Memory frames

Author: f | 2025-04-25

★★★★☆ (4.9 / 3707 reviews)

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Memorial frame, In memory of frame, Memorial picture frame, Bereavement frame, Sympathy gift, Remembrance (13.7k) $ 24.91. Add to Favorites Pet Memorial Engraved Picture Frame Memorial Frame, Memory Frame, In Loving Memory Frame, Personalised Picture Frame, In Memory of, Keepsake, Loved one in Heaven, Remembrance (738) $ 26.38

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Frequently Asked Questions About Modern Memory Design Frames1. Where are Modern Memory Design photo frames made?All our frames are proudly handcrafted in New Jersey, USA, using premium, sustainably sourced solid wood.2. Do you offer free shipping on all frames?Yes! We provide fast, free shipping on all orders, ensuring your Modern Memory Design frames arrive quickly and at no extra cost.3. What sizes are available for these frames?Our solid wood frames range from 4x6 inches up to 24x36 inches. Real glass is used for frames up to 16 inches, while larger sizes use durable acrylic.4. How are frames packaged to ensure they arrive safely?Each Modern Memory Design frame is carefully wrapped and boxed with protective materials to prevent damage during transit.5. Do you offer a return or exchange policy?We stand by the quality of our frames. If you’re not satisfied, contact us within 30 days for a return or exchange.6. Are these frames eco-friendly?Yes! We strive to use sustainably sourced materials and minimize waste, making our frames a more environmentally conscious choice.7. Can Modern Memory Design frames be used on a tabletop?Our frames are specifically designed for wall hanging only and do not include a tabletop easel, ensuring a sleek, modern profile.8. How do I hang the frames?Each frame includes easy-to-use mounting hardware. Follow the simple instructions p

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Of 4KB. The division of each process into 4 pages of 1KB enables one Page to be accommodated in each frame. Starting with all frames empty, Pages are allocated in a sequential manner, fitting precisely into the 16 frames. Example 2: Non-Contiguous Allocation of Pages Assume that in Scenario-1, processes P2 and P4 transition to the waiting state, resulting in 8 vacant frames. In Case-2, there is a newly introduced process, P5, with a size of 8KB (equivalent to 8 Pages), that is currently in the ready queue. Because Paging permits pages to be stored at various memory locations, the 8 discontinuous frames remaining from P2 and P4 can be utilised. As a result, the 8 Pages of P5 are distributed among the available spaces, demonstrating non-continuous allocation. Paging Methods Let's dive into the various Paging methods that aid Operating Systems efficiently allocate and handle memory for processes. 1) Contiguous Allocation of Pages Pages of a process are stored in sequential memory frames in contiguous allocation. This technique ensures that pages are arranged in sequential frames, simplifying their accessibility and organisation. Yet, this can result in fragmentation, restricting the versatility of memory utilisation when frames are taken up. 2) Non-Contiguous Allocation of Pages Pages of a process can be stored in any frames, not necessarily in order, with non-contiguous allocation. This technique improves memory efficiency by utilising scattered available frames, decreasing problems with fragmentation. It provides increased flexibility and effectiveness, enabling operations to proceed even without continuous memory blocks. Paging allows operating systems to optimise the use of physical memory, leading to improved system performance. Some of the main benefits are: 1) Minimises External Fragmentation With paging, the operating system can make better use of memory by transferring unused pages to disk and bringing them back when necessary. 2) Enables Efficient Page Swapping The operating system swaps pages without concern for fragmentation, giving priority to the least frequently used pages. 3) Facilitates Virtual Memory Support Each process gets its own address space with virtual memory, even if physical memory can't hold all processes at once. 4) Enhances Memory Utilisation It enhances performance by minimising CPU idle periods during disk loading and storing commonly used pages in memory. 5) Simplifies Memory Management Paging simplifies the management process by monitoring only the pages in memory now instead of the entire process address space. Design Apps Like a Pro with our Mobile App

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(it does support at least SSE2 at least), save that it is longer in the tooth than even my AMD processor. I hope yours is one that supports HyperThreading at least (Prescott edition) and it likely suffers more from bottlenecking on the frontside bus and ram communication speed, so I would make sure that you reduce or minimize (if you haven't already) the number of other programs you are running in the background.. Last edited by Zacam#6589 on May 13, 2012, 5:41:02 PM Posted byZacam#6589on May 13, 2012, 5:38:23 PM Would it run on this_________________________________________________________It's some pc a dude bought at my company lol.Dont worry at home i got nvidia 9600 GT on desktop & ati mobility hd 5650 here at laptop :) but i wanna know if it would run on that video board -.- :D_________________________________________________________Time of this report: 9/23/2012, 19:09:50 Machine name: USER-PC Operating System: Windows 7 Ultimate 32-bit (6.1, Build 7600) (7600.win7_rtm.090713-1255) Language: English (Regional Setting: English)System Manufacturer: To Be Filled By O.E.M. System Model: To Be Filled By O.E.M. BIOS: BIOS Date: 07/15/11 16:05:50 Ver: 04.06.04 Processor: Intel(R) Celeron(R) CPU G530 @ 2.40GHz (2 CPUs), ~2.4GHz Memory: 2048MB RAMAvailable OS Memory: 1762MB RAM Page File: 1286MB used, 2239MB available Windows Dir: C:\Windows DirectX Version: DirectX 11DX Setup Parameters: Not found User DPI Setting: Using System DPI System DPI Setting: 96 DPI (100 percent) DWM DPI Scaling: Disabled DxDiag Version: 6.01.7600.16385 32bit Unicode Display Devices--------------- Card name: Intel(R) HD Graphics Family Manufacturer: Intel Corporation Chip type: Intel(R) HD Graphics Family DAC type: Internal Device Key: Enum\PCI\VEN_8086&DEV_0102&SUBSYS_01021849&REV_09 Display Memory: 881 MB Dedicated Memory: 256 MB Shared Memory: 625 MB Current Mode: 1920 x 1080 (32 bit) (60Hz) Monitor Name: Generic PnP Monitor Monitor Model: E2251 Monitor Id: GSM586D Native Mode: 1920 x 1080(p) (60.000Hz) Output Type: HD15 Driver Name: igdumdx32.dll,igd10umd32.dll,igd10umd32.dllDriver File Version: 8.15.0010.2291 (English) Driver Version: 8.15.10.2291 DDI Version: 10.1 Driver Model: WDDM 1.1 Driver Attributes: Final Retail Driver Date/Size: 1/27/2011 03:48:36, 575488 bytes WHQL Logo'd: n/a WHQL Date Stamp: n/a Device Identifier: {D7B78E66-4242-11CF-0A73-0821A9C2C535} Vendor ID: 0x8086 Device ID: 0x0102 SubSys ID: 0x01021849 Revision ID: 0x0009 Driver Strong Name: oem6.inf:Intel.Mfg:iSNBD0:8.15.10.2291:pci\ven_8086&dev_0102 Rank Of Driver: 00E62001 Video Accel: ModeMPEG2_A ModeMPEG2_C ModeWMV9_C ModeVC1_C Deinterlace Caps: {BF752EF6-8CC4-457A-BE1B-08BD1CAEEE9F}: Format(In/Out)=(YUY2,YUY2) Frames(Prev/Fwd/Back)=(0,0,1) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_EdgeFiltering {335AA36E-7884-43A4-9C91-7F87FAF3E37E}: Format(In/Out)=(YUY2,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_BOBVerticalStretch {5A54A0C9-C7EC-4BD9-8EDE-F3C75DC4393B}: Format(In/Out)=(YUY2,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend {BF752EF6-8CC4-457A-BE1B-08BD1CAEEE9F}: Format(In/Out)=(UYVY,YUY2) Frames(Prev/Fwd/Back)=(0,0,1) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_EdgeFiltering {335AA36E-7884-43A4-9C91-7F87FAF3E37E}: Format(In/Out)=(UYVY,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_BOBVerticalStretch {5A54A0C9-C7EC-4BD9-8EDE-F3C75DC4393B}: Format(In/Out)=(UYVY,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend {BF752EF6-8CC4-457A-BE1B-08BD1CAEEE9F}: Format(In/Out)=(YV12,YUY2) Frames(Prev/Fwd/Back)=(0,0,1) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_EdgeFiltering {335AA36E-7884-43A4-9C91-7F87FAF3E37E}: Format(In/Out)=(YV12,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_BOBVerticalStretch {5A54A0C9-C7EC-4BD9-8EDE-F3C75DC4393B}: Format(In/Out)=(YV12,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend {BF752EF6-8CC4-457A-BE1B-08BD1CAEEE9F}: Format(In/Out)=(NV12,YUY2) Frames(Prev/Fwd/Back)=(0,0,1) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_EdgeFiltering {335AA36E-7884-43A4-9C91-7F87FAF3E37E}: Format(In/Out)=(NV12,YUY2) Frames(Prev/Fwd/Back)=(0,0,0) Caps=VideoProcess_YUV2RGB VideoProcess_StretchX VideoProcess_StretchY VideoProcess_AlphaBlend DeinterlaceTech_BOBVerticalStretch {5A54A0C9-C7EC-4BD9-8EDE-F3C75DC4393B}:. Memorial frame, In memory of frame, Memorial picture frame, Bereavement frame, Sympathy gift, Remembrance (13.7k) $ 24.91. Add to Favorites Pet Memorial Engraved Picture Frame

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General Information PerformanceTest Windows Version 11.0.1014 Baseline ID 2078829 Operating System Windows 11 Education build 22631 (64-bit) Submitted Date15th of April, 2024 Hardware CPU Type Intel Core i5-12400 CPU Measured Speed 2.50 GHz [Turbo: 4.19 GHz] Motherboard ASUSTeK COMPUTER INC. PRIME B660-PLUS D4 Memory Total Memory: 16GB, Number of RAM Modules: 2 RAM Modules Slot 1: Kingston KF3200C16D4/8GX, 8GB DDR4 SDRAM PC4-24024Slot 2: Kingston KF3200C16D4/8GX, 8GB DDR4 SDRAM PC4-24024 Video Card Tested GeForce RTX 3070 Primary Display Monitor 2560x1440x32 165Hz 96 DPI (Primary monitor) Hard Drive Tested WDC WD30EZRZ (3 TB) Benchmark Scores Passmark Rating 1,609 + CPU Mark 20,013 (19,241, 4.0%) Integer Math 61,757 MOps/Sec (59,997 MOps/Sec, 2.9%) Floating Point Math 48,085 MOps/Sec (46,734 MOps/Sec, 2.9%) Find Prime Numbers 72 Million Primes/Sec (71 Million Primes/Sec, 2.5%) Random String Sorting 21,799 Thousand Strings/Sec (22,710 Thousand Strings/Sec, -4.0%) Data Encryption 12,228 MBytes/Sec (11,661 MBytes/Sec, 4.9%) Data Compression 243,715 KBytes/Sec (232,829 KBytes/Sec, 4.7%) Physics 1,251 Frames/Sec (1,139 Frames/Sec, 9.8%) Extended Instructions 16,287 Million Matrices/Sec (15,742 Million Matrices/Sec, 3.5%) Single Thread 3,595 MOps/Sec (3,505 MOps/Sec, 2.6%) + 2D Graphics Mark 1,076 Simple Vectors 25 Thousand Vectors/Sec Fonts and Text 301 Ops/Sec Windows Interface 82 Ops/Sec Image Filters 1,838 Filters/Sec Image Rendering 177 Thousand Images/Sec Direct 2D 66 Frames/Sec PDF Rendering 84 Ops/Sec Direct 2D - SVG 89 Frames/Sec + 3D Graphics Mark 22,630 (22,269, 1.6%) DirectX 9 237 Frames/Sec (246 Frames/Sec, -3.6%) DirectX 10 143 Frames/Sec (153 Frames/Sec, -6.2%) DirectX 11 199 Frames/Sec (181 Frames/Sec, 9.8%) DirectX 12 88 Frames/Sec (85 Frames/Sec, 4.0%) GPU Compute 9,961 Ops/Sec (11,314 Ops/Sec, -12.0%) + Memory Mark 3,202 Database Operations 6,127 KOps/Sec Memory Read Cached 33,061 MBytes/Sec Memory Read Uncached 19,721 MBytes/Sec Memory Write 14,813 MBytes/Sec Available RAM 10,588 Megabytes Memory Latency 39 ns (lower is better) Memory Threaded 43,216 MBytes/Sec + Disk Mark 1,006 (941, 7.0%) Disk Sequential Read 169 MBytes/Sec (141 MBytes/Sec, 20.0%) Disk Sequential Write 155 MBytes/Sec (130 MBytes/Sec, 18.9%) IOPS 32KQD20 11 MBytes/Sec (9 MBytes/Sec, 15.4%) IOPS 4KQD1 1 MBytes/Sec Show World Averages for Same Model Comparable Systems Search Baselines Matching: The baselines below are not representative of the standard system. In most

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General Information PerformanceTest Windows Version 11.1.1003 Baseline ID 2446335 Operating System Windows 11 Professional Edition build 26100 (64-bit) Submitted Date27th of February, 2025 Hardware CPU Type AMD Ryzen AI 7 350 CPU Measured Speed 2.00 GHz Motherboard HP 8DF4 Memory Total Memory: 31GB, Number of RAM Modules: 4 RAM Modules Slot 1: H58G66BK7BX067Slot 2: H58G66BK7BX067Slot 3: H58G66BK7BX067Slot 4: H58G66BK7BX067 Video Card Tested Radeon 860M Primary Display Monitor 1920x1200x32 60Hz 120 DPI (Primary monitor) Hard Drive Tested SK hynix PVC10 HFS001TEM9X173N (1 TB) Benchmark Scores Passmark Rating 6,705 + CPU Mark 23,425 (24,914, -6.0%) Integer Math 84,848 MOps/Sec (88,638 MOps/Sec, -4.3%) Floating Point Math 51,175 MOps/Sec (54,392 MOps/Sec, -5.9%) Find Prime Numbers 79 Million Primes/Sec (75 Million Primes/Sec, 5.5%) Random String Sorting 31,360 Thousand Strings/Sec (32,727 Thousand Strings/Sec, -4.2%) Data Encryption 14,230 MBytes/Sec (15,417 MBytes/Sec, -7.7%) Data Compression 237,573 KBytes/Sec (295,138 KBytes/Sec, -19.5%) Physics 1,505 Frames/Sec (1,332 Frames/Sec, 12.9%) Extended Instructions 19,053 Million Matrices/Sec (21,363 Million Matrices/Sec, -10.8%) Single Thread 3,921 MOps/Sec (3,983 MOps/Sec, -1.6%) + 2D Graphics Mark 1,110 Simple Vectors 24 Thousand Vectors/Sec Fonts and Text 381 Ops/Sec Windows Interface 88 Ops/Sec Image Filters 2,866 Filters/Sec Image Rendering 145 Thousand Images/Sec Direct 2D 68 Frames/Sec PDF Rendering 56 Ops/Sec Direct 2D - SVG 118 Frames/Sec + 3D Graphics Mark 5,652 (4,659, 21.3%) DirectX 9 81 Frames/Sec (63 Frames/Sec, 29.5%) DirectX 10 22 Frames/Sec (17 Frames/Sec, 26.5%) DirectX 11 46 Frames/Sec (36 Frames/Sec, 29.3%) DirectX 12 28 Frames/Sec (25 Frames/Sec, 11.9%) GPU Compute 2,280 Ops/Sec (2,324 Ops/Sec, -1.9%) + Memory Mark 2,816 Database Operations 5,402 KOps/Sec Memory Read Cached 35,499 MBytes/Sec Memory Read Uncached 34,764 MBytes/Sec Memory Write 27,687 MBytes/Sec Available RAM 24,203 Megabytes Memory Latency 74 ns (lower is better) Memory Threaded 60,748 MBytes/Sec + Disk Mark 45,396 Disk Sequential Read 7,040 MBytes/Sec Disk Sequential Write 5,096 MBytes/Sec IOPS 32KQD20 2,909 MBytes/Sec IOPS 4KQD1 86 MBytes/Sec Show World Averages for Same Model Comparable Systems Search Baselines Matching: The baselines below are not representative of the standard system. In most cases, the systems shown here may be finely tuned (e.g. overclocked) to their best performance based on their PassMark Rating.

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General Information PerformanceTest Windows Version 10.0.1005 Baseline ID 1223109 Operating System Windows 10 Professional Edition build 18363 (64-bit) Submitted Date17th of April, 2020 Benchmark Scores (V10 results) Passmark Rating 5,392 + CPU Mark 29,991 Integer Math 94,592 MOps/Sec Floating Point Math 54,915 MOps/Sec Find Prime Numbers 194 Million Primes/Sec Random String Sorting 44,910 Thousand Strings/Sec Data Encryption 26,347 MBytes/Sec Data Compression 401 MBytes/Sec Physics 1,349 Frames/Sec Extended Instructions 26,987 Million Matrices/Sec Single Thread 2,559 MOps/Sec + 2D Graphics Mark 624 Simple Vectors 11 Thousand Vectors/Sec Fonts and Text 247 Ops/Sec Windows Interface 62 Ops/Sec Image Filters 1,688 Filters/Sec Image Rendering 87 Thousand Images/Sec Direct 2D 23 Frames/Sec PDF Rendering 53 Ops/Sec Direct 2D - SVG 61 Frames/Sec + 3D Graphics Mark 2,924 DirectX 9 63 Frames/Sec DirectX 10 23 Frames/Sec DirectX 11 58 Frames/Sec DirectX 12 11 Frames/Sec GPU Compute 1,135 Ops/Sec + Memory Mark 3,141 Database Operations 6,158 KOps/Sec Memory Read Cached 30,391 MBytes/Sec Memory Read Uncached 17,187 MBytes/Sec Memory Write 10,677 MBytes/Sec Available RAM 11,481 Megabytes Memory Latency 34 ns (lower is better) Memory Threaded 46,727 MBytes/Sec + Disk Mark 26,847 Disk Sequential Read 2,418 MBytes/Sec Disk Sequential Write 2,786 MBytes/Sec IOPS 32KQD20 2,275 MBytes/Sec IOPS 4KQD1 76 MBytes/Sec Hardware CPU Type AMD Ryzen 9 3900X CPU Measured Speed 3.79 GHz Motherboard ASUSTeK COMPUTER INC. ROG STRIX X570-E GAMING Memory 16GB, Corsair CMW16GX4M2Z3600C18 Video Card Tested GeForce GTX 460 Hard Drive Tested Corsair Force MP510 960GB (1 TB) Paste HTML to embed in website. Paste BBCode to embed. Memorial frame, In memory of frame, Memorial picture frame, Bereavement frame, Sympathy gift, Remembrance (13.7k) $ 24.91. Add to Favorites Pet Memorial Engraved Picture Frame

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User2445

Frequently Asked Questions About Modern Memory Design Frames1. Where are Modern Memory Design photo frames made?All our frames are proudly handcrafted in New Jersey, USA, using premium, sustainably sourced solid wood.2. Do you offer free shipping on all frames?Yes! We provide fast, free shipping on all orders, ensuring your Modern Memory Design frames arrive quickly and at no extra cost.3. What sizes are available for these frames?Our solid wood frames range from 4x6 inches up to 24x36 inches. Real glass is used for frames up to 16 inches, while larger sizes use durable acrylic.4. How are frames packaged to ensure they arrive safely?Each Modern Memory Design frame is carefully wrapped and boxed with protective materials to prevent damage during transit.5. Do you offer a return or exchange policy?We stand by the quality of our frames. If you’re not satisfied, contact us within 30 days for a return or exchange.6. Are these frames eco-friendly?Yes! We strive to use sustainably sourced materials and minimize waste, making our frames a more environmentally conscious choice.7. Can Modern Memory Design frames be used on a tabletop?Our frames are specifically designed for wall hanging only and do not include a tabletop easel, ensuring a sleek, modern profile.8. How do I hang the frames?Each frame includes easy-to-use mounting hardware. Follow the simple instructions p

2025-04-25
User5573

Of 4KB. The division of each process into 4 pages of 1KB enables one Page to be accommodated in each frame. Starting with all frames empty, Pages are allocated in a sequential manner, fitting precisely into the 16 frames. Example 2: Non-Contiguous Allocation of Pages Assume that in Scenario-1, processes P2 and P4 transition to the waiting state, resulting in 8 vacant frames. In Case-2, there is a newly introduced process, P5, with a size of 8KB (equivalent to 8 Pages), that is currently in the ready queue. Because Paging permits pages to be stored at various memory locations, the 8 discontinuous frames remaining from P2 and P4 can be utilised. As a result, the 8 Pages of P5 are distributed among the available spaces, demonstrating non-continuous allocation. Paging Methods Let's dive into the various Paging methods that aid Operating Systems efficiently allocate and handle memory for processes. 1) Contiguous Allocation of Pages Pages of a process are stored in sequential memory frames in contiguous allocation. This technique ensures that pages are arranged in sequential frames, simplifying their accessibility and organisation. Yet, this can result in fragmentation, restricting the versatility of memory utilisation when frames are taken up. 2) Non-Contiguous Allocation of Pages Pages of a process can be stored in any frames, not necessarily in order, with non-contiguous allocation. This technique improves memory efficiency by utilising scattered available frames, decreasing problems with fragmentation. It provides increased flexibility and effectiveness, enabling operations to proceed even without continuous memory blocks. Paging allows operating systems to optimise the use of physical memory, leading to improved system performance. Some of the main benefits are: 1) Minimises External Fragmentation With paging, the operating system can make better use of memory by transferring unused pages to disk and bringing them back when necessary. 2) Enables Efficient Page Swapping The operating system swaps pages without concern for fragmentation, giving priority to the least frequently used pages. 3) Facilitates Virtual Memory Support Each process gets its own address space with virtual memory, even if physical memory can't hold all processes at once. 4) Enhances Memory Utilisation It enhances performance by minimising CPU idle periods during disk loading and storing commonly used pages in memory. 5) Simplifies Memory Management Paging simplifies the management process by monitoring only the pages in memory now instead of the entire process address space. Design Apps Like a Pro with our Mobile App

2025-04-11
User7817

General Information PerformanceTest Windows Version 11.0.1014 Baseline ID 2078829 Operating System Windows 11 Education build 22631 (64-bit) Submitted Date15th of April, 2024 Hardware CPU Type Intel Core i5-12400 CPU Measured Speed 2.50 GHz [Turbo: 4.19 GHz] Motherboard ASUSTeK COMPUTER INC. PRIME B660-PLUS D4 Memory Total Memory: 16GB, Number of RAM Modules: 2 RAM Modules Slot 1: Kingston KF3200C16D4/8GX, 8GB DDR4 SDRAM PC4-24024Slot 2: Kingston KF3200C16D4/8GX, 8GB DDR4 SDRAM PC4-24024 Video Card Tested GeForce RTX 3070 Primary Display Monitor 2560x1440x32 165Hz 96 DPI (Primary monitor) Hard Drive Tested WDC WD30EZRZ (3 TB) Benchmark Scores Passmark Rating 1,609 + CPU Mark 20,013 (19,241, 4.0%) Integer Math 61,757 MOps/Sec (59,997 MOps/Sec, 2.9%) Floating Point Math 48,085 MOps/Sec (46,734 MOps/Sec, 2.9%) Find Prime Numbers 72 Million Primes/Sec (71 Million Primes/Sec, 2.5%) Random String Sorting 21,799 Thousand Strings/Sec (22,710 Thousand Strings/Sec, -4.0%) Data Encryption 12,228 MBytes/Sec (11,661 MBytes/Sec, 4.9%) Data Compression 243,715 KBytes/Sec (232,829 KBytes/Sec, 4.7%) Physics 1,251 Frames/Sec (1,139 Frames/Sec, 9.8%) Extended Instructions 16,287 Million Matrices/Sec (15,742 Million Matrices/Sec, 3.5%) Single Thread 3,595 MOps/Sec (3,505 MOps/Sec, 2.6%) + 2D Graphics Mark 1,076 Simple Vectors 25 Thousand Vectors/Sec Fonts and Text 301 Ops/Sec Windows Interface 82 Ops/Sec Image Filters 1,838 Filters/Sec Image Rendering 177 Thousand Images/Sec Direct 2D 66 Frames/Sec PDF Rendering 84 Ops/Sec Direct 2D - SVG 89 Frames/Sec + 3D Graphics Mark 22,630 (22,269, 1.6%) DirectX 9 237 Frames/Sec (246 Frames/Sec, -3.6%) DirectX 10 143 Frames/Sec (153 Frames/Sec, -6.2%) DirectX 11 199 Frames/Sec (181 Frames/Sec, 9.8%) DirectX 12 88 Frames/Sec (85 Frames/Sec, 4.0%) GPU Compute 9,961 Ops/Sec (11,314 Ops/Sec, -12.0%) + Memory Mark 3,202 Database Operations 6,127 KOps/Sec Memory Read Cached 33,061 MBytes/Sec Memory Read Uncached 19,721 MBytes/Sec Memory Write 14,813 MBytes/Sec Available RAM 10,588 Megabytes Memory Latency 39 ns (lower is better) Memory Threaded 43,216 MBytes/Sec + Disk Mark 1,006 (941, 7.0%) Disk Sequential Read 169 MBytes/Sec (141 MBytes/Sec, 20.0%) Disk Sequential Write 155 MBytes/Sec (130 MBytes/Sec, 18.9%) IOPS 32KQD20 11 MBytes/Sec (9 MBytes/Sec, 15.4%) IOPS 4KQD1 1 MBytes/Sec Show World Averages for Same Model Comparable Systems Search Baselines Matching: The baselines below are not representative of the standard system. In most

2025-03-27
User1451

General Information PerformanceTest Windows Version 11.1.1003 Baseline ID 2446335 Operating System Windows 11 Professional Edition build 26100 (64-bit) Submitted Date27th of February, 2025 Hardware CPU Type AMD Ryzen AI 7 350 CPU Measured Speed 2.00 GHz Motherboard HP 8DF4 Memory Total Memory: 31GB, Number of RAM Modules: 4 RAM Modules Slot 1: H58G66BK7BX067Slot 2: H58G66BK7BX067Slot 3: H58G66BK7BX067Slot 4: H58G66BK7BX067 Video Card Tested Radeon 860M Primary Display Monitor 1920x1200x32 60Hz 120 DPI (Primary monitor) Hard Drive Tested SK hynix PVC10 HFS001TEM9X173N (1 TB) Benchmark Scores Passmark Rating 6,705 + CPU Mark 23,425 (24,914, -6.0%) Integer Math 84,848 MOps/Sec (88,638 MOps/Sec, -4.3%) Floating Point Math 51,175 MOps/Sec (54,392 MOps/Sec, -5.9%) Find Prime Numbers 79 Million Primes/Sec (75 Million Primes/Sec, 5.5%) Random String Sorting 31,360 Thousand Strings/Sec (32,727 Thousand Strings/Sec, -4.2%) Data Encryption 14,230 MBytes/Sec (15,417 MBytes/Sec, -7.7%) Data Compression 237,573 KBytes/Sec (295,138 KBytes/Sec, -19.5%) Physics 1,505 Frames/Sec (1,332 Frames/Sec, 12.9%) Extended Instructions 19,053 Million Matrices/Sec (21,363 Million Matrices/Sec, -10.8%) Single Thread 3,921 MOps/Sec (3,983 MOps/Sec, -1.6%) + 2D Graphics Mark 1,110 Simple Vectors 24 Thousand Vectors/Sec Fonts and Text 381 Ops/Sec Windows Interface 88 Ops/Sec Image Filters 2,866 Filters/Sec Image Rendering 145 Thousand Images/Sec Direct 2D 68 Frames/Sec PDF Rendering 56 Ops/Sec Direct 2D - SVG 118 Frames/Sec + 3D Graphics Mark 5,652 (4,659, 21.3%) DirectX 9 81 Frames/Sec (63 Frames/Sec, 29.5%) DirectX 10 22 Frames/Sec (17 Frames/Sec, 26.5%) DirectX 11 46 Frames/Sec (36 Frames/Sec, 29.3%) DirectX 12 28 Frames/Sec (25 Frames/Sec, 11.9%) GPU Compute 2,280 Ops/Sec (2,324 Ops/Sec, -1.9%) + Memory Mark 2,816 Database Operations 5,402 KOps/Sec Memory Read Cached 35,499 MBytes/Sec Memory Read Uncached 34,764 MBytes/Sec Memory Write 27,687 MBytes/Sec Available RAM 24,203 Megabytes Memory Latency 74 ns (lower is better) Memory Threaded 60,748 MBytes/Sec + Disk Mark 45,396 Disk Sequential Read 7,040 MBytes/Sec Disk Sequential Write 5,096 MBytes/Sec IOPS 32KQD20 2,909 MBytes/Sec IOPS 4KQD1 86 MBytes/Sec Show World Averages for Same Model Comparable Systems Search Baselines Matching: The baselines below are not representative of the standard system. In most cases, the systems shown here may be finely tuned (e.g. overclocked) to their best performance based on their PassMark Rating.

2025-03-28
User7521

General Information PerformanceTest Windows Version 11.0.1024 Baseline ID 2255982 Operating System Windows 11 Professional Edition build 26100 (64-bit) Submitted Date25th of November, 2024 Hardware CPU Type AMD Ryzen 3 7330U CPU Measured Speed 2.30 GHz Motherboard LENOVO LNVNB161216 Memory Total Memory: 14GB, Number of RAM Modules: 1 RAM Modules Slot 1: Micron Technology 4ATF1G64HZ-3G2F1, 8GB DDR4 SDRAM PC4-25600 Video Card Tested Radeon Ryzen 3 7330U Primary Display Monitor 1920x1080x32 60Hz 144 DPI (Primary monitor) Hard Drive Tested Micron MTFDKCD256TFK (256 GB) Benchmark Scores Passmark Rating 2,897 + CPU Mark 9,683 (11,115, -12.9%) Integer Math 34,486 MOps/Sec (40,409 MOps/Sec, -14.7%) Floating Point Math 18,520 MOps/Sec (22,208 MOps/Sec, -16.6%) Find Prime Numbers 27 Million Primes/Sec (27 Million Primes/Sec, -0.3%) Random String Sorting 11,859 Thousand Strings/Sec (13,788 Thousand Strings/Sec, -14.0%) Data Encryption 7,008 MBytes/Sec (8,308 MBytes/Sec, -15.6%) Data Compression 108,091 KBytes/Sec (133,632 KBytes/Sec, -19.1%) Physics 474 Frames/Sec (478 Frames/Sec, -0.9%) Extended Instructions 7,255 Million Matrices/Sec (8,978 Million Matrices/Sec, -19.2%) Single Thread 2,766 MOps/Sec (3,017 MOps/Sec, -8.3%) + 2D Graphics Mark 498 Simple Vectors 12 Thousand Vectors/Sec Fonts and Text 224 Ops/Sec Windows Interface 33 Ops/Sec Image Filters 1,134 Filters/Sec Image Rendering 50 Thousand Images/Sec Direct 2D 39 Frames/Sec PDF Rendering 52 Ops/Sec Direct 2D - SVG 39 Frames/Sec + 3D Graphics Mark 1,982 (1,690, 17.3%) DirectX 9 25 Frames/Sec (22 Frames/Sec, 12.2%) DirectX 10 8 Frames/Sec (6 Frames/Sec, 21.7%) DirectX 11 15 Frames/Sec (13 Frames/Sec, 17.4%) DirectX 12 9 Frames/Sec (9 Frames/Sec, 6.4%) GPU Compute 1,104 Ops/Sec (935 Ops/Sec, 18.0%) + Memory Mark 2,316 Database Operations 2,801 KOps/Sec Memory Read Cached 31,289 MBytes/Sec Memory Read Uncached 18,869 MBytes/Sec Memory Write 9,694 MBytes/Sec Available RAM 9,527 Megabytes Memory Latency 65 ns (lower is better) Memory Threaded 36,632 MBytes/Sec + Disk Mark 19,456 (18,092, 7.5%) Disk Sequential Read 3,236 MBytes/Sec (2,913 MBytes/Sec, 11.1%) Disk Sequential Write 1,909 MBytes/Sec (1,689 MBytes/Sec, 13.1%) IOPS 32KQD20 1,289 MBytes/Sec (1,187 MBytes/Sec, 8.6%) IOPS 4KQD1 51 MBytes/Sec (63 MBytes/Sec, -19.0%) Show World Averages for Same Model Comparable Systems Search Baselines Matching: The baselines below are not representative of the standard system. In most cases, the systems shown here may be finely tuned (e.g. overclocked) to their best performance based on their PassMark Rating.

2025-03-28
User2522

General Information PerformanceTest Windows Version 10.2.1001 Baseline ID 2208323 Operating System Windows 10 Professional Edition build 19045 (64-bit) Submitted Date1st of October, 2024 Benchmark Scores (V10 results) Passmark Rating 789 + CPU Mark 3,740 Integer Math 13,713 MOps/Sec Floating Point Math 6,482 MOps/Sec Find Prime Numbers 21 Million Primes/Sec Random String Sorting 8,186 Thousand Strings/Sec Data Encryption 1,032 MBytes/Sec Data Compression 53 MBytes/Sec Physics 370 Frames/Sec Extended Instructions 2,640 Million Matrices/Sec Single Thread 1,278 MOps/Sec + 2D Graphics Mark 82 Simple Vectors 6 Thousand Vectors/Sec Fonts and Text 109 Ops/Sec Windows Interface 24 Ops/Sec Image Filters 128 Filters/Sec Image Rendering 4 Thousand Images/Sec Direct 2D 17 Frames/Sec PDF Rendering 32 Ops/Sec Direct 2D - SVG 17 Frames/Sec + 3D Graphics Mark 281 DirectX 9 5 Frames/Sec DirectX 10 1 Frames/Sec DirectX 11 6 Frames/Sec DirectX 12 2 Frames/Sec GPU Compute 305 Ops/Sec + Memory Mark 2,103 Database Operations 1,790 KOps/Sec Memory Read Cached 18,282 MBytes/Sec Memory Read Uncached 11,663 MBytes/Sec Memory Write 9,057 MBytes/Sec Available RAM 10,349 Megabytes Memory Latency 45 ns (lower is better) Memory Threaded 21,520 MBytes/Sec + Disk Mark 3,966 Disk Sequential Read 490 MBytes/Sec Disk Sequential Write 304 MBytes/Sec IOPS 32KQD20 296 MBytes/Sec IOPS 4KQD1 25 MBytes/Sec Hardware CPU Type Intel Core i7-4710MQ @ 2.50GHz CPU Measured Speed 2.29 GHz [Turbo: 2.29 GHz] Motherboard Dell Inc. 0JTY19 Memory 16GB Video Card Tested FirePro W4170M Hard Drive Tested ADATA SSD DP900 256GB-DL3 (256 GB) Paste HTML to embed in website. Paste BBCode to embed in forum.

2025-03-27

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