Comparing technical specs and benchmarks

AMD A10-5750M
VS
AMD A8-5545M

AMD A10-5750M 32 nm - 2.50 GHz DDR3-1866 

AMD A8-5545M 32 nm - 1.70 GHz DDR3-1333 

VS

AMD A10-5750M vs. AMD A8-5545M
CPU Cores and Base Frequency

In comparison between AMD A10-5750M and AMD A8-5545M, you should choose the model which has more cores and threads with base and turbo frequencies. All the features influence the system’s high-speed performance.

4x
Cores
4x
4 / 4
CPU Cores / Threads
4 / 4
normal
Core architecture
normal
No
Hyperthreading
No
No
Overclocking
No
2.50 GHz
Frequency
1.70 GHz
3.50 GHz
Turbo Frequency (1 Core)
2.70 GHz
3.50 GHz
Turbo Frequency (4 Cores)
2.70 GHz

AMD A10-5750M vs. AMD A8-5545M
CPU generation and family

4
CPU Cores
4
AMD A10-5750M
Name
AMD A8-5545M
AMD A
Family
AMD A
AMD A10-5000M
CPU group
AMD A8-5000M
5
Generation
5
Mobile
Segment
Mobile
--
Predecessor
--
--
Successor
--

AMD A10-5750M vs. AMD A8-5545M
Internal Graphics

Some manufacturers build a graphic core in many CPUs being an additional advantage. If you use a video card which is separated from a CPU, we recommend you skip this comparison as there is no need to compare AMD A10-5750M to AMD A8-5545M across a built-in video card.

AMD Radeon HD 8650G
GPU name
AMD Radeon HD 8510G
0.53 GHz
GPU frequency
0.45 GHz
0.72 GHz
GPU (Turbo)
0.55 GHz
6
Execution units
6
384
Shader
384
2 GB
Max. GPU Memory
2 GB
2
Max. displays
2
5
Generation
5
11
Direct X
11
32 nm
Technology
32 nm
Q2/2013
Release date
Q2/2013

AMD A10-5750M vs. AMD A8-5545M
Hardware codec support

Pay attention to support of different technological options by CPUs. The general performance is not influenced. In the interest of time, you can skip this section.

No
h265 8bit
No
No
h265 10bit
No
No
h265 / HEVC (8 bit)
No
No
h265 / HEVC (10 bit)
No
Decode
h264
Decode
No
VP8
No
No
VP9
No
No
AV1
No
Decode
AVC
Decode
Decode
VC-1
Decode
Decode / Encode
JPEG
Decode / Encode

AMD A10-5750M vs. AMD A8-5545M
Memory & PCIe

Modern CPUs support memory which operates in a multi-channel regime that provides high-speed data exchange and improves productivity. The higher the ram’s clock frequency, its standard (for example, DDR3, DDR4, DDR5) and maximum space in a system are, the better it is.

DDR3-1866
Memory type
DDR3-1333
2
Memory channels
2
--
Bandwidth
--
No
ECC
No
Yes
AES-NI
Yes

AMD A10-5750M vs. AMD A8-5545M
Thermal Management

High-performance and powerful CPUs require the essence of a good power supply. Here you learn how much TDP AMD A10-5750M and AMD A8-5545M have. We recommend paying attention to the model which has lower TDP.

35 W
TDP
19 W
35 W
TDP (PL1)
19 W
--
TDP (PL2)
--
--
TDP up
--
--
TDP down
--
--
Tjunction max.
--

AMD A10-5750M vs. AMD A8-5545M
Technical details

Here is the main information which can define the best CPU comparing technical specifications. Thus, the higher cash L2 and L3, the better it is. The lower the technological process of CPU production, the better it is. Another important factor is a production year that directly influences the manufacturer’s support terms and the opportunity of a system modernization at minimal cost in the future.

x86-64 (64 bit)
Instruction set (ISA)
x86-64 (64 bit)
SSE4a, SSE4.1, SSE4.2, AVX, FMA3, FMA4
ISA extensions
SSE4a, SSE4.1, SSE4.2, AVX, FMA3, FMA4
--
L2-Cache
--
4.00 MB
L3-Cache
4.00 MB
Richland
Architecture
Richland
32 nm
Technology
32 nm
AMD-V
Virtualization
AMD-V
FS1r2
Socket
FP2
Q2/2013
Release date
Q2/2013
--
Part Number
--

AMD A10-5750M vs. AMD A8-5545M
Devices using this processor

In completing the comparison between AMD A10-5750M and AMD A8-5545M, you can learn in which computer systems these models are used.

Unknown
Used in
Unknown

Cinebench R15 (Single-Core)

Cinebench R15 is Maxon’s actual benchmark for older processors versions that test the processor’s performance without hyperthreading in single-core mode.

Cinebench R15 (Multi-Core)

Cinebench R15 benchmark reflects the efficiency of your processor operation in assessment mode. It works on Cinema 4 Suite software complex of the earlier version. Hyperthreading is not included.

iGPU - FP32 Performance (Single-precision GFLOPS)

A benchmark is designed to determine graphics cards’ performance and speed, built into their central processor. It works in iGPU mode, FP32 Performance. The higher the rate is, the better it is.

Geekbench 5, 64bit (Single-Core)

A new approach to testing processor performance opens up the GeekBench 5 benchmark! A detailed under-load system analysis gives an accurate assessment of the quality. The higher the estimation is, the faster and more efficient the processor is. It is a version for testing a single core.

Geekbench 5, 64bit (Multi-Core)

A modern version of the GeekBench 5 benchmark reveals all opportunities and potential of your processor. As a result of testing, you can understand to what extent a processor is fast and efficient in operation with graphic apps or games.

Geekbench 3, 64bit (Single-Core)

To define how efficient and powerful a processor is among several models or in comparison with another, we recommend paying attention to Geekbench 3 benchmark, which tests the single-core processor performance.

Geekbench 3, 64bit (Multi-Core)

To reveal the whole potential of the equipment, the Geekbench 3 benchmark uses all cores for 64bit models in a specialised software complex that imitates modelling various 3D scenarios. The higher estimation is, the better the performance is.

Cinebench R11.5, 64bit (Single-Core)

Cinebench R11.5 is an outdated version of the benchmark for processors of earlier generations. To find out the potential or compare it with a modern processor model, it is enough to check the performance estimate. The higher it is, the better it is. Hyperthreading is not included.

Cinebench R11.5, 64bit (Multi-Core)

Cinebench R11.5 benchmark is designed for testing early-generation processors. The overall final performance is based on 3D scene simulations in Cinema 4 Suite. It engages all processor cores.

Estimated results for PassMark CPU Mark

The authoritative benchmark PassMark shows how efficient the processor is in the overall performance rating. It takes into account the operation mode of all cores and supports hyperthreading. The benchmark is based on various scenarios for performing calculations, 2D and 3D modelling.