1060 3gb vs 1650: GTX 1650 vs GTX 1060 3GB Game Performance Benchmarks (i7-8700K vs i7-6700K)

NVIDIA GeForce GTX 1060 vs. 1650: Full Comparison with Specs, Price, and More

© Microstocker13 / Shutterstock.com

As technology advances, there’s a need for a GPU system that guarantees immersive gaming experiences, more accurate 3D modeling, and faster video rendering, among other high-performance demanding tasks. 

NVIDIA is one of the few companies trying to develop newer and more advanced graphics cards every so often. Although older, the GeForce GTX 1650 and GeForce GTX 1060 are two of the most compared NVIDIA graphics cards out there. 

These cards are relatively robust and often used in budget-built computers. By budget built, we mean they aren’t as expensive as the NVIDIA TITAN V but still offer exemplary performance. For starters, the 1650 is an entry-level card within the GeForce GTX 16 series, whereas the 1060 is a mid-range card within the GeForce GTX 10 series. The performance between these cards is fairly comparable; however, several differences make one better.  

Whether you are a gamer, content creator, or a GPU enthusiast looking to upgrade your PC, this guide will help you decide which graphics card is better. We’ll examine their performance by looking at each card’s specifications and establish if they are worth the price. Let’s get started!

1060 vs. 1650: Side-by-Side Comparison 

GeForce GTX 1060 GeForce GTX 1650
Release date  July 19, 2016 April 22, 2019
Microarchitecture  Pascal Turing 
CUDA Cores 1,280 896
Base Clock Speeds  1,506 MHz 1,485 MHz(G5), 1,410 MHz (G6)
Boost Clock Speed  1,708 MHz 1,665 MHz(G5), 1,590 MHz (G6)
Memory Configuration  6GB 4GB
Memory Bandwidth  192 GB/s 128 GB/s
Memory Interface  GDDR5 GDDR5GDDR6
TDP 120 watts 75-90 watts 
Bus Support  PCLe 3. 0 x16 PCLe 3.0 x16
Display Connectors  DP 1.43, HDMI 2.0b, Dual Link-DVI HDMI 2.0b, DL-DVI-D (G5) HDMI 2.0b, DL-DVI-D, DP 1.4a (G6)
Maximum Display Resolution 7680 x [email protected] 7680 x 4320 @ 120Hz
Launch Price $250 $150

High Capacity

MSI GAMING GeForce GTX 1060 Graphics Card (GTX 1060 GAMING X 6G)

$174.00

  • 6GB GDDR5 RAM
  • VR Ready
  • 7680 x 4320 maximum supported resolution
  • Consumes 120W power on an 8 Pin PCIe connector

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06/19/2023 05:16 am GMT

Good Speed

Gigabyte GeForce GTX 1650 D6 OC 4G Graphics Card

$179.45

  • Powered by GeForce GTX 1650
  • NVIDIA Turing architecture and GeForce Experience
  • Integrated with 4GB GDDR6 128bit memory interface
  • 80mm unique blade fan
  • 170 mm compact card size

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06/20/2023 04:26 pm GMT

1060 vs. 1650: What’s the Difference?

Looking for the best graphics card is undoubtedly one of the most daunting tasks. The battle between the 1060 and 1650 is one of a kind because these cards came out years apart. When the excitement about the GTX 1060 was fading, GTX 1650 entered the market and was the talk of the town. 

While the difference in release dates should hint at the better graphics card, we must examine the features and specifications to make a more informed decision. The results are intriguing. But first, let’s look at a brief overview of both cards. 

GeForce GTX 1060: Brief Overview 

NVIDIA launched the GTX 1060 in July 2016. This card was a mid-range option explicitly designed to provide high performance for gamers on a budget. The original variant featured 6GB GDDR5 memory alongside a GP106 graphics core.  

Later, the company released a 3GB version featuring the same graphics core and another 6GB GDDR5X variant with a GP104 graphics core. These variants had the same base and boost clock speeds of 1,506 MHz and 1,708 MHZ, respectively. 

The most significant selling point of the GTX 1060 was its power efficiency. A thermal design power  (TDP) of only 120 watts meant you could power it with a single 6-pin PCLe connector. Moreover, it never required lots of cooling. Although better and more advanced budget graphics cards are available, it remains a popular option for builders looking to upgrade from much older systems. 

GeForce GTX 1650: Brief Overview 

Three years after the GTX 1060, NVIDIA released the GTX 1650, an entry-level graphics card based on the Turing architecture. It was a relatively cheap card that functioned best in low-game sections and performed basic video rendering. 

Initially, this card featured GDDR5 memory support, but a year later, NVIDIA updated the memory configuration to GDDR6. As such, it came out as a graphics card with two variants featuring TU116 graphics cores and TU106 graphics cores. Both variants had 896 CUDA cores.

The GTX 1650’s best selling point was that it supported NVIDIA’s ray-tracing technology. However, its few CUDA cores made ray-tracing quite challenging compared to higher-end graphics cards. Overall, it’s a solid card with good performance at a reasonable price point, so it’s a popular option for budget-conscious content creators and gamers.

Architectural Differences 

One of the main differences between GTX 1060 and 1650 lies in the base architecture. NVIDIA based the GTX 1060 on the Pascal microarchitecture and the GTX 1650 on the Turing microarchitecture. 

Release in 2016, Pascal was NVIDIA’s successor to its Maxwell architecture. This technology featured a 16nm FinFET manufacturing process that enabled the card to achieve comparatively higher clock speeds and save more on energy. It also came with newer technologies like simultaneous multi-projection, which fostered asynchronous computing and VR performance, thus allowing the GPU to work on several tasks simultaneously.  

The Turing architecture on the GTX 1650 is a much more advanced microarchitecture introduced in 2018 as a successor to Pascal. It comes with a 12nm FinFET manufacturing process, which means higher clock speeds and advanced energy efficiency. Unlike GTX 1060’s Pascal, Turing introduced deep learning super sampling (DLSS) and ray-tracing, highly coveted features at the time.

We can conclude that Pascal’s architecture introduced new technologies and improved energy efficiency, whereas Turing built on these capabilities and added more improvements like ray-tracing and  DLSS. As such, you can do more with a GTX 1650 than with a GTX 1060.

Memory, Bandwidth, and Speed

Memory size and bandwidth are integral to a graphics card. The memory size ensures the card can overcome lagging and slow loading by storing the data required to render images and videos on a computer. Bandwidth is the speed at data transfers between the card’s memory and the graphics processing unit. Higher bandwidth means the GPU can easily access the VRAM (memory), rendering videos and images much faster.  

The GTX 1060 has a memory configuration of 6GB, while the 1650 has 4GB. The 1060 is a clear winner because it has a higher memory configuration. Looking at the bandwidth, it also has 192 Gbps compared to the GTX 1650’s 128 Gbps. 

So, the GTX 1060 can run more demanding applications and games that demand more video memory. Because of the higher bandwidth, the GTX 1060 transfers data between the GPU and VRAM much faster, which is crucial when running graphics-intensive applications. Still, the 4GB VRAM and 128 Gbps bandwidth doesn’t slouch entirely. 

Speed: Core, Boost, and Overclocking

Before we delve further into speed, we must understand that the original version of the GTX 1650 featured two memory interfaces. One was the GDDR5, while the other was the GDDR6. The GTX 1060 only featured GDDR5. For starters, GDDR6 is an advanced version of GDDR5 capable of faster data transfers and more efficient power consumption. 

We say so because the memory interface greatly impacts the core, and boosts clock speed, and can potentially impact your overclocking efforts. Essentially, the memory interface is the pathway between the VRAM and GPU, and a wider memory interface allows for more data transfer. 

Back to the core and boost clock speeds. The GTX 1060 boasts a clock speed of 1,506 MHz and a boost clock speed of 1,708 MHz. The GDDR5 variant of the GTX 1650 features a core clock speed of 1,485 MHz and a boost clock speed of 1,665 MHz, whereas the GDDR6 variant has a core clock speed of 1,410 MHz and a boost clock speed of 1,590 MHz. 

Clock speeds usually measure the number of cycles a graphics processing unit can perform in a second, and higher clock speeds allow for faster data transfers. From the above, we can infer that the 1060, with its 1,708 MHz boost clock speed, is the faster card. 

Also, higher clock speeds have a massive impact on overclocking efforts. You will likely get better performance if you overclock a GTX 1060 because it has more headroom from the high core clock speeds and boost clock speeds. 

The GTX 1650 is the slower GPU compared to the 1060.

©Postmodern Studio/Shutterstock.com

TDP and Power Consumption 

Another crucial factor to consider is the thermal design power (TDP) and how it relates to the power consumption of your GPU. Basically, TDU is the measure of the amount of power your card can dissipate in normal operating conditions. On the other hand, power consumption is the amount of power your card draws from the main supply. 

The GTX 1060 has a thermal design power of 120 watts, meaning the card can draw up to 120 watts. The GTX 1650 has a thermal design power ranging between 75 and 90 watts, meaning it can consume power to the extremes of this range. As such, the GTX 1650 is more power-efficient and will require much less power to operate. 

However, you have to consider that, while power efficiency is inversely related to TDP, the same can’t be said about the performance. That’s because high-performance graphics cards tend to consume more power, meaning they also have a higher TDP. Still, we must consider other factors like the specific workload to judge the graphics card’s performance effectively.

GPU Cores 

The continued advancements in GPU architecture somehow throw the relevance of CUDA cores under the rug. Still, they count if you want the best graphics card. CUDA cores are parallel processors that work simultaneously to perform calculations needed to execute tasks that require high computational power, like gaming, scientific simulations, and video editing.  

Each CUDA core can perform a given set of mathematical calculations. Essentially, the more CUDA cores a card has, the more parallel processing it has. The GTX 1060 features 1,280 CUDA cores against the GTX 1650’s 896 CUDA Cores. 

However, we must also remember that GTX 1650 is based on the Turing architecture, which promises improved efficiency and performance. Ultimately, the choice will depend on the cards’ intended use and your system’s performance requirements. 

Gaming Performance

Despite being three years older than the GTX 1650, the GTX 1060 wins in almost all categories. Gaming performance is no different. This card offers better performance across all games in different settings, particularly higher resolution and detailed settings. For instance, its average FPS when playing PUBG 1080 at max settings is 79 eFPS against the GTX 1650’s 49 eFPS. 

Other games, such as Assasin’s Creed Odyssey 1440p at medium settings, gave an average FPS of 45 for the GTX 1650 and 56 for the GTX 1060. Coupled with the higher clock speeds, the GTX 1060 is the better card.

Cost and Availability 

Both GPUs aren’t available on the official NVIDIA website. However, you can find new and used versions from different sellers on Amazon and other online retailers. A GTX 1060 costs about $225.41, whereas a GTX 1650 costs about $169.99.

1060 vs. 1650: 8 Must-Know Facts 

  • The GTX 1650 incorporates the Turing architecture, an improvement of the capabilities of the Pascal architecture used by the GTX 1060.
  • The GTX 1060 launched in 2016, whereas the GTX 1650 launched in 2019.
  • The GTX 1650 comes in two variants. One uses GDDR5 memory standard, whereas the other uses GDDR6. The GTX 1060 only comes in GDDR5.
  • Both graphics cards support DirectX12.
  • The GTX 1060 has a memory configuration of 6GB, whereas the GTX 1650 has a memory configuration of 4GB.
  • Both graphics cards have a bus interface of PCLEe 3.0 x16.
  • GTX 1060 has more CUDA cores which means faster parallel processing, whereas the GTX 1650 only has 896 CUDA cores.
  • GTX 1650 is more power-efficient, with a TDP of 75 to 90 watts, against the GTX 1060 with a TDP of 120 watts.

High Capacity

MSI GAMING GeForce GTX 1060 Graphics Card (GTX 1060 GAMING X 6G)

$174.00

  • 6GB GDDR5 RAM
  • VR Ready
  • 7680 x 4320 maximum supported resolution
  • Consumes 120W power on an 8 Pin PCIe connector

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06/19/2023 05:16 am GMT

GeForce GTX 1060 vs. 1650: Which One is Better?

The GTX 1060 is the overall winner in this GPU battle. However, that doesn’t mean it’s a must-buy because the best GPU for you will depend on your needs. Still, we recommend it if you are on a budget and have relatively complex tasks you want to run because it’s much faster.

If you are conscious of energy efficiency, the GTX 1650 is the best fit. The low TDP means the card will consume less energy. However, you should know that low TDP comes with relatively low performance. If it’s any consolation, the GTX 1650 features the Turing architecture, which is more sophisticated and powerful than the Pascal architecture used in the GTX 1060.

NVIDIA GeForce GTX 1060 vs. 1650: Full Comparison with Specs, Price, and More FAQs (Frequently Asked Questions) 

How much better is a 1060 than a 1650?

the GTX 1060 is much better than GTX 1650 because it has more CUDA cores which means better parallel processing and faster speeds. It also has a higher memory configuration at 6GB than the latter’s 4GB.

Is it worth upgrading from 1650 to 1060?

Yes. It’s worth upgrading from 1650 to 1060 because 1060 offers better performance in demanding tasks. GTX 1060 has more FPS in ultra settings than GTX 1650 in most gaming experiences.

What is the GTX 1650 equivalent to?

The GTX 1650 is mostly equivalent to AMD RX 580 2048SP and 1050Ti.

How much did the 1060 cost at release?

The GTX 1060 at the time of release cost $250.

What graphics card can replace 1060?

Those using the GTX 1060 can upgrade to the RTX 3060. It has a larger memory size of 12GB and more advanced features.

Nvidia GTX 1650 Super vs. GTX 1650: The Budget Battle

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By

Jon Martindale

Nvidia’s Super refresh of its RTX and GTX series of Turing graphics cards was swift, with the GTX 1650 Super landing just seven months after the standard GTX 1650.

Contents

  • Pricing and availability
  • Performance
  • What about ray tracing?
  • The 1650 Super is the new 1650

Like other Super cards, the GTX 1650 Super improves on its older sibling in a number of ways. However, as of February 2021, the prices for both cards have shot through the roof, so much so that we wouldn’t consider them “budget” graphics cards at all.

Interested in more than just Nvidia’s budget cards? These are the best GPUs you can buy (when you can find them in stock).

Pricing and availability

MSI

The GTX 1650 went on sale in April 2019 with a launch price of $150. As of February 2021, any GTX 1650s you can find in stock are twice as much or more. The cheapest card we could find was an MSI low-profile variant for $300. The card launched in late 2019 for $169.

The GTX 1650 Super debuted on November 22, 2019, with a launch price of $160. There are no Nvidia Founders Editions versions of these cards, so you’re only getting ones from Nvidia board partners. Like the GTX 1650, stock shortages of the Super variant have shot the prices up. The cheapest card we could find was going for $350, up from its $160 launch price.

As of early 2021, the pricing for both cards is terrible. Although Nvidia’s 30-series graphics cards are experiencing stock issues, too, the shortages mainly apply to the RTX 3080. Cards around $350, like the RTX 3060 Ti, are continually being restocked at major retailers. They just fly off the shelf within a matter of minutes.

Unfortunately, there isn’t a suitable replacement for the GTX 1650 or 1650 Super around $150. We wouldn’t recommend paying any more for these cards, especially as stock for the newer cards begins to normalize.

Performance

The GTX 1650 Super might have a similar name to the 1650, but that’s more for marketing than anything else. The 1650 Super is an altogether different GPU. It has substantially more CUDA cores than the 1650, as well as a higher clock speed and 50% faster memory. It’s a big upgrade. On paper, it’s within striking distance of a stock GTX 1660.

GTX 1660 GTX 1650 Super GTX 1650
GPU TU116 TU116 TU117
CUDA Cores 1,408 1,280 896
Base Clock 1,530MHz 1,530MHz 1,485MHz
Boost Clock 1,785MHz 1,725MHz 1,665MHz
Memory 6GB GDDR6 4GB GDDR6 4GB GDDR5
Memory speed 8Gbps 12Gbps 8Gbps
Bandwidth 192GBps 192GBps 192GBps
TDP 120w 100w 75w

In developing the 1650 Super, Nvidia gave it GDDR6 memory running at a faster clip than that found in the 1650 or the 1660. That’s what enables it to match the GTX 1660 in memory bandwidth, despite its narrower memory bus. It has a higher base and boost clock, but the biggest differentiating factor is the 42% increase in CUDA core count. That should, when combined with the other performance enhancements, deliver a noticeable improvement in the card’s capabilities.

That seems to play out in testing, too. In games where the standard GTX 1650 performed poorly, the GTX 1650 Super really picked up the slack. In TechPowerUp’s testing in games like Metro Exodus, we see the 1650 Super reach speeds in excess of the RX 580. In the Witcher 3, the 1650 almost catches up with the RX 590, where the standard 1650 falls well behind even the RX 570 and the GTX 1060 3GB.

TechSpot’s results echoed these findings, showing the GTX 1650 Super as an excellent 1080p video card, with no problem hitting a consistent 60 FPS in a number of games. Hardware Unboxed amalgamated 17 of its various game tests into one results graph and found that where the standard 1650 is often noticeably less capable than the 1060 3GB and RX 570, the GTX 1650 Super delivers performance that is within a few FPS of the RX 580.

This makes Nvidia’s budget graphics card line far more competitive, especially since with a little overclocking, you’re likely to be able to reach near-GTX 1660 speeds, saving yourself a lot of money in a tight and competitive price range.

What about ray tracing?

Both the GTX 1650 and GTX 1650 Super technically support ray tracing, thanks to Nvidia’s expansion of the previously-RTX-exclusive feature early in 2019. That said, neither of these cards sports the RT cores that provide hardware acceleration for ray-tracing calculations. We’ve seen previously that only the GTX 1080 Ti really has the general computing grunt to deliver even passable ray tracing experiences without those RT cores, so don’t expect to enjoy ray tracing in games with either of these cards at anything close to comfortable frame rates.

You can turn it on to see what it looks like, but it is almost certainly not going to be playable, regardless of your choice of game.

The upside is that you can still enjoy other Nvidia features like its support for Reshade post-processing effects in the Geforce Experience, and its NULL (Nvidia Ultra Low Latency) enhancement for competitive gaming.

The 1650 Super is the new 1650

With the way prices are right now, there is no point in buying a GTX 1650 or a GTX 1650 Super. Between the two, the GTX 1650 Super is a far better card, but it’s not worth twice its MSRP.

Considering the broad disparity in performance and the incredibly narrow difference in pricing, Nvidia will need to either drop the standard 1650 entirely or, more likely, adjust its pricing downward so it competes more directly with AMD’s ultra-budget cards, like the RX 560.

It’s hard to justify either in 2021, however, especially as games become more demanding and graphics cards more powerful.

Editors’ Recommendations
  • Everything you need to know about buying a GPU in 2023

  • Nvidia’s most important next-gen GPU is less than 2 weeks away

  • No one is buying new graphics cards right now

  • Nvidia is now worth almost as much as Amazon, and that puts gamers in a tough spot

  • This neat idea could stop your GPU cables from melting — but there’s a catch

Nvidia GeForce GTX 1060 vs Nvidia GeForce GTX 1650 GDDR6: What is the difference?

smartphonesvideo cardswireless headphonesprocessors

50 points

Nvidia GeForce GTX 1060

40 points

Nvidia GeForce GTX 1650 GDDR6

90 013 € 189

Comparison winner

189

vs

53 facts in comparison

Nvidia GeForce GTX 1060

Nvidia GeForce GTX 1650 GDDR6

Why is Nvidia GeForce GTX 1060 better than Nvidia GeForce GTX 1650 GDDR6?

  • GPU frequency 96MHz higher?
    1506MHz vs 1410MHz
  • 1. 01 TFLOPS higher than FLOPS?
    3.85 TFLOPS vs 2.85 TFLOPS
  • 21.42 GPixel/s higher pixel rate?
    72.3 GPixel/s vs 50.88 GPixel/s
  • 502MHz faster memory speed?
    2002MHz vs 1500MHz
  • 2GB more VRAM?
    6GB vs 4GB
  • 31.46 GTexels/s higher number of textured pixels?
    120.5 GTexels/s vs 89.04 GTexels/s
  • Supports ray tracing?
  • 64bit wider memory bus?
    192bit vs 128bit

  • 45W below TDP?
    75W vs 120W
  • 3992MHz higher effective clock frequency?
    12000MHz vs 8008MHz
  • 300million more transistors?
    4700 million vs 4400 million
  • Are 4nm semiconductors smaller?
    12nm vs 16nm
  • GDDR memory versions?
    GDDR6 vs GDDR5
  • 105. 2mm narrower?
    144.8mm vs 250mm

Nvidia GeForce GTX 1060

vs

AMD Radeon RX 580

Nvidia GeForce GTX 1650 GDDR6

vs

Nvidia GeForce GTX 1650

900 02 Nvidia GeForce GTX 1060

vs

Nvidia GeForce GTX 1650

Nvidia GeForce GTX 1650 GDDR6

vs

AMD Radeon RX 5600M

Nvidia GeForce GTX 1060

vs

Nvidia GeForce RTX 3050 Laptop

Nvidia GeForce GTX 1650 GDDR6

vs

Gigabyte GeForce GTX 1650 OC

Nvidia GeForce GTX 1060

vs

Nvidia GeForce GTX 660

Nvidia GeForce GTX 1650 GDDR6

vs

Nvidia GeForce GTX 1650 Super

Nvidia GeForce GTX 1060

vs

AMD Radeon RX 570

Nvidia GeForce GTX 1650 GDDR6

vs

AMD Radeon RX 6400

Nvidia GeForce GTX 1060

vs 9000 3

Manli GeForce GTX 1650

Nvidia GeForce GTX 1650 GDDR6

vs

Gigabyte GeForce GTX 950

Nvidia GeForce GTX 1060

vs

Nvidia GeForce GTX 1650 Ti Laptop

Nvidia GeForce GTX 1650 GDDR6

vs

AMD Radeon RX 5700 XT

Nvidia GeForce GTX 1060

vs

Nvidia GeForce RTX 3050 Ti Laptop 2GB

Nvidia GeForce GTX 1060

vs

Nvidia GeForce GTX 970

Nvidia GeForce GTX 1650 GDDR6

vs

Nvidia GeForce RTX 3050

Price comparison

Nvidia GeForce GTX 1060

Buy used:

€89

902 59

9 0270 Annadue GTX 1060 Grafikkarte, 6 GB/5 GB/…Annadue GTX 1060 Grafikkarte, 6 GB/5 GB/3 GB GDDR5 192 Bit Gaming Video Grafikkarte mit Zwei Lüftern, HDMI/DVI/DP, Computer Grafikkarte, Unterstützt 4K HDR(3GB)

902 59

902 70

90 270

Product Shop Price
Dpofirs GTX 1060 Grafikkarte, Computergr. ..Dpofirs GTX 1060 Grafikkarte, Computergrafikkarte 6 GB GDDR5 192 Bit mit Zwei Lüftern 4K HDR Technologie 8008 MHz GTX1060 Gaming Grafikkarte mit HDMI DVI DP Anzeigeschnittstelle(6 GB) €189
€195
MSI GeForce GTX 1630 Ventus XS 4G OC Grafikkarte — NVIDIA GTX 1630, 4GB GDDR6 Speicher, 64-bit, 12 Gbps €163
MSI NVIDIA GTX 1060 3GT OC Grafikkarte (…MSI NVIDIA GTX 1060 3GT OC Grafikkarte (HDMI, DP, DL-DVI-D) €130
Palit GeForce GTX 1060 StormX Aktiv Graf…Palit GeForce GTX 1060 StormX Aktiv Grafikkarte (PCIe 3.0 x16, 3GB) €130
MSI GeForce GTX 1060 Gaming X 6GB GDDR5,. . .MSI GeForce GTX 1060 Gaming X 6GB GDDR5, HDMI, DP, DVI, 192 Bit €89
Nvidia GeForce GTX 1060 Gaming 6GB GDDR5…Nvidia GeForce GTX 1060 Gaming 6GB GDDR5 Grafikkarte Zotac €90

User reviews

Overall rating

Nvidia GeForce GTX 1060

7 User Reviews vidia GeForce GTX 1650 GDDR6

4 User reviews

Nvidia GeForce GTX 1650 GDDR6

8.5 /10

4 User reviews

Features

Value for money 9 0003

8.6 /10

7 votes

8.5 / 10

4 votes

Games

4 votes

Performance

8.3 /10

7 votes

8.5 /10

4 votes

Quiet operation

8.4 /10 90 003

7 votes

9.3 /10

3 votes

Reliability

8.1 /10

7 votes

10.0 /10

3 votes

Performance

GPU clock speed

1506MHz

1410MHz

The graphics processing unit (GPU) has a higher clock speed.

turbo GPU

1708MHz

1590MHz

When the GPU is running below its limits, it can jump to a higher clock speed to increase performance.

pixel rate

72.3 GPixel/s

50.88 GPixel/s

Number of pixels that can be displayed on the screen every second.

FLOPS

3.85 TFLOPS

2.85 TFLOPS

FLOPS is a measure of GPU processing power.

texture size

120.5 GTexels/s

89.04 GTexels/s

The number of textured pixels that can be displayed on the screen every second.

GPU memory speed

2002MHz

1500MHz

Memory speed is one aspect that determines memory bandwidth.

Shading patterns

Shading units (or stream processors) are small processors in a graphics card that are responsible for processing various aspects of an image.

texture units (TMUs)

TMUs take texture units and map them to the geometric layout of the 3D scene. More TMUs generally means texture information is processed faster.

ROPs

ROPs are responsible for some of the final steps of the rendering process, such as writing the final pixel data to memory and for performing other tasks such as anti-aliasing to improve the appearance of graphics.

Memory

effective memory speed

8008MHz

12000MHz

The effective memory clock is calculated from the size and data transfer rate of the memory. A higher clock speed can give better performance in games and other applications.

maximum memory bandwidth

192.2GB/s

192GB/s

This is the maximum rate at which data can be read from or stored in memory.

VRAM (video RAM) is the dedicated memory of the graphics card. More VRAM usually allows you to run games at higher settings, especially for things like texture resolution.

versions of GDDR memory

Later versions of GDDR memory offer improvements such as higher data transfer rates, which improve performance.

memory bus width

192bit

128bit

A wider memory bus means it can carry more data per cycle. This is an important factor in memory performance, and therefore the overall performance of the graphics card.

Supports memory debug code

✖Nvidia GeForce GTX 1060

✖Nvidia GeForce GTX 1650 GDDR6

Memory debug code can detect and fix data corruption. It is used when necessary to avoid distortion, such as in scientific computing or when starting a server.

Features

DirectX version

DirectX is used in games with a new version that supports better graphics.

OpenGL version

The newer version of OpenGL, the better graphics quality in games.

version of OpenCL

Some applications use OpenCL to use the power of the graphics processing unit (GPU) for non-graphical computing. Newer versions are more functional and better quality.

Supports multi-monitor technology

✔Nvidia GeForce GTX 1060

✔Nvidia GeForce GTX 1650 GDDR6

The video card has the ability to connect multiple displays. This allows you to set up multiple monitors at the same time to create a more immersive gaming experience, such as a wider field of view.

GPU temperature at boot

Unknown. Help us offer a price. (Nvidia GeForce GTX 1650 GDDR6)

Lower boot temperature means the card generates less heat and the cooling system works better.

supports ray tracing

✔Nvidia GeForce GTX 1060

✖Nvidia GeForce GTX 1650 GDDR6

Ray tracing is an advanced light rendering technique that provides more realistic lighting, shadows and reflections in games.

Supports 3D

✔Nvidia GeForce GTX 1060

✔Nvidia GeForce GTX 1650 GDDR6

Allows you to view in 3D (if you have a 3D screen and glasses).

supports DLSS

✖Nvidia GeForce GTX 1060

✖Nvidia GeForce GTX 1650 GDDR6

DLSS (Deep Learning Super Sampling) is an AI based scaling technology. This allows the graphics card to render games at lower resolutions and upscale them to higher resolutions with near-native visual quality and improved performance. DLSS is only available in some games.

AMD SAM / Intel Resizable BAR

Unknown. Help us offer a price. (Nvidia GeForce GTX 1060)

Unknown. Help us offer a price. (Nvidia GeForce GTX 1650 GDDR6)

AMD Smart Access Memory (SAM) and Intel Resizable BAR are two technologies that allow the CPU to have faster access to the graphics card, which can improve performance. This requires a compatible motherboard, graphics card, and processor.

Ports

has HDMI output

✔Nvidia GeForce GTX 1060

✔Nvidia GeForce GTX 1650 GDDR6

Devices with HDMI or mini HDMI ports can stream HD video and audio to the connected display.

HDMI connectors

More HDMI connectors allow you to connect multiple devices at the same time, such as game consoles and TVs.

HDMI version

HDMI 2.0

HDMI 2.0

Newer versions of HDMI support higher bandwidth, resulting in higher resolutions and frame rates.

DisplayPort outputs

Allows connection to a display using DisplayPort.

DVI outputs

Allows connection to a display using DVI.

mini DisplayPort outputs

Allows connection to a display using mini DisplayPort.

Price comparison

Nvidia GeForce GTX 1060

Buy used:

€89

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Battle of two «stumps»: Radeon RX 6400 compared with GeForce GTX 1060 3 GB in games

Ferra.ru

© Ferra.ru

The authors of the GameGangsta YouTube channel found out which video card is more suitable for games: RX 6400 or GTX 1060. Builds were tested in eight games. Projects included Grand Theft Auto V, Rainbow Six Siege, Assassin’s Creed Odyssey, Red Dead Redemption 2, Assassin’s Creed Valhalla, Watch Dogs Legion, Far Cry 6, Forza Horizon 5. All games ran at 1080p.

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Grand Theft Auto V ran at very high graphics settings. The average FPS in it was 37 fps with the RX 6400, and 53 fps with the GTX 1060. In very rare events, the indicators were 29 fps and 34 fps, respectively.

In Rainbow Six Siege with the ultra preset, average performance was 168 fps and 143 fps with the RX 6400 and GTX 1060 respectively. In very rare events, the values ​​were within 112 fps and 78 fps, respectively.

Assassin’s Creed Odyssey was run on ultra-high graphics settings. Average performance here was 28 fps with the RX 6400 and 29fps with a GTX 1060. In extremely rare events, the performance was 12 fps in both cases.

In Red Dead Redemption 2 with the ultra preset, the average FPS was around 44 fps (RX 6400) and 31 fps (GTX 1060). In very rare events, performance dropped to 27 fps and 23 fps, respectively.

Assassin’s Creed Valhalla on high graphics settings averaged 29 fps with the RX 6400 and 33 fps with the GTX 1060. In extremely rare events, these values ​​dropped to 12 fps and 11 fps, respectively.

Watch Dogs Legion came with a high preset. Average framerates here were 45fps (RX 6400) and 42fps (GTX 1060), with very rare events reaching 27fps with both configurations.

Far Cry 6 started with an ultra preset. The average FPS in the game was 51 fps with the RX 6400 and 43 fps with the GTX 1060, in extremely rare events the performance was 8 fps and 17 fps respectively.

Finally, Forza Horizon 5 was running on ultra graphics settings. On average, it managed to get 36 fps with the RX 6400, 25 fps with the GTX 1060. In very rare events, the values ​​were 20 fps and 19k / s, respectively.

On average, in all eight projects, the build with the RX 6400 video card provided the highest performance. The difference between it and the GTX 1060 was about 9 percent: 55 fps versus 50 fps. At the same time, GTX 1060 was the leader in Assassin’s Creed Valhalla, Assassin’s Creed Odyssey, Grand Theft Auto V projects.