- Joined
- Oct 9, 2007
- Messages
- 47,233 (7.55/day)
- Location
- Hyderabad, India
System Name | RBMK-1000 |
---|---|
Processor | AMD Ryzen 7 5700G |
Motherboard | ASUS ROG Strix B450-E Gaming |
Cooling | DeepCool Gammax L240 V2 |
Memory | 2x 8GB G.Skill Sniper X |
Video Card(s) | Palit GeForce RTX 2080 SUPER GameRock |
Storage | Western Digital Black NVMe 512GB |
Display(s) | BenQ 1440p 60 Hz 27-inch |
Case | Corsair Carbide 100R |
Audio Device(s) | ASUS SupremeFX S1220A |
Power Supply | Cooler Master MWE Gold 650W |
Mouse | ASUS ROG Strix Impact |
Keyboard | Gamdias Hermes E2 |
Software | Windows 11 Pro |
NVIDIA is bound to kickstart its competitive graphics processor lineup to AMD's Southern Islands Radeon HD 7000 series with GeForce Kepler 104 (GK104). We are learning through reliable sources that NVIDIA will implement a radically different design (by NVIDIA's standards anyway) for its CUDA core machinery, while retaining the basic hierarchy of components in its GPU similar to Fermi. The new design would ensure greater parallelism. The latest version of GK104's specifications looks like this:
SIMD Hierarchy
TMU / Geometry Domain
View at TechPowerUp Main Site
SIMD Hierarchy
- 4 Graphics Processing Clusters (GPC)
- 4 Streaming Multiprocessors (SM) per GPC = 16 SM
- 96 Stream Processors (SP) per SM = 1536 CUDA cores
TMU / Geometry Domain
- 8 Texture Units (TMU) per SM = 128 TMUs
- 32 Raster OPeration Units (ROPs)
- 256-bit wide GDDR5 memory interface
- 2048 MB (2 GB) memory amount standard
- 950 MHz core/CUDA core (no hot-clocks)
- 1250 MHz actual (5.00 GHz effective) memory, 160 GB/s memory bandwidth
- 2.9 TFLOP/s single-precision floating point compute power
- 486 GFLOP/s double-precision floating point compute power
- Estimated die-area 340mm²
View at TechPowerUp Main Site