extra overclock if the chips are capable of working well when overclocked and cooled well. We are going to be doing more extensive testing about the overclocking potential with results on the power usage and performance changes, working temperatures and cooling very soon.

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Now for the noise level, as already mentioned it is pretty high… just like from a rackmountable server for example. With a measurement showing about 72.6 dBA average it is perfect to be installed in a data center or a dedicated mining room, but it is not suitable for home miners as the noise level is too much for people to be in the same room for more than a few minutes… and even in the next room it might be quite noisy. The reason for the high level of noise is that the unit uses server grade fans by Delta Electronics and they are set to run at maximum RPM all the time (no temperature control). The same goes for the fan used in the power supply, a powerful Delta Electronics fan running at maximum RPM all the time, even though the PSU is highly efficient and there is not so much heat generated. The good thing about this default fans setup is that even at not that good conditions such as high ambient temperature the miner should be able to operate without any issues at optimum level. The not so good part is that small miners might have issues with the high level of noise and would probably want to do something to make it less noisy without compromising performance – this is possible with some modifications and we are already working on a solution to optimize the cooling, so more on that will be coming soon as well.


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