FrostyTech Mk.II
Synthetic Thermal Heatsink Test Results
AMD Athlon64 / FX / X2 &
Sempron class heatsinks Results
based on readings from a 38x38mm copper interface die with 125W heat
load on the K8 version of the Mk.II Test Platform. Temperature
results listed for each heatsink were calculated by determining the
rise over ambient temperatures at time of test. Information on
Frostytech's test methodology is available
here. |
|
Socket 939/940/754 &
AM2 compatible CPU heatsinks | |
|
manufacturer: |
model no.: |
*fan speed: |
125w thermal test
(°c) |
noise level (dba) |
|
Thermalright |
Ultra-120 |
|
12.4 |
53.7 |
Coolink |
Silentator |
high |
15.2 |
41.2 |
Scythe |
Mugen |
|
15.3 |
46.0 |
Xigmatek |
HDT-S983 |
high |
15.9 |
52.7 |
3Rsystem |
Iceage 120 |
high |
16.1 |
47.9 |
Zalman |
CNPS9700 LED |
high |
16.5 |
56.5 |
Scythe |
Infinity SCINF-1000 |
|
16.7 |
37.8 |
Tuniq |
Tower 120 |
high |
16.9 |
51.6 |
AVC |
Z7U7414001 (stock AM2) |
high |
17.0 |
63.0 |
Coolermaster |
Hyper 212 |
|
17.2 |
45.9 |
Noctua |
NH-U12P |
high |
17.3 |
40.7 |
Noctua |
NH-U12 |
|
17.5 |
45.4 |
Gigabyte |
GH-PCU23-VE |
high |
17.5 |
65.6 |
Thermalright |
Ultra-90 |
high |
18.2 |
56.2 |
OCZ |
Vendetta |
high |
18.4 |
52.8 |
Gigabyte |
G-Power Pro |
high |
18.6 |
71.9 |
Enzotech |
Ultra-X |
high |
18.7 |
59.1 |
Noctua |
NH-U9 |
|
18.8 |
58.4 |
Evercool |
Buffalo HPEA-10025 |
|
19.5 |
50.2 |
Apack |
Zerotherm BTF92 OC Ed |
high |
19.7 |
53.6 |
Cooljag |
Falcon 92-AL |
high |
19.8 |
52.1 |
Akasa |
AK-876 |
high |
20.0 |
48.2 |
Xigmatek |
HDT-S963 |
high |
20.1 |
50.2 |
Akasa |
AK-920 |
high |
20.2 |
52.9 |
Scythe |
Mine Rev.B |
|
20.4 |
36.8 |
Cooljag |
Falcon 92-Cu |
high |
20.4 |
52.8 |
Apack |
Zerotherm BTF90 |
|
20.5 |
52.1 |
Coolermaster |
Hyper6 |
high |
20.5 |
54.7 |
Asus |
Arctic Square |
high |
20.9 |
38.3 |
Apack |
Zerotherm BTF80 |
|
21.3 |
51.9 |
Asus |
Silent Square EVO |
high |
21.7 |
42.8 |
Thermaltake |
Venus 12 |
high |
21.7 |
68.1 |
Glacialtech |
Igloo 5750 PWM |
high |
21.9 |
52.3 |
Thermalright |
SI-128SE |
|
22.0 |
44.5 |
Cooljag |
SFO-Q |
high |
22.2 |
60.6 |
OCZ |
Vendetta |
low |
22.3 |
39.6 |
ASUS |
Starice |
high |
22.8 |
67.4 |
Zalman |
CNPS9500 AM2 |
high |
23.0 |
53.2 |
Arctic Cooling |
Freezer 64 Pro |
|
23.2 |
50.9 |
Coolermaster |
Aquagate Mini R80 |
high |
23.2 |
59.2 |
Thermaltake |
Polo 735 |
high |
23.4 |
68.0 |
Cooljag |
SFO-H |
high |
23.6 |
60.6 |
Alpha |
PAL-8150 |
|
23.7 |
58.9 |
Zalman |
CNPS9500 LED |
high |
23.8 |
50.3 |
Verax |
Helado |
|
24.3 |
36.3 |
Glacialtech |
Igloo 5710 Silent |
|
24.4 |
43.4 |
Auras |
SLC-747 |
high |
24.6 |
52.2 |
AVC |
Z7U3301001 (stock 939) |
high |
24.6 |
59.9 |
Zalman |
CNPS8000 |
high |
24.8 |
57.4 |
Gigabyte |
3D Cooler-Ultra |
high |
24.8 |
63.0 |
Zalman |
CNPS7500-Cu LED |
high |
25.0 |
50.9 |
Scythe |
Kama Cross |
|
25.1 |
40.0 |
nPowertek |
TTIC NPH1000 |
|
25.8 |
47.5 |
Glacialtech |
Igloo 5750 Silent |
|
26.0 |
35.5 |
OCZ |
Tempest |
|
26.0 |
51.6 |
Scythe |
Shogun |
high |
26.0 |
45.9 |
Coolermaster |
Hyper TX2 |
|
26.3 |
53.7 |
Rosewill |
RCX-Z2-EX |
high |
26.3 |
45.9 |
EKL |
V8 |
high |
26.3 |
57.5 |
Rosewill |
RCX-Z3 |
high |
26.5 |
58.6 |
Thermalfly |
F1-IACSHA |
high |
26.6 |
60.4 |
Zalman |
FS-C77 |
|
26.7 |
56.5 |
Gigabyte |
3D Rocket-Pro |
high |
26.9 |
56.7 |
Zalman |
CNPS7700-Cu |
high |
27.0 |
50.7 |
Gigabyte |
3D Cooler-Pro |
high |
27.0 |
62.5 |
nPowerTek |
NPH-Big K8 |
|
27.8 |
54.0 |
Akasa |
AK-922 (EVObue) |
high |
27.9 |
60.3 |
Zalman |
CNPS7700-Cu LED |
high |
28.1 |
49.8 |
Akasa |
AK-873 |
high |
28.2 |
59.2 |
Scythe |
Katana II |
|
28.3 |
37.9 |
Spire |
SP601B3 |
|
28.3 |
48.9 |
Scythe |
Ninja Mini |
|
28.5 |
41.7 |
Ajigo |
MF064-074 |
high |
28.8 |
60.3 |
Gigabyte |
3D-Rocket |
|
28.9 |
50.7 |
Vantec |
Mach1 |
high |
29.2 |
56.9 |
Thermalright |
SLK-948U |
|
29.4 |
58.8 |
CoolJag |
SFO-D(18SC) |
|
29.6 |
64.0 |
Antazone |
AS-C1000 |
|
30.2 |
57.6 |
Arctic Cooling |
Alpine 64 |
|
30.5 |
43.9 |
Zalman |
CNPS7000A-Cu |
high |
30.3 |
45.2 |
Dynatron |
SK-V24 |
|
30.3 |
56.4 |
Verax |
Quattro 1 |
high |
30.7 |
55.4 |
Xigmatek |
AIO-S80DP |
high |
30.7 |
55.0 |
Zalman |
CNPS7000-Cu |
high |
31.0 |
45.2 |
Coolermaster |
Hyper48 |
|
31.7 |
43.6 |
Rosewill |
RCX-Z1 |
high |
31.9 |
54.1 |
Scythe |
Kama SCKK1000 |
|
31.9 |
47.5 |
Scythe |
Samurai SCSM1000 |
high |
32.1 |
51.6 |
Zalman |
CNPS7000B-CU |
high |
32.3 |
44.9 |
Thermaltake |
Silentboost K8 |
|
32.3 |
49.7 |
Jetart |
JAX801 |
|
33.2 |
53.5 |
Dynatron |
A22 |
|
34.5 |
44.5 |
nPowertek |
NPH K8-1 |
|
34.6 |
52.2 |
Ajigo |
MF043-044 (stock 754) |
|
35.0 |
45.4 |
Arctic Cooling |
Silencer 64 Ultra TC |
|
37.5 |
55.5 |
Gigabyte |
NeonCooler 8-BL |
|
37.7 |
42.0 |
Spire |
Fourier IV SP607B3-C |
|
38.4 |
60.2 |
Titan |
TTC-K8ATB/825/SC |
|
38.7 |
63.1 |
Glacialtech |
Igloo 7311 Silent |
|
39.4 |
36.5 |
Akasa |
AK-860SF |
|
39.4 |
45.2 |
Evercool |
K802-715 |
|
42.1 |
51.5 |
Spire |
SP741B3 |
|
43.2 |
45.6 |
Arctic Cooling |
Freezer 64 LP |
|
45.3 |
42.6 |
Glacialtech |
Igloo 7222 Light |
|
46.6 |
37.7 |
Evercool |
Magic Cooler |
|
46.6 |
55.5 |
ASUS |
Starice |
low |
92.4+ |
34.4 |
|
|
|
125w thermal test
(°c) |
noise level (dba) |
*heatsinks are ranked according
to the 125w thermal test results column (rise over ambient temp.). low
temperatures with low noise levels are considered best. for reference
heatsinks with variable-speed fans, only the high speed (12v) fan test
result is included in the comparison sheet; more detailed results reside
in each specific heatsink review. |
with a 125w heat load applied by the frostytech amd k8 synthetic thermal test
platform, the ocz vendetta heatsink yields a rise above ambient temperature
of 18.4°c, with 52.8dba noise generated (fan at 2800rpm). the fan speed was
next dialed down to 1200rpm, and in this circumstance the vendetta heatsink was
able to maintain a temperature of 22.3°c over ambient, while noise output fell
to 39.6dba!
there is an interesting comparison to be made between
the test results for the ocz vendetta and Xigmatek
HDT-S983 heatsinks, which are otherwise identical coolers manufactured
by Xigmatek. The OCZ heatsink has a +3°C handicap for whatever reason;
a difference relating to the profile of the aluminum-to-copper heatpipe
base, or just a standard variance from one unit to the next? It's hard to say
with certainty. The Intel LGA775 test results are in next, so let's have a look
at those before we draw our conclusions.