AMD Ryzen 7 4700G vs Intel Core i7-1375PRE Comparison

AMD
AMD

AMD Ryzen 7 4700G

CORE STATE Renoir
CORE SPECS 8 Cores / 16 Threads
CLOCK SPEED 3.6 Base / 4.4 GHz Turbo
CACHE 8 MB
MAX TDP 65W
ARCHITECTURE Zen 2
nm
PROCESS 7 nm
LAUNCH DATE 2020
VS
Intel
INTEL

Core i7-1375PRE

CORE STATE Raptor Lake-P
CORE SPECS 14 Cores / 20 Threads
CLOCK SPEED 1900 Base / 4.8 GHz Turbo
CACHE 24 MB (shared)
MAX TDP 28W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2023

PERFORMANCE BENCHMARKS

cinebench_cinebench_r15_multicore
1,724
1,737
cinebench_cinebench_r15_singlecore
243
245
cinebench_cinebench_r20_multicore
7,186
7,239
cinebench_cinebench_r20_singlecore
1,014
1,021
cinebench_cinebench_r23_multicore
17,111
17,236
cinebench_cinebench_r23_singlecore
2,415
2,433

Analysis: AMD Ryzen 7 4700G vs Intel Core i7-1375PRE

The Intel Core i7-1375PRE and AMD Ryzen 7 4700G sit in the same performance tier, but they are fundamentally different products. The Intel chip is a 14-core mobile processor built for Raptor Lake-P, while the AMD part is an 8-core desktop chip from the Zen 2 Renoir generation. Both land at the 59th percentile in the global CPU benchmark distribution, and their average benchmark scores differ by less than 1%, with the Intel part at 4985 and the AMD part at 4949. Across six Cinebench tests, the Intel i7-1375PRE wins every single one, but the margins are consistently under 1%, making this a close contest that comes down to platform and workload characteristics rather than raw performance dominance.

FAQ

Q: Which processor has more cores and threads?

A: The Intel Core i7-1375PRE has 14 cores and 20 threads, while the AMD Ryzen 7 4700G has 8 cores and 16 threads. The Intel chip uses a hybrid arrangement with more physical cores, but the AMD part compensates with a higher base clock of 3.60 GHz versus 1.90 GHz.

Q: How do their integrated graphics compare?

A: The Intel Core i7-1375PRE features Iris Xe Graphics with 96 execution units, while the AMD Ryzen 7 4700G has Radeon Vega 8 graphics. Both provide integrated display output, but the Intel solution has a higher execution unit count per the specification data.

Q: What are the platform differences in socket and memory support?

A: The Intel chip uses the BGA 1744 socket and supports both DDR4 and DDR5 memory, while the AMD chip uses Socket AM4 and supports only DDR4. The AMD part also specifies a memory bandwidth of 51.2 GB/s, while the Intel part does not list a bandwidth figure.

Q: Which processor has a higher boost clock?

A: The Intel Core i7-1375PRE boosts up to 4.80 GHz, which is higher than the AMD Ryzen 7 4700G’s 4.40 GHz boost clock. Despite the AMD chip’s higher base clock, the Intel part reaches a higher maximum frequency.

Q: Are these processors unlocked for overclocking?

A: The AMD Ryzen 7 4700G has an unlocked multiplier, while the Intel Core i7-1375PRE does not. This means the AMD chip offers manual overclocking headroom, whereas the Intel chip is locked.

Q: How do their production processes differ?

A: The Intel Core i7-1375PRE is built on Intel’s 10 nm process with a die size of 217 mm², while the AMD Ryzen 7 4700G uses TSMC’s 7 nm process with a die size of 156 mm². The AMD chip also has a stated transistor count of 9,800 million, while the Intel chip’s transistor count is not listed.

Where Each One Wins

The Intel Core i7-1375PRE wins in every Cinebench benchmark recorded, but the margins are razor-thin. In Cinebench R23 multi-core, the Intel chip scores 17236 versus the AMD’s 17111, a 0.7% advantage. In single-core R23, the Intel part scores 2433 versus 2415, also a 0.7% edge. The largest win for Intel comes in Cinebench R15 multi-core, where it scores 1737 against 1724, a 0.8% difference. These are not decisive victories, but they are consistent.

The AMD Ryzen 7 4700G’s wins are not in benchmark scores but in platform attributes. It has a 65 W TDP, which is higher than the Intel chip’s 28 W TDP, but it also has a much higher base clock of 3.60 GHz versus 1.90 GHz, which can benefit lightly threaded workloads that do not boost. The AMD chip is also unlocked, so users can push it beyond stock settings. The AMD part uses a smaller 156 mm² die on a 7 nm process, which suggests a more compact design, while the Intel chip’s larger die on 10 nm may have different thermal characteristics.

For raw multi-threaded throughput in a sustained all-core workload, the data shows the Intel chip holds a slight edge across all three Cinebench versions. For a builder who prioritizes an unlocked multiplier and a higher baseline frequency, the AMD part has the structural advantage. The Intel chip’s wins are in benchmark results; the AMD chip’s wins are in configuration flexibility and process efficiency.

Architecture Differences

The Intel Core i7-1375PRE is based on Raptor Lake architecture, specifically the Raptor Lake-P mobile variant, built on Intel’s 10 nm process. It has a 217 mm² die size and a hybrid core layout that yields 14 cores and 20 threads. Its L3 cache is 24 MB shared, with L2 at 2 MB per core and L1 at 80 KB per core. The chip supports both DDR4 and DDR5 memory over a dual-channel bus, and it provides PCIe Gen 4 with 20 CPU lanes. The integrated graphics are Iris Xe with 96 execution units.

The AMD Ryzen 7 4700G is based on Zen 2 architecture, codenamed Renoir, built on TSMC’s 7 nm process. It uses a monolithic die of 156 mm² with 9,800 million transistors. The chip has 8 cores and 16 threads, with an L3 cache of 8 MB, L2 at 512 KB per core, and L1 at 64 KB per core. It supports only DDR4 over a dual-channel bus with a stated 51.2 GB/s bandwidth, and it uses PCIe Gen 3 with 16 CPU lanes. The integrated graphics are Radeon Vega 8.

The architectural split is clear: Intel offers more cores, a larger L3 cache, newer PCIe generation, and dual memory type support, while AMD offers a more advanced 7 nm process, a smaller die, and a higher base clock. The Intel part’s 10 nm node is older, but its hybrid design allows for more threads. The AMD part’s Zen 2 architecture is older, but its 7 nm process yields a denser, more power-efficient die per the transistor count difference.

Specification Differences

The two processors differ on nearly every major specification field. The Intel Core i7-1375PRE has 14 cores and 20 threads, while the AMD Ryzen 7 4700G has 8 cores and 16 threads. Base clocks are 1.90 GHz for Intel and 3.60 GHz for AMD, while boost clocks are 4.80 GHz for Intel and 4.40 GHz for AMD. The TDP is 28 W for Intel and 65 W for AMD. The Intel chip uses the BGA 1744 socket, while the AMD chip uses Socket AM4.

Cache hierarchies are distinct: Intel has 80 KB L1 per core, 2 MB L2 per core, and 24 MB shared L3, while AMD has 64 KB L1 per core, 512 KB L2 per core, and 8 MB L3. Memory support differs, with Intel offering DDR4 and DDR5, and AMD offering only DDR4. The Intel chip uses PCIe Gen 4 with 20 lanes, while the AMD chip uses PCIe Gen 3 with 16 lanes. The integrated graphics are Iris Xe 96EU for Intel and Radeon Vega 8 for AMD. The Intel part is a mobile segment product, while the AMD part is a desktop segment product. The AMD chip has an unlocked multiplier, while the Intel chip does not. The process node is 10 nm for Intel and 7 nm for AMD, with die sizes of 217 mm² and 156 mm² respectively.

Head-to-Head Benchmarks

The benchmark data shows a clean sweep for the Intel Core i7-1375PRE, but every win is marginal. In Cinebench R15 multi-core, the Intel chip scores 1737 against the AMD’s 1724, a 0.8% lead. In R15 single-core, Intel scores 245 versus 243, also a 0.8% lead. Moving to Cinebench R20, the multi-core result has Intel at 7239 and AMD at 7186, a 0.7% difference, and the single-core result has Intel at 1021 and AMD at 1014, again a 0.7% difference.

In Cinebench R23, the most demanding test, the Intel chip scores 17236 in multi-core versus 17111 for AMD, a 0.7% advantage. The single-core R23 test has Intel at 2433 and AMD at 2415, also a 0.7% advantage. The margins are consistent across all tests, ranging from 0.7% to 0.8%. The Intel chip wins all six head-to-head matchups, but the AMD chip is never more than 0.8% behind. This indicates that the two processors are operating at essentially the same performance level, with the Intel part’s extra cores providing a tiny edge in every scenario.

The average benchmark scores reinforce this picture: Intel’s average is 4985, and AMD’s is 4949, a difference of 0.7%. In the nearest rivals data, the Intel chip’s closest competitor is the Intel Core i5-12600HE with a delta of 0.1%, while the AMD chip’s closest competitor is the Intel Xeon W-1290 with a delta of 0.3%. The two chips are not only close to each other but also clustered with a range of other mid-range processors, all within roughly 1% of each other.

The Verdict

The benchmark data points to a narrow but unanimous win for the Intel Core i7-1375PRE. It wins all six Cinebench tests, with margins of 0.7% to 0.8%, and its average benchmark score of 4985 is 0.7% higher than the AMD Ryzen 7 4700G’s 4949. If the only consideration is raw CPU performance, the Intel chip is the safer pick, but the advantage is so small that it will not be noticeable in real-world use.

The AMD Ryzen 7 4700G makes its case on platform grounds. It is an unlocked desktop chip on Socket AM4, which opens the door to overclocking and a mature motherboard ecosystem. Its 65 W TDP is higher, but so is its base clock of 3.60 GHz, which can help in tasks that do not trigger boost behavior. The 7 nm process and smaller die suggest a more refined manufacturing process, and the Radeon Vega 8 graphics provide an integrated solution for basic display needs.

The Intel Core i7-1375PRE, by contrast, is a mobile part on BGA 1744, which means it is not intended for user-upgradeable desktop builds. Its 28 W TDP makes it a lower-power option, and its support for both DDR4 and DDR5 gives memory flexibility. The 24 MB L3 cache and 20 PCIe Gen 4 lanes are structural advantages, but they do not translate into meaningful benchmark wins over the AMD chip.

For someone building a desktop system with overclocking in mind, the AMD Ryzen 7 4700G is the logical choice, given its unlocked multiplier and AM4 socket. For someone prioritizing the absolute highest Cinebench scores in a power-constrained mobile platform, the Intel Core i7-1375PRE is the winner. The data shows a tie in percentile ranking and a near-tie in average score, so the decision should rest on socket, TDP, and overclocking support rather than performance deltas that never exceed 0.8%.

DETAILED SPECIFICATIONS

SPECIFICATION
7 4700G
i7-1375PRE
Core Specs
Cores
8
14 +75.0%
Threads
16
20 +25.0%
Base Clock (GHz)
3.6
1,900 +52677.8%
Boost Clock (GHz)
4.4
4.8 +9.1%
Frequency (GHz)
3.6
1,900 +52677.8%
Turbo Clock (GHz)
4.4
4.8 +9.1%
Multiplier
36
19 -47.2%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
64 KB (per core)
80 KB (per core)
L2 Cache
512 KB (per core)
2 MB (per core)
L3 Cache
8 MB
24 MB (shared)
Power
TDP (W)
65
28 -56.9%
PL1
—
28 W
PL2
—
64 W
PPT
61-88 W
—
Configurable TDP
45 W
—
Architecture
Architecture
Zen 2
Raptor Lake
Codename
Renoir
Raptor Lake-P
Generation
Ryzen 7 (Zen 2 (Renoir))
Core i7 (Raptor Lake-P)
Process Size
7 nm
10 nm
Transistors
9,800 million
—
Die Size
156 mm²
217 mm²
Foundry
TSMC
Intel
Memory
Memory Support
DDR4
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
51.2 GB/s
—
ECC Memory
No
No
DDR4 Speed
—
3200 MT/s
DDR5 Speed
—
5200 MT/s
Platform
Socket
AMD Socket AM4
Intel BGA 1744
Chipsets
AMD 300 Series, AMD 400 Series, AMD 500 Series
—
PCIe
Gen 3, 16 Lanes(CPU only)
Gen 4, 20 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
—
P-Cores: 6 E-Cores: 8
E-Core Frequency
—
1400 MHz up to 3.7 GHz
Graphics
Integrated Graphics
Radeon Vega 8
Iris Xe Graphics 96EU
Other
Market
Desktop
Mobile
Production Status
Active
Active
Part Number
100-000000146
SRMRK
Package
µOPGA-1331
FC-BGA16F
Tj Max
—
100°C
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