HWMonitor Download for Windows 11 & 10

Download HWMonitor for Windows 11 and Windows 10 to monitor CPU and GPU temperatures, fan speeds, voltages, power, clocks, storage temperatures, and other hardware sensors.
HWMonitor Download for Windows gives Windows users a lightweight hardware-monitoring utility from CPUID for checking important PC health information in one place.
Depending on the hardware in your system, HWMonitor can display CPU and GPU temperatures, fan speeds, utilization, clock speeds, voltages, power consumption, SSD and HDD temperatures, memory thermal sensors, battery information, and other supported readings.
It is especially useful when checking whether a CPU or GPU is overheating, monitoring temperatures during gaming, testing a newly built PC, checking cooling performance, or troubleshooting unusual thermal behavior.
HWMonitor Download – Quick Overview
| Information | Details |
|---|---|
| Software | HWMonitor |
| Developer | CPUID |
| Current Version | 1.67 |
| Release Date | July 31, 2026 |
| Software Type | Hardware Monitoring Utility |
| Platform | Windows |
| Architecture | x86 / x64 / ARM64 |
| Installer | Yes |
| ZIP Version | Yes |
| CPU Monitoring | Yes |
| GPU Monitoring | Yes |
| Temperature Monitoring | Yes |
| Fan Monitoring | Supported Hardware |
| Voltage Monitoring | Supported Hardware |
| Power Monitoring | Supported Hardware |
| SSD / HDD Monitoring | Yes |
| CSV Logging | Available |
| PRO Edition | Available |
| Official Source | CPUID |
What Is HWMonitor?
HWMonitor is a Windows system-health monitoring application that reads sensors exposed by supported PC hardware.
Unlike CPU-Z, which mainly focuses on identifying hardware specifications, HWMonitor is designed primarily for live sensor monitoring.
HWMonitor can monitor supported readings such as:
- CPU temperatures and CPU package temperature.
- GPU temperatures and hotspot readings.
- Motherboard temperatures.
- SSD and HDD temperatures.
- Fan speeds.
- CPU and GPU utilization.
- Clock speeds.
- Voltages.
- Power consumption.
- Currents.
- Memory thermal sensors.
- Battery information.
- Compatible PSU and cooling-device sensors.
Not every computer exposes the same sensors, so two systems can show very different HWMonitor lists.
HWMonitor for Windows 11 & 10
CPUID provides HWMonitor for modern Windows systems in standard x86/x64 builds and also provides a dedicated ARM64 version for compatible Windows-on-ARM devices.
For most Windows 11 and Windows 10 PCs with Intel or AMD processors, the standard x64 build is normally appropriate.
Installer vs ZIP Version
| Feature | Setup | ZIP |
|---|---|---|
| Traditional Installation | Yes | No |
| Portable-Style Use | No | Yes |
| Start Menu Access | Yes | No |
| Extraction Required | No | Yes |
| Regular Monitoring | Excellent | Good |
| Technician Toolkit | Good | Excellent |
Both versions provide the same basic monitoring purpose. Choose Setup for normal installation or ZIP if you prefer a portable-style utility.
How to Install HWMonitor on Windows & Check Your PC Temperatures

- Visit CPUID: Open the official HWMonitor page.
- Choose your package: Select Setup or ZIP for a standard x86/x64 Windows PC, or the appropriate ARM64 build for a compatible Windows-on-ARM device.
- Run the installer: If you downloaded Setup, open it and complete the installation wizard.
- Launch HWMonitor: Open the application and allow it to detect supported sensors.
- Expand hardware sections: Locate the CPU, GPU, motherboard, storage, or other hardware you want to inspect.
- Check temperatures: Review the Value, Min, and Max readings.
HWMonitor Main Interface, Temperatures, Voltages & Fan Speeds

HWMonitor uses a tree-style interface. Hardware devices appear in groups, and available sensors can be expanded underneath them.
Value
Value shows the current reading. For example, a CPU temperature changes as processor load increases or decreases.
Min
Min records the lowest observed reading during the current monitoring session.
Max
Max records the highest observed value and is particularly useful when monitoring temperatures during demanding workloads.
You can leave HWMonitor running while gaming or performing another demanding task and then return afterward to see the highest CPU, GPU, or other sensor reading recorded during the session.
Fan Speeds
Supported motherboard, GPU, cooler, and other controllers can expose fan-speed readings in RPM.
Fan monitoring is useful when investigating high temperatures. For example, unexpectedly high CPU temperature combined with unusually low fan RPM may point to a cooling or fan-control problem.
Voltages and Power
HWMonitor can display supported voltage, current, and power readings. The exact sensors vary significantly between desktops, laptops, motherboards, CPUs, and GPUs.
For normal troubleshooting, these values are generally more useful for observing trends than for diagnosing hardware from one isolated number.
HWMonitor CPU & GPU Temperature Monitoring

Monitor CPU Temperature
CPU temperature monitoring is one of the most common reasons to use HWMonitor.
A simple test is:
- Open HWMonitor.
- Locate your processor.
- Expand the Temperatures section.
- Note the idle readings.
- Run your normal workload.
- Return to HWMonitor.
- Check the Max readings.
This is usually more informative than looking only at an idle CPU temperature.
CPU Package vs Core Temperatures
HWMonitor may display package temperature, individual core temperatures, and other CPU thermal readings.
These can represent different sensors rather than duplicate information, so you should not expect every processor or motherboard to display the same sensor names.
Monitor GPU Temperature and Load
Depending on the graphics card, HWMonitor can display GPU temperature, hotspot temperature, GPU utilization, memory utilization, GPU and memory clocks, fan speed, power, voltage, and other supported readings.
Keeping HWMonitor updated is useful when using newly released graphics hardware because CPUID regularly improves hardware monitoring support.
Check Temperatures While Gaming
A simple gaming-monitoring workflow is:
- Open HWMonitor before starting the game.
- Allow the system to settle briefly.
- Note the current CPU and GPU temperatures.
- Leave HWMonitor running.
- Play normally.
- Return to HWMonitor afterward.
- Review the Max temperature readings.
What Is a Safe CPU or GPU Temperature?
There is no single safe-temperature limit that applies to every processor or graphics card.
Safe operating ranges depend on the exact CPU or GPU model, laptop or desktop design, cooling solution, power configuration, workload, and manufacturer specifications.
HWMonitor SSD, HDD, RAM & Other System Sensors

SSD and HDD Temperature Monitoring
HWMonitor can read supported storage information through S.M.A.R.T. monitoring.
This can be useful for NVMe SSDs, SATA SSDs, hard drives, gaming laptops, compact PCs, and systems with limited airflow.
Fast NVMe SSDs can become warm during sustained transfers or other storage-heavy workloads, so viewing storage temperatures alongside CPU and GPU temperatures can provide useful context.
Memory Temperature Monitoring
Some memory modules include thermal sensors. If your RAM and platform expose compatible temperature telemetry, HWMonitor may display those readings.
If RAM temperature is missing, your memory or motherboard may simply not expose a supported sensor.
Battery Monitoring
HWMonitor can also read supported battery information, making it useful on laptops as well as desktops.
It should still be considered a general hardware-monitoring utility rather than a dedicated battery-health application.
Real-Time Graphs
Recent HWMonitor releases added real-time graphs that can make sensor trends easier to understand.
Graphs can help visualize temperature spikes, clock changes, power behavior, load changes, and cooling response over time.
CSV Sensor Logging
HWMonitor also supports CSV sensor logging, which is useful when a problem occurs only during a longer workload.
You can collect readings while gaming, rendering, stress testing, exporting video, or performing another demanding task and review the logged data afterward.
Why Some HWMonitor Sensors Look Strange
Hardware monitoring can be complicated because motherboard sensor chips sometimes expose values that monitoring software must interpret.
You may occasionally see:
- Unused sensor inputs.
- Unusual voltage values.
- Generic labels.
- Duplicate-looking sensors.
- Readings that do not correspond to an actual connected component.
Do not assume every unusual reading means hardware failure.
When investigating a questionable value, compare it with BIOS/UEFI monitoring information or another reputable monitoring utility.
HWMonitor vs HWiNFO vs Core Temp vs Windows Task Manager

HWMonitor vs Windows Task Manager
| Feature | HWMonitor | Windows Task Manager |
|---|---|---|
| CPU Utilization | Yes | Yes |
| GPU Utilization | Yes | Yes |
| CPU Temperature | Supported Hardware | Generally Not Its Focus |
| GPU Temperature | Yes | Supported Systems |
| Fan Speeds | Supported Hardware | No |
| Voltages | Supported Hardware | No |
| Power Sensors | Yes | Limited |
| SSD / HDD Temperature | Supported Drives | Limited |
| Min / Max Sensor Values | Yes | No |
| Process Monitoring | No | Excellent |
| Best Use | Hardware Sensor Monitoring | Process & Resource Monitoring |
Use Task Manager when you need to know which applications are using CPU, RAM, storage, or GPU resources. Use HWMonitor when you want to understand how the hardware itself is behaving.
HWMonitor vs HWiNFO
HWiNFO provides broader system information and very detailed sensor monitoring. HWMonitor uses a more straightforward sensor tree that can be easier to scan when your main goal is checking temperatures, fan speeds, clocks, power, and voltages.
HWMonitor vs Core Temp
Core Temp is primarily focused on CPU temperature monitoring, while HWMonitor covers a wider range of hardware categories.
Depending on sensor support, HWMonitor can monitor the CPU, GPU, motherboard, storage, memory thermal sensors, fans, voltages, power, and batteries.
HWMonitor Free vs HWMonitor PRO
CPUID provides the standard HWMonitor utility and also offers an extended HWMonitor PRO edition.
For typical local PC monitoring tasks such as checking CPU and GPU temperatures, fan speeds, storage temperatures, utilization, clocks, and other supported sensors, the standard version is sufficient for many users.
Start with standard HWMonitor unless you specifically need a feature provided by HWMonitor PRO.
Is HWMonitor Safe?
HWMonitor is developed by CPUID and primarily reads hardware-monitoring information rather than changing CPU or GPU operating settings.
For the safest installation, download it directly from CPUID.
If unexpectedly high CPU or GPU activity appears together with unfamiliar background behavior and you suspect unwanted software, you can also use an additional security scan. See our Malwarebytes Download for Windows guide.
HWMonitor Troubleshooting
HWMonitor Does Not Show CPU Temperature
Make sure you are using the latest official version. New processor generations may require updated hardware-monitoring support.
If the sensor still does not appear, the processor or platform may not expose compatible information in the way HWMonitor expects.
GPU Temperature Is Missing
Update HWMonitor and your graphics driver. CPUID frequently adds or improves support for newer GPU generations.
Fan Speed Does Not Appear
Not every fan controller exposes readings that HWMonitor can access.
Check whether the fan appears in your motherboard’s BIOS or UEFI monitoring section.
Temperature Looks Wrong
Confirm that you are looking at the correct sensor and compare the value with BIOS/UEFI or another reputable monitoring application.
HWMonitor Shows Many Different Temperatures
This is normal. A PC can contain separate sensors for the processor package, individual CPU cores, motherboard, GPU, SSDs, memory, and other hardware.
New Hardware Is Not Recognized
Update HWMonitor to the current release. CPUID regularly expands hardware support for newly released processors, GPUs, power supplies, coolers, and other components.
How to Update HWMonitor
Visit the official CPUID HWMonitor page and check the current version.
If you use the Setup edition, download and run the latest installer. If you use the ZIP version, download the latest archive, extract it, and use the newer executable.
How to Uninstall HWMonitor
Setup Version
- Open Windows Settings.
- Select Apps.
- Open Installed apps.
- Find CPUID HWMonitor.
- Choose Uninstall.
ZIP Version
If you use the ZIP version, close HWMonitor and delete the extracted program folder. No conventional uninstall process is required.

Safe HWMonitor Download – Important
Always obtain HWMonitor directly from the official CPUID website.
Official source: CPUID HWMonitor.
- HWMonitor Crack.
- HWMonitor PRO Crack.
- Activated HWMonitor.
- Modified HWMonitor.
- Repacked HWMonitor.
- Unlocked HWMonitor PRO.
- Unknown third-party installer packages.
If you want standard HWMonitor, use the genuine standard edition. If you need HWMonitor PRO features, obtain the legitimate PRO edition through CPUID.
Frequently Asked Questions
Is HWMonitor free?
CPUID provides the standard HWMonitor utility and separately offers an extended HWMonitor PRO edition.
What is the latest HWMonitor version?
As of August 2026, CPUID lists HWMonitor 1.67 for Windows x86/x64.
Does HWMonitor work on Windows 11 and Windows 10?
Yes. HWMonitor is available for modern Windows x86/x64 systems, and CPUID also provides an ARM64 version.
Can HWMonitor show CPU temperature?
Yes. CPU-level temperature and health monitoring are among HWMonitor’s primary functions.
Can HWMonitor monitor GPU temperature?
Yes. Available GPU readings depend on the graphics card, driver, and supported hardware sensors.
Can HWMonitor show fan speed?
Yes, when the motherboard, graphics card, cooler, or other controller exposes compatible fan-speed data.
Can HWMonitor monitor SSDs and HDDs?
Yes. HWMonitor can display supported storage information and temperatures through S.M.A.R.T. monitoring.
Can HWMonitor monitor RAM temperature?
Yes, when the memory modules contain supported thermal sensors.
Does HWMonitor support ARM64 Windows PCs?
Yes. CPUID provides a dedicated ARM64 HWMonitor version for compatible Windows-on-ARM systems.
Does HWMonitor have a portable version?
CPUID provides a ZIP package that can be extracted and run without a conventional installation.
Does HWMonitor log sensor data?
Yes. Recent HWMonitor versions include CSV sensor logging for reviewing longer monitoring sessions.
Does HWMonitor have real-time graphs?
Yes. Recent releases added real-time graphing for supported sensor data.
Why are some HWMonitor sensors missing?
Available readings depend on what your hardware and monitoring controllers expose. Different computers can therefore display different sensor lists.
Is HWMonitor the same as CPU-Z?
No. Both are developed by CPUID, but CPU-Z focuses mainly on hardware specifications while HWMonitor focuses on live hardware-health and sensor readings.
Final Thoughts
HWMonitor is a practical Windows utility for users who want a quick view of important PC health sensors without installing a large monitoring suite.
Its ability to monitor CPU and GPU temperatures, fans, voltages, power, utilization, clock speeds, storage devices, memory thermal sensors, batteries, and other supported hardware makes it useful for desktops, gaming PCs, laptops, workstations, and newly built systems.
The Value, Min, and Max readings are particularly helpful when checking temperatures after gaming or another demanding workload, while real-time graphs and CSV logging provide additional options for longer troubleshooting sessions.
For most users, the standard edition is enough for everyday monitoring. Download HWMonitor only from CPUID and keep it updated when using newly released hardware.
Ready to download HWMonitor?
Get the latest supported Windows version directly from CPUID. ABDNOVA recommends official sources only.





