PIC Licensing Information User Manual
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Enchant 1300
ENCHANT 1300 Quick Start Guide For more information, please visit harmankardon.com / 1. WHAT’S IN THE BOX Soundbar Remote Control VOL Power Cables* HDMI Cable AUX cable Optical Cable (4ft, 1200mm) (4ft, 1200mm) (4ft, 1200mm) (4ft, 1200mm) Wall-Mount Brackets Product Information & Wall-mounted guide * Power cable quantities vary by region / 2. PLACE YOUR SOUNDBAR 2a. Place the soundbar on the table TV 2B. Wall mount the soundbar Use tape to stick the wall-mounted paper guide on the wall, push a pen tip through the center to mark the wall-mounted bracket location and remove the paper. 1 TV WALLMOUNTED PAPER GUIDE Using the appropriate anchors, screw the wall mount brackets on the pen mark; Fix the screws at the back of soundbar; then hook the soundbar on the wall. 3 2 x3 4 TV / 3. CONNECT YOUR SOUNDBAR 3a. Connect to your TV Option 1 (Best): HDMI TV HDMI OUT HDMI (ARC) (TV ARC) Option 2: OPTICAL TV OPTICAL OUT OPTICAL IN 3b. Connect to other devices HDMI 1 HDMI 2 HDMI 3 HDMI OUT / 4. POWER YOUR SYSTEM 1 2 3 After the power cord is plugged in, the soundbar will take about 30 seconds to start up and then will enter standby mode, ready to use. / 5. CONNECT TO WI-FI 1 2 3 HK ENCHANT 1300 Once the soundbar connects to the internet for the first time, it may detect a software update to improve performance. This update may take a few minutes to complete. / 6. CONTROL YOUR SOUNDBAR 6a. Top Panel Volume Volume Power Down Up Source Display 6b. -
Ajuba Solutions Version 1.4 COPYRIGHT Copyright © 1998-2000 Ajuba Solutions Inc
• • • • • • Ajuba Solutions Version 1.4 COPYRIGHT Copyright © 1998-2000 Ajuba Solutions Inc. All rights reserved. Information in this document is subject to change without notice. No part of this publication may be reproduced, stored in a retrieval system, or transmitted in any form or by any means electronic or mechanical, including but not limited to photocopying or recording, for any purpose other than the purchaser’s personal use, without the express written permission of Ajuba Solutions Inc. Ajuba Solutions Inc. 2593 Coast Avenue Mountain View, CA 94043 U.S.A http://www.ajubasolutions.com TRADEMARKS TclPro and Ajuba Solutions are trademarks of Ajuba Solutions Inc. Other products and company names not owned by Ajuba Solutions Inc. that appear in this manual may be trademarks of their respective owners. ACKNOWLEDGEMENTS Michael McLennan is the primary developer of [incr Tcl] and [incr Tk]. Jim Ingham and Lee Bernhard handled the Macintosh and Windows ports of [incr Tcl] and [incr Tk]. Mark Ulferts is the primary developer of [incr Widgets], with other contributions from Sue Yockey, John Sigler, Bill Scott, Alfredo Jahn, Bret Schuhmacher, Tako Schotanus, and Kris Raney. Mark Diekhans and Karl Lehenbauer are the primary developers of Extended Tcl (TclX). Don Libes is the primary developer of Expect. TclPro Wrapper incorporates compression code from the Info-ZIP group. There are no extra charges or costs in TclPro due to the use of this code, and the original compression sources are freely available from http://www.cdrom.com/pub/infozip or ftp://ftp.cdrom.com/pub/infozip. NOTE: TclPro is packaged on this CD using Info-ZIP’s compression utility. -
Bull SAS: Novascale B260 (Intel Xeon Processor 5110,1.60Ghz)
SPEC CINT2006 Result spec Copyright 2006-2014 Standard Performance Evaluation Corporation Bull SAS SPECint2006 = 10.2 NovaScale B260 (Intel Xeon processor 5110,1.60GHz) SPECint_base2006 = 9.84 CPU2006 license: 20 Test date: Dec-2006 Test sponsor: Bull SAS Hardware Availability: Dec-2006 Tested by: Bull SAS Software Availability: Dec-2006 0 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00 9.00 10.0 11.0 12.0 13.0 14.0 15.0 16.0 17.0 18.0 12.7 400.perlbench 11.6 8.64 401.bzip2 8.41 6.59 403.gcc 6.38 11.9 429.mcf 12.7 12.0 445.gobmk 10.6 6.90 456.hmmer 6.72 10.8 458.sjeng 9.90 11.0 462.libquantum 10.8 17.1 464.h264ref 16.8 9.22 471.omnetpp 8.38 7.84 473.astar 7.83 12.5 483.xalancbmk 12.4 SPECint_base2006 = 9.84 SPECint2006 = 10.2 Hardware Software CPU Name: Intel Xeon 5110 Operating System: Windows Server 2003 Enterprise Edition (32 bits) CPU Characteristics: 1.60 GHz, 4MB L2, 1066MHz bus Service Pack1 CPU MHz: 1600 Compiler: Intel C++ Compiler for IA32 version 9.1 Package ID W_CC_C_9.1.033 Build no 20061103Z FPU: Integrated Microsoft Visual Studio .NET 2003 (lib & linker) CPU(s) enabled: 1 core, 1 chip, 2 cores/chip MicroQuill SmartHeap Library 8.0 (shlW32M.lib) CPU(s) orderable: 1 to 2 chips Auto Parallel: No Primary Cache: 32 KB I + 32 KB D on chip per core File System: NTFS Secondary Cache: 4 MB I+D on chip per chip System State: Default L3 Cache: None Base Pointers: 32-bit Other Cache: None Peak Pointers: 32-bit Memory: 8 GB (2GB DIMMx4, FB-DIMM PC2-5300F ECC CL5) Other Software: None Disk Subsystem: 73 GB SAS, 10000RPM Other Hardware: None -
Veritas Netbackup™ Virtual Appliance Documentation
Veritas NetBackup™ Virtual Appliance Documentation Release 3.1.2 Veritas NetBackup™ Virtual Appliance 3.1.2 Documentation Legal Notice Copyright © 2019 Veritas Technologies LLC. All rights reserved. Veritas, the Veritas Logo, and NetBackup are trademarks or registered trademarks of Veritas Technologies LLC or its affiliates in the U.S. and other countries. Other names may be trademarks of their respective owners. This product may contain third-party software for which Veritas is required to provide attribution to the third party (“Third-party Programs”). Some of the Third-party Programs are available under open source or free software licenses. The License Agreement accompanying the Software does not alter any rights or obligations you may have under those open source or free software licenses. Refer to the Third-party Legal Notices document accompanying this Veritas product or available at: https://www.veritas.com/about/legal/license-agreements The product described in this document is distributed under licenses restricting its use, copying, distribution, and decompilation/reverse engineering. No part of this document may be reproduced in any form by any means without prior written authorization of Veritas Technologies LLC and its licensors, if any. THE DOCUMENTATION IS PROVIDED "AS IS" AND ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NON-INFRINGEMENT, ARE DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD TO BE LEGALLY INVALID. VERITAS TECHNOLOGIES LLC SHALL NOT BE LIABLE FOR INCIDENTAL OR CONSEQUENTIAL DAMAGES IN CONNECTION WITH THE FURNISHING, PERFORMANCE, OR USE OF THIS DOCUMENTATION. THE INFORMATION CONTAINED IN THIS DOCUMENTATION IS SUBJECT TO CHANGE WITHOUT NOTICE. -
The GNOME Census: Who Writes GNOME?
The GNOME Census: Who writes GNOME? Dave Neary & Vanessa David, Neary Consulting © Neary Consulting 2010: Some rights reserved Table of Contents Introduction.........................................................................................3 What is GNOME?.............................................................................3 Project governance...........................................................................3 Why survey GNOME?.......................................................................4 Scope and methodology...................................................................5 Tools and Observations on Data Quality..........................................7 Results and analysis...........................................................................10 GNOME Project size.......................................................................10 The Long Tail..................................................................................11 Effects of commercialisation..........................................................14 Who does the work?.......................................................................15 Who maintains GNOME?................................................................17 Conclusions........................................................................................22 References.........................................................................................24 Appendix 1: Modules included in survey...........................................25 2 Introduction What -
Comparing Filesystem Performance: Red Hat Enterprise Linux 6 Vs
COMPARING FILE SYSTEM I/O PERFORMANCE: RED HAT ENTERPRISE LINUX 6 VS. MICROSOFT WINDOWS SERVER 2012 When choosing an operating system platform for your servers, you should know what I/O performance to expect from the operating system and file systems you select. In the Principled Technologies labs, using the IOzone file system benchmark, we compared the I/O performance of two operating systems and file system pairs, Red Hat Enterprise Linux 6 with ext4 and XFS file systems, and Microsoft Windows Server 2012 with NTFS and ReFS file systems. Our testing compared out-of-the-box configurations for each operating system, as well as tuned configurations optimized for better performance, to demonstrate how a few simple adjustments can elevate I/O performance of a file system. We found that file systems available with Red Hat Enterprise Linux 6 delivered better I/O performance than those shipped with Windows Server 2012, in both out-of- the-box and optimized configurations. With I/O performance playing such a critical role in most business applications, selecting the right file system and operating system combination is critical to help you achieve your hardware’s maximum potential. APRIL 2013 A PRINCIPLED TECHNOLOGIES TEST REPORT Commissioned by Red Hat, Inc. About file system and platform configurations While you can use IOzone to gauge disk performance, we concentrated on the file system performance of two operating systems (OSs): Red Hat Enterprise Linux 6, where we examined the ext4 and XFS file systems, and Microsoft Windows Server 2012 Datacenter Edition, where we examined NTFS and ReFS file systems. -
Hypervisors Vs. Lightweight Virtualization: a Performance Comparison
2015 IEEE International Conference on Cloud Engineering Hypervisors vs. Lightweight Virtualization: a Performance Comparison Roberto Morabito, Jimmy Kjällman, and Miika Komu Ericsson Research, NomadicLab Jorvas, Finland [email protected], [email protected], [email protected] Abstract — Virtualization of operating systems provides a container and alternative solutions. The idea is to quantify the common way to run different services in the cloud. Recently, the level of overhead introduced by these platforms and the lightweight virtualization technologies claim to offer superior existing gap compared to a non-virtualized environment. performance. In this paper, we present a detailed performance The remainder of this paper is structured as follows: in comparison of traditional hypervisor based virtualization and Section II, literature review and a brief description of all the new lightweight solutions. In our measurements, we use several technologies and platforms evaluated is provided. The benchmarks tools in order to understand the strengths, methodology used to realize our performance comparison is weaknesses, and anomalies introduced by these different platforms in terms of processing, storage, memory and network. introduced in Section III. The benchmark results are presented Our results show that containers achieve generally better in Section IV. Finally, some concluding remarks and future performance when compared with traditional virtual machines work are provided in Section V. and other recent solutions. Albeit containers offer clearly more dense deployment of virtual machines, the performance II. BACKGROUND AND RELATED WORK difference with other technologies is in many cases relatively small. In this section, we provide an overview of the different technologies included in the performance comparison. -
Linux at 25 PETERHISTORY H
Linux at 25 PETERHISTORY H. SALUS Peter H. Salus is the author of A n June 1991, at the USENIX conference in Nashville, BSD NET-2 was Quarter Century of UNIX (1994), announced. Two months later, on August 25, Linus Torvalds announced Casting the Net (1995), and The his new operating system on comp.os.minix. Today, Android, Google’s Daemon, the Gnu and the Penguin I (2008). [email protected] version of Linux, is used on over two billion smartphones and other appli- ances. In this article, I provide some history about the early years of Linux. Linus was born into the Swedish minority of Finland (about 5% of the five million Finns). He was a “math guy” throughout his schooling. Early on, he “inherited” a Commodore VIC- 20 (released in June 1980) from his grandfather; in 1987 he spent his savings on a Sinclair QL (released in January 1984, the “Quantum Leap,” with a Motorola 68008 running at 7.5 MHz and 128 kB of RAM, was intended for small businesses and the serious hobbyist). It ran Q-DOS, and it was what got Linus involved: One of the things I hated about the QL was that it had a read-only operating system. You couldn’t change things ... I bought a new assembler ... and an editor.... Both ... worked fine, but they were on the microdrives and couldn’t be put on the EEPROM. So I wrote my own editor and assembler and used them for all my programming. Both were written in assembly language, which is incredibly stupid by today’s standards. -
Towards Better Performance Per Watt in Virtual Environments on Asymmetric Single-ISA Multi-Core Systems
Towards Better Performance Per Watt in Virtual Environments on Asymmetric Single-ISA Multi-core Systems Viren Kumar Alexandra Fedorova Simon Fraser University Simon Fraser University 8888 University Dr 8888 University Dr Vancouver, Canada Vancouver, Canada [email protected] [email protected] ABSTRACT performance per watt than homogeneous multicore proces- Single-ISA heterogeneous multicore architectures promise to sors. As power consumption in data centers becomes a grow- deliver plenty of cores with varying complexity, speed and ing concern [3], deploying ASISA multicore systems is an performance in the near future. Virtualization enables mul- increasingly attractive opportunity. These systems perform tiple operating systems to run concurrently as distinct, in- at their best if application workloads are assigned to het- dependent guest domains, thereby reducing core idle time erogeneous cores in consideration of their runtime proper- and maximizing throughput. This paper seeks to identify a ties [4][13][12][18][24][21]. Therefore, understanding how to heuristic that can aid in intelligently scheduling these vir- schedule data-center workloads on ASISA systems is an im- tualized workloads to maximize performance while reducing portant problem. This paper takes the first step towards power consumption. understanding the properties of data center workloads that determine how they should be scheduled on ASISA multi- We propose that the controlling domain in a Virtual Ma- core processors. Since virtual machine technology is a de chine Monitor or hypervisor is relatively insensitive to changes facto standard for data centers, we study virtual machine in core frequency, and thus scheduling it on a slower core (VM) workloads. saves power while only slightly affecting guest domain per- formance. -
I.MX 8Quadxplus Power and Performance
NXP Semiconductors Document Number: AN12338 Application Note Rev. 4 , 04/2020 i.MX 8QuadXPlus Power and Performance 1. Introduction Contents This application note helps you to design power 1. Introduction ........................................................................ 1 management systems. It illustrates the current drain 2. Overview of i.MX 8QuadXPlus voltage supplies .............. 1 3. Power measurement of the i.MX 8QuadXPlus processor ... 2 measurements of the i.MX 8QuadXPlus Applications 3.1. VCC_SCU_1V8 power ........................................... 4 Processors taken on NXP Multisensory Evaluation Kit 3.2. VCC_DDRIO power ............................................... 4 (MEK) Platform through several use cases. 3.3. VCC_CPU/VCC_GPU/VCC_MAIN power ........... 5 3.4. Temperature measurements .................................... 5 This document provides details on the performance and 3.5. Hardware and software used ................................... 6 3.6. Measuring points on the MEK platform .................. 6 power consumption of the i.MX 8QuadXPlus 4. Use cases and measurement results .................................... 6 processors under a variety of low- and high-power 4.1. Low-power mode power consumption (Key States modes. or ‘KS’)…… ......................................................................... 7 4.2. Complex use case power consumption (Arm Core, The data presented in this application note is based on GPU active) ......................................................................... 11 5. SOC -
Dwarf's Guide to Debian GNU/Linux
Dwarf’s Guide to Debian GNU/Linux 2001 Dale Scheetz Dwarf’s Guide to Debian GNU/Linux Copyright c 2001 Dale Scheetz Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation License, Version 1.1 or any later version published by the Free Software Foundation; with the Invariant Sections being Chapter 1 Introduction, with no Front-Cover Texts, and with the Back-Cover Texts being “The early development of the material in this work was produced with the financial support of Planet Linux. This support was intrumental in bringing this project to completion.” A copy of the license is included in the section entitled “Appendix 9: GNU Free Documentation License” which can be found on page 271. Trademark Acknowledgements All terms mentioned in this book that are known to be trademarks or service marks have been appropriately capitalized. The publisher cannot attest to the accuracy of this information. Use of a term in this book should not be regarded as affecting the validity of any trademark or service mark. Apple and Macintosh are registered trademarks of Apple Computer, Inc. CP/M is a registered trademark of Caldera, Inc. IBM is a registered trademark of International Business Machines, Inc. MS is a trademark of Microsoft Corporation. Windows is a trademark of Microsoft Corporation. X Window System is a registered trademark of X Consortium, Inc. ii dedicated to Linux users everywhere iii CREDITS First I want to thank Ian Murdock for writing the History section. His per- spectives on those early years have helped latecomers like Dwarf understand the founding principles upon which Debian is based. -
MXM-6410 Ubuntu Linux 9.04 (Jaunty Jackalope) User’S Manual V1.2
MXM-6410/APC-6410 Linux User’s Manual v1.2 Computer on Module COM Ports Two USB Hosts LCD Ethernet SD MXM-6410 Ubuntu Linux 9.04 (Jaunty Jackalope) User’s Manual v1.2 1 MXM-6410/APC-6410 Linux User’s Manual v1.2 Table of Contents CHAPTER 1 MXM-6410/APC-6410 UBUNTU LINUX (JAUNTY JACKALOPE) FEATURES .. 5 1.1 BOARD SUPPORT PACKAGE (BSP) .................................................................................................. 5 1.2 DRIVERS ......................................................................................................................................... 5 1.3 DEFAULT SOFTWARE PACKAGES ..................................................................................................... 7 1.4 SPECIAL FEATURES ....................................................................................................................... 21 CHAPTER 2 SYSTEM INFORMATION .......................................................................................... 23 2.1 STARTING EVKM-MXM-6410 ..................................................................................................... 23 2.2 JUMPER SETTING .......................................................................................................................... 24 2.3 CONNECTORS ................................................................................................................................ 29 CHAPTER 3 USING UBUNTU JAUNTY JACKALOPE ................................................................ 33 3.1 BOOTING .....................................................................................................................................