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Driver Sis 900 Fast Ethernet Adapter Para Windows 7



Many device drivers are not updated through the Microsoft Windows Update service. If you are having trouble finding the right driver, stop searching and fix driver problems faster with the Automatic Driver Update Utility. Automatic updates could save you hours of time.


i understand Network speeds will be abysmal in 98SE, but seriously only 80Kb/s? i have a 30Mbit Down Connection, i know the Ethernet adapter is atbest never going to go blazingly fast but a 10/100 in full duplex should at least achieve alot faster No? anything to fix this?




Driver Sis 900 Fast Ethernet Adapter Para Windows 7



Which adapter is it and which driver you have installed? Maybe you have a problem with your driver or your ethernet adapter is faulty or you use a slow and bad LAN cabel. Did you test your down speed? Maybe your router can give you information about the real speed.


it seems networks speeds are limiting performance from applications from the internet, the speeds im getting are a lot quicker than the op but should still be faster, for ethernet, on my 24 mbps service, i only got about 4 mbps upload and download speeds, interestingly, when i tested with wifi very close to the router, it was 4 mbps on both upload and download as well, i would have though the ethernet would have been significantly faster but they were like the same speed. this was all tested on the dell precision m70 laptop. i can watch youtube videos up to 720p hd settings fairly smoothly, although could be a little smoother, and i don't think it's the hardware that is the limiting factor as the specs are pretty high end on the laptop, but rather the network speeds being the bottleneck. for some reason 1080p hd doesn't work on youtube, it just gives an error on firefox 3.5.19 with flash 11.


perhaps modifying the maxmtu settings of windows would allow faster download/upload speeds, this was something i had experimented with a while back but i don't remember what i did and if it helped or not. i guess il just have to experiment again myself.


So I've built a Windows 98 PC, everything seems to be working well except I just can't get the darn thing on my home network. I have the drivers for the network card (SiS 900 PCI Fast Ethernet Adapter according to Windows), the network card lights up and is seen by windows and all the lights flicker as per normal when attached to my network switch but it just won't see the router.


Win98 Should pick up an IP address from any router new or old.How sure are you that its a SiS 900? Don't trust windows, it'll quite happily report the card is working well in device manager, even if its completely different card and not working at all.If you are sure try some different versions of the driver, sometimes its a matter of finding the right combination.


This driver also supports target mode for Fibre Channel cards.This support may be enabled by setting the desired role of the corevia the LSI Logic firmware utility that establishes what roles thecard can take on - no separate compilation is required.


The em(4) driver supports Gigabit Ethernet adapters based on theIntel 82540, 82541ER, 82541PI, 82542, 82543, 82544, 82545, 82546,82546EB, 82546GB, 82547, 82571, 82572, 82573, 82574, 82575, 82576,and 82580 controller chips:


Most adapters in the Intel Ethernet 700 Series withSFP+/SFP28/QSFP+ cages have firmware that requires that Intelqualified modules are used; these qualified modules are listedbelow. This qualification check cannot be disabled by thedriver.


The mlx5en(4) driver supports 100Gb, 50Gb, 40Gb, 25Gb and 10GbEthernet adapters. ConnectX-5 supports:10/20/25/40/50/56/100Gb/sspeeds. ConnectX-4 supports:10/20/25/40/50/56/100Gb/s speeds.ConnectX-4 LX supports:10/25/40/50Gb/s speeds (and reduced powerconsumption) :


The sis(4) driver supports Silicon Integrated Systems SiS 900 andSiS 7016 based Fast Ethernet adapters and embedded controllers, aswell as Fast Ethernet adapters based on the National SemiconductorDP83815 (MacPhyter) and DP83816 chips. Supported adaptersinclude:


[amd64, i386] Lucent Technologies WaveLAN/IEEE 802.11b wirelessnetwork adapters and workalikes using the Lucent Hermes, IntersilPRISM-II, Intersil PRISM-2.5, Intersil Prism-3, and SymbolSpectrum24 chipsets (wi(4)driver)


For Alpha CPUs you will find multiple generations. The original Alpha design is the21064. It was produced in a chip process called MOS4, chips made in this process arenicknamed EV4. Newer CPUs are 21164, 21264 etc. You will see designations like EV4S,EV45, EV5, EV56, EV6, EV67, EV68. The EVs with double digit numbers are slightly improvedversions. For example EV45 has an improved FPU and 16 kByte on-chip separate I & Dcaches compared to the EV4 on which it is based. Rule of thumb: the higher the digitimmediately following ``EV'' the more desirable (read: faster / more modern).


Due to the limited memory interface the system is not particularly fast in case ofcache misses. As long as you stay inside the on-chip cache the CPU is comparable to a21064 (first generation Alpha). These boards should be very cheap to obtain these days.It is a full-fledged 64 bit CPU, just don't expect miracles as far as speed goes.


UP1000 SRM can boot off an Adaptec 294x adapter. Under high I/O load conditionsmachine lockups have been observed using the Adaptec 294x. A Symbios 875 based card worksjust fine, using the sym driver. Most likely other cards based on the Symbios chips thatthe sym driver supports will work as well.


The sis(4) driversupports Silicon Integrated Systems SiS 900 and SiS 7016 based Fast Ethernet adapters andembedded controllers, as well as Fast Ethernet adapters based on the NationalSemiconductor DP83815 (MacPhyter) chip. Supported adapters include:


Probably the best and the fastest fix is to change this setting in the Windows driver. This way it should be fixed system-wide and not only under Arch (eg. live CDs, other operating systems). In Windows, under Device Manager, find your Realtek network adapter and double-click it. Under the "Advanced" tab, change "Wake-on-LAN after shutdown" to "Enable".


Distributed generation (DG) units are often interfaced to the main grid using power electronic converters including voltage-source converters (VSCs). A VSC offers dc/ac power conversion, high controllability, and fast dynamic response. Because of nonlinearities, uncertainties, and system parameters' changes involved in the nature of a grid-connected renewable DG system, conventional linear control methods cannot completely and efficiently address all control objectives. In this paper, a nonlinear adaptive control scheme based on adaptive backstepping strategy is presented to control the operation of a grid-connected renewable DG unit. As compared to the popular vector control technique, the proposed controller offers smoother transient responses, and lower level of current distortions. The Lyapunov approach is used to establish global asymptotic stability of the proposed control system. Linearisation technique is employed to develop guidelines for parameters tuning of the controller. Extensive time-domain digital simulations are performed and presented to verify the performance of the proposed controller when employed in a VSC to control the operation of a two-stage DG unit and also that of a single-stage solar photovoltaic system. Desirable and superior performance of the proposed controller is observed.


Disease spread in a society depends on the topology of the network of social contacts. Moreover, individuals may respond to the epidemic by adapting their contacts to reduce the risk of infection, thus changing the network structure and affecting future disease spread. We propose an adaptation mechanism where healthy individuals may choose to temporarily deactivate their contacts with sick individuals, allowing reactivation once both individuals are healthy. We develop a mean-field description of this system and find two distinct regimes: slow network dynamics, where the adaptation mechanism simply reduces the effective number of contacts per individual, and fast network dynamics, where more efficient adaptation reduces the spread of disease by targeting dangerous connections. Analysis of the bifurcation structure is supported by numerical simulations of disease spread on an adaptive network. The system displays a single parameter-dependent stable steady state and non-monotonic dependence of connectivity on link deactivation rate.


A continuous-time formulation of an adaptive critic design (ACD) is investigated. Connections to the discrete case are made, where backpropagation through time (BPTT) and real-time recurrent learning (RTRL) are prevalent. Practical benefits are that this framework fits in well with plant descriptions given by differential equations and that any standard integration routine with adaptive step-size does an adaptive sampling for free. A second-order actor adaptation using Newton's method is established for fast actor convergence for a general plant and critic. Also, a fast critic update for concurrent actor-critic training is introduced to immediately apply necessary adjustments of critic parameters induced by actor updates to keep the Bellman optimality correct to first-order approximation after actor changes. Thus, critic and actor updates may be performed at the same time until some substantial error build up in the Bellman optimality or temporal difference equation, when a traditional critic training needs to be performed and then another interval of concurrent actor-critic training may resume.


Because the amount of power that a piezoelectric transformer (PT) can handle is limited, multiple connections of PTs are necessary for the power-capacity improvement of PT-applications. In the connection, thermal imbalance between the PTs should be prevented to avoid the thermal runaway of each PT. The thermal balance of the multiple-connected PTs is dominantly affected by the electrothermal characteristics of individual PTs. In this paper, the thermal balance of both parallel-parallel and parallel-series connections are analyzed by electrical model parameters. For quantitative analysis, the thermal-balance effects are estimated by the simulation of the mechanical loss ratio between the PTs. The analysis results show that with PTs of similar characteristics, the parallel-series connection has better thermal balance characteristics due to the reduced mechanical loss of the higher temperature PT. For experimental verification of the analysis, a hardware-prototype test of a Cs-Lp type 40 W adapter system with radial-vibration mode PTs has been performed. 2ff7e9595c


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