Intel E7310 LF80565QH0254M Data Sheet

Product codes
LF80565QH0254M
Page of 142
Document Number: 318080-002
101
Thermal Specifications
Notes:
1.
These values are specified at V
CC_MAX
 for all processor frequencies. Systems must be designed to ensure 
the processor is not to be subjected to any static V
CC
 and I
CC
 combination wherein V
CC
 exceeds V
CC_MAX
 at 
specified I
CC
. Please refer to the loadline specifications in 
.
2.
Maximum Power is the highest power the processor will dissipate, regardless of its VID. Maximum Power is 
measured at maximum T
CASE
.
3.
Thermal Design Power (TDP) should be used for processor thermal solution design targets. TDP is not the 
maximum power that the processor can dissipate. TDP is measured at maximum T
CASE
.
4.
These specifications are based pre-silicon estimates and simulations. These specifications will be updated 
with characterized data from silicon measurements in a future release of this document.
5.
Power specifications are defined at all VIDs found in 
. The Dual-Core Intel® Xeon® Processor 
7200 Series may be shipped under multiple VIDs for each frequency.
6.
FMB, or Flexible Motherboard, guidelines provide a design target for meeting all planned processor 
frequency requirements. 
Notes:
1.
Please refer to 
 for discrete points that constitute the thermal profile.
2.
Implementation of Thermal Profile should result in virtually no TCC activation. Furthermore, utilization of 
thermal solutions that do not meet processor Thermal Profile will result in increased probability of TCC 
activation and may incur measurable performance loss. (See 
 for details on TCC activation).
Table 6-7.
Dual-Core Intel® Xeon® Processor 7200 Series Thermal Specifications
Core
Frequency
Thermal 
Design Power
(W)
Minimum
T
CASE
(°C)
Maximum
T
CASE
(°C)
Notes
Launch to FMB
80
5
See 
1, 2, 3, 4, 5, 6
Figure 6-4. Dual-Core Intel® Xeon® Processor 7200 Series Thermal Profile
Thermal P rofile 
30.0
35.0
40.0
45.0
50.0
55.0
60.0
65.0
70.0
0
5
10
15
20
25
30
35
40
45
50
55
60
65
70
75
80
Pow er (W)
T
e
m
p
er
at
u
re (
C
)
T
case 
= 0.238 x Pow er + 45