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Blog Raspberry Pi 3 Cooling / Heat Sink Ideas
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  • Author Author: shabaz
  • Date Created: 3 Mar 2016 5:03 AM Date Created
  • Views 22173 views
  • Likes 20 likes
  • Comments 142 comments
  • pi 3
  • heatsink
  • rpibeginner
  • heat_sink
  • rpi3
  • raspberry_pi
  • heat sink
  • rpi
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Raspberry Pi 3 Cooling / Heat Sink Ideas

shabaz
shabaz
3 Mar 2016

Note: This is part 1 of a 2-part post. For part 2, click here: Raspberry Pi 3 Dynamic Current Consumption, Power and Temperature Tests

To see an implementation using a heat pipe, see the Outdoor Pi 3 Image Recognition Security Camera project (aka HAL-CAM 9001)

image

Inspired by Christopher's cstanton  Raspberry Pi Operating Temperature report (with thermal photos from Gareth Halfacree) regarding the heat dissipated by the Broadcom chip on the Raspberry Pi 3, and the discussion with bwelsby we started searching around for ways to keep the Pi cool.

Ceramic heat sinks have an innovative structure (vias or micro-pores) which allow a heightened thermal conductivity compared to traditional aluminium heat sinks. They also can have the advantage that they won't affect radio frequency (RF) communications as much, when positioned close to the wireless antenna that is present on the Pi 3.

Furthermore, ceramic heat sinks are not electrically conductive and therefore there is no risk of accidentally shorting something on the Pi.

Back-of-the-envelope calculations (we don't have all parameters since we don't have a copy of the Broadcom datasheet to examine the device operating conditions in detail, nor a copy of the schematic to examine if we can measure device power consumption isolated from the remainder circuitry) suggests that a heat sink with thermal resistance of around 10 degrees C/W might be effective to keep the Broadcom chip's internal temperature below 120 degrees C when the ambient temperature is below around 40 degrees C. These are guesstimates until practical measurements have been taken.

image

Armed with this information, I searched for a suitable sized heat sink and I found a cheap aluminium one. However bwelsby and cstanton suggested that there may be issues with the heatsink getting in the way of connected HAT boards on top of the Pi, and Brian suggested examining ceramic heatsinks.

In summary, I think these parts may be suitable although measurements still need to be done:

22x22x2.5mm MPC222225T22x22x2.5mm MPC222225T

15x15x2.5mm MPC151525T15x15x2.5mm MPC151525T

(Optional) 20x20x10mm 5V DC fan MC33873(Optional) 20x20x10mm 5V DC fan MC33873

(EDIT: after some discussions below, it looks like this Sunon 'DR-MagLev' design fanSunon 'DR-MagLev' design fan is a far better choice, it is 25x25x10mm, quieter, higher throughput, and more efficient with overall lower power consumption. There is also a 25x25mm finger guard25x25mm finger guard).

 

The Broadcom chip is about 14x14mm in size, and ceramic heat sinks do exist in approximately that size. However it is possible to attach a larger heat sink if desired.

The photo below shows the parts that were examined. All of these ceramic heat sinks come with adhesive tape on the underside; the protective tape is removed and the heat sink will stick to the top of the integrated circuit.

The photo at the top of the blog post shows the largest 22x22mm ceramic heatsink.

image

The photo below shows a heat sink closer to the size of the Broadcom chip, 15x15mm. It also shows a 10x10mm heat sink on top of the USB hub/Ethernet controller chip, however this is really not needed. It doesn't get very hot according to the thermal photos in the previous blog post.

image

The memory chip on the underside gets hot too. If desired, the 15x15mm heat sink could  be attached there too. The 22x22mm one is too large for that location due to nearby components (the memory chip has a lower height than the Broadcom chip on the top side).

image

So, I plan to attach a 22x22mm part to the Broadcom chip on the top of the board, and possibly a 15x15mm heat sink to the memory chip on the underside. I don't think a fan will be needed unless a very small enclosure with no natural ventilation was used, or if the Pi was in a very warm environment.

In that case, a fan may be an option. I tried the MC33873 fanMC33873 fan and it generates a usable level of air that can be felt from a distance of 10cm or more. However it does generate a small amount of noise too (possibly inaudible if the Pi will be behind other items such as a TV, but I think there is still a risk it could be audible. The voltage could be reduced from 5V to lessen the noise). It could be mounted on the heat sink as shown here although I think a small gap would be good to allow forced air to hit the entire top face of the heat sink. (The red dot on the fan was placed by me so that I could see it spinning). The fan could be secured with epoxy adhesive. The overall height is less than the height of the USB connectors on the Pi 3. The problem with this is that a HAT board cannot be plugged on top if there is a fan in the way.

image

A very nice solution would have been to put the fan on the side (to the left side of the photo above) so that the fan could blast air across the entire top face, and the underside of the board. However the display connector (the long white thing on the edge of the board in the photo above) is in the way and would block the flow of air which is extremely unfortunate. The Pi 3 wasn't designed with air flow in mind : ( However it might be possible with some 3D-printed duct design to achieve something that could work.

 

To summarize, some heat sinking ideas have been suggested however it is for further examination to see how well they perform. It will be good to see what solutions people come up with over time.

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Top Comments

  • bwelsby
    bwelsby over 10 years ago in reply to shabaz +6
    I received the ceramic heatsinks today but not the fans they didn't get shipped till today. I have quickly designed a small case to 3D print as a test, and I shall make a dummy HAT too. I can then play…
  • shabaz
    shabaz over 10 years ago +5
    There is a 1-page article on the heat topic in magpi: So it looks like the fix they have implemented is more aggressive throttling through software changes. The wording is interesting in places.. it is…
  • shabaz
    shabaz over 10 years ago in reply to clem57 +4
    Hi! They are the real thing, they actually look like that. They look like school erasers don't they ; ) I remembered I had these heat sinks around from another project. Might try getting some measurements…
  • shabaz
    shabaz over 10 years ago in reply to rive

    Hi Chris,

     

    Thanks for posting your findings and measurements. I've yet to do the measurements on my Pi 3, but will hopefully try it soon.

    You're approach shows the value of a large fan in keeping the Pi cool, but also is that a 12V fan running at 5V? If so I'm guessing it is fairly quiet too.

     

    The smaller ones are a bit noisy : ( and hence require some speed control. I have a router with a large fan, when it slows down I can't hear it in a quiet room.

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  • rive
    rive over 10 years ago

    Overclocked "Hot Rod Pi3 Extreme" (element14 Pi3 from MCM Electronics)

     

     

    The heatsink pictured below is custom machined for me by a friend, is made of anodized aluminum, and the outside dimensions are L.87" x W.96" x H.70". the centered 'socket' on the bottom is L.66" x W.66" and .010" deep. The cooling fan is 12v  (on GPIO 5V 4/6 pins) 70mm x 70mm x 10mm, and sells pretty much everywhere for around $4. The case is the "official" pi3 case, which runs $8. (fan itself is removable, and is held in place with velcro)

     

    Ambient 20C: Cpuburn-a53 runs @ 64C, Stress runs @ 43C, Idle @ 27C

     

    dtparam=sd_overclock=100
    arm_freq=1300
    core_freq=500
    over_voltage=4
    sdram_freq=575
    sdram_schmoo=0x02000020
    over_voltage_sdram_p=6
    over_voltage_sdram_i=4
    over_voltage_sdram_c=4
    v3d_freq=500
    h264_freq=333
    gpu_mem=256

     

     

    "Hot Rod" Extreme Pi3

    WIN_20160413_14_19_48_Pro.jpg

     

    Under the hood:

    WIN_20160413_14_20_50_Pro.jpg

    WIN_20160413_14_24_53_Pro.jpg

     

    Ambient 20C (Cpuburn-a53 Results: 62C):

    2016_04_13_141259_1680x1050_scrot.png

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  • e14 Contributor
    e14 Contributor over 10 years ago in reply to shabaz

    shabaz - Updated 24 Apr 2016

     

    Yes, I ordered a maxed-out Pine A64+ which has been promised for May:

    Cost: USD 29.00 (mobo) + USD 10.00 (daughter-card) + shipping (CORRECTED)

    2 GB DDR3 RAM

    Ethernet RJ45 10/100/1000

    Wifi  via the daughter-card (CORRECTED)

    Bluetooth via the daughter-card (CORRECTED)

    Reference: http://wiki.pine64.org/index.php/Main_Page

     

    Note that the only viable desktop Linux choices at the moment are Debian XFCE/LXDE/MATE. 

    See Pine A64 Software Release - PINE 64 (will probably evolve in the near future)

     

    There will be more in the future as Pine gets better known and used.  I don't mind the squishy state of affairs at the moment.

     

    Odroid-C2 looks great: http://www.hardkernel.com/main/products/prdt_info.php

    Also, Odroid-C2 is running the latest Ubuntu (16.04) in a "take-yer-chances" mode.  (=:  Will probably stabilize fairly soon.

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  • shabaz
    shabaz over 10 years ago in reply to e14 Contributor

    Is the Pine available for general purchasing yet?

    There is another option - The Odroid C2. But the issue is the cost. If I want a C2 here, I end up spending twice as much as the Pi 3, about £60GBP including delivery. Granted it is higher-performance, but the price-performance mix is no longer good for me - I just can't justify that for my use-cases as I can with multiple Pi 3's, whereas for others that mix may be fine if they're (say) looking for a PC replacement (which I'm not). Anyway, that already comes with a heat sink installed, but no idea if it needs a fan too if it is enclosed. And it doesn't have native SPI which is an important high-speed interface to me, because it is cheap to use. Again not relevant to those who just want a PC replacement. I might still pick up a single C2 though, since I can think of some uses for it.

    With many of the modern boards coming out, it looks like cooling now needs to be considered unfortunately.

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  • e14 Contributor
    e14 Contributor over 10 years ago

    This discussion was an eye-opener.  I am getting a Pine A64+ with 2 GB of DDR3 RAM.  I have been forewarned!

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