Intel Core i5-14501TE vs Intel Core i7-14700HX Comparison

Intel
INTEL

Intel Core i5-14501TE

CORE STATE Raptor Lake-R
CORE SPECS 6 Cores / 12 Threads
CLOCK SPEED 2.2 Base / 5.1 GHz Turbo
CACHE 24 MB (shared)
MAX TDP 45W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2024
VS
Intel
INTEL

Core i7-14700HX

CORE STATE Raptor Lake-HX
CORE SPECS 20 Cores / 28 Threads
CLOCK SPEED 2.1 Base / 5.5 GHz Turbo
CACHE 33 MB (shared)
MAX TDP 55W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2024

PERFORMANCE BENCHMARKS

cinebench_cinebench_r15_multicore
N/A
3,812
cinebench_cinebench_r15_singlecore
N/A
296
cinebench_cinebench_r20_multicore
N/A
13,059
cinebench_cinebench_r20_singlecore
N/A
1,843
cinebench_cinebench_r23_multicore
N/A
24,595
cinebench_cinebench_r23_singlecore
N/A
2,103
geekbench_multicore
N/A
14,390
geekbench_singlecore
N/A
2,116
passmark_data_compression
N/A
438,539
passmark_data_encryption
N/A
26,092
passmark_extended_instructions
N/A
25,718
passmark_find_prime_numbers
N/A
165
passmark_floating_point_math
N/A
93,836
passmark_integer_math
N/A
131,296
passmark_multithread
N/A
36,566
passmark_physics
N/A
2,252
passmark_random_string_sorting
N/A
48,544
passmark_single_thread
N/A
3,947
passmark_singlethread
N/A
3,947

Analysis: Intel Core i5-14501TE vs Intel Core i7-14700HX

Intel Core i5-14501TE and Intel Core i7-14700HX are both part of Intel’s Core 14th Gen lineup, but they target different market segments. The i5-14501TE is a desktop processor on Intel Socket 1700, while the i7-14700HX is a mobile processor on Intel BGA 1964. Both share the Raptor Lake architecture, with the i5 using the Raptor Lake-R die and the i7 using the Raptor Lake-HX die. The database contains benchmark results for the i7-14700HX across Cinebench, Geekbench, and Passmark tests, while the i5-14501TE has no recorded benchmark scores. This analysis relies on the available measured data for the i7 and the recorded specifications for both processors.

Head-to-Head Benchmarks

The database shows no direct head-to-head benchmark results between the Intel Core i5-14501TE and the Intel Core i7-14700HX. The i5-14501TE has an empty benchmark array, meaning no Cinebench, Geekbench, or Passmark scores are recorded for it. The i7-14700HX, however, has a full set of benchmark measurements across multiple test suites. Without comparable scores from the i5, a direct numerical comparison per test is not possible from the recorded data.

The i7-14700HX delivers strong multi-threaded performance according to its measured scores. In Cinebench R23 multi-core, it records a score of 24595. Cinebench R20 multi-core shows 13059, and Cinebench R15 multi-core shows 3812. Single-core results are also recorded: Cinebench R23 single-core at 2103, Cinebench R20 single-core at 1843, and Cinebench R15 single-core at 296. Geekbench multi-core scores 14390, while Geekbench single-core scores 2116.

Passmark tests further characterize the i7-14700HX. The multi-thread score is 36566, and the single-thread score is 3947. Integer math scores 131296, floating point math scores 93836, and extended instructions score 25718. Data compression records 438539, data encryption records 26092, and random string sorting records 48544. The find prime numbers test scores 165, and physics scores 2252.

The i5-14501TE has no such measurements, so its performance relative to the i7 cannot be quantified from the database. The percentile ranking for the i5 is 50, which places it in the middle of all CPUs tracked, while the i7 sits at the 89th percentile. The average benchmark score for the i7 is 45953, while the i5 has an average benchmark score of 0 due to missing data.

The nearest rivals for the i7-14700HX provide context for its standing. The AMD EPYC 7303 has an average score of 45960 with a delta of 0 percent, essentially matching the i7. The AMD EPYC 4364P scores 45970, also with a delta of 0 percent. The AMD Ryzen AI 9 HX 375 scores 46030 with a delta of -0.2 percent, slightly below the i7. The Intel Core Ultra 5 235 scores 46062 with a delta of -0.2 percent, also slightly below. These deltas indicate that the i7-14700HX performs within a narrow band of these rivals, with differences of less than one percent.

Where Each One Wins

Since benchmark data exists only for the i7-14700HX, the wins in measured performance all belong to that processor. The i7 records victories in every test category present in the database, including Cinebench multi-core and single-core, Geekbench multi-core and single-core, and all Passmark subtests. The absence of any benchmark scores for the i5-14501TE means no test-based wins can be attributed to it.

The i7-14700HX shows particular strength in heavily multi-threaded workloads. Cinebench R23 multi-core at 24595 indicates strong scaling across its many cores, and Passmark multi-thread at 36566 supports that interpretation. Integer math and floating point math scores of 131296 and 93836 respectively show solid computational throughput. Data compression at 438539 is notably high, suggesting efficiency in compression tasks. The single-thread score of 3947 in Passmark and 2116 in Geekbench indicate capable single-core performance as well, though the multi-core results are the standout.

The i5-14501TE remains unquantified in the database. Its specifications suggest a desktop part with fewer cores, but no measured data confirms any performance advantage. The i7-14700HX, with its 20 cores and 28 threads, has the structural advantage in parallel workloads based on core count alone, but the database offers no direct comparison numbers to substantiate a head-to-head win.

For use-case analysis, the i7-14700HX is positioned for tasks that benefit from many threads, such as rendering, encoding, and scientific computing, based on its Cinebench and Passmark scores. The i5-14501TE, lacking any benchmark data, cannot be assigned specific strengths from measurements. Its lower core count and desktop socket suggest a different target, but the database does not provide evidence for where it would win.

Architecture Differences

The Intel Core i5-14501TE and Intel Core i7-14700HX share the Raptor Lake architecture and the 10 nm process node from Intel. Both use the Raptor Lake codename, though the i5 uses the Raptor Lake-R die and the i7 uses the Raptor Lake-HX die. The i5 is part of the Raptor Lake Refresh generation, while the i7 is part of the Raptor Lake-HX Refresh generation.

Core and thread counts differ substantially. The i5-14501TE has 6 cores and 12 threads. The i7-14700HX has 20 cores and 28 threads. This difference is the most significant architectural gap between the two processors. The i7 has more than three times the core count and more than double the thread count.

Cache configurations also differ. The i5 has 80 KB of L1 cache per core, 1.25 MB of L2 cache per core, and 24 MB of shared L3 cache. The i7 has 80 KB of L1 cache per core, 2 MB of L2 cache per core, and 33 MB of shared L3 cache. The i7 provides larger L2 and L3 caches, which can benefit workloads that rely on data locality.

Clock speeds vary. The i5 has a base clock of 2.20 GHz and a boost clock of 5.10 GHz. The i7 has a base clock of 2.10 GHz and a boost clock of 5.50 GHz. The i7 has a higher boost clock by 0.40 GHz, while the i5 has a slightly higher base clock by 0.10 GHz.

Thermal design power differs. The i5 has a TDP of 45 watts, while the i7 has a TDP of 55 watts. The i7 consumes more power according to its TDP rating, consistent with its higher core count.

Socket types are different. The i5 uses Intel Socket 1700, a desktop socket. The i7 uses Intel BGA 1964, a mobile socket. This reflects their market segments: the i5 is a desktop processor, and the i7 is a mobile processor.

Die size differs. The i5 has a die size of 215 mm², while the i7 has a die size of 257 mm². The i7’s larger die accommodates its additional cores and cache.

Both processors support DDR4 and DDR5 memory with dual-channel memory buses. Both have ECC memory support. Both support PCIe Gen 5 with 16 lanes from the CPU. Both integrate UHD Graphics 770. The multiplier is unlocked on the i7, while the i5 has a locked multiplier.

The i7 was released on 2024-01-07, while the i5 was released on 2024-06-30. The i7 launched earlier by several months.

FAQ

Q: Which processor has more cores according to the database?

A: The Intel Core i7-14700HX has 20 cores and 28 threads. The Intel Core i5-14501TE has 6 cores and 12 threads.

Q: What is the boost clock difference between the two processors?

A: The i7-14700HX has a boost clock of 5.50 GHz. The i5-14501TE has a boost clock of 5.10 GHz. The i7 is 0.40 GHz higher.

Q: Do both processors support ECC memory?

A: Yes, both the i5-14501TE and the i7-14700HX have ECC memory support. Both also support DDR4 and DDR5 memory with dual-channel buses.

Q: What are the TDP ratings for each processor?

A: The i5-14501TE has a TDP of 45 watts. The i7-14700HX has a TDP of 55 watts.

Q: Which processor has a larger L3 cache?

A: The i7-14700HX has 33 MB of shared L3 cache. The i5-14501TE has 24 MB of shared L3 cache.

Q: Are these processors on the same socket?

A: No. The i5-14501TE uses Intel Socket 1700. The i7-14700HX uses Intel BGA 1964.

Q: What benchmark scores are available for the i5-14501TE?

A: The database records no benchmark scores for the i5-14501TE. Its benchmark array is empty, and its average benchmark score is 0.

Specification Differences

The recorded specifications show several differences between the Intel Core i5-14501TE and the Intel Core i7-14700HX.

Core count: 6 cores for the i5, 20 cores for the i7.

Thread count: 12 threads for the i5, 28 threads for the i7.

Base clock: 2.20 GHz for the i5, 2.10 GHz for the i7.

Boost clock: 5.10 GHz for the i5, 5.50 GHz for the i7.

TDP: 45 watts for the i5, 55 watts for the i7.

Socket: Intel Socket 1700 for the i5, Intel BGA 1964 for the i7.

Codename: Raptor Lake-R for the i5, Raptor Lake-HX for the i7.

Generation: Core i5 (Raptor Lake Refresh) for the i5, Core i7 (Raptor Lake-HX Refresh) for the i7.

Die size: 215 mm² for the i5, 257 mm² for the i7.

L2 cache: 1.25 MB per core for the i5, 2 MB per core for the i7.

L3 cache: 24 MB shared for the i5, 33 MB shared for the i7.

Market segment: Desktop for the i5, Mobile for the i7.

Release date: 2024-06-30 for the i5, 2024-01-07 for the i7.

Multiplier: Locked for the i5, unlocked for the i7.

Part number: Q49KSRNJN for the i5, SRMXG for the i7.

Percentile vs all CPUs: 50 for the i5, 89 for the i7.

Average benchmark score: 0 for the i5, 45953 for the i7.

Shared specifications include L1 cache at 80 KB per core, memory support for DDR4 and DDR5, dual-channel memory bus, ECC memory support, PCIe Gen 5 with 16 lanes, integrated UHD Graphics 770, the 10 nm process node, Intel as the manufacturer and foundry, and the Raptor Lake architecture. Neither processor has a recorded launch MSRP in the database.

DETAILED SPECIFICATIONS

SPECIFICATION
i5-14501TE
i7-14700HX
Core Specs
Cores
6
20 +233.3%
Threads
12
28 +133.3%
Base Clock (GHz)
2.2
2.1 -4.5%
Boost Clock (GHz)
5.1
5.5 +7.8%
Frequency (GHz)
2.2
2.1 -4.5%
Turbo Clock (GHz)
5.1
5.5 +7.8%
Multiplier
22
21 -4.5%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
80 KB (per core)
80 KB (per core)
L2 Cache
1.25 MB (per core)
2 MB (per core)
L3 Cache
24 MB (shared)
33 MB (shared)
Power
TDP (W)
45
55 +22.2%
PL1
45 W
55 W
PL2
89 W
157 W
Architecture
Architecture
Raptor Lake
Raptor Lake
Codename
Raptor Lake-R
Raptor Lake-HX
Generation
Core i5 (Raptor Lake Refresh)
Core i7 (Raptor Lake-HX Refresh)
Process Size
10 nm
10 nm
Die Size
215 mm²
257 mm²
Foundry
Intel
Intel
Memory
Memory Support
DDR4, DDR5
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
ECC Memory
Yes
Yes
DDR4 Speed
3200 MT/s
3200 MT/s
DDR5 Speed
4800 MT/s
5600 MT/s
Platform
Socket
Intel Socket 1700
Intel BGA 1964
Chipsets
Intel 600 Series, Intel 700 Series
WM790, HM770
PCIe
Gen 5, 16 Lanes(CPU only)
Gen 5, 16 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
—
P-Cores: 8 E-Cores: 12
E-Core Frequency
—
1500 MHz up to 3.9 GHz
Graphics
Integrated Graphics
UHD Graphics 770
UHD Graphics 770
Other
Market
Desktop
Mobile
Production Status
Active
Active
Part Number
Q49KSRNJN
SRMXG
Package
FC-LGA16A
FC-BGA16F
Tj Max
100°C
100°C
Bundled Cooler
Laminar RM1
—
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