Intel Core i7-14701TE vs Intel Core Ultra 5 245 Comparison

Intel
INTEL

Intel Core i7-14701TE

CORE STATE Raptor Lake-R
CORE SPECS 8 Cores / 16 Threads
CLOCK SPEED 2.1 Base / 5.2 GHz Turbo
CACHE 33 MB (shared)
MAX TDP 45W
ARCHITECTURE Raptor Lake
nm
PROCESS 10 nm
LAUNCH DATE 2024
VS
Intel
INTEL

Core Ultra 5 245

CORE STATE Arrow Lake-S
CORE SPECS 14 Cores / 14 Threads
CLOCK SPEED 3.5 Base / 5.1 GHz Turbo
CACHE 24 MB (shared)
MAX TDP 65W
ARCHITECTURE Arrow Lake
nm
PROCESS 3 nm
LAUNCH DATE 2025

PERFORMANCE BENCHMARKS

cinebench_cinebench_r15_multicore
1,716
3,318
cinebench_cinebench_r15_singlecore
242
468
cinebench_cinebench_r20_multicore
7,154
13,828
cinebench_cinebench_r20_singlecore
1,010
1,952
cinebench_cinebench_r23_multicore
17,035
32,924
cinebench_cinebench_r23_singlecore
2,405
4,648
passmark_data_compression
220,520
400,942
passmark_data_encryption
11,699
30,236
passmark_extended_instructions
14,354
33,304
passmark_find_prime_numbers
143
365
passmark_floating_point_math
50,219
120,548
passmark_integer_math
65,792
91,187
passmark_multithread
20,042
38,706
passmark_physics
1,860
2,569
passmark_random_string_sorting
22,760
49,140
passmark_single_thread
2,637
4,394
passmark_singlethread
2,637
4,394

Analysis: Intel Core i7-14701TE vs Intel Core Ultra 5 245

Head-to-Head Benchmarks

The benchmark data is unambiguous: the Intel Core Ultra 5 245 wins every single one of the 17 recorded head-to-head tests. The Core i7-14701TE does not take a single win in any Cinebench or PassMark workload.

The largest margin appears in data encryption, where the Ultra 5 245 scores 30,236 against 11,699 for the i7-14701TE, a 61.3% advantage. Prime number finding shows a 60.8% gap (365 vs 143), and floating point math sees the Ultra 5 lead by 58.3% (120,548 vs 50,219). Extended instructions testing shows a 56.9% edge for the Ultra 5 (33,304 vs 14,354), and random string sorting favors it by 53.7% (49,140 vs 22,760).

Cinebench results follow the same pattern with a consistent 48.3% delta in all six tests. In Cinebench R23 multi-core, the Ultra 5 245 posts 32,924 versus 17,035 for the i7-14701TE. Single-core R23 shows 4,648 against 2,405. The R20 multi-core test records 13,828 for the Ultra 5 and 7,154 for the i7, while R20 single-core shows 1,952 versus 1,010. R15 multi-core delivers 3,318 versus 1,716, and R15 single-core lands at 468 versus 242.

The smallest margins still favor the Ultra 5 substantially. Integer math shows a 27.8% gap (91,187 vs 65,792), and PassMark physics records a 27.6% difference (2,569 vs 1,860). PassMark multi-thread shows a 48.2% lead for the Ultra 5 (38,706 vs 20,042), while single-thread tests show a 40% advantage (4,394 vs 2,637). Data compression sees the Ultra 5 ahead by 45% (400,942 vs 220,520).

The aggregate numbers reinforce this picture. The Ultra 5 245 holds an average benchmark score of 48,995 and sits in the 90th percentile of all CPUs. The i7-14701TE averages 26,013 and ranks at the 78th percentile. The Ultra 5's nearest rivals include the AMD Ryzen 7 PRO 5755G at 49,196 (0.4% higher), the AMD Ryzen 9 7900 at 49,228 (0.5% higher), and the Intel Core i5-14600K at 48,618 (0.8% lower). The i7-14701TE sits near the AMD Ryzen AI 5 340 (25,981, 0.1% higher) and the AMD Ryzen 5 8640HS (26,106, 0.4% higher).

Architecture Differences

The two processors come from different Intel generations built on different foundries. The Core i7-14701TE uses Raptor Lake architecture on a 10 nm node fabricated by Intel, with a die size of 257 mm². The Core Ultra 5 245 uses Arrow Lake architecture on a 3 nm node fabricated by TSMC, with a die size of 243 mm² and 17,800 million transistors.

Core configuration differs significantly. The i7-14701TE has 8 cores and 16 threads, while the Ultra 5 245 has 14 cores and 14 threads. The Ultra 5 has more physical cores but no hyper-threading, which explains why its thread count equals its core count. The i7-14701TE relies on 16 threads from 8 cores, typical of the Raptor Lake design.

Cache layouts also diverge. The i7-14701TE provides 80 KB of L1 per core, 2 MB of L2 per core, and 33 MB of shared L3. The Ultra 5 245 offers 192 KB of L1 per core, 3 MB of L2 per core, and 24 MB of shared L3. The i7 has more total L3, but the Ultra 5 has larger per-core L1 and L2 allocations.

Clock speeds show a trade-off. The i7-14701TE has a 2.10 GHz base clock and a 5.20 GHz boost clock. The Ultra 5 245 starts higher at 3.50 GHz base but boosts slightly lower at 5.10 GHz. Power envelopes differ: the i7-14701TE carries a 45 W TDP, while the Ultra 5 245 is rated at 65 W.

Memory support is another differentiator. The i7-14701TE supports both DDR4 and DDR5 in dual-channel mode. The Ultra 5 245 supports DDR5 only, also dual-channel, with a recorded memory bandwidth of 102.4 GB/s. Both support ECC memory.

PCIe lanes favor the Ultra 5 245. It provides Gen 5 with 20 lanes from the CPU, while the i7-14701TE provides Gen 5 with 16 lanes. The integrated graphics differ as well: the i7 uses UHD Graphics 770, while the Ultra 5 uses Arc Xe-LPG Graphics 64EU.

Sockets separate the platforms. The i7-14701TE fits Intel Socket 1700, while the Ultra 5 245 requires Intel Socket 1851. Neither processor has an unlocked multiplier. Release dates show the i7-14701TE arriving on 2024-06-30 and the Ultra 5 245 on 2025-01-06. The Ultra 5 245 has a launch MSRP of $270.

The Verdict

The data points to a decisive performance hierarchy. The Core Ultra 5 245 outperforms the Core i7-14701TE in every recorded benchmark category by margins ranging from 27.6% to 61.3%. The average benchmark score of 48,995 versus 26,013 means the Ultra 5 delivers roughly 88% higher aggregate performance. Its 90th percentile ranking versus the 78th percentile for the i7 confirms the separation.

The i7-14701TE cannot be recommended on performance grounds from this data set. It loses all Cinebench tests, all PassMark tests, and every workload category. The 45 W TDP is lower than the 65 W rating of the Ultra 5, but the benchmark results do not show any workload where that efficiency advantage translates into a win.

The platform question matters. The i7-14701TE uses Socket 1700 and supports DDR4 memory, which could make it attractive for someone upgrading an existing LGA1700 system with DDR4 modules. The Ultra 5 245 requires Socket 1851 and DDR5 only, meaning a full platform change. However, the recorded benchmarks show no performance scenario where the i7 is the better choice.

The near-rival data for the Ultra 5 places it alongside the AMD Ryzen 9 7900 and Intel Core i5-14600K, with deltas under 1%. The i7-14701TE sits with mid-range AMD Ryzen 5 and Ryzen AI parts. That positioning summarizes the gap: the Ultra 5 competes at a higher tier entirely.

FAQ

Q: Which processor has more cores?

A: The Intel Core Ultra 5 245 has 14 cores, compared to 8 cores for the Intel Core i7-14701TE.

Q: Which processor has a higher boost clock?

A: The Intel Core i7-14701TE boosts to 5.20 GHz, while the Intel Core Ultra 5 245 boosts to 5.10 GHz.

Q: What is the largest benchmark win for the Intel Core Ultra 5 245?

A: The largest margin is in PassMark data encryption, where the Ultra 5 scores 30,236 versus 11,699 for the i7-14701TE, a 61.3% difference.

Q: Do both processors support ECC memory?

A: Yes, both the Intel Core i7-14701TE and the Intel Core Ultra 5 245 support ECC memory.

Q: Which processor uses a smaller manufacturing node?

A: The Intel Core Ultra 5 245 uses a 3 nm node fabricated by TSMC, while the Intel Core i7-14701TE uses a 10 nm node from Intel.

Q: What is the average benchmark score difference between the two?

A: The Intel Core Ultra 5 245 has an average benchmark score of 48,995, while the Intel Core i7-14701TE has 26,013.

Where Each One Wins

The Intel Core Ultra 5 245 wins in every recorded category, so the use-case split is about degree rather than direction. Its strongest advantages relative to the i7-14701TE appear in security and data transformation workloads. Data encryption shows a 61.3% lead, prime number finding a 60.8% lead, and extended instructions a 56.9% lead. These workloads benefit from the newer Arrow Lake architecture and the larger per-core cache structure.

Floating point math and random string sorting also show large gaps at 58.3% and 53.7% respectively. Multi-threaded rendering workloads, represented by Cinebench R23, show a 48.3% advantage across all versions of the test. The Ultra 5 245 handles these tasks with the 14 physical cores, which appear to compensate fully for the lack of hyper-threading.

The i7-14701TE's smallest deficits come in integer math (27.8%) and PassMark physics (27.6%). These are still substantial margins, but they indicate the i7 is relatively less disadvantaged in scalar integer work and physics simulation. For someone constrained to Socket 1700, the i7-14701TE remains the only option of the two, and its 45 W TDP is the lower power envelope.

Single-thread performance shows a 40% lead for the Ultra 5 in PassMark tests, and the Cinebench single-core tests confirm the same 48.3% margin as the multi-core tests. The Ultra 5 245 is faster per thread despite its lower boost clock, which points to architectural efficiency from the 3 nm process and Arrow Lake design.

The Core Ultra 5 245 is the pick for any workload where performance matters, from rendering to encryption to general productivity. The Core i7-14701TE serves only as the choice for an existing LGA1700 platform that cannot move to Socket 1851 and DDR5. The recorded data shows no benchmark where the i7-14701TE comes out ahead.

Specification Differences

| Specification | Intel Core i7-14701TE | Intel Core Ultra 5 245 |

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

| Cores | 8 | 14 |

| Threads | 16 | 14 |

| Base clock | 2.10 GHz | 3.50 GHz |

| Boost clock | 5.20 GHz | 5.10 GHz |

| TDP | 45 W | 65 W |

| Socket | Intel Socket 1700 | Intel Socket 1851 |

| Architecture | Raptor Lake | Arrow Lake |

| Process node | 10 nm | 3 nm |

| Foundry | Intel | TSMC |

| Die size | 257 mm² | 243 mm² |

| Transistors | not specified | 17,800 million |

| L1 cache | 80 KB (per core) | 192 KB (per core) |

| L2 cache | 2 MB (per core) | 3 MB (per core) |

| L3 cache | 33 MB (shared) | 24 MB (shared) |

| Memory support | DDR4, DDR5 | DDR5 |

| Memory bandwidth | not specified | 102.4 GB/s |

| PCIe | Gen 5, 16 Lanes (CPU only) | Gen 5, 20 Lanes (CPU only) |

| Integrated graphics | UHD Graphics 770 | Arc Xe-LPG Graphics 64EU |

| Release date | 2024-06-30 | 2025-01-06 |

| Launch MSRP | not specified | $270 |

| Multiplier unlocked | false | false |

DETAILED SPECIFICATIONS

SPECIFICATION
i7-14701TE
Ultra 5 245
Core Specs
Cores
8
14 +75.0%
Threads
16
14 -12.5%
Base Clock (GHz)
2.1
3.5 +66.7%
Boost Clock (GHz)
5.2
5.1 -1.9%
Frequency (GHz)
2.1
3.5 +66.7%
Turbo Clock (GHz)
5.2
5.1 -1.9%
Multiplier
21
35 +66.7%
SMP CPUs
1
1 0.0%
Cache
L1 Cache
80 KB (per core)
192 KB (per core)
L2 Cache
2 MB (per core)
3 MB (per core)
L3 Cache
33 MB (shared)
24 MB (shared)
Power
TDP (W)
45
65 +44.4%
PL1
45 W
65 W
PL2
115 W
121 W
Architecture
Architecture
Raptor Lake
Arrow Lake
Codename
Raptor Lake-R
Arrow Lake-S
Generation
Core i7 (Raptor Lake Refresh)
Ultra 5 (Arrow Lake)
Process Size
10 nm
3 nm
Transistors
17,800 million
Die Size
257 mm²
243 mm²
Foundry
Intel
TSMC
Memory
Memory Support
DDR4, DDR5
DDR5
Memory Bus
Dual-channel
Dual-channel
Memory Bandwidth
102.4 GB/s
ECC Memory
Yes
Yes
DDR4 Speed
3200 MT/s
DDR5 Speed
5600 MT/s
Platform
Socket
Intel Socket 1700
Intel Socket 1851
Chipsets
Intel 600 Series, Intel 700 series
Z890, B860, W880, Q870, H810
PCIe
Gen 5, 16 Lanes(CPU only)
Gen 5, 20 Lanes(CPU only)
Intel Hybrid
Hybrid Cores
P-Cores: 6 E-Cores: 8
E-Core Frequency
3 GHz up to 4.5 GHz
P-Core Turbo
5.2 GHz
Graphics
Integrated Graphics
UHD Graphics 770
Arc Xe-LPG Graphics 64EU
Other
Market
Desktop
Desktop
Production Status
Active
Active
Launch Price
$270
Part Number
Q49GSRNJL
SRVFE
Package
FC-LGA16A
FC-LGA18W
Tj Max
100°C
105°C
View Core i7-14701TE Details View Core Ultra 5 245 Details