Power Efficiency Diagnostics Report

Computer Name ABCD
Scan Time 2026-07-21T12:04:18Z
Scan Duration 60 seconds
System Manufacturer Dell Inc.
System Product Name OptiPlex Tower Plus 7010
BIOS Date 04/24/2026
BIOS Version 1.36.0
OS Build 26200
Platform Role PlatformRoleDesktop
Plugged In true
Process Count 259
Thread Count 4478
Report GUID {bf115de8-2928-4592-a0c5-5ed504a9543b}

Analysis Results

Errors

Power Policy:Display timeout disabled (Plugged In)
The display is not configured to turn off after a period of inactivity.
Power Policy:Sleep timeout is disabled (Plugged In)
The computer is not configured to automatically sleep after a period of inactivity.
System Availability Requests:System Required Request
The service has made a request to prevent the system from automatically entering sleep.
Requesting Service RemotePCAttendedService
System Availability Requests:Away Mode Request
The service has made a request to enable Away Mode.
Requesting Service RemotePCAttendedService
System Availability Requests:System Required Request
The service has made a request to prevent the system from automatically entering sleep.
Requesting Service RPCService
System Availability Requests:Away Mode Request
The service has made a request to enable Away Mode.
Requesting Service RPCService
USB Suspend:USB Device not Entering Selective Suspend
This device did not enter the USB Selective Suspend state. Processor power management may be prevented when this USB device is not in the Selective Suspend state. Note that this issue will not prevent the system from sleeping.
Device Name USB Composite Device
Host Controller ID PCI\VEN_8086&DEV_7AE0
Host Controller Location PCI bus 0, device 20, function 0
Device ID USB\VID_413C&PID_2113
Port Path 12
USB Suspend:USB Device not Entering Selective Suspend
This device did not enter the USB Selective Suspend state. Processor power management may be prevented when this USB device is not in the Selective Suspend state. Note that this issue will not prevent the system from sleeping.
Device Name USB Input Device
Host Controller ID PCI\VEN_8086&DEV_7AE0
Host Controller Location PCI bus 0, device 20, function 0
Device ID USB\VID_413C&PID_301A
Port Path 8
CPU Utilization:Processor utilization is high
The average processor utilization during the trace was high. The system will consume less power when the average processor utilization is very low. Review processor utilization for individual processes to determine which applications and services contribute the most to total processor utilization.
Average Utilization (%) 4.15
Platform Power Management Capabilities:PCI Express Active-State Power Management (ASPM) Disabled
PCI Express Active-State Power Management (ASPM) has been disabled due to a known incompatibility with the hardware in this computer.

Warnings

Platform Timer Resolution:Outstanding Timer Request
A program or service has requested a timer resolution smaller than the platform maximum timer resolution.
Requested Period 10000
Requesting Process ID 11316
Requesting Process Path \Device\HarddiskVolume3\Program Files (x86)\RemotePC\RemotePCUI.exe
Platform Timer Resolution:Outstanding Timer Request
A program or service has requested a timer resolution smaller than the platform maximum timer resolution.
Requested Period 10000
Requesting Process ID 536
Requesting Process Path \Device\HarddiskVolume3\Program Files (x86)\RemotePC Attended\RemotePCUIA.exe
CPU Utilization:Individual process with significant processor utilization.
This process is responsible for a significant portion of the total processor utilization recorded during the trace.
Process Name svchost.exe
PID 5272
Average Utilization (%) 0.52
Module Average Module Utilization (%)
\SystemRoot\system32\ntoskrnl.exe 0.34
\SystemRoot\System32\Drivers\farflt11.sys 0.08
\Device\HarddiskVolume3\Windows\System32\ntdll.dll 0.02
CPU Utilization:Individual process with significant processor utilization.
This process is responsible for a significant portion of the total processor utilization recorded during the trace.
Process Name chrome.exe
PID 23028
Average Utilization (%) 0.24
Module Average Module Utilization (%)
\SystemRoot\system32\ntoskrnl.exe 0.11
\Device\HarddiskVolume3\Program Files\Google\Chrome\Application\150.0.7871.129\chrome.dll 0.09
\Device\HarddiskVolume3\Windows\System32\ntdll.dll 0.01
CPU Utilization:Individual process with significant processor utilization.
This process is responsible for a significant portion of the total processor utilization recorded during the trace.
Process Name WmiPrvSE.exe
PID 6272
Average Utilization (%) 0.24
Module Average Module Utilization (%)
\SystemRoot\system32\ntoskrnl.exe 0.18
\Device\HarddiskVolume3\Windows\System32\wbem\fastprox.dll 0.02
\Device\HarddiskVolume3\Windows\System32\ntdll.dll 0.01

Information

Platform Timer Resolution:Platform Timer Resolution
The default platform timer resolution is 15.6ms (15625000ns) and should be used whenever the system is idle. If the timer resolution is increased, processor power management technologies may not be effective. The timer resolution may be increased due to multimedia playback or graphical animations.
Current Timer Resolution (100ns units) 156250
Platform Timer Resolution:Timer Request Stack
The stack of modules responsible for the lowest platform timer setting in this process.
Requested Period 10000
Requesting Process ID 11316
Requesting Process Path \Device\HarddiskVolume3\Program Files (x86)\RemotePC\RemotePCUI.exe
Calling Module Stack \Device\HarddiskVolume3\Windows\SysWOW64\ntdll.dll
\Device\HarddiskVolume3\Windows\SysWOW64\kernel32.dll
\Device\HarddiskVolume3\Windows\Microsoft.NET\Framework\v4.0.30319\WPF\wpfgfx_v0400.dll
\Device\HarddiskVolume3\Windows\SysWOW64\kernel32.dll
\Device\HarddiskVolume3\Windows\SysWOW64\ntdll.dll
Platform Timer Resolution:Timer Request Stack
The stack of modules responsible for the lowest platform timer setting in this process.
Requested Period 10000
Requesting Process ID 536
Requesting Process Path \Device\HarddiskVolume3\Program Files (x86)\RemotePC Attended\RemotePCUIA.exe
Calling Module Stack \Device\HarddiskVolume3\Windows\SysWOW64\ntdll.dll
\Device\HarddiskVolume3\Windows\SysWOW64\kernel32.dll
\Device\HarddiskVolume3\Windows\Microsoft.NET\Framework\v4.0.30319\WPF\wpfgfx_v0400.dll
\Device\HarddiskVolume3\Windows\SysWOW64\kernel32.dll
\Device\HarddiskVolume3\Windows\SysWOW64\ntdll.dll
Power Policy:Active Power Plan
The current power plan in use
Plan Name OEM Balanced
Plan GUID {381b4222-f694-41f0-9685-ff5bb260df2e}
Power Policy:Power Plan Personality (Plugged In)
The personality of the current power plan when the system is plugged in.
Personality Balanced
Power Policy:802.11 Radio Power Policy is Maximum Performance (Plugged In)
The current power policy for 802.11-compatible wireless network adapters is not configured to use low-power modes.
Power Policy:Video quality (Plugged In)
Enables Windows Media Player to optimize for quality or power savings when playing video.
Quality Mode Optimize for Video Quality
Battery:Analysis Success
Analysis was successful. No energy efficiency problems were found. No information was returned.
Platform Power Management Capabilities:Supported Sleep States
Sleep states allow the computer to enter low-power modes after a period of inactivity. The S3 sleep state is the default sleep state for Windows platforms. The S3 sleep state consumes only enough power to preserve memory contents and allow the computer to resume working quickly. Very few platforms support the S1 or S2 Sleep states.
S1 Sleep Supported false
S2 Sleep Supported false
S3 Sleep Supported false
S4 Sleep Supported true
Platform Power Management Capabilities:Connected Standby Support
Connected standby allows the computer to enter a low-power mode in which it is always on and connected. If supported, connected standby is used instead of system sleep states.
Connected Standby Supported true
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 0
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 42
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 1
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 2
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 3
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 4
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 5
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 6
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 7
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 8
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 257
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 9
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 257
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 10
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 257
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 11
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 257
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 12
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 13
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 14
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 15
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 250
Lowest Performance Percentage 69
Lowest Throttle Percentage 3
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 16
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 17
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 18
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 19
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 20
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 21
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 22
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Platform Power Management Capabilities:Processor Power Management Capabilities
Effective processor power management enables the computer to automatically balance performance and energy consumption.
Group 0
Index 23
Idle State Count 11
Idle State Type Micro Power Engine Plugin
Nominal Frequency (MHz) 2100
Maximum Performance Percentage 273
Lowest Performance Percentage 93
Lowest Throttle Percentage 6
Performance Controls Type ACPI Collaborative Processor Performance Control
Device Drivers:Analysis Success
Analysis was successful. No energy efficiency problems were found. No information was returned.