743844-015.pdf - 第203页

Symbol Parameter Segment Minimum Typical Maximum Unit Note 1 Icc TDC_GT Thermal Design Current (TDC) for Processor Graphics R ail S/S Refresh- Processor Line (125W) — — 22 A 6 Icc TDC_GT Thermal Design Current (TDC) for …

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Symbol Parameter Segment Minimum Typical Maximum Unit Notes
AC_LL AC Loadline
U/U
Refresh /P/H/H
Refresh/PX -
Processor Line
4,5
AC_LL AC Loadline
HX/HX Refresh
Processor Line
4,5
Notes: 1. All specifications in this table are based on estimates and simulations or empirical data. These specifications will
be updated with characterized data from silicon measurements at a later date.
2. Long term reliability cannot be assured in conditions above or below Maximum/Minimum functional limits.
3. The voltage specification requirements are measured on package pins as near as possible to the processor with
an oscilloscope set to 100 MHz bandwidth, 1.5 pF maximum probe capacitance, and 1 MΩ minimum impedance.
The maximum length of ground wire on the probe should be less than 5 mm. Ensure external noise from the
system is not coupled into the oscilloscope probe.
4. LL measured at sense points. LL specification values should not be exceeded. If exceeded, power, performance,
and reliability penalty are expected.
5. The LL values are for reference. Must still need to meet the voltage tolerance specification.
6. Voltage Tolerance budget values Include ripples
7. Vcc
IN_AUX
is having few point of voltage define by CPU VID
VccGT DC Specifications
Table 82. Processor Graphics (VccGT) Supply DC Voltage and Current Specifications
Symbol Parameter Segment Minimum Typical Maximum Unit Note
1
Operating
voltage
Active voltage
Range for
Vcc
GT
All Processor
Lines
0 1.5 V
2, 3, 6,
8,11
Icc
MAX_GT
(S-
Processors)
Max. Current
for Processor
Graphics Rail
S/S Refresh-
Processor Line
(125W)
30 A 6
Icc
MAX_GT
(S-
Processors)
Max. Current
for Processor
Graphics Rail
S/S Refresh-
Processor Line
(65W)
30 A 6
Icc
MAX_GT
(S-
Processors)
Max. Current
for Processor
Graphics Rail
S/S Refresh-
Processor Line
(35W)
30 A 6
Icc
MAX_GT
(HX
Processors)
Max. Current
for Processor
Graphics Rail
HX /HX
RefreshProcesso
r Line
(55W)
30 A 6
Icc
MAX_GT
(H-
Processors)
Max. Current
for Processor
Graphics Rail
H/H Refresh-
Processor Line
(45W)
55 A 6
Icc
MAX_GT
(P-
Processors)
Max. Current
for Processor
Graphics Rail
P-Processor
Line
(28W)
55 A 6
Icc
MAX_GT
(PX-
Processors)
Max. Current
for Processor
Graphics Rail
PX-Processor
Line
(45W)
55 A 6
Icc
MAX_GT
(U-
Processors)
Max. Current
for Processor
Graphics Rail
U /U Refresh-
Processor Line
(15W)
40 A 6
continued...
13.2.1.2
R
Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors—Electrical Specifications
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
Datasheet, Volume 1 of 2 May 2025
202 Doc. No.: 743844, Rev.: 015
Symbol Parameter Segment Minimum Typical Maximum Unit Note
1
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
S/S Refresh-
Processor Line
(125W)
22 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
S/S Refresh-
Processor Line
(65W)
22 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
S/S Refresh-
Processor Line
(35W)
22/20 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
HX /HX Refresh
Processor Line
(55W)
22 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
H/H Refresh-
Processor Line
(45W)
35 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
P-Processor
Line
(28W)
35 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
PX-Processor
Line
(45W)
35 A 6
Icc
TDC_GT
Thermal
Design
Current
(TDC) for
Processor
Graphics Rail
U /U Refresh-
Processor Line
(15W)
23 A 6
TOB
VCCGT
Voltage
Tolerance
PS0, PS1 ,PS2,
PS3
±20 mV 3,4
TOB
VCCGT
+Ripple
Ripple
Tolerance
PS0, PS1, PS2,
PS3
-35 /+50 mV 3, 4,13
DC_LL ( S
Processors)
DC Loadline
S/S Refresh -
Processor Line
4.0 7, 9, 10
DC_LL ( HX
Processors)
DC Loadline
HX /HX Refresh
-Processor Line
4.0 7, 9, 10
continued...
R
Electrical Specifications—Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
May 2025 Datasheet, Volume 1 of 2
Doc. No.: 743844, Rev.: 015 203
Symbol Parameter Segment Minimum Typical Maximum Unit Note
1
DC_LL (PX
Processors)
DC Loadline
PX-Processor
Line
3.2 7, 9, 10
DC_LL (U/P/H
Processors)
DC Loadline
U /U
Refresh/P/H/H
Refresh -
Processor Line
3.2 7, 9, 10
AC_LL (S
Processors)
AC Loadline
S/S Refresh -
Processor Line
4.0 7, 9, 10
AC_LL (HX
Processors)
AC Loadline
HX /HX Refresh
-Processor Line
Below 300KHz: 4.0
300KHz-1MHz: linear
decrease with
log(frequency) from 4.0
to 3.0
Above 1MHz: 3.0
7, 9, 10
AC_LL (PX
Processors)
AC Loadline
PX-Processor
Line
3.2 7, 9, 10
AC_LL (U/P/H
Processors)
AC Loadline
U /U
Refresh/P/H/H
Refresh -
Processor Line
Below 400kHz: 3.2
400kHz-2MHz: linear
decrease with log
(frequency) from 3.2 to
2.4
Above 2MHz: 2.4
7, 9,
10,12
T_OVS_MAX
Max
Overshoot
time
10 µs
V_OVS_MAX
Max
Overshoot
70 mV
Notes: 1. All specifications in this table are based on estimates and simulations or empirical data. These specifications will
be updated with characterized data from silicon measurements at a later date.
2. Each processor is programmed with a maximum valid voltage identification value (VID), which is set at
manufacturing and cannot be altered. Individual maximum VID values are calibrated during manufacturing such
that two processors at the same frequency may have different settings within the VID range. This differs from
the VID employed by the processor during a power or thermal management event (Intel Adaptive Thermal
Monitor, Enhanced Intel
®
SpeedStep Technology, or low-power states).
3. PSx refers to the voltage regulator power state as set by the SVID protocol.
4. Each processor is programmed with a maximum valid voltage identification value (VID), which is set at
manufacturing and cannot be altered. Individual maximum VID values are calibrated during manufacturing such
that two processors at the same frequency may have different settings within the VID range. This differs from
the VID employed by the processor during a power or thermal management event (Intel Adaptive Thermal
Monitor, Enhanced Intel
®
SpeedStep Technology, or low-power states).
5. Operating voltage range in steady state.
6. Load Line measured at the sense point.
7. An IMVP9.1 controller to support VCCGT need to have an offset voltage capability and potentially VCCGT output
voltage (VID+Offset) may be higher than 1.5V
8. Ripple can be higher if DC TOB is below 20mV, as long as Total TOB is within -35mV/+50mV.
R
Intel
®
Core
, Xeon
6300 And Xeon
E 2400 Processors—Electrical Specifications
13
th
Generation Intel
®
Core
, Intel
®
Core
14
th
Generation, Intel
®
Core
Processor (Series 1) and (Series 2), Intel
®
Xeon
E
2400 Processor and Intel
®
Xeon
6300 Processor
Datasheet, Volume 1 of 2 May 2025
204 Doc. No.: 743844, Rev.: 015