bibtype |
L -
Prototype, methodology, f. module, software
|
ARLID |
0462852 |
utime |
20240103212625.8 |
mtime |
20160921235959.9 |
title
(primary) (eng) |
SDSoC 2015.4 Standalone BSP with Full HD HDMI In-Out SW and HW Demos for Automotive Zynq TE0720-03-1QF Module or Commercial Zynq TE0720-03-1CF Module on TE0701-05 Carrier Board |
publisher |
|
keyword |
HW accelerators |
keyword |
video processing |
keyword |
Zynq System-on-Module |
keyword |
board support package |
author
(primary) |
ARLID |
cav_un_auth*0101120 |
full_dept (cz) |
Zpracování signálů |
full_dept (eng) |
Department of Signal Processing |
department (cz) |
ZS |
department (eng) |
ZS |
full_dept |
Department of Signal Processing |
name1 |
Kadlec |
name2 |
Jiří |
institution |
UTIA-B |
fullinstit |
Ústav teorie informace a automatizace AV ČR, v. v. i. |
|
author
|
ARLID |
cav_un_auth*0101179 |
full_dept (cz) |
Zpracování signálů |
full_dept |
Department of Signal Processing |
department (cz) |
ZS |
department |
ZS |
full_dept |
Department of Signal Processing |
name1 |
Pohl |
name2 |
Zdeněk |
institution |
UTIA-B |
fullinstit |
Ústav teorie informace a automatizace AV ČR, v. v. i. |
|
author
|
ARLID |
cav_un_auth*0225749 |
full_dept (cz) |
Zpracování signálů |
full_dept |
Department of Signal Processing |
department (cz) |
ZS |
department |
ZS |
full_dept |
Department of Signal Processing |
name1 |
Kohout |
name2 |
Lukáš |
institution |
UTIA-B |
fullinstit |
Ústav teorie informace a automatizace AV ČR, v. v. i. |
|
source |
|
cas_special |
project |
ARLID |
cav_un_auth*0306850 |
project_id |
7H14004 |
agency |
GA MŠk |
|
abstract
(eng) |
The application note describes installation and use of a stand-alone board support package (BSP) for the Xilinx SDSoC 2015.4 for the Trenz TE0701-05 platform with Zynq XA7Z020-1CLG484Q (Automotive) device on System on Module TE0720-03-1QF or commercial Zynq XC7Z020-1CLG484C device on System on Module TE0720-03-1CF. The stand-alone BSP also includes SW demos with 3 edge detection and 2 motion detection video processing designs. The edge detection demos support use of user defined ARM C code which is executing in parallel with the generated HW video processing paths. The motion detection demos support the pipelines of HW accelerators. |
RIV |
JC |
reportyear |
2017 |
permalink |
http://hdl.handle.net/11104/0262361 |
confidential |
S |
arlyear |
2016 |
mrcbU10 |
2016 |
|