Synthetic Temperature Test
Results: *Ranked according to 100W small interface die
test results.
FrostyTech
Synthetic Temperature Test Platform Results |
Mfg. |
Model |
Ambient Temp. |
27mm large copper block |
15mm small copper block |
|
27mm large copper block |
15mm small copper block |
Thermal pad |
No. Fans |
Fan Noise |
Clip force |
|
|
|
50W |
50W |
|
100W |
100W |
|
|
|
|
Coolink |
U1P2 |
26.1 |
39.4 |
44.9 |
|
50.9 |
62.2 |
none |
2 |
loud |
easy |
Arkua |
628 |
23.9 |
42.7 |
42.1 |
|
58.9 |
62.3 |
none |
1 |
med |
med |
Thermal Integration |
TI-V77L |
26.5 |
39.1 |
44.4 |
|
57.5 |
63.6 |
grey |
1 |
med |
med |
Sibak |
AC02625B |
23.2 |
41.3 |
59.0 |
|
43.2 |
64.7 |
none |
1 |
loud |
med |
Coolink |
U2P |
27.1 |
40.6 |
47.6 |
|
55.3 |
67.6 |
none |
1 |
loud |
easy |
Sibak |
AC06725TH |
22.5 |
42.9 |
46.2 |
|
61.7 |
67.7 |
none |
1 |
Very loud |
med |
Coolermaster |
HHC-001 |
21.7 |
40.0 |
44.8 |
|
56.3 |
68.1 |
none |
1 |
loud |
easy |
Tocools |
Crown |
23.2 |
38.8 |
53.2 |
|
47.9 |
70.2 |
none |
1 |
loud |
stiff |
Dynatron |
DY1206BH-625 |
23.2 |
40.0 |
55.1 |
|
47.6 |
70.4 |
none |
1 |
loud |
stiff |
Coolink |
H2T |
27.1 |
44.5 |
49.0 |
|
60.8 |
70.9 |
none |
1 |
med |
easy |
AVC |
Tundra2 |
22.0 |
41.4 |
47.5 |
|
59.0 |
71.1 |
none |
1 |
loud |
stiff |
Coolink |
U1L2 |
26.1 |
42.3 |
51.1 |
|
57.9 |
72.2 |
none |
2 |
med |
easy |
AVC |
112C81 |
22.0 |
42.8 |
48.1 |
|
62.4 |
73.2 |
black |
1 |
med |
med |
Vantec |
CCK-6027D |
27.4 |
45.4 |
49.6 |
|
64.9 |
73.4 |
none |
1 |
med |
med |
Coolermaster |
HSC-V62 |
21.4 |
47.4 |
52.8 |
|
61.7 |
74.5 |
none |
1 |
quiet |
easy |
NengTyi |
XPC5000 |
23.9 |
46.5 |
49.1 |
|
69.1 |
76.1 |
none |
1 |
med |
med |
Coolink |
U2L |
27.1 |
45.6 |
52.6 |
|
62.7 |
76.2 |
none |
1 |
med |
easy |
Spire |
5F263 |
22.6 |
44.7 |
51.8 |
|
64.3 |
76.2 |
white |
1 |
low |
med |
Titan |
TTC-CU5TB |
24.2 |
46.2 |
51.2 |
|
61.8 |
76.4 |
none |
1 |
loud |
stiff |
Taisol |
CGK760092 |
23.4 |
42.7 |
51.3 |
|
61.2 |
77.5 |
pink |
1 |
low |
med |
Spire |
5T235 |
22.3 |
43.0 |
50.3 |
|
62.8 |
78.1 |
white |
1 |
med |
med |
Zalman |
CNPS6000-Cu |
24.8 |
46.4 |
53.8 |
|
65.6 |
78.2 |
none |
1 |
very low |
easy |
Ajigo |
MF014-021 |
27.8 |
47.6 |
54.0 |
|
65.6 |
78.5 |
grey |
1 |
med |
med |
Ajigo |
SF017-011 |
27.2 |
47.5 |
55.1 |
|
65.7 |
78.9 |
grey |
1 |
med |
med |
AVC |
112AM1 |
24.8 |
46.6 |
52.9 |
|
70.1 |
79.6 |
none |
1 |
low |
stiff |
Coolink |
H1T |
27.1 |
49.2 |
53.6 |
|
69.4 |
79.9 |
none |
1 |
med |
easy |
Sibak |
AE01625B |
23.5 |
40.8 |
54.4 |
|
57.1 |
81.0 |
none |
1 |
loud |
easy |
Coolermaster |
HHC-L61 |
21.5 |
47.2 |
48.3 |
|
71.2 |
82.3 |
none |
1 |
quiet |
easy |
Thermaltake |
Volcano 6cu+ |
26.5 |
40.3 |
55.3 |
|
58.6 |
84.4 |
carbon |
1 |
loud |
med |
JMC Products |
400023 |
23.1 |
44.5 |
65.2 |
|
55.3 |
85.2 |
Chomerics T725 |
1 |
low |
easy |
Sibak |
AT01515B |
23.0 |
45.1 |
64.6 |
|
60.1 |
95.2 |
none |
2 |
med |
stiff |
Verax |
P11T |
26.1 |
61.2 |
69.7 |
|
90.9 |
102.7 |
none |
1 |
none |
easy |
Verax |
P14 |
26.1 |
56.9 |
67.4 |
|
81.6 |
101.2 |
none |
1 |
none |
easy |
|
|
|
50W |
50W |
|
100W |
100W |
|
|
|
|
As there is always some difference in the ambient temperatures during testing, it's interesting to see what changes in
order the reference heatsinks take with the heatsink being tested. In this
case I think things are going to stay pretty much the same.
The AVC 112C81 is
essentially a retrofitted extrusion heatsink which has been upgraded with a copper core. The addition of that copper, and AMD approval should guarantee that we are not looking at an OEM performance level heatsink, but more of a good performer.
Rise Above Ambient
Temp. (c) |
Mfg. |
Model |
27mm large copper block |
15mm small copper block |
|
27mm large copper block |
15mm small copper block |
|
|
50W |
50W |
|
100W |
100W |
Coolink |
U1P2 |
13.3 |
19.8 |
|
26.8 |
36.1 |
Thermal Integration |
TI-V77L |
12.6 |
17.9 |
|
31.0 |
37.1 |
Arkua |
628 |
18.8 |
18.2 |
|
35.0 |
38.4 |
Coolink |
U2P |
13.5 |
20.5 |
|
28.2 |
40.5 |
Sibak |
AC02625B |
18.1 |
35.8 |
|
20.0 |
41.5 |
Coolink |
H2T |
17.4 |
21.9 |
|
33.7 |
43.8 |
Sibak |
AC06725TH |
20.4 |
23.7 |
|
39.2 |
45.2 |
Vantec |
CCK-6027D |
18.0 |
22.2 |
|
37.5 |
46.0 |
Coolink |
U1L2 |
16.2 |
25.0 |
|
31.8 |
46.1 |
Coolermaster |
HHC-001 |
18.3 |
23.1 |
|
34.3 |
46.4 |
Tocools |
Crown |
15.6 |
30.0 |
|
24.7 |
47.0 |
Dynatron |
DY1206BH-625 |
16.8 |
31.9 |
|
24.4 |
47.2 |
Coolink |
U2L |
18.5 |
25.5 |
|
35.6 |
48.9 |
AVC |
Tundra2 |
19.4 |
26.5 |
|
37.0 |
49.1 |
Ajigo |
MF014-021 |
19.8 |
26.2 |
|
37.8 |
50.7 |
AVC |
112C81 |
20.8 |
26.1 |
|
40.4 |
51.2 |
Ajigo |
SF017-011 |
20.3 |
27.9 |
|
38.5 |
51.7 |
NengTyi |
XPC5000 |
22.6 |
25.2 |
|
45.2 |
52.2 |
Titan |
TTC-CU5TB |
22.0 |
27.0 |
|
37.6 |
52.2 |
Coolink |
H1T |
22.1 |
26.5 |
|
42.3 |
52.8 |
Coolermaster |
HSC-V62 |
26.0 |
31.4 |
|
40.3 |
53.1 |
Zalman |
CNPS6000-Cu |
21.6 |
29.0 |
|
40.8 |
53.4 |
Spire |
5F263 |
22.1 |
29.2 |
|
41.7 |
53.6 |
Taisol |
CGK760092 |
19.3 |
37.8 |
|
27.9 |
54.1 |
AVC |
112AM1 |
21.8 |
28.1 |
|
45.3 |
54.8 |
Spire |
5T235 |
20.7 |
28.0 |
|
40.5 |
55.8 |
Sibak |
AE01625B |
17.3 |
30.9 |
|
33.6 |
57.5 |
Thermaltake |
Volcano 6cu+ |
13.8 |
28.8 |
|
32.1 |
57.9 |
Coolermaster |
HHC-L61 |
25.7 |
26.8 |
|
49.7 |
60.8 |
JMC Products |
400023 |
21.3 |
42.0 |
|
32.1 |
62.0 |
Sibak |
AT01515B |
22.1 |
41.6 |
|
37.1 |
72.2 |
Verax |
P11T |
35.1 |
43.6 |
|
64.8 |
76.6 |
Verax |
P14 |
30.8 |
41.3 |
|
55.5 |
75.1 |
|
|
50W |
50W |
|
100W |
100W |
True to form, the AVC 112C81 is able to produce some very
respectable performance levels; in fact, coming quite close to the levels that the AVC
Tundra 2 was able to attain. The copper core in the 112C81 adds that extra
amount of surface area for the aluminum extrusion to make contact with - that that means heat energy is spread out over
a larger area so that more fins are being used for cooling. The alternative
may have been just a hot-spot at the center of the extrusion, which obviously would
have been directly under the motor of the fan and doing no one any good.
AVC
have let us know that they are
actively making the transition from supplying OEM coolers to supplying consumers with heatsinks
that work well. While the AVC 112C81 is certainly fine for your average AMD AthlonXP running at stock speeds,
I don't think it has the cooling capacity to satisfy any level of performance overclocker.
My only request for this heatsink would be for it to use all three
clips on the socket instead of just one. There are too many stories out there of broken socket clips, and use
of all three in this instance would be good for everyone. Otherwise, the AVC 112C81 is a heatsink.
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