INTEL

Intel Core 2 Duo T9500

Intel processor specifications and benchmark scores

2
Cores
2
Threads
GHz Boost
35W
TDP
Integrated GPU

At a Glance

Intel
Cores / Threads 2C / 2T
Base Clock 2.6 GHz
TDP 35W
Architecture Core 2
Socket Intel Socket P
nm
Process 45 nm
Released Jan 2008

Intel Core 2 Duo T9500 Specifications

Core 2 Duo T9500 Core Configuration

Processing cores and threading

The Intel Core 2 Duo T9500 features 2 physical cores and 2 threads, which directly impacts multi-threaded performance in CPU benchmarks. More cores allow the processor to handle parallel workloads efficiently, improving performance in video editing, 3D rendering, and multitasking scenarios. Thread count determines how many simultaneous tasks the CPU can process, with higher thread counts benefiting productivity applications and content creation workflows.

Cores
2
Threads
2
SMP CPUs
1

2 Duo T9500 Clock Speeds

Base and boost frequencies

Clock speed is a critical factor in Core 2 Duo T9500 benchmark performance, measured in GHz. The base clock represents the guaranteed operating frequency, while the boost clock indicates maximum single-core performance under optimal conditions. Higher clock speeds translate to faster single-threaded performance, which is essential for gaming and applications that don't fully utilize multiple cores. The Core 2 Duo T9500 by Intel can dynamically adjust its frequency based on workload and thermal headroom.

Base Clock
2.6 GHz
Boost Clock
N/A
Multiplier
13x

Intel's Core 2 Duo T9500 Cache Hierarchy

L1, L2, L3 cache sizes

Cache memory is ultra-fast storage built directly into the 2 Duo T9500 processor die. L1 cache provides the fastest access for frequently used data, while L2 and L3 caches offer progressively larger storage with slightly higher latency. Larger cache sizes significantly improve CPU benchmark scores by reducing memory access times. The Core 2 Duo T9500's cache configuration is optimized for both gaming performance and productivity workloads, minimizing data fetch delays during intensive computations.

L1 Cache
64 KB (per core)
L2 Cache
6 MB (shared)

Core 2 Architecture & Process

Manufacturing and design details

The Intel Core 2 Duo T9500 is built on Intel's 45 nm manufacturing process, which determines power efficiency and thermal characteristics. Smaller process nodes allow for more transistors in the same space, enabling higher performance per watt. The architecture defines how the processor handles instructions and manages data flow, directly impacting benchmark results across different workload types. Modern CPU architectures like the one in 2 Duo T9500 incorporate advanced branch prediction and out-of-order execution for optimal performance.

Architecture
Core 2
Codename
Penryn
Process Node
45 nm
Foundry
Intel
Transistors
410 million
Die Size
107 mm²
Generation
Core 2 Duo (Penryn)

Core 2 Instruction Set Features

Supported CPU instructions and extensions

The Core 2 Duo T9500 by Intel supports various instruction set extensions that enable optimized performance for specific workloads. SIMD instructions like SSE and AVX accelerate multimedia, scientific computing, and AI workloads by processing multiple data points simultaneously. Features like AES-NI provide hardware-accelerated encryption, while AVX-512 (if supported) enables advanced vector processing for data centers and high-performance computing. These instruction sets are critical for software compatibility and performance in modern applications.

MMX
SSE
SSE2
SSE3
SSSE3
SSE4.1
Intel 64
VT-x

2 Duo T9500 Power & Thermal

TDP and power specifications

The Intel Core 2 Duo T9500 has a TDP (Thermal Design Power) of 35W, indicating the cooling solution required for sustained operation. TDP affects both system power consumption and the type of cooler needed. Lower TDP processors are ideal for compact builds and laptops, while higher TDP chips typically offer better sustained performance in demanding CPU benchmarks. Understanding power requirements helps ensure your system can deliver consistent performance without thermal throttling.

TDP
35W
Tj Max
105°C

Intel Socket P Platform & Socket

Compatibility information

The Core 2 Duo T9500 uses the Intel Socket P socket, which determines motherboard compatibility. Choosing the right platform is essential for building a system around this processor. The socket type also influences available features like PCIe lanes, memory support, and upgrade paths. When comparing CPU benchmarks, ensure you're looking at processors compatible with your existing or planned motherboard to make informed purchasing decisions.

Socket
Intel Socket P
Chipsets
GM965, PM965, GS45, GM45, PM45
Package
µFC-PGA8
DDR5

Intel Socket P Memory Support

RAM compatibility and speeds

Memory support specifications for the 2 Duo T9500 define which RAM types and speeds are compatible. Faster memory can significantly improve CPU benchmark performance, especially in memory-intensive applications and gaming. The memory controller integrated into the Core 2 Duo T9500 determines maximum supported speeds and channels. Dual-channel or quad-channel memory configurations can double or quadruple memory bandwidth, providing noticeable performance gains in content creation and scientific workloads.

Memory Type
DDR2, DDR3
Memory Bus
Dual-channel

Intel's Core 2 Duo T9500 Integrated Graphics

Built-in GPU specifications

The Intel Core 2 Duo T9500 includes integrated graphics, eliminating the need for a dedicated GPU in basic computing scenarios. Integrated graphics are ideal for office productivity, video playback, and light gaming. While not designed for demanding GPU benchmarks, the iGPU in the 2 Duo T9500 provides hardware video encoding and decoding capabilities. This makes the processor suitable for compact builds, HTPCs, and systems where power efficiency is prioritized over gaming performance.

iGPU
On certain motherboards (Chipset feature)
Graphics Model
On certain motherboards (Chipset feature)

Core 2 Duo T9500 Product Information

Release and pricing details

The Intel Core 2 Duo T9500 is manufactured by Intel and represents their commitment to delivering competitive CPU performance. Understanding the release date and pricing helps contextualize benchmark comparisons with other processors from the same generation. Launch pricing provides a baseline for evaluating value, though street prices often differ. Whether you're building a new system or upgrading, the Core 2 Duo T9500 by Intel offers a specific balance of performance, features, and cost within Intel's product lineup.

Manufacturer
Intel
Release Date
Jan 2008
Launch Price
$530
Market
Mobile
Status
End-of-life
Part Number
Q4GGQ9WWQZORSLAQHSLAYX

Core 2 Duo T9500 Benchmark Scores

cinebench_cinebench_r15_multicoreSource

Cinebench R15 multi-core renders a complex 3D scene using all CPU threads simultaneously. This test reveals how Intel Core 2 Duo T9500 performs in parallel rendering workloads like video production and 3D animation. The R15 version remains useful for comparing against older hardware benchmarks. Higher scores directly correlate with faster render times in Cinema 4D and similar 3D applications.

cinebench_cinebench_r15_multicore #1935 of 1945
88
1%
Max: 14,978

cinebench_cinebench_r20_multicoreSource

Cinebench R20 multi-core uses a scene requiring 4x more computational power than R15. This test better reflects modern CPU capabilities for professional rendering on Intel Core 2 Duo T9500. The more demanding workload provides better differentiation between current-generation processors.

cinebench_cinebench_r20_multicore #1933 of 1945
368
1%
Max: 62,412

cinebench_cinebench_r20_singlecoreSource

Cinebench R20 single-core tests one thread against a more demanding scene than R15. This reveals the true single-thread rendering capability of Intel Core 2 Duo T9500. The increased complexity provides more accurate performance differentiation between modern CPUs.

cinebench_cinebench_r20_singlecore #1933 of 1935
51
1%
Max: 8,811

cinebench_cinebench_r23_multicoreSource

Cinebench R23 multi-core is the current standard for CPU rendering benchmarks with a 10-minute minimum runtime. This extended test reveals sustained performance of Intel Core 2 Duo T9500 after thermal limits kick in. The longer duration exposes cooling limitations that shorter benchmarks miss.

cinebench_cinebench_r23_multicore #1933 of 1945
878
1%
Max: 148,601

cinebench_cinebench_r23_singlecoreSource

Cinebench R23 single-core measures sustained single-thread performance over 10 minutes. This reveals how Intel Core 2 Duo T9500 maintains boost clocks under continuous load. The extended runtime shows whether thermal throttling affects single-core performance.

cinebench_cinebench_r23_singlecore #1923 of 1932
123
1%
Max: 20,979

About Intel Core 2 Duo T9500

The Intel Core 2 Duo T9500 is an end-of-life mobile processor from Intel, built on the 45 nm Penryn Core 2 architecture. The data lists 2 cores, 2 threads, a base clock of 2.60 GHz, and a TDP of 35 W. It uses Intel Socket P, supports dual-channel DDR2 and DDR3 memory, and has 64 KB of L1 cache per core plus 6 MB of shared L2 cache. The die contains 410 million transistors and measures 107 mm², and the launch MSRP was $530.

Benchmark Performance

Benchmark results are scarce for this processor. The benchmarks array in the fact pack is empty, and the average benchmark score is 0. The nearestRivals list is also empty, so no rival names, scores, or deltaPct values are available. This means no exact percentage advantage or disadvantage can be computed between the T9500 and any other processor in the database.

The only comparative field present is percentileVsAllCpus, set to 50. Taken at face value, that would place the T9500 at the median of the CPU distribution. However, because the benchmark list has no entries and the average benchmark score is 0, the percentile cannot be treated as a measured performance result. A percentile without an underlying tested score is a positional marker, not evidence of speed.

The absence of benchmark data is itself informative. The database contains no recorded score for this part, so the usual single-thread, multi-core, or workload-specific comparisons cannot be produced from this fact pack. There are no gaming, creation, or office deltas to report. The nearestRivals field contains no entries, so there are no percentages to cite. Benchmark results indicate only that no quantitative performance measurements are stored for the Intel Core 2 Duo T9500. The zero average score is consistent with an empty benchmark set rather than a tested and failed result.

Power and Thermals

The T9500 is documented with a TDP of 35 W. This is the only thermal value in the fact pack, and it defines the power class for the processor. A 35 W TDP points to a modest cooling tier for a mobile system, though the fact pack does not name a specific cooler. The processor is classified as mobile, which fits a more thermally contained platform than a high-performance desktop design.

The manufacturing data supports the power profile. The 45 nm process node is listed as the technology, with 410 million transistors on a 107 mm² die. These figures describe chip density, not heat output. The fact pack does not list a boost clock, so the upper frequency and the thermal behavior that would accompany it are not defined.

No thermal test results are included. The data shows a TDP class, not a measured temperature or power draw. For cooling purposes, the 35 W figure is the only usable specification. It implies that the platform can be built around a relatively compact thermal solution appropriate for a mobile processor. The end-of-life production status means new thermal validation for current designs is not part of the data.

Single-Thread vs Multi-Thread Behavior

The Intel Core 2 Duo T9500 has 2 cores and 2 threads. Because the thread count equals the core count, there is no additional hardware thread available beyond one per core. The base clock is fixed at 2.60 GHz in the data, and no boost clock is listed, so the maximum operating frequency is not specified.

The cache layout is clearly documented. Each core has 64 KB of L1 cache, and the two cores share 6 MB of L2 cache. A shared L2 cache can help workloads that reuse the same data across cores, because both cores access the same cache space. The L1 caches are per core, so each core has its own fast private storage.

There are no separate single-thread and multi-thread benchmark scores in the fact pack. The data can only support a structural analysis. On the single-thread side, the processor relies on the Core 2 Penryn architecture at 2.60 GHz. On the multi-thread side, 2 hardware threads are the total resource. Workloads that require more than 2 simultaneous threads have no additional thread capacity from this processor. In real workloads, the practical split is therefore bounded by the 2-thread limit. The shared 6 MB L2 cache is a mitigating factor for cache-sensitive work, but the lack of benchmark scores prevents any quantitative statement about how much it helps.

FAQ

Q: What socket does the Intel Core 2 Duo T9500 use?

A: It uses Intel Socket P.

Q: What memory types does it support?

A: It supports DDR2 and DDR3 memory, in a dual-channel configuration.

Q: What is the TDP?

A: The TDP is 35 W.

Q: Does the processor include integrated graphics?

A: The fact pack records integrated graphics as "On certain motherboards (Chipset feature)."

Q: Does it support ECC memory?

A: No. The eccMemory field is false.

Q: What is the production status?

A: The production status is end-of-life.

Who Should Consider It

Because the benchmark data is empty, any consideration of the T9500 must be tied to the documented specifications rather than measured performance. The processor is a mobile dual-core part with 2 threads and a 2.60 GHz base clock. A workload that can fit within 2 threads is the only type that the hardware structure directly supports.

Office-style workloads are not benchmarked in the fact pack. The 2-core, 2-thread design leaves no thread headroom for heavily parallel office tasks, but the data does not rule out lighter workloads. Gaming scores are absent, and the integrated graphics field refers to a chipset feature on certain motherboards rather than a CPU-side graphics engine. Creation workloads that use more than 2 threads would be constrained by the 2-thread limit. The shared 6 MB L2 cache is present, but without benchmark scores it cannot be used to claim a cache advantage.

The 35 W TDP and mobile market segment indicate a notebook-oriented part. The end-of-life status means the processor is not a current product line. The data cannot support a measured gaming, creation, or office recommendation. The most defensible conclusion is that the T9500 is a dual-core mobile processor with a moderate 35 W TDP and a 2.60 GHz clock. Users considering this part for workload-specific reasons would need performance figures that the fact pack does not contain.

Platform and Compatibility

The T9500 is built for Intel Socket P. Memory support is listed as DDR2 and DDR3, with a dual-channel memory bus. The fact pack does not include a memory bandwidth value, so maximum throughput is not stated.

There is no PCIe field in the data. The fact pack does not specify PCIe version, lane count, or other PCIe compatibility details. Integrated graphics are described as "On certain motherboards (Chipset feature)," meaning display capability is tied to the motherboard chipset rather than defined as a processor feature. ECC memory is not supported, as indicated by the false eccMemory field.

The multiplier is locked; the multiplierUnlocked field is false. The part number is recorded as Q4GGQ9WWQZORSLAQHSLAYX. The release date is 2008-01-06, and the production status is end-of-life.

The upgrade path is defined by the socket and the end-of-life status. The fact pack lists no other compatible Socket P processors, so no successor or alternative upgrade part can be named from this data. The memory support and dual-channel bus define the memory platform. Because no PCIe specification is present, motherboard-level expansion capability cannot be assessed from the fact pack. The 45 nm process, 410 million transistors, and 107 mm² die size complete the physical picture. For an existing Socket P system, the T9500 is a dual-core, 35 W TDP option, but the data does not document which other processors can replace it or which specific motherboards support it.

The AMD Equivalent of Core 2 Duo T9500

Looking for a similar processor from AMD? The AMD Ryzen 5 1400 offers comparable performance and features in the AMD lineup.

AMD Ryzen 5 1400

AMD • 4 Cores

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