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Qualcomm Snapdragon 7 Gen 4 Processor Specifications
Qualcomm Snapdragon 7 Gen 4 chipset
Qualcomm · Snapdragon 7 Series Chipset

Snapdragon 7 Gen 4

Qualcomm Snapdragon 7 Gen 4 is an 8-core 5G mobile chipset announced in May 2025, with a 2.8GHz maximum frequency, Adreno 722 graphics, LPDDR5X memory and a 4nm process.

Mid rangeClass
May 2025Announced
2.8GHzMax Clock
Octa (8)Cores
4 nmProcess
LPDDR5XRAM Type
5GNetwork
Wi-Fi 7Networking

Benchmark Scores

Benchmark scores and sub-scores from the supplied Snapdragon 7 Gen 4 XLSX data.

AnTuTu 11
1.33M

Measures CPU, GPU, memory and UX performance across different workloads.

CPU510.4K
GPU270.3K
Memory193.7K
UX355.6K
Total score1.33M
Geekbench 6
1.3K

CPU and GPU compute results supplied for the Snapdragon 7 Gen 4.

Single-Core Score1.3K
Multi-Core Score4.1K
Compute Score (GPU)6.7K
Compression183.1 MB/s
HTML 593.9 pages/s
PDF Render126.6 Mpix/s
Image Detect65.2 img/s
HDR102.1 Mpix/s
Blur14.6 img/s
Photo Proc.30.1 img/s
Ray Tracing4.65 Mpix/s
Samples17 tests
3DMark
667

Cross-platform graphics benchmark assessing mobile GPU performance.

Steel Nomad Light667
Score667
Stability98%
Graphics test5 FPS
PCMark 3.0
14.8K

Measures overall smartphone performance across everyday productivity workloads.

Web score17.0K
Video editing score7.0K
Data manipulation score8.8K
Photo editing score34.8K
Writing score20.2K
Phones tested5 models

CPU & AI Performance

🧠 CPU
Architecture1x 2.8 GHz – Kryo Prime (Cortex-720) · 4x 2.4 GHz – Kryo Gold (Cortex-720) · 3x 1.84 GHz – Kryo Silver (Cortex-520)
Cores8
Frequency2800 MHz
Instruction setARMv9-A
L2 cache512 KB
L3 cache3 MB
Process4 nanometers
✨ AI Accelerator
Neural processor (NPU)Yes

Graphics, Memory & Storage

🎮 Graphics (GPU)
GPU nameAdreno 722
ArchitectureAdreno 700
GPU frequency1150 MHz
Pipelines2
Shading units256
Total shaders512
FLOPS1177.6 Gigaflops
💾 Memory & Storage
Memory typeLPDDR5X
Memory frequency4200 MHz
Bus2x 16 Bit
Max bandwidth33.6 Gb/s
Max size16 GB
Storage typeUFS 2.2, UFS 3.1, UFS 4.0

Multimedia (Camera & ISP)

📸 Multimedia (ISP)
Storage typeUFS 2.2, UFS 3.1, UFS 4.0
Max display resolution2880 x 1800
Max camera resolution1x 200MP
Video capture4K at 60FPS, 1K at 120FPS
Video playback4K at 60FPS, 1080p at 120FPS
Video codecsH.264, H.265, VP9
Audio codecsAAC, AIFF, CAF, MP3, MP4, WAV

Connectivity

📡 Cellular & Networking
5G supportYes
Download speedUp to 4200 Mbps
Wi-Fi7
Bluetooth6.0
NavigationGPS, GLONASS, Beidou, Galileo, QZSS, NAVIC

General Info

AnnouncedMay 2025
ClassMid range
Model NumberSM7750-AB
Official PageQualcomm Snapdragon 7 Gen 4 official site

information About Snapdragon 7 Gen 4

Quick Answer: Snapdragon 7 Gen 4 has the highest overall AnTuTu 11 score, while Snapdragon 7 Plus Gen 2 has stronger Geekbench CPU results and much higher memory bandwidth. Snapdragon 7 Gen 4 has the newer 4nm design, LPDDR5X, Wi-Fi 7 and a higher NanoReview gaming score. Snapdragon 888 Plus remains competitive in GPU compute but uses an older 5nm platform.

Introduction

The Snapdragon 7 Gen 4 vs Snapdragon 7 Plus Gen 2 vs Snapdragon 888 Plus comparison is interesting because these three Qualcomm chipsets come from different generations and target different levels of smartphone performance. Snapdragon 7 Gen 4 was announced in May 2025, Snapdragon 7 Plus Gen 2 arrived in March 2023, and Snapdragon 888 Plus was announced in June 2021. NanoReview classifies all three as mid-range or flagship-class products according to their respective positioning.

The Snapdragon 7 Gen 4 uses a newer 4nm TSMC process, Cortex-720-based CPU cores and an Adreno 722 GPU. Snapdragon 7 Plus Gen 2 also uses 4nm TSMC manufacturing but combines Cortex-X2, Cortex-A710 and Cortex-A510 cores with an Adreno 725 GPU. Snapdragon 888 Plus is the oldest design, using Samsung’s 5nm process with Cortex-X1, Cortex-A78 and Cortex-A55 cores alongside the Adreno 660.

Spec Comparison Table

SpecificationSnapdragon 7 Gen 4Snapdragon 7 Plus Gen 2Snapdragon 888 Plus
ManufacturerQualcommQualcommQualcomm
AnnouncementMay 2025March 2023June 2021
ClassMid-rangeMid-rangeFlagship
CPU Cores888
CPU Configuration1× Cortex-720 2.8GHz + 4× Cortex-720 2.4GHz + 3× Cortex-520 1.84GHz1× Cortex-X2 2.91GHz + 3× Cortex-A710 2.49GHz + 4× Cortex-A510 1.8GHz1× Cortex-X1 2.995GHz + 3× Cortex-A78 2.42GHz + 4× Cortex-A55 1.8GHz
Instruction SetARMv9-AARMv9-AARMv8.4-A
L2 Cache512KB2MB1MB
L3 Cache3MB8MB4MB
Process4nm4nm5nm
ManufacturingTSMCTSMCSamsung
GPUAdreno 722Adreno 725Adreno 660
GPU Frequency1150MHz580MHz840MHz
GPU FLOPS1177.6 GFLOPS1187.8 GFLOPS1290.2 GFLOPS
AI/NPUYesYesHexagon 780
RAMLPDDR5XLPDDR5LPDDR5
RAM Frequency4200MHz3200MHz3200MHz
Memory Bandwidth33.6GB/s51.2GB/s51.2GB/s
Maximum RAM16GB16GB24GB
StorageUFS 2.2, 3.1, 4.0UFS 3.1UFS 3.0, 3.1
Max Display2880×18002560×16003840×2160
Max Camera200MP200MP200MP
Video Recording4K 60FPS, 1K 120FPS4K 60FPS8K 30FPS, 4K 120FPS
5GYesYesYes
Max Download4200Mbps4400Mbps7500Mbps
Wi-FiWi-Fi 7Wi-Fi 6Wi-Fi 6
Bluetooth6.05.35.2
AnTuTu 111,329,9361,317,0071,208,784
Geekbench 6 Single1,2701,6541,605
Geekbench 6 Multi4,1064,2173,996
3DMark Steel Nomad Light667614Not disclosed
3DMark Wild Life ExtremeNot available1,9561,252
NanoReview CPU Score485250
NanoReview Gaming Score252324
NanoReview Battery Score919189

NanoReview’s current comparison data shows a very close contest between Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2 in overall AnTuTu performance, while Snapdragon 7 Plus Gen 2 maintains a clear CPU advantage in Geekbench.

Winner Summary

CategoryWinnerKey Reason
🏆 Overall AnTuTuSnapdragon 7 Gen 4Highest AnTuTu 11 score: 1.330M
⚡ CPUSnapdragon 7 Plus Gen 2Higher Geekbench 6 single and multi-core scores
🎮 GamingSnapdragon 7 Gen 4NanoReview gaming score of 25
🔋 EfficiencySnapdragon 7 Gen 4 / 7+ Gen 2Both score 91 for battery life
🧠 AINot determinedComparable AI benchmark data is unavailable
💾 Memory Bandwidth7 Plus Gen 2 / 888 Plus51.2GB/s
📦 StorageSnapdragon 7 Gen 4Supports UFS 4.0
📸 Camera ResolutionTieAll support up to 200MP
🎥 VideoSnapdragon 888 PlusSupports 8K30 and 4K120
🖥️ DisplaySnapdragon 888 PlusUp to 3840×2160
📶 ConnectivitySnapdragon 7 Gen 4Wi-Fi 7 and Bluetooth 6.0
🎨 GPU ComputeSnapdragon 888 Plus1,290.2 GFLOPS

Processor Overview

Snapdragon 7 Gen 4 is the newest platform in this comparison and combines a 4nm TSMC process with ARMv9 CPU architecture, LPDDR5X memory and newer connectivity standards. NanoReview lists it with an 8-core configuration consisting of one Cortex-720 core at 2.8GHz, four Cortex-720 cores at 2.4GHz and three Cortex-520 cores at 1.84GHz.

Snapdragon 7 Plus Gen 2 is older but remains a particularly strong CPU-focused chipset. Its architecture contains one Cortex-X2 core at 2.91GHz, three Cortex-A710 cores at 2.49GHz and four Cortex-A510 cores at 1.8GHz. It is also manufactured on TSMC’s 4nm process.

Snapdragon 888 Plus is the oldest processor here. Its 5nm Samsung fabrication and ARMv8.4-A architecture place it behind the two newer chips in platform generation, although its Adreno 660 still delivers strong theoretical GPU throughput and its multimedia subsystem supports 8K recording.

CPU Architecture & Processing Power

Snapdragon 7 Plus Gen 2 has the strongest CPU benchmark performance, despite Snapdragon 7 Gen 4 being newer.

NanoReview reports 1,654 Geekbench 6 single-core and 4,217 multi-core for Snapdragon 7 Plus Gen 2. Snapdragon 7 Gen 4 scores 1,270 single-core and 4,106 multi-core, while Snapdragon 888 Plus records 1,605 and 3,996 respectively.

The difference is particularly significant in single-core performance. Snapdragon 7 Plus Gen 2 leads Snapdragon 7 Gen 4 by approximately 30% in NanoReview’s current Geekbench 6 single-core comparison. Its multi-core advantage is much smaller at around 3%.

This makes Snapdragon 7 Plus Gen 2 an unusual case where an older processor still produces stronger CPU benchmark results than a newer generation chip. Its Cortex-X2 prime core and larger cache configuration contribute to the benchmark advantage. NanoReview lists 8MB L3 cache for the 7 Plus Gen 2 compared with 3MB for Snapdragon 7 Gen 4.

Snapdragon 888 Plus remains competitive in single-core performance at 1,605, but its multi-core result of 3,996 falls behind both newer 7-series chips.

For CPU-intensive applications, multitasking and workloads that scale across multiple cores, Snapdragon 7 Plus Gen 2 has the strongest documented CPU performance of these three processors.

GPU & Gaming Performance

Snapdragon 7 Gen 4 has the highest NanoReview gaming score, while Snapdragon 888 Plus has the highest theoretical GPU FLOPS.

The Snapdragon 7 Gen 4 uses an Adreno 722 clocked at 1150MHz, while Snapdragon 7 Plus Gen 2 uses an Adreno 725 at 580MHz. Snapdragon 888 Plus uses an Adreno 660 at 840MHz. NanoReview lists theoretical GPU performance at 1,177.6 GFLOPS, 1,187.8 GFLOPS and 1,290.2 GFLOPS respectively.

Raw FLOPS therefore favor Snapdragon 888 Plus, but NanoReview’s broader gaming score does not follow the same order. Snapdragon 7 Gen 4 receives a 25 gaming score, Snapdragon 888 Plus receives 24, and Snapdragon 7 Plus Gen 2 receives 23.

NanoReview’s 3DMark Steel Nomad Light result gives Snapdragon 7 Gen 4 667 points, compared with 614 for Snapdragon 7 Plus Gen 2, putting the newer chip around 9% ahead in that test. Snapdragon 7 Plus Gen 2 has a listed Wild Life Extreme result of 1,956, while Snapdragon 888 Plus records 1,252.

These tests should not be merged into one universal gaming score because they measure different workloads. The available evidence does, however, show that Snapdragon 7 Gen 4 has a strong modern GPU implementation despite its mid-range positioning.

Manufacturing Process & Efficiency

Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2 have the manufacturing-process advantage because both use TSMC’s 4nm process, while Snapdragon 888 Plus uses Samsung’s 5nm process.

A smaller process node can provide a more modern transistor platform, but it does not automatically guarantee higher benchmark performance. In this comparison, the CPU benchmarks actually favor Snapdragon 7 Plus Gen 2, while the newer Snapdragon 7 Gen 4 has stronger gaming and connectivity characteristics.

NanoReview gives Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2 a battery-life score of 91, while Snapdragon 888 Plus receives 89. That gives the two 4nm processors a two-point advantage in NanoReview’s efficiency indicator.

The 7 Plus Gen 2 is listed with a 6W sustained power limit. NanoReview does not provide the same TDP figure for Snapdragon 7 Gen 4 in the comparison data, so a precise power-consumption percentage cannot be calculated between them.

RAM, Memory & Storage Support

Snapdragon 7 Plus Gen 2 and Snapdragon 888 Plus have higher maximum memory bandwidth, while Snapdragon 7 Gen 4 has the newer LPDDR5X standard and better storage support.

Snapdragon 7 Gen 4 supports LPDDR5X at 4200MHz with 33.6GB/s maximum bandwidth. Snapdragon 7 Plus Gen 2 and Snapdragon 888 Plus use LPDDR5 at 3200MHz and provide 51.2GB/s bandwidth.

This is an important specification difference. LPDDR5X is newer, but the 7 Gen 4’s 2×16-bit memory bus results in lower theoretical bandwidth than the 4×16-bit buses listed for the other two processors.

Snapdragon 7 Gen 4 compensates with substantially newer storage support. NanoReview lists UFS 2.2, UFS 3.1 and UFS 4.0, whereas Snapdragon 7 Plus Gen 2 is limited to UFS 3.1 and Snapdragon 888 Plus supports UFS 3.0 and UFS 3.1.

For storage technology and future platform configurations, Snapdragon 7 Gen 4 therefore has the stronger specification.

AI & NPU Capabilities

All three processors include dedicated AI hardware, but NanoReview’s comparable specification data does not provide enough numerical information to establish a definitive AI performance winner.

NanoReview lists a neural processor for Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2, while Snapdragon 888 Plus uses the Hexagon 780 neural processor.

Because equivalent TOPS measurements and AI benchmark results are not provided for all three processors in the same manner, it would be inappropriate to assign an exact performance percentage.

For smartphone users, these AI engines can support workloads such as image processing and other on-device acceleration, but actual AI functionality depends on the phone’s software and implementation.

ISP, Camera & Video Capabilities

All three chipsets support 200MP camera configurations, but Snapdragon 888 Plus has the strongest video specification.

NanoReview lists a maximum camera resolution of 200MP for Snapdragon 7 Gen 4, Snapdragon 7 Plus Gen 2 and Snapdragon 888 Plus.

Snapdragon 7 Gen 4 supports 4K at 60FPS and 1K at 120FPS according to NanoReview. Snapdragon 7 Plus Gen 2 supports 4K at 60FPS, while Snapdragon 888 Plus supports substantially higher recording capability with 8K at 30FPS and 4K at 120FPS.

This gives Snapdragon 888 Plus an advantage for maximum video capture specifications, even though it is the oldest chipset.

Snapdragon 7 Gen 4 supports UFS 4.0 alongside UFS 3.1 and UFS 2.2, while the 7 Plus Gen 2 uses UFS 3.1. The combination of modern storage and newer processing architecture gives the 7 Gen 4 a more current platform, even though its maximum video recording specification does not match the older 888 Plus.

Camera resolution alone should not be interpreted as image-quality ranking. Actual smartphone photography also depends on the sensor, optics, stabilization, ISP implementation and camera software.

Display Support

Snapdragon 888 Plus has the highest maximum display resolution, while Snapdragon 7 Gen 4 supports a higher resolution than Snapdragon 7 Plus Gen 2.

NanoReview lists maximum display resolutions of 3840×2160 for Snapdragon 888 Plus, 2880×1800 for Snapdragon 7 Gen 4 and 2560×1600 for Snapdragon 7 Plus Gen 2.

The 888 Plus therefore has the highest theoretical display ceiling. Snapdragon 7 Gen 4 sits between the two rivals and has a 32% higher listed vertical resolution than the 7 Plus Gen 2 when comparing the maximum supported pixel dimensions.

However, chipset maximum resolution does not mean every smartphone using the processor will use that resolution. Actual phone displays depend on the manufacturer’s panel selection.

Modem, 5G & Connectivity

Snapdragon 7 Gen 4 has the most modern connectivity package, particularly because of Wi-Fi 7 and Bluetooth 6.0.

NanoReview lists Snapdragon 7 Gen 4 with 5G support, up to 4,200Mbps download, Wi-Fi 7 and Bluetooth 6.0. Snapdragon 7 Plus Gen 2 uses the Snapdragon X62 modem with up to 4,400Mbps download, 1,600Mbps upload, Wi-Fi 6 and Bluetooth 5.3.

Snapdragon 888 Plus has the highest theoretical cellular download rate of the three at 7,500Mbps, together with up to 3,000Mbps upload, Wi-Fi 6 and Bluetooth 5.2.

Therefore, the connectivity comparison depends on what is being measured. Snapdragon 888 Plus has the highest theoretical cellular speed, Snapdragon 7 Plus Gen 2 has the highest listed upload speed among the two 7-series chips, while Snapdragon 7 Gen 4 has the newest Wi-Fi and Bluetooth standards.

Actual network performance depends on the modem implementation, carrier network, spectrum, signal quality and local infrastructure.

Benchmark Comparison

Snapdragon 7 Gen 4 has the highest AnTuTu 11 score, but Snapdragon 7 Plus Gen 2 leads Geekbench CPU testing.

NanoReview’s current AnTuTu 11 results are:

  • Snapdragon 7 Gen 4: 1,329,936
  • Snapdragon 7 Plus Gen 2: 1,317,007
  • Snapdragon 888 Plus: 1,208,784

Snapdragon 7 Gen 4 is therefore only about 1% ahead of Snapdragon 7 Plus Gen 2 in the listed AnTuTu 11 comparison, while its advantage over Snapdragon 888 Plus is approximately 10%.

The individual AnTuTu components show why the overall result is so close. Snapdragon 7 Plus Gen 2 has a higher CPU component at 532,680 compared with 510,448 for Snapdragon 7 Gen 4, and it also has a higher memory score of 232,990 versus 193,658. However, Snapdragon 7 Gen 4’s GPU score is much higher at 270,275 compared with 166,554 for the 7 Plus Gen 2.

Geekbench produces a different result. Snapdragon 7 Plus Gen 2 scores 1,654 single-core and 4,217 multi-core, compared with 1,270 and 4,106 for Snapdragon 7 Gen 4. Snapdragon 888 Plus records 1,605 and 3,996.

This means there is no single benchmark that completely describes the three processors. Snapdragon 7 Gen 4 leads the current AnTuTu 11 result, while Snapdragon 7 Plus Gen 2 leads CPU-focused Geekbench testing.

Real-World Performance

Snapdragon 7 Gen 4 is the more modern all-round platform, while Snapdragon 7 Plus Gen 2 remains exceptionally strong for CPU-heavy workloads.

For everyday applications, both 4nm 7-series processors provide a strong performance foundation. Snapdragon 7 Plus Gen 2’s higher Geekbench CPU scores suggest an advantage in workloads that depend heavily on CPU throughput, while Snapdragon 7 Gen 4’s higher AnTuTu score reflects stronger combined system performance in NanoReview’s current results.

Gaming presents another interesting split. NanoReview rates Snapdragon 7 Gen 4 at 25 for gaming, compared with 23 for Snapdragon 7 Plus Gen 2 and 24 for Snapdragon 888 Plus. The 7 Gen 4 also leads the listed Steel Nomad Light test against the 7 Plus Gen 2.

The Snapdragon 7 Plus Gen 2 nevertheless has a substantial advantage in memory bandwidth, at 51.2GB/s versus 33.6GB/s for the 7 Gen 4. Its CPU architecture and larger 8MB L3 cache also help explain why its Geekbench CPU results remain stronger.

For battery efficiency, NanoReview gives both Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2 a score of 91. Snapdragon 888 Plus receives 89. This makes the two newer 4nm chips the stronger choices according to NanoReview’s efficiency indicator.

For storage and connectivity, Snapdragon 7 Gen 4 has the newer platform. UFS 4.0 support, Wi-Fi 7, Bluetooth 6.0 and LPDDR5X make it better aligned with newer smartphone hardware.

Strengths & Weaknesses

Snapdragon 7 Gen 4

Strengths

  • Highest AnTuTu 11 score at 1,329,936.
  • Highest NanoReview gaming score at 25.
  • Modern 4nm TSMC manufacturing.
  • LPDDR5X memory.
  • UFS 4.0 support.
  • Wi-Fi 7.
  • Bluetooth 6.0.
  • 3DMark Steel Nomad Light score of 667.
  • Newer ARMv9-A CPU architecture.

Weaknesses

  • Lower Geekbench single-core and multi-core scores than Snapdragon 7 Plus Gen 2.
  • Memory bandwidth of 33.6GB/s is substantially below the 51.2GB/s offered by the 7 Plus Gen 2.
  • Its maximum video capture specification is below Snapdragon 888 Plus.

Snapdragon 7 Plus Gen 2

Strengths

  • Highest Geekbench 6 single-core score.
  • Highest Geekbench 6 multi-core score.
  • 8MB L3 cache.
  • 51.2GB/s memory bandwidth.
  • 4nm TSMC process.
  • Strong AnTuTu 11 result of 1,317,007.
  • NanoReview CPU score of 52.

Weaknesses

  • Uses older LPDDR5 rather than LPDDR5X.
  • UFS support is limited to UFS 3.1.
  • Wi-Fi 6 rather than Wi-Fi 7.
  • Bluetooth 5.3.
  • Lower NanoReview gaming score than Snapdragon 7 Gen 4.

Snapdragon 888 Plus

Strengths

  • Highest theoretical GPU FLOPS at 1,290.2 GFLOPS.
  • Highest maximum display resolution at 3840×2160.
  • Supports 8K30 and 4K120 video recording.
  • 7,500Mbps theoretical maximum download speed.
  • Strong 1,605 Geekbench 6 single-core score.
  • Supports up to 24GB RAM according to NanoReview.

Weaknesses

  • Oldest architecture in the comparison.
  • Uses 5nm Samsung manufacturing.
  • Lower AnTuTu 11 score than both 7-series processors.
  • Lower multi-core Geekbench score.
  • LPDDR5 rather than LPDDR5X.
  • Wi-Fi 6 and Bluetooth 5.2.
  • NanoReview battery score of 89, below the 91 scores of both newer chips.

Best Processor For Different Users

Best overall: Snapdragon 7 Gen 4 based on its highest AnTuTu 11 score, stronger NanoReview gaming score and newer platform technologies.

Best CPU performance: Snapdragon 7 Plus Gen 2, which leads both Geekbench 6 single-core and multi-core testing.

Best gaming: Snapdragon 7 Gen 4 according to NanoReview’s current gaming score and Steel Nomad Light result.

Best efficiency: Snapdragon 7 Gen 4 and Snapdragon 7 Plus Gen 2, both scoring 91 in NanoReview’s battery-life indicator.

Best memory bandwidth: Snapdragon 7 Plus Gen 2 and Snapdragon 888 Plus, both offering 51.2GB/s.

Best storage technology: Snapdragon 7 Gen 4, because it supports UFS 4.0.

Best video capability: Snapdragon 888 Plus, with 8K30 and 4K120 support.

Best connectivity standards: Snapdragon 7 Gen 4, with Wi-Fi 7 and Bluetooth 6.0.

Final Verdict & Ranking

1. Snapdragon 7 Gen 4

Snapdragon 7 Gen 4 takes the first position based on the overall combination of current benchmark performance and platform features. Its 1,329,936 AnTuTu 11 score narrowly exceeds Snapdragon 7 Plus Gen 2, while its newer 4nm architecture, LPDDR5X, UFS 4.0, Wi-Fi 7 and Bluetooth 6.0 provide a more modern specification package.

2. Snapdragon 7 Plus Gen 2

Snapdragon 7 Plus Gen 2 is extremely close overall and has a clear advantage in CPU performance. Its 1,317,007 AnTuTu 11 score is only around 1% behind Snapdragon 7 Gen 4, while its Geekbench 6 scores are substantially higher. Its 51.2GB/s memory bandwidth and 8MB L3 cache also make it particularly strong for CPU-heavy workloads.

3. Snapdragon 888 Plus

Snapdragon 888 Plus remains a capable older flagship chipset, particularly for multimedia and theoretical GPU throughput. Its 1,290.2 GFLOPS GPU figure, 8K30 recording and 4K120 capture are notable. However, the older 5nm platform and lower overall benchmark results place it behind the two newer 4nm Snapdragon 7-series processors in this comparison.

Bottom Line

The Snapdragon 7 Gen 4 vs Snapdragon 7 Plus Gen 2 vs Snapdragon 888 Plus comparison shows that newer does not automatically mean stronger in every individual test. Snapdragon 7 Gen 4 has the strongest overall AnTuTu result, newer memory and storage standards, and the most modern wireless connectivity. Snapdragon 7 Plus Gen 2 is the CPU specialist, leading Geekbench single-core and multi-core performance while offering much higher memory bandwidth. Snapdragon 888 Plus still has strong multimedia specifications and theoretical GPU throughput, but its older 5nm platform makes it the least modern option of the three.

Source: Specifications and benchmark data verified against NanoReview’s current Snapdragon 7 Gen 4, Snapdragon 7 Plus Gen 2 and Snapdragon 888 Plus pages.

Last Verified: October 3, 2026

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Trailer Of Snapdragon 7 Gen 4

Author & Post Info

Picture of Faisal Ur Rehman

Faisal Ur Rehman

Faisal Rehman is the founder and editor of FSL Specs, where he publishes in-depth smartphone specifications, comparisons, buying guides, and technology insights. With extensive experience in mobile hardware research and technical analysis, he provides accurate and up-to-date information on Android smartphones, processors, displays, cameras, batteries, performance benchmarks, and software features. His goal is to simplify complex specifications and help readers choose the right device with confidence.

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Questions About Snapdragon 7 Gen 4

The Snapdragon 8 Gen 5 uses a custom octa-core Oryon design with 2 Prime cores up to 3.8GHz and 6 Performance cores up to 3.32GHz. It is built on a 3nm process with a 16MB L2 cache and a 9W sustained TDP. This marks Qualcomm's continued shift away from ARM reference cores toward fully custom Oryon architecture.

Graphics are handled by the Adreno 829, built on the Adreno 800 architecture. It runs at 1225MHz with 512 shading units and 1024 total shaders, delivering 2508.8 GFLOPS of compute power. It supports Vulkan 1.4 for the latest graphics API features.

It supports LPDDR5X memory at up to 4800MHz across a 4x16-bit bus, giving 76.8GB/s of bandwidth and up to 24GB capacity. Storage is handled by UFS 4.0 or UFS 4.1. This combination is standard for 2025-2026 flagship-tier multitasking and app performance.

The Snapdragon 8 Gen 5 scores around 3.1 million points on AnTuTu 11. The breakdown shows 954.6K for CPU, 990.3K for GPU, 392.7K for memory, and 731.3K for UX. This places it among the very top flagship chipsets currently available.

Yes, it pairs with the Snapdragon X80 modem, delivering peak download speeds up to 10Gbps and upload speeds up to 3.5Gbps. It also includes Wi-Fi 7, Bluetooth 6.0, and GNSS support for GPS, GLONASS, BeiDou, Galileo, QZSS, and NAVIC.

The ISP supports a single camera sensor up to 320MP. It handles video capture and playback at 8K @ 60FPS and 4K @ 120FPS, with support for H.264, H.265, AV1, VP8, and VP9 codecs. This gives it flagship-level photography and video recording capability.

The chip supports display resolutions up to 3840x2540. Combined with the Adreno 829 GPU, this allows for smooth high refresh rate performance on premium flagship panels.

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