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 |
|
|
|
|
Thermalright |
SLK800 |
21.7 |
34.8 |
37.5 |
|
45.2 |
51.6 |
none |
1 |
loud |
med |
Thermalright |
AX-7 |
21.7 |
34.8 |
37.1 |
|
46.1 |
52.1 |
none |
1 |
loud |
med |
Tocools |
Novasonic |
22.9 |
40.9 |
39.9 |
|
54.4 |
59.4 |
none |
1 |
med |
stiff |
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 |
Globalwin |
CAK4-88T |
26.1 |
43.9 |
50.4 |
|
54.5 |
68.1 |
none |
1 |
quiet |
easy |
Coolermaster |
HHC-001 |
21.7 |
40.0 |
44.8 |
|
56.3 |
68.1 |
none |
1 |
loud |
easy |
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 |
Coolink |
U1L2 |
26.1 |
42.3 |
51.1 |
|
57.9 |
72.2 |
none |
2 |
med |
easy |
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 |
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 |
|
|
|
|
Performance is looking pretty good for
this copper skived heatsink with temperature controlled 80mm fan. The Globalwin CAK4-88T comes in just
under 70 degrees on our 100W test which is not bad at all.
Let's have a look at the final rise above ambient
temperature results to see where things really stand.
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 |
Thermalright |
SLK800 |
13.1 |
15.8 |
|
23.5 |
29.9 |
Thermalright |
AX-7 |
13.1 |
15.4 |
|
24.4 |
30.4 |
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 |
Globalwin |
CAK4-88T |
17.8 |
24.3 |
|
28.4 |
42.0 |
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 |
Dynatron |
DY1206BH-625 |
16.8 |
31.9 |
|
24.4 |
47.2 |
Coolink |
U2L |
18.5 |
25.5 |
|
35.6 |
48.9 |
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 enough, the Globalwin CAK4-88T exhibits some very good near-performance level cooling capabilities. The solid,
one-piece skived copper heatsink conducts heat very well, and
with the fan adaptor and 80mm fan the heatsink doesn't seem to suffer whatsoever.
The bar for high-end performance coolers (which are also really loud and
annoying) has been raised lately, but keep in mind that the CAK4-88T is a heck
of a lot quieter than either of the Thermalright heatsinks, so it is easily recommendable.
Breaking it down to the finer points, the Globalwin
CAK4-88T is a very good performing heatsink for the socket A platform. With a
full-copper skived heatsink base, and the larger 80mm and 70-80mm fan adaptor
Globalwin seem to have a winning combination. The only bad marks against
its' performance is the lack luster clip, which requires the use of a screwdriver, and
which really ought to engage on all three tabs of the socket 462 retention system.
One other point is important to consider. Since the
manufacturer of the fan has used heatshrink tubing around the solder joint of
the thermistor there is an area which is larger than the thickness of the sensor
itself - care must be taken so that this point doesn't wedge the actual sensor
in a great big open space between two copper fins or the system will not work as
it should. The thermistor should be in direct contact with one of the copper fins.
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