GPU Wiki Architecture

GCN 1.0

GCN 1.0 (Graphics Core Next, first generation) launched in 2011 with the Radeon HD 7000 series, replacing AMD's VLIW-based TeraScale architecture with a scalar shader design. The shift to GCN marked AMD's move to a compute-oriented GPU architecture that would define the company's discrete lineup for nearly a decade.

Launch era
2011 to 2013
Process nodes
28nm (TSMC)
Predecessor
TeraScale 3 (VLIW4)
Successor
GCN 2.0
Source review
Partial

Related GPUs

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GPU Architecture Launch Date Shader Processors Memory Bus Width TDP/TBP Segment
Radeon R9 370 1024SP GCN 1.0 2015-06-12 1,024 2 GB GDDR5 256-bit 150 W Gaming
Radeon R5 340 OEM GCN 1.0 2015-05-05 384 1 GB GDDR5 64-bit 65 W Gaming
Radeon R7 350 OEM GCN 1.0 2015-05-05 384 2 GB GDDR5 128-bit 65 W Gaming
Radeon R9 270 1024SP GCN 1.0 2015-03-13 1,024 2 GB GDDR5 256-bit 150 W Gaming
Radeon HD 7970M GCN 1.0 2012-04-24 1,280 2 GB GDDR5 256-bit 100 W Gaming
FirePro S9000 GCN 1.0 2012-08-24 1,792 6 GB GDDR5 384-bit 225 W Data Center
Radeon 610 Mobile GCN 1.0 2019-05-23 320 2 GB GDDR5 64-bit 50 W Mobile
FirePro S9010 GCN 1.0 2012-08-24 1,792 3 GB GDDR5 384-bit 200 W Data Center
FirePro D300 GCN 1.0 2014-01-18 1,280 2 GB GDDR5 256-bit 150 W Data Center
FirePro D700 GCN 1.0 2014-01-18 2,048 6 GB GDDR5 384-bit 274 W Data Center

Architecture History

Tahiti (Radeon HD 7970 / HD 7950) was the flagship, introducing AMD's first 28nm desktop GPU and setting single-precision compute throughput records at launch.

More architecture facts

Architecture name
GCN 1.0
Important chips
Tahiti (HD 7970 / 7950), Pitcairn (HD 7870 / 7850), Cape Verde (HD 7770 / 7750), Oland (HD 8000M)
Memory technologies
GDDR5
Architecture feature generation
GCN 1.0 Stream Processors; DirectX 11.1; OpenCL 1.2; first generation AMD GCN compute pipeline
Consumer series
Radeon HD 7900 series, HD 7800 series, HD 7700 series
Workstation / professional series
FirePro W9000, W8000, W7000 series
Data center series
FirePro S9000, S7000 compute cards

What this architecture changed

Shift from VLIW to scalar shader design: each GCN Compute Unit contains 64 stream processors executing scalar instructions rather than the wide VLIW5 bundles of TeraScale.
Asynchronous Compute Engines (ACEs): hardware support for concurrent graphics and compute workloads.
DirectX 11.1 and OpenCL 1.2 compliance.
PCI Express 3.0 support on high-end SKUs.
GDDR5 memory interface across the lineup.

Why it mattered

GCN 1.0 established the shader architecture that AMD used across nearly a decade of consumer and professional GPUs. The scalar design proved highly amenable to general-purpose GPU compute, making GCN-generation hardware a popular choice for compute workloads and contributing to AMD's relevance in the early deep learning GPU era. Driver support for GCN 1.0 hardware remained in the standard Adrenalin stack longer than most architectures of the same age.