For me, there is no way for me to justify the cost on some of the Samsung B-Die memory kits out there for some ePeen synthetic benchmark numbers that translate to nothing in real world usage. I have the G Skill Trident Neo Kits with the Hynix memory in them. 3600 CL 16-19-19-38. I can push it to CL 16-16-16-35 but not any further. Even then I get barely any score increase in my benchmarks. I bought my kits when they were $150 a pop and now the same kits go for $210. The Samsung kits are like $300+ish when last I checked. The price to performance gain for those isn't worth it to me or in my opinion anyone really. GOOD Memory prices for the ryzen builds are not dropping at all compared to other memory. They are going up in fact.
When i'm comparing B-die models at 8GB single sticks which is what I use to non b-die the price difference isn't really that great. Maybe with Dual rank memory and higher capacities. Your build has a cpu that was $750 last year and you have a $1500+ 3090 I don't see the big deal in buying high quality memory when you obviously have the bugdet for those other items. But to each his own.
When i'm comparing B-die models at 8GB single sticks which is what I use to non b-die the price difference isn't really that great. Maybe with Dual rank memory and higher capacities. You're build has a cpu that was $750 last year and you have a $1500+ 3090 I don't see the big deal in buying high quality memory when you obviously have the bugdet for those other items. But to each his own.
Well, I wasn't wanting to buy the 3090 originally. However, I stumbled upon one with a price too good to be true. It ended up true and I bought it. $1600 for as a local buy from a guy that used the card for some benchmarks on it for a little bit before selling. He sold it literally less than what he paid for it. For the rest of my computer, I got good deals there too like my 3950x. I tend to try not buying parts unless I am getting good deals or buying the best bang for the buck performance part out there. The Hynix version of the NEOs I own for example aren't that far behind the Samsung B-Die kits for the capacity that I was looking for in terms of performance. In terms of real gaming performance, it might net me a 1 extra FPS or 2 at most in games really. I can't justify the hundreds of cost increase for that. There are noticeable differences though with better CPU and GPU products though. While I do tweak a bit and sometimes overclock on occasion, the need for overclocking isn't like it used to be. The noticeable performance gains most of the time are not there. It is cool and all to fiddle with it a bit, but as a father of 3 young kids, I don't have that kind of time anymore.
One last hurrah for bios 3003 before i update to a bios with AMD AM4 AGESA V2 PI 1.2.0.0 and support for Nvidia smart access memory.
Cold air benching with EK custom waterloop+TechN Zen3 waterblock
Curve optimizer = -30 allcore
Stable in everything i throw at it, and no WHEA errors.
Did also run a full sweep of all 3dmarks, but i will post that in one other thread
[2021/01/20 16:26:21]
Ai Overclock Tuner [Manual]
BCLK Frequency [100.0000]
Memory Frequency [DDR4-3800MHz]
FCLK Frequency [1900MHz]
Core Performance Boost [Enabled]
CPU Core Ratio [Auto]
Core VID [Auto]
CCX0 Ratio [Auto]
CCX0 Ratio [Auto]
TPU [Keep Current Settings]
Performance Bias [Auto]
PBO Fmax Enhancer [Auto]
Precision Boost Overdrive [Manual]
PPT Limit [300]
TDC Limit [235]
EDC Limit [245]
Precision Boost Overdrive Scalar [Manual]
Customized Precision Boost Overdrive Scalar [4X]
Max CPU Boost Clock Override [50]
Platform Thermal Throttle Limit [Auto]
DRAM CAS# Latency [14]
Trcdrd [15]
Trcdwr [8]
DRAM RAS# PRE Time [12]
DRAM RAS# ACT Time [24]
Trc [36]
TrrdS [4]
TrrdL [4]
Tfaw [16]
TwtrS [4]
TwtrL [10]
Twr [12]
Trcpage [Auto]
TrdrdScl [2]
TwrwrScl [2]
Trfc [252]
Trfc2 [187]
Trfc4 [115]
Tcwl [14]
Trtp [6]
Trdwr [9]
Twrrd [2]
TwrwrSc [1]
TwrwrSd [6]
TwrwrDd [6]
TrdrdSc [1]
TrdrdSd [5]
TrdrdDd [5]
Tcke [Auto]
ProcODT [40 ohm]
Cmd2T [1T]
Gear Down Mode [Enabled]
Power Down Enable [Disabled]
RttNom [RZQ/7]
RttWr [RZQ/3]
RttPark [RZQ/1]
MemAddrCmdSetup [Auto]
MemCsOdtSetup [Auto]
MemCkeSetup [Auto]
MemCadBusClkDrvStren [24.0 Ohm]
MemCadBusAddrCmdDrvStren [20.0 Ohm]
MemCadBusCsOdtDrvStren [24.0 Ohm]
MemCadBusCkeDrvStren [24.0 Ohm]
Mem Over Clock Fail Count [Auto]
Voltage Monitor [Die Sense]
CPU Load-line Calibration [Level 3]
CPU Current Capability [140%]
CPU VRM Switching Frequency [Manual]
Fixed CPU VRM Switching Frequency(KHz) [500]
CPU Power Duty Control [T.Probe]
CPU Power Phase Control [Extreme]
CPU Power Thermal Control [120]
VDDSOC Load-line Calibration [Level 3]
VDDSOC Switching Frequency [Auto]
VDDSOC Phase Control [Extreme]
DRAM Current Capability [130%]
DRAM Power Phase Control [Extreme]
DRAM Switching Frequency [Auto]
CPU Core Current Telemetry [Auto]
CPU SOC Current Telemetry [Auto]
Force OC Mode Disable [Disabled]
SB Clock Spread Spectrum [Auto]
VTTDDR Voltage [Auto]
VPP_MEM Voltage [Auto]
DRAM CTRL REF Voltage on CHA [Auto]
DRAM CTRL REF Voltage on CHB [Auto]
VDDP Voltage [Auto]
1.8V Standby Voltage [Auto]
CPU 3.3v AUX [Auto]
1.2V SB Voltage [Auto]
DRAM R1 Tune [Auto]
DRAM R2 Tune [Auto]
DRAM R3 Tune [Auto]
DRAM R4 Tune [Auto]
PCIE Tune R1 [Auto]
PCIE Tune R2 [Auto]
PCIE Tune R3 [Auto]
PLL Tune R1 [Auto]
PLL reference voltage [Auto]
T Offset [Auto]
Sense MI Skew [Auto]
Sense MI Offset [Auto]
Promontory presence [Auto]
Clock Amplitude [Auto]
CPU Core Voltage [Offset mode]
- Offset Mode Sign [+]
- CPU Core Voltage Offset [0.01250]
CPU SOC Voltage [Manual]
- VDDSOC Voltage Override [1.11875]
DRAM Voltage [1.54500]
VDDG CCD Voltage Control [0.890]
VDDG IOD Voltage Control [Auto]
CLDO VDDP voltage [0.880]
1.00V SB Voltage [Auto]
1.8V PLL Voltage [Auto]
TPM Device Selection [Discrete TPM]
Erase fTPM NV for factory reset [Enabled]
PSS Support [Enabled]
PPC Adjustment [PState 0]
NX Mode [Enabled]
SVM Mode [Disabled]
SMT Mode [Auto]
Core Leveling Mode [Automatic mode]
CCD Control [Auto]
SATA Port Enable [Enabled]
SATA Mode [AHCI]
NVMe RAID mode [Disabled]
SMART Self Test [Enabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
Hot Plug [Disabled]
HD Audio Controller [Enabled]
PCIEX16_1 Bandwidth Bifurcation configuration [Auto Mode]
PCIEX16_2 Bandwidth Bifurcation configuration [Auto Mode]
When system is in working state [All On]
Q-Code LED Function [POST Code Only]
When system is in sleep, hibernate or soft off states [All On]
Realtek 2.5G LAN Controller [Enabled]
Realtek PXE OPROM [Disabled]
Intel LAN Controller [Enabled]
Intel LAN OPROM [Disabled]
ASM1074 Controller [Enabled]
Wi-Fi 6 (802.11ax) Controller [Disabled]
Bluetooth Controller [Enabled]
USB power delivery in Soft Off state (S5) [Enabled]
PCIEX16_1 Mode [Auto]
PCIEX16_2 Mode [Auto]
PCIEX1 Mode [Auto]
PCIEX16_3 Mode [Auto]
M.2_1 Link Mode [Auto]
M.2_2 Link Mode [Auto]
SB Link Mode [Auto]
ErP Ready [Disabled]
Restore AC Power Loss [Power Off]
Power On By PCI-E [Disabled]
Power On By RTC [Disabled]
Above 4G Decoding [Enabled]
Re-Size BAR Support [Auto]
SR-IOV Support [Disabled]
Legacy USB Support [Enabled]
XHCI Hand-off [Enabled]
Corsair Voyager GTX 0 [Auto]
USB Device Enable [Enabled]
U32G2_2 [Enabled]
U32G2_3 [Enabled]
U32G2_4 [Enabled]
U32G1_10 [Enabled]
U32G1_11 [Enabled]
USB12 [Enabled]
USB13 [Enabled]
U32G2_7 [Enabled]
U32G2_8 [Enabled]
U32G2_C9 [Enabled]
Network Stack [Disabled]
Device [SATA6G_7: Samsung SSD 850 PRO 1TB]
CPU Temperature [Monitor]
CPU Package Temperature [Monitor]
MotherBoard Temperature [Monitor]
VRM Temperature [Monitor]
T_Sensor Temperature [Monitor]
Water In T Sensor Temperature [Monitor]
Water Out T Sensor Temperature [Monitor]
CPU Fan Speed [Monitor]
CPU Optional Fan Speed [Monitor]
Chassis Fan 1 Speed [Monitor]
Chassis Fan 2 Speed [Monitor]
Chassis Fan 3 Speed [Monitor]
High Amp Fan Speed [Monitor]
W_PUMP+ Speed [Monitor]
AIO PUMP Speed [Monitor]
PCH Fan Speed [Monitor]
Flow Rate [Monitor]
CPU Core Voltage [Monitor]
3.3V Voltage [Monitor]
5V Voltage [Monitor]
12V Voltage [Monitor]
CPU Fan Q-Fan Control [Auto]
CPU Fan Step Up [2.1 sec]
CPU Fan Step Down [0 sec]
CPU Fan Speed Low Limit [600 RPM]
CPU Fan Profile [Manual]
CPU Fan Upper Temperature [70]
CPU Fan Max. Duty Cycle (%) [100]
CPU Fan Middle Temperature [50]
CPU Fan Middle Duty Cycle (%) [50]
CPU Fan Lower Temperature [30]
CPU Fan Min Duty Cycle (%) [40]
Chassis Fan 1 Q-Fan Control [Auto]
Chassis Fan 1 Q-Fan Source [CPU]
Chassis Fan 1 Step Up [0 sec]
Chassis Fan 1 Step Down [0 sec]
Chassis Fan 1 Speed Low Limit [600 RPM]
Chassis Fan 1 Profile [Manual]
Chassis Fan 1 Upper Temperature [70]
Chassis Fan 1 Max. Duty Cycle (%) [100]
Chassis Fan 1 Middle Temperature [50]
Chassis Fan 1 Middle Duty Cycle (%) [65]
Chassis Fan 1 Lower Temperature [20]
Chassis Fan 1 Min Duty Cycle (%) [60]
Chassis Fan 2 Q-Fan Control [Auto]
Chassis Fan 2 Q-Fan Source [CPU]
Chassis Fan 2 Step Up [0 sec]
Chassis Fan 2 Step Down [0 sec]
Chassis Fan 2 Speed Low Limit [600 RPM]
Chassis Fan 2 Profile [Manual]
Chassis Fan 2 Upper Temperature [65]
Chassis Fan 2 Max. Duty Cycle (%) [100]
Chassis Fan 2 Middle Temperature [45]
Chassis Fan 2 Middle Duty Cycle (%) [60]
Chassis Fan 2 Lower Temperature [40]
Chassis Fan 2 Min Duty Cycle (%) [60]
Chassis Fan 3 Q-Fan Control [Auto]
Chassis Fan 3 Q-Fan Source [CPU]
Chassis Fan 3 Step Up [0 sec]
Chassis Fan 3 Step Down [0 sec]
Chassis Fan 3 Speed Low Limit [600 RPM]
Chassis Fan 3 Profile [Manual]
Chassis Fan 3 Upper Temperature [70]
Chassis Fan 3 Max. Duty Cycle (%) [100]
Chassis Fan 3 Middle Temperature [45]
Chassis Fan 3 Middle Duty Cycle (%) [100]
Chassis Fan 3 Lower Temperature [40]
Chassis Fan 3 Min Duty Cycle (%) [100]
High Amp Fan Q-Fan Control [Auto]
High Amp Fan Q-Fan Source [CPU]
High Amp Fan Step Up [0 sec]
High Amp Fan Step Down [0 sec]
High Amp Fan Speed Low Limit [600 RPM]
High Amp Fan Profile [Manual]
High Amp Fan Upper Temperature [70]
High Amp Fan Max. Duty Cycle (%) [100]
High Amp Fan Middle Temperature [45]
High Amp Fan Middle Duty Cycle (%) [70]
High Amp Fan Lower Temperature [30]
High Amp Fan Min Duty Cycle (%) [60]
Water Pump+ Q-Fan Control [Auto]
Water Pump+ Q-Fan Source [CPU]
Water Pump+ Upper Temperature [70]
Water Pump+ Max. Duty Cycle (%) [100]
Water Pump+ Middle Temperature [50]
Water Pump+ Middle Duty Cycle (%) [65]
Water Pump+ Lower Temperature [30]
Water Pump+ Min Duty Cycle (%) [60]
AIO Pump Q-Fan Control [Auto]
AIO Pump Q-Fan Source [CPU]
AIO Pump Upper Temperature [70]
AIO Pump Max. Duty Cycle (%) [100]
AIO Pump Middle Temperature [50]
AIO Pump Middle Duty Cycle (%) [65]
AIO Pump Lower Temperature [30]
AIO Pump Min Duty Cycle (%) [60]
Above 4GB MMIO Limit [39bit (512GB)]
Fast Boot [Enabled]
Next Boot after AC Power Loss [Fast Boot]
Boot Logo Display [Disabled]
Bootup NumLock State [On]
POST Report [5 sec]
Wait For 'F1' If Error [Enabled]
Option ROM Messages [Force BIOS]
Interrupt 19 Capture [Disabled]
Setup Mode [Advanced Mode]
Launch CSM [Disabled]
OS Type [Other OS]
AMI Native NVMe Driver Support [Enabled]
Flexkey [Reset]
Setup Animator [Disabled]
Load from Profile [5]
Profile Name [20.01 minus 30]
Save to Profile [5]
DIMM Slot Number [DIMM_A1]
Bus Interface [PCIEX16_1]
Download & Install ARMOURY CRATE app [Enabled]
CPU Frequency [0]
CPU Voltage [0]
CCD Control [Auto]
Core control [Auto]
SMT Control [Auto]
Overclock [Enabled ]
Memory Clock Speed [Auto]
Tcl [Auto]
Trcdrd [Auto]
Trcdwr [Auto]
Trp [Auto]
Tras [Auto]
Trc Ctrl [Auto]
TrrdS [Auto]
TrrdL [Auto]
Tfaw Ctrl [Auto]
TwtrS [Auto]
TwtrL [Auto]
Twr Ctrl [Auto]
Trcpage Ctrl [Auto]
TrdrdScL Ctrl [Auto]
TwrwrScL Ctrl [Auto]
Trfc Ctrl [Auto]
Trfc2 Ctrl [Auto]
Trfc4 Ctrl [Auto]
Tcwl [Auto]
Trtp [Auto]
Tcke [Auto]
Trdwr [Auto]
Twrrd [Auto]
TwrwrSc [Auto]
TwrwrSd [Auto]
TwrwrDd [Auto]
TrdrdSc [Auto]
TrdrdSd [Auto]
TrdrdDd [Auto]
ProcODT [Auto]
Power Down Enable [Auto]
Cmd2T [Auto]
Gear Down Mode [Auto]
CAD Bus Timing User Controls [Auto]
CAD Bus Drive Strength User Controls [Auto]
Data Bus Configuration User Controls [Auto]
Infinity Fabric Frequency and Dividers [Auto]
ECO Mode [Disable]
Precision Boost Overdrive [Advanced]
PBO Limits [Motherboard]
Precision Boost Overdrive Scalar [Auto]
Curve Optimizer [Per Core]
Core 0 Curve Optimizer Sign [Negative]
Core 0 Curve Optimizer Magnitude [30]
Core 1 Curve Optimizer Sign [Negative]
Core 1 Curve Optimizer Magnitude [30]
Core 2 Curve Optimizer Sign [Negative]
Core 2 Curve Optimizer Magnitude [30]
Core 3 Curve Optimizer Sign [Negative]
Core 3 Curve Optimizer Magnitude [30]
Core 4 Curve Optimizer Sign [Negative]
Core 4 Curve Optimizer Magnitude [30]
Core 5 Curve Optimizer Sign [Negative]
Core 5 Curve Optimizer Magnitude [30]
Core 6 Curve Optimizer Sign [Negative]
Core 6 Curve Optimizer Magnitude [30]
Core 7 Curve Optimizer Sign [Negative]
Core 7 Curve Optimizer Magnitude [30]
Core 8 Curve Optimizer Sign [Negative]
Core 8 Curve Optimizer Magnitude [30]
Core 9 Curve Optimizer Sign [Negative]
Core 9 Curve Optimizer Magnitude [30]
Core 10 Curve Optimizer Sign [Negative]
Core 10 Curve Optimizer Magnitude [30]
Core 11 Curve Optimizer Sign [Negative]
Core 11 Curve Optimizer Magnitude [30]
Core 12 Curve Optimizer Sign [Negative]
Core 12 Curve Optimizer Magnitude [30]
Core 13 Curve Optimizer Sign [Negative]
Core 13 Curve Optimizer Magnitude [30]
Core 14 Curve Optimizer Sign [Negative]
Core 14 Curve Optimizer Magnitude [30]
Core 15 Curve Optimizer Sign [Negative]
Core 15 Curve Optimizer Magnitude [30]
Max CPU Boost Clock Override [0MHz]
Platform Thermal Throttle Limit [Auto]
LN2 Mode [Auto]
SoC/Uncore OC Mode [Disabled]
VDDP Voltage Control [Auto]
VDDG Voltage Control [Auto]
NUMA nodes per socket [Auto]
Custom Pstate0 [Auto]
L1 Stream HW Prefetcher [Auto]
L2 Stream HW Prefetcher [Auto]
Core Watchdog Timer Enable [Auto]
SMEE [Auto]
Core Performance Boost [Auto]
Global C-state Control [Disabled]
Power Supply Idle Control [Typical Current Idle]
SEV ASID Count [Auto]
SEV-ES ASID Space Limit Control [Auto]
Streaming Stores Control [Auto]
Local APIC Mode [Auto]
ACPI _CST C1 Declaration [Auto]
MCA error thresh enable [Auto]
PPIN Opt-in [Auto]
Fast Short REP MOVSB [Enabled]
Enhanced REP MOVSB/STOSB [Enabled]
RdRand Speedup Disable [Enabled]
IBS hardware workaround [Auto]
DRAM scrub time [Auto]
Poison scrubber control [Auto]
Redirect scrubber control [Auto]
Redirect scrubber limit [Auto]
NUMA nodes per socket [Auto]
Memory interleaving [Auto]
Memory interleaving size [Auto]
1TB remap [Auto]
DRAM map inversion [Auto]
ACPI SRAT L3 Cache As NUMA Domain [Auto]
ACPI SLIT Distance Control [Auto]
ACPI SLIT remote relative distance [Auto]
GMI encryption control [Auto]
xGMI encryption control [Auto]
CAKE CRC perf bounds Control [Auto]
4-link xGMI max speed [Auto]
3-link xGMI max speed [Auto]
xGMI TXEQ Mode [Auto]
PcsCG control [Auto]
Disable DF to external downstream IP SyncFloodPropagation [Auto]
Disable DF sync flood propagation [Auto]
CC6 memory region encryption [Auto]
Memory Clear [Auto]
Overclock [Enabled]
Memory Clock Speed [Auto]
Tcl [Auto]
Trcdrd [Auto]
Trcdwr [Auto]
Trp [Auto]
Tras [Auto]
Trc Ctrl [Auto]
TrrdS [Auto]
TrrdL [Auto]
Tfaw Ctrl [Auto]
TwtrS [Auto]
TwtrL [Auto]
Twr Ctrl [Auto]
Trcpage Ctrl [Auto]
TrdrdScL Ctrl [Auto]
TwrwrScL Ctrl [Auto]
Trfc Ctrl [Auto]
Trfc2 Ctrl [Auto]
Trfc4 Ctrl [Auto]
Tcwl [Auto]
Trtp [Auto]
Tcke [Auto]
Trdwr [Auto]
Twrrd [Auto]
TwrwrSc [Auto]
TwrwrSd [Auto]
TwrwrDd [Auto]
TrdrdSc [Auto]
TrdrdSd [Auto]
TrdrdDd [Auto]
ProcODT [Auto]
Power Down Enable [Auto]
Disable Burst/Postponed Refresh [Auto]
DRAM Maximum Activate Count [Auto]
Cmd2T [Auto]
Gear Down Mode [Auto]
CAD Bus Timing User Controls [Auto]
CAD Bus Drive Strength User Controls [Auto]
Data Bus Configuration User Controls [Auto]
Data Poisoning [Auto]
DRAM Post Package Repair [Default]
RCD Parity [Auto]
DRAM Address Command Parity Retry [Auto]
Write CRC Enable [Auto]
DRAM Write CRC Enable and Retry Limit [Auto]
Disable Memory Error Injection [True]
DRAM ECC Symbol Size [Auto]
DRAM ECC Enable [Auto]
DRAM UECC Retry [Auto]
TSME [Auto]
Data Scramble [Auto]
DFE Read Training [Auto]
FFE Write Training [Auto]
PMU Pattern Bits Control [Auto]
MR6VrefDQ Control [Auto]
CPU Vref Training Seed Control [Auto]
Chipselect Interleaving [Auto]
BankGroupSwap [Auto]
BankGroupSwapAlt [Auto]
Address Hash Bank [Auto]
Address Hash CS [Auto]
Address Hash Rm [Auto]
SPD Read Optimization [Enabled]
MBIST Enable [Disabled]
Pattern Select [PRBS]
Pattern Length [6]
Aggressor Channel [1 Aggressor Channel]
Aggressor Static Lane Control [Disabled]
Target Static Lane Control [Disabled]
Worst Case Margin Granularity [Per Chip Select]
Read Voltage Sweep Step Size [1]
Read Timing Sweep Step Size [1]
Write Voltage Sweep Step Size [1]
Write Timing Sweep Step Size [1]
IOMMU [Auto]
Precision Boost Overdrive [Auto]
Precision Boost Overdrive Scalar [Auto]
FCLK Frequency [Auto]
SOC OVERCLOCK VID [0]
UCLK DIV1 MODE [Auto]
VDDP Voltage Control [Auto]
VDDG Voltage Control [Auto]
SoC/Uncore OC Mode [Auto]
LN2 Mode [Auto]
ACS Enable [Auto]
PCIe ARI Support [Auto]
PCIe ARI Enumeration [Auto]
PCIe Ten Bit Tag Support [Auto]
cTDP Control [Auto]
EfficiencyModeEn [Auto]
Package Power Limit Control [Auto]
APBDIS [Auto]
DF Cstates [Auto]
CPPC [Auto]
CPPC Preferred Cores [Auto]
NBIO DPM Control [Auto]
Early Link Speed [Auto]
Presence Detect Select mode [Auto]
Preferred IO [Auto]
CV test [Auto]
Loopback Mode [Auto]
Data Link Feature Exchange [Disabled]
So i have finally updated my crosshair viii hero to bios 3204.
No major changes compared to bios 3003 other than i don't need to run with cpu +voltage offset anymore and UBS ports are alittle less buggy with the hp reverb g2 vr headset.
Have seen alot of talk about the OCCT "large data set" stresstest in regards to WHEA errors and how hard it was to run error-free, so i decided to give it a run
Completed without any errors on my 24/7 settings, which are: (fans on auto)
-30 allcore curve optimizer
4x8gigabyte samsung b-die @ 1900/3800mhz 1:1 with the infinity fabric.
This is my bloaty gaming windows, so latency are alittle on the high side.
So i have finally updated my crosshair viii hero to bios 3204.
No major changes compared to bios 3003 other than i don't need to run with cpu +voltage offset anymore and UBS ports are alittle less buggy with the hp reverb g2 vr headset.
Have seen alot of talk about the OCCT "large data set" stresstest in regards to WHEA errors and how hard it was to run error-free, so i decided to give it a run View attachment 39085 View attachment 39084
Completed without any errors on my 24/7 settings, which are: (fans on auto)
-30 allcore curve optimizer
4x8gigabyte samsung b-die @ 1900/3800mhz 1:1 with the infinity fabric.
This is my bloaty gaming windows, so latency are alittle on the high side.
I have a 5800x and I'm wondering if it is normal for it to be running at slightly over 4.1 GHz all-core during Prime95 v30.3 (small FFT test), and slightly over 4.5 GHz all-core during Cinebench R20 multicore test. Also the all-core CPU VID during Prime95 v30.3 (small FFT test) is lower than the all-core CPU VID during Cinebench R20 on my 5800x which may play a huge part for the higher CPU temperatures in Cinebench R20 than Prime95 v30.3 on my CPU.
I just built a small system for 'look dev' using maya and substance painter and a few other programs, instead of the 3960x workstation I also have (which I use for Houdini sims and photogrammetry), very impressed, got it in the UK for £380, and its pretty damn fast. 29932 on passmark.
Ram is slowing me down, its rated for 3200mhz, but cannot get system stable over 2666mhz. Bought it before I bought motherboard and its not on the QVL which i s a pain as its 128gb. might have to sell it and go for 64gb @ 4000mhz. I am watching ram usage whilst working on this system, and its not hitting 64gb so makes sense I guess. motherboard is MSI x570 tomahawk.
I have a 5800x and I'm wondering if it is normal for it to be running at slightly over 4.1 GHz all-core during Prime95 v30.3 (small FFT test), and slightly over 4.5 GHz all-core during Cinebench R20 multicore test. Also the all-core CPU VID during Prime95 v30.3 (small FFT test) is lower than the all-core CPU VID during Cinebench R20 on my 5800x which may play a huge part for the higher CPU temperatures in Cinebench R20 than Prime95 v30.3 on my CPU.
I think you might be confused.
If you have " SET " your multiplier value + FSB --- you will have an " all core " overclock .
The description of the behavior you say looks like " Boost " mode.
Boost will vary in " Boost " score depending on the highest core recorded.
Boost mode frequency high scores vary in Benchmark tests.
Prime95 uses a " formula " to select a maximum FSB in Boost mode
An " all core " would override this ...
Temperature is test dependent also.
If your looking for a maximum temperature -- I recommend the
Handbrake benchmark in this forum.
MSI released a final " D " BIOS today for my board
- Update to ComboAM4PIV2 1.2.0.0
- Support S.A.M technology (Re-size BAR function) to enhance GPU performance for AMD Radeon RX 6000 series.
This version went thru 2 published Betas
( D1 - Support AMD SAM(SMART ACCESS MEMORY) function
D2 - Update to ComboAM4PIV2 1.1.9.0 )
[Edit - Update]
IF1933 still has WHEA errors
IF2000 also has WHEA ---> ( fails 3Dmark now )
My BIOS screen still has missing current voltage values.
( for this chip )
The additional overhead I saw in the Beta D2 with IF1933 is not in the final BIOS.
But, it seems to have moved to IF1900.
I gladly accept this, and done for now until another BIOS release.
MSI released a final " D " BIOS today for my board
- Update to ComboAM4PIV2 1.2.0.0
- Support S.A.M technology (Re-size BAR function) to enhance GPU performance for AMD Radeon RX 6000 series.
This version went thru 2 published Betas
( D1 - Support AMD SAM(SMART ACCESS MEMORY) function
D2 - Update to ComboAM4PIV2 1.1.9.0 )
Making backups now ... curious to see if the WHEAs are gone ...
MSI dropped the 1.2.0.0 for my x570 MB recently, but I haven't tried it yet. Looks like it went straight to official on my MB as I never saw any beta versions listed. I might give it a whirl later tonight after I get playing around with my rig.
Been trying to top the #1 5600x/6800 score in Time Spy today with some trial and error configs....I'm getting really close, but coming up a little short so far.
GPU stopped scaling with clocks it looked like, but playing with the curve optimizers - offsets on a few cores bumped me over the threshold.
1st/2nd/3rd Gen AMD Ryzen™ Threadripper™ Processors
Yes
3rd Gen AMD Ryzen™ Desktop Processors
Yes
AMD Ryzen™ Desktop Processors with Radeon™ Graphics
Yes
AMD Ryzen™ Mobile Processors with Radeon™ Graphics
Yes
1st/2nd Gen AMD Ryzen™ Desktop Processors
Yes
2nd Gen AMD Ryzen™ Desktop Processors
Yes
7th Gen AMD A-Series Processors
Yes
Package Contents
The AMD Ryzen™ Chipset Driver installation package contains various independent drivers designed to support the following Microsoft® Windows® platforms. Operating System support may vary depending on your specific AMD product
Driver Name
Previous Version
New Version
Change Details
AMD Ryzen Power Plan /
AMD Processor Power Management Support
6.0.0.7
6.0.0.9
Updated Ryzen™ 7 desktop setting to support power slider and quiescent mode
Updated Ryzen™ 7 mobile slider setting for Better Battery and Better Performance
New official chipset driver posted today: https://www.amd.com/en/support/chipsets/amd-socket-am4/x570 Don't know what's changed, but almost seems like they lowered the boost-algorithm in the powerplan to help the people struggling with WHEA errors..
*edit*
Nevermind, seem to score same as normal with 24/7 settings
MSI released a final " D " BIOS today for my board
- Update to ComboAM4PIV2 1.2.0.0
- Support S.A.M technology (Re-size BAR function) to enhance GPU performance for AMD Radeon RX 6000 series.
You've gotta get with the benchmarking hacks.. I mean 'optimizations'. Probably could squeeze out 100-200 extra graphics points with a few key optimizations.
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