Intel Core 7 150HL vs Intel Core i9-14901TE Comparison

Intel
INTEL

Intel Core 7 150HL

CORE STATE Raptor Lake-PS
CORE SPECS 14 Cores / 20 Threads
CLOCK SPEED 2.4 Base / 5 GHz Turbo
CACHE 24 MB (shared)
MAX TDP 45W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2024
VS
Intel
INTEL

Core i9-14901TE

CORE STATE Raptor Lake-R
CORE SPECS 8 Cores / 16 Threads
CLOCK SPEED 2.3 Base / 5.5 GHz Turbo
CACHE 36 MB (shared)
MAX TDP 45W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2024

Analysis: Intel Core 7 150HL vs Intel Core i9-14901TE

Head-to-Head Benchmarks

The recorded data contains no direct benchmark scores for either processor, and the nearest rival comparisons are absent from the database. Both the Intel Core 7 150HL and the Intel Core i9-14901TE show an average benchmark score of zero, placing both at the 50th percentile among all CPUs. With no head-to-head measurements available, the performance comparison must rely entirely on the architectural specifications and feature sets recorded for each part.

The Core 7 150HL brings 14 cores with 20 threads, while the Core i9-14901TE delivers 8 cores with 16 threads. The core count difference favors the Core 7 by six physical cores and four threads. However, the Core i9-14901TE operates with a higher boost clock of 5.50 GHz compared to 5.00 GHz on the Core 7, a 0.50 GHz advantage. The base clocks are closer, with the Core 7 at 2.40 GHz and the Core i9 at 2.30 GHz, a 0.10 GHz gap in favor of the Core 7.

The shared cache hierarchy differs substantially. Both processors use 80 KB of L1 cache per core and 2 MB of L2 cache per core. The L3 cache, however, shows a marked difference: the Core 7 150HL has 24 MB shared L3, while the Core i9-14901TE has 36 MB shared L3, a 12 MB advantage for the i9 model. This additional cache could benefit workloads with large working sets that fit within the L3 capacity.

Both processors are built on Intel's 10 nm process node and use the Raptor Lake architecture, though the Core 7 carries the Raptor Lake-PS codename while the Core i9 uses Raptor Lake-R, indicating a refresh variant. The die size for the Core i9 is recorded as 257 mm², while the Core 7 has no die size measurement in the database. Both are socketed for Intel Socket 1700, and both have a TDP of 45 watts.

The integrated graphics differ: the Core 7 150HL uses Iris Xe Graphics with 96 execution units, while the Core i9-14901TE uses UHD Graphics 770. The memory support is identical, with both supporting DDR4 and DDR5 in dual-channel configuration. ECC memory support is present on the Core i9-14901TE but absent on the Core 7 150HL. PCIe capabilities favor the Core i9, which supports Gen 5 with 16 CPU lanes, while the Core 7 is limited to Gen 4 with 8 CPU lanes.

Architecture Differences

The two processors share the Raptor Lake architecture but represent different variants within that family. The Core 7 150HL belongs to the Raptor Lake-PS codename, while the Core i9-14901TE is part of the Raptor Lake Refresh lineup under the Raptor Lake-R codename. Both are fabricated on Intel's 10 nm process node at Intel's foundry.

The core configuration presents the most significant architectural divergence. The Core 7 150HL offers 14 cores and 20 threads, suggesting a hybrid arrangement with a mix of performance and efficiency cores. The Core i9-14901TE provides 8 cores and 16 threads, which indicates a more conventional layout, likely without the efficiency core cluster. This structural difference explains the thread count disparity: the Core 7 delivers 25% more threads than the Core i9.

Cache organization reveals another layer of difference. Both parts allocate 80 KB of L1 per core and 2 MB of L2 per core, but the shared L3 cache differs: 24 MB on the Core 7 versus 36 MB on the Core i9. The larger L3 on the Core i9, despite fewer cores, suggests a design optimized for high per-core performance and larger data residency.

The PCIe implementation separates the two clearly. The Core i9-14901TE supports PCIe Gen 5 with 16 CPU lanes, doubling the lane count and advancing two generations over the Core 7 150HL, which provides PCIe Gen 4 with 8 CPU lanes. This affects expansion capability for GPUs and NVMe storage.

ECC memory support appears only on the Core i9-14901TE, marking it as a processor suited for reliability-sensitive environments. The Core 7 150HL lacks ECC support entirely. Integrated graphics differ as well: the Core 7 uses Iris Xe Graphics with 96 execution units, while the Core i9 relies on UHD Graphics 770, a more modest integrated solution.

The release dates are close, with the Core 7 150HL launching on April 8, 2024, and the Core i9-14901TE on July 1, 2024. Both processors are active in production status and are not multiplier-unlocked, meaning overclocking through unlocked multipliers is not available on either.

Where Each One Wins

The Core 7 150HL wins on raw core and thread count. With 14 cores and 20 threads, it provides more parallel execution capacity than the Core i9-14901TE's 8 cores and 16 threads. Workloads that scale across many threads, such as rendering, compilation, and multitasking environments, would favor the Core 7's wider thread pool. The additional six cores and four threads give it a structural advantage in throughput-oriented tasks.

The Core 7 also holds a slight base clock advantage at 2.40 GHz versus 2.30 GHz on the Core i9, a 0.10 GHz difference that contributes marginally to sustained performance under full load. Its integrated Iris Xe Graphics with 96 execution units represents a stronger iGPU solution compared to the UHD Graphics 770 on the Core i9, making the Core 7 more capable for light graphics workloads without a discrete GPU.

The Core i9-14901TE counters with a higher boost clock of 5.50 GHz versus 5.00 GHz, a 0.50 GHz advantage that benefits single-threaded and lightly threaded applications. The larger 36 MB L3 cache versus 24 MB provides more fast-access storage for frequently used data, which can improve performance in latency-sensitive workloads. ECC memory support on the Core i9 enables error-correcting memory configurations, a critical feature for data integrity in servers or workstations. The PCIe Gen 5 interface with 16 lanes offers double the bandwidth and double the lane count compared to the Core 7's PCIe Gen 4 with 8 lanes, supporting faster storage devices and more capable GPU connections.

The Core i9 also has a recorded die size of 257 mm², while the Core 7 lacks this measurement in the database, though this does not directly translate to performance.

FAQ

Q: Which processor has more cores and threads?

A: The Intel Core 7 150HL has 14 cores and 20 threads, while the Intel Core i9-14901TE has 8 cores and 16 threads.

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

A: The Core i9-14901TE boosts to 5.50 GHz, which is 0.50 GHz higher than the Core 7 150HL's 5.00 GHz boost clock.

Q: Does either processor support ECC memory?

A: Yes, the Intel Core i9-14901TE supports ECC memory. The Intel Core 7 150HL does not support ECC memory.

Q: How does the cache compare?

A: Both have 80 KB of L1 cache per core and 2 MB of L2 cache per core. The Core 7 150HL has 24 MB of shared L3 cache, while the Core i9-14901TE has 36 MB of shared L3 cache.

Q: What PCIe capabilities does each offer?

A: The Core i9-14901TE supports PCIe Gen 5 with 16 CPU lanes. The Core 7 150HL supports PCIe Gen 4 with 8 CPU lanes.

Q: What integrated graphics do they use?

A: The Core 7 150HL uses Iris Xe Graphics with 96 execution units. The Core i9-14901TE uses UHD Graphics 770.

Specification Differences

The following specifications differ between the Intel Core 7 150HL and the Intel Core i9-14901TE:

| Specification | Core 7 150HL | Core i9-14901TE |

|---------------|--------------|-----------------|

| Cores | 14 | 8 |

| Threads | 20 | 16 |

| Base Clock | 2.40 GHz | 2.30 GHz |

| Boost Clock | 5.00 GHz | 5.50 GHz |

| Codename | Raptor Lake-PS | Raptor Lake-R |

| Generation | Core 7 (Raptor Lake-PS) | Core i9 (Raptor Lake Refresh) |

| Die Size | Not recorded | 257 mm² |

| L3 Cache | 24 MB (shared) | 36 MB (shared) |

| ECC Memory | Not supported | Supported |

| PCIe | Gen 4, 8 Lanes (CPU only) | Gen 5, 16 Lanes (CPU only) |

| Integrated Graphics | Iris Xe Graphics 96EU | UHD Graphics 770 |

| Release Date | April 8, 2024 | July 1, 2024 |

| Part Number | Unknown | Q49CSRNJJ |

Shared specifications include the Intel Socket 1700, Raptor Lake architecture, 10 nm process node, Intel foundry, 80 KB L1 cache per core, 2 MB L2 cache per core, DDR4 and DDR5 memory support, dual-channel memory bus, 45 watt TDP, desktop market segment, active production status, and locked multiplier.

The Verdict

The data indicates two distinct design philosophies within the same architectural family. The Intel Core 7 150HL prioritizes parallel throughput with its 14 cores and 20 threads, making it the choice for multi-threaded workloads that can exploit its wider core count. Its Iris Xe Graphics with 96 execution units also provides stronger integrated graphics capabilities, and the slightly higher base clock of 2.40 GHz contributes to sustained multi-core operation.

The Intel Core i9-14901TE focuses on per-core performance and platform features. Its 5.50 GHz boost clock leads the comparison by 0.50 GHz, benefiting single-threaded responsiveness. The 36 MB L3 cache, 12 MB larger than the Core 7, supports latency-sensitive applications. ECC memory support and PCIe Gen 5 with 16 lanes position it for workstation and server-like deployments where data integrity and expansion bandwidth matter.

The verdict from the recorded specifications is clear: the Core 7 150HL suits users who need maximum thread count and integrated graphics performance within a 45 watt envelope. The Core i9-14901TE suits users who require the highest boost clock, larger cache, ECC memory, and advanced PCIe connectivity. Neither processor has benchmark scores in the database, so the final selection depends on the workload priorities outlined above. The Core 7 wins on core count, thread count, and iGPU capability. The Core i9 wins on boost clock, L3 cache size, ECC support, and PCIe generation and lane count.

DETAILED SPECIFICATIONS

SPECIFICATION
7 150HL
i9-14901TE
Core Specs
Cores
14
8 -42.9%
Threads
20
16 -20.0%
Base Clock (GHz)
2.4
2.3 -4.2%
Boost Clock (GHz)
5
5.5 +10.0%
Frequency (GHz)
2.4
2.3 -4.2%
Turbo Clock (GHz)
5
5.5 +10.0%
Multiplier
24
23 -4.2%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
80 KB (per core)
80 KB (per core)
L2 Cache
2 MB (per core)
2 MB (per core)
L3 Cache
24 MB (shared)
36 MB (shared)
Power
TDP (W)
45
45 0.0%
PL1
45 W
45 W
PL2
115 W
115 W
Architecture
Architecture
Raptor Lake
Raptor Lake
Codename
Raptor Lake-PS
Raptor Lake-R
Generation
Core 7 (Raptor Lake-PS)
Core i9 (Raptor Lake Refresh)
Process Size
10 nm
10 nm
Die Size
257 mm²
Foundry
Intel
Intel
Memory
Memory Support
DDR4, DDR5
DDR4, DDR5
Memory Bus
Dual-channel
Dual-channel
ECC Memory
No
Yes
DDR4 Speed
3200 MT/s
3200 MT/s
DDR5 Speed
5200 MT/s
5600 MT/s
Platform
Socket
Intel Socket 1700
Intel Socket 1700
Chipsets
Intel 600 Series, Intel 700 Series
PCIe
Gen 4, 8 Lanes(CPU only)
Gen 5, 16 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
P-Cores: 6 E-Cores: 8
E-Core Frequency
1800 MHz up to 3.7 GHz
P-Core Turbo
5.5 GHz
Graphics
Integrated Graphics
Iris Xe Graphics 96EU
UHD Graphics 770
Other
Market
Desktop
Desktop
Production Status
Active
Active
Part Number
unknown
Q49CSRNJJ
Package
FC-LGA16A
FC-LGA16A
Tj Max
100°C
100°C
Bundled Cooler
None
View Core 7 150HL Details View Core i9-14901TE Details