Intel Core i5-1145G7

Intel Core i5-1145G7
Intel Core i5-1145G7 processor review

Intel Core i5-1145G7 in 2026: Performance, Prices, and Comparison with Newer CPUs

The Intel Core i5-1145G7 is a Tiger Lake-generation mobile processor released in 2021 and widely used in business laptops. With four cores and eight threads, it already lags noticeably behind newer mobile processors in multi-threaded performance, but the i5-1145G7 is still fast enough for office work, web browsing, and development in single-threaded tasks.

In 2026, the Core i5-1145G7 is primarily worth considering in inexpensive refurbished laptops. Business models with this processor cost approximately €300-350, while laptops with faster 12th-generation Intel CPUs are already available for €400.

Performance in Real-World Laptops

Core i5-1145G7 performance depends significantly on the power limit, cooling, and memory configuration.

Device Processor Geekbench 6 Single Geekbench 6 Multi Price
HP EliteBook 830 G8 Core i5-1145G7 1906 6154 from ~€314
Dell Latitude 7420 Core i5-1145G7 1833 5156 from ~€349
HP EliteBook 840 G8 Core i5-1145G7 1557 4290 from ~€363

The prices apply to refurbished laptops and depend on the amount of memory, SSD, and the device’s condition. The configurations available for sale may differ from the systems used in the tests.

The HP EliteBook 830 G8’s multi-threaded result is approximately 44% higher than that of the EliteBook 840 G8, despite having the same processor. For mobile Tiger Lake, this difference between individual laptops is significant.

In Cinebench R23, the Core i5-1145G7 scores an average of approximately 1375 points in single-threaded mode and 4880 points in multi-threaded mode. The Dell Latitude 7420 scores 4769 points in Multi Core, while an Intel NUC with a higher power limit scores 4991.

In PassMark CPU Mark, the i5-1145G7 scores around 9,000 points. That is still enough for web browsing, office applications, IDEs, and basic photo editing.

Core i5-1145G7 vs. Core i5-1135G7

The Core i5-1145G7 and Core i5-1135G7 are based on the same architecture and have four cores, eight threads, 8 MB of L3 cache, and Iris Xe with 80 EUs.

The main difference is the higher maximum clock speed: up to 4.4 GHz on the i5-1145G7 versus 4.2 GHz on the i5-1135G7. In addition, the i5-1145G7 is aimed at business laptops and supports Intel vPro.

In Cinebench R23 Multi, the average score is approximately 4880 points for the i5-1145G7 and 4724 points for the i5-1135G7-a difference of about 3%.

Therefore, with the same laptop configuration, a significant premium for the i5-1145G7 is not justified. The battery’s condition, amount of memory, display, and price of the specific model matter more than this difference.

Core i5-1145G7 vs. Core i7-1165G7 and Ryzen 5 PRO 5650U

The Core i7-1165G7 is based on the same architecture and has four cores and eight threads. In Cinebench R23 Multi, it scores approximately 5110 points versus 4880 for the i5-1145G7-a difference of about 5%.

The Core i7-1165G7 uses Iris Xe with 96 EUs instead of 80 EUs, so the difference between the processors is more noticeable in graphics tests.

The Ryzen 5 PRO 5650U is noticeably faster in multi-threaded workloads. It scores approximately 6593 points in Cinebench R23 Multi-about 35% more than the i5-1145G7.

When compiling large projects and rendering, the four Tiger Lake cores already noticeably limit performance.

Iris Xe Graphics

The Core i5-1145G7 is equipped with Intel Iris Xe Graphics with 80 EUs and a clock speed of up to 1.3 GHz.

In the HP EliteBook 840 G8, the integrated graphics scores approximately 937 points in the Graphics Score test in 3DMark Time Spy. This is not enough for modern demanding games, but Iris Xe can handle video playback and processing, multiple monitors, and older or less demanding games.

Integrated graphics performance depends heavily on memory. With a dual-channel configuration, memory bandwidth is higher, so Iris Xe runs noticeably faster. Single-channel memory reduces FPS and graphics test results.

Power Consumption

For the Core i5-1145G7, Intel specifies a power configuration range of 12 to 28 W.

With good cooling and a high power limit, the processor maintains high clock speeds under load for longer. In thin systems with strict limits, performance can be noticeably lower.

How Much Does a Core i5-1145G7 Laptop Cost?

On the refurbished market, laptops with the i5-1145G7 are already priced close to models with newer processors.

Device Processor Approximate price
HP EliteBook 830 G8 Core i5-1145G7 ~€314
Dell Latitude 7420 Core i5-1145G7 ~€349
HP EliteBook 840 G8 Core i5-1145G7 ~€363
Dell Latitude 5430 Core i5-1245U ~€414

At €300-350, the Core i5-1145G7 is still a reasonable choice if the laptop has 16 GB of memory, a 256-512 GB SSD, and a battery without significant wear.

At around €400 and above, it is worth considering the Core i5-1245U and other 12th-generation processors. The Core i5-1245U is noticeably faster in multi-threaded workloads and offers a more modern platform.

Conclusion

The Core i5-1145G7 is still powerful enough for office work, web browsing, studying, and programming. Single-threaded performance remains sufficient for everyday work, while Iris Xe is noticeably faster than older Intel UHD Graphics solutions.

The weak point of the i5-1145G7 is the multi-threaded performance of its four cores. In demanding multi-threaded workloads, this processor falls noticeably behind the six-core mobile Ryzen processors from the same period.

A reasonable price range for an i5-1145G7 laptop is approximately €300-350. At a higher price, it is better to look for a system with a Core i5-1245U, Ryzen 5 PRO 5650U, or a newer processor.

CPU Comparison

Compare Core i5-1145G7 with other CPUs

Please select CPU from the dropdown list.

Basic

Label Name
Intel
Platform
Mobile
Launch Date
September 2020
Model Name
?
The Intel processor number is just one of several factors - along with processor brand, system configurations, and system-level benchmarks - to be considered when choosing the right processor for your computing needs.
i5-1145G7
Code Name
Tiger Lake

CPU Specifications

Total Cores
?
Cores is a hardware term that describes the number of independent central processing units in a single computing component (die or chip).
4
Total Threads
?
Where applicable, Intel® Hyper-Threading Technology is only available on Performance-cores.
8
Intel Virtualization Technology (VT-x)
?
Intel® Virtualization Technology (VT-x) allows one hardware platform to function as multiple “virtual” platforms. It offers improved manageability by limiting downtime and maintaining productivity by isolating computing activities into separate partitions.
Yes
Intel Virtualization Technology for Directed I/O (VT-d)
?
Intel® Virtualization Technology for Directed I/O (VT-d) continues from the existing support for IA-32 (VT-x) and Itanium® processor (VT-i) virtualization adding new support for I/O-device virtualization. Intel VT-d can help end users improve security and reliability of the systems and also improve performance of I/O devices in virtualized environments.
Yes
Max Turbo Frequency
?
Max Turbo Frequency is the maximum single-core frequency at which the processor is capable of operating using Intel® Turbo Boost Technology and, if present, Intel® Turbo Boost Max Technology 3.0 and Intel® Thermal Velocity Boost. Frequency is typically measured in gigahertz (GHz), or billion cycles per second.
4.40 GHz
Intel Hyper-Threading Technology
?
Intel® Hyper-Threading Technology (Intel® HT Technology) delivers two processing threads per physical core. Highly threaded applications can get more work done in parallel, completing tasks sooner.
Yes
Intel Turbo Boost Technology
?
Intel® Turbo Boost Technology dynamically increases the processor's frequency as needed by taking advantage of thermal and power headroom to give you a burst of speed when you need it, and increased energy efficiency when you don’t.
2.0
L3 Cache
8 MB
Cache
?
CPU Cache is an area of fast memory located on the processor. Intel® Smart Cache refers to the architecture that allows all cores to dynamically share access to the last level cache.
8 MB Intel® Smart Cache
CPU Socket
?
The socket is the component that provides the mechanical and electrical connections between the processor and motherboard.
FCBGA1449
Intel AES New Instructions
?
Intel® AES New Instructions (Intel® AES-NI) are a set of instructions that enable fast and secure data encryption and decryption. AES-NI are valuable for a wide range of cryptographic applications, for example: applications that perform bulk encryption/decryption, authentication, random number generation, and authenticated encryption.
Yes
Technology
?
Lithography refers to the semiconductor technology used to manufacture an integrated circuit, and is reported in nanometer (nm), indicative of the size of features built on the semiconductor.
10 nm SuperFin
TDP
28 W
Max. Operating Temperature
?
Junction Temperature is the maximum temperature allowed at the processor die.
100°C
Instruction Set
?
The instruction set is a hard program stored inside the CPU that guides and optimizes CPU operations. With these instruction sets, the CPU can run more efficiently. There are many manufacturers that design CPUs, which results in different instruction sets, such as the 8086 instruction set for the Intel camp and the RISC instruction set for the ARM camp. x86, ARM v8, and MIPS are all codes for instruction sets. Instruction sets can be extended; for example, x86 added 64-bit support to create x86-64. Manufacturers developing CPUs that are compatible with a certain instruction set need authorization from the instruction set patent holder. A typical example is Intel authorizing AMD, enabling the latter to develop CPUs compatible with the x86 instruction set.
64-bit
Intel VT-x with Extended Page Tables (EPT)
?
Intel® VT-x with Extended Page Tables (EPT), also known as Second Level Address Translation (SLAT), provides acceleration for memory intensive virtualized applications. Extended Page Tables in Intel® Virtualization Technology platforms reduces the memory and power overhead costs and increases battery life through hardware optimization of page table management.
Yes
Microprocessor PCIe Revision
Gen 4

Memory Specifications

Memory Type
?
Intel® processors come in four different types: Single Channel, Dual Channel, Triple Channel, and Flex Mode. Maximum supported memory speed may be lower when populating multiple DIMMs per channel on products that support multiple memory channels.
DDR4-3200 | LPDDR4x-4267
Max Memory Size
?
Max memory size refers to the maximum memory capacity supported by the processor.
64 GB
Memory Channels
?
The number of memory channels refers to the bandwidth operation for real world application.
2
Bus Speed
4 GT/s
ECC Memory Support
?
ECC Memory Supported indicates processor support for Error-Correcting Code memory. ECC memory is a type of system memory that can detect and correct common kinds of internal data corruption. Note that ECC memory support requires both processor and chipset support.
No

GPU Specifications

Integrated Graphics Model
?
An integrated GPU refers to the graphics core that is integrated into the CPU processor. Leveraging the processor's powerful computational capabilities and intelligent power efficiency management, it delivers outstanding graphics performance and a smooth application experience at a lower power consumption.
Intel® Iris® Xe Graphics
Graphics Frequency
?
Graphics max dynamic frequency refers to the maximum opportunistic graphics render clock frequency (in MHz) that can be supported using Intel® HD Graphics with Dynamic Frequency feature.
1.30 GHz
DirectX Support
?
DirectX* Support indicates support for a specific version of Microsoft’s collection of APIs (Application Programming Interfaces) for handling multimedia compute tasks.
12.1
Execution Units
?
The Execution Unit is the foundational building block of Intel’s graphics architecture. Execution Units are compute processors optimized for simultaneous Multi-Threading for high throughput compute power.
80
Max Resolution (DP)
?
Max Resolution (DP) is the maximum resolution supported by the processor via the DP interface (24bits per pixel & 60Hz). System or device display resolution is dependent on multiple system design factors; actual resolution may be lower on your system.
7680x4320@60Hz
Max Resolution (eDP - Integrated Flat Panel)
?
Max Resolution (Integrated Flat Panel) is the maximum resolution supported by the processor for a device with an integrated flat panel (24bits per pixel & 60Hz). System or device display resolution is dependent on multiple system design factors; actual resolution may be lower on your device.
4096x2304@60Hz
Max Resolution (HDMI)
?
Max Resolution (HDMI) is the maximum resolution supported by the processor via the HDMI interface (24bits per pixel & 60Hz). System or device display resolution is dependent on multiple system design factors; actual resolution may be lower on your system.
4096x2304@60Hz
Number of Displays Supported
4
Graphics Output
?
Graphics Output defines the interfaces available to communicate with display devices.
eDP 1.4b | MIPI-DSI 2.0 | DP 1.4 | HDMI 2.0b
Intel Clear Video HD Technology
?
Intel® Clear Video HD Technology, like its predecessor, Intel® Clear Video Technology, is a suite of image decode and processing technologies built into the integrated processor graphics that improve video playback, delivering cleaner, sharper images, more natural, accurate, and vivid colors, and a clear and stable video picture. Intel® Clear Video HD Technology adds video quality enhancements for richer color and more realistic skin tones.
Yes
OpenGL Support
?
OpenGL (Open Graphics Library) is a cross-language, multi-platform API (Application Programming Interface) for rendering 2D and 3D vector graphics.
4.6
OpenCL Support
?
OpenCL (Open Computing Language) is a multi-platform API (Application Programming Interface) for heterogeneous parallel programming.
3.0
Intel Quick Sync Video
?
Intel® Quick Sync Video delivers fast conversion of video for portable media players, online sharing, and video editing and authoring.
Yes

AI Specifications

Intel Gaussian Neural Accelerator
?
Intel® Gaussian & Neural Accelerator (GNA) is an ultra-low power accelerator block designed to run audio and speed-centric AI workloads. Intel® GNA is designed to run audio based neural networks at ultra-low power, while simultaneously relieving the CPU of this workload.
2.0
Intel Deep Learning Boost (Intel DL Boost) on CPU
?
A new set of embedded processor technologies designed to accelerate AI deep learning use cases. It extends Intel AVX-512 with a new Vector Neural Network Instruction (VNNI) that significantly increases deep learning inference performance over previous generations.
Yes

Interfaces and Ports

Intel Volume Management Device (VMD)
?
Intel® Volume Management Device (VMD) provides a common, robust method of hot plug and LED management for NVMe-based solid state drives.
Yes

Miscellaneous

Intel Image Processing Unit
6.0
Intel Standard Manageability (ISM)
?
Intel® Standard Manageability is the manageability solution for Intel vPro® Essentials platforms and is a subset of Intel® AMT with out-of-band management over Ethernet and Wi-Fi, but no KVM or new life cycle management features.
Intel® SSE4.1 | Intel® SSE4.2 | Intel® AVX2 | Intel® AVX-512
Intel High Definition Audio
Yes
Intel Boot Guard
?
Intel® Device Protection Technology with Boot Guard helps protect the system’s pre-OS environment from viruses and malicious software attacks.
Yes
Intel Control-Flow Enforcement Technology
?
CET - Intel Control-flow Enforcement Technology (CET) helps protect against the misuse of legitimate code snippets through return-oriented programming (ROP) control-flow hijacking attacks.
Yes
Intel OS Guard
Yes

Benchmarks

Geekbench 6
Single Core Score
1702
Geekbench 6
Multi Core Score
4973
Geekbench 5
Single Core Score
1287
Geekbench 5
Multi Core Score
4113
Passmark CPU
Single Core Score
2779
Passmark CPU
Multi Core Score
9959

Compared to Other CPU

Geekbench 6 Single Core
1894 +11.3%
1792 +5.3%
1651 -3%
1600 -6%
Geekbench 6 Multi Core
5551 +11.6%
5322 +7%
4680 -5.9%
4471 -10.1%
Geekbench 5 Single Core
1386 +7.7%
1331 +3.4%
1243 -3.4%
1204 -6.4%
Geekbench 5 Multi Core
4595 +11.7%
4354 +5.9%
3905 -5.1%
3747 -8.9%
Passmark CPU Single Core
2928 +5.4%
2855 +2.7%
2741 -1.4%
2698 -2.9%
Passmark CPU Multi Core
10861 +9.1%
10411 +4.5%
9489 -4.7%
9123 -8.4%