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 楼主| 发表于 2020-4-12 17:36:11 | 显示全部楼层
本帖最后由 waversa 于 2020-4-15 13:27 编辑

Waversa W唯 Wsmart hub 上海地区客户体验服务

这是为HIFI 100M/NET串流特别开发的交换器,32bitDSD源码USB时钟恢复隔离器。
内置NET串流时钟,系统时钟,USB时钟。
内置PSU电源管理系统。
100M/1000M自适应自动翻转
00000003383724_A01.jpg waversa-ws-smarthub.jpg
73440b4549620845e04c56f6b75cced.jpg

W SmartHub的超低噪声技术通过不使用LED指示器消除了噪声的产生。正常的集线器通过LED通知每个端口数据流量,但是从音频角度来看,这是一个巨大的噪声源。LED闪烁会产生巨大的波浪噪声。W SmartHub考虑这一部分,不使用任何LED指示灯。在开发时已考虑到此类细节。
为了进一步减少交叉污染,Smarthub设计有三个独立的CPU。外部直流输入断开时,超低功耗微控制器处理信号。前面板的微控制器完全隔离,可防止LED显示屏产生的外来噪声污染。同样,也完全消除了用于显示通用以太网交换机中数据移动的LED。最后,ARM AP是第五个以太网端口,位于内部。这可以控制用户界面,允许路由器自动分配IP和更新固件。
USB集线器放置在服务器和DAC之间,而以太网放置在NAS /网络和服务器/渲染器之间。输入信号电流被隔离,同时将数据转换为代码并生成发送到不同端口的新数据包,其中每个端口都有滤波器以消除噪声。总共有16个过滤器可以容纳4个以太网端口。通过消除这种外来的电噪声,高频音频信号中经常出现的尖锐边缘不再存在,从而给人以与乙烯基系统相关的整体印象。
所有数字信号,无论是通过LAN,USB还是I2S,都具有上升沿和下降沿,并基于主时钟。如果主时钟不准确,则上升沿和下降沿不是恒定的距离,这种变化(也称为抖动)会引起高频噪声。如果时钟足够准确且电源干净,则集线器再生的数字信号将不包含广泛传播的噪声。Waversa使用自己的专有MEMS时钟,该时钟在规格上超过了以太网和USB通信。这与DAC3中使用的时钟相同,从而创建了理想的组件配对,并产生了一定的协同作用,这些协同作用得到了试听人员的一致好评。

(Waversa W唯 Wsmart hub mk2 上市准备中)

详情加微信13501647000留言hub




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 楼主| 发表于 2020-4-21 00:40:53 | 显示全部楼层
本帖最后由 waversa 于 2020-4-21 00:59 编辑

Waversa W唯 Wslim-lite PRO 上市准备中

DSD512/240WPPBTL/全数字链路一体机/LED矩阵显示屏

微信图片_20200419230920.jpg

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 楼主| 发表于 2020-4-22 23:46:13 | 显示全部楼层
本帖最后由 waversa 于 2020-4-23 00:35 编辑

Waversa W唯 WrouterV2 上市销售中
支持roon/dlna/wndr/airplay串流
内置DSD256(11.2M)解码器,USB32bit源码输出(自适应),可以搭配任何usb/dac串流播放dsd256文件。和源码dac连接效果最好。
内部架构 LAN>I2S>FPGA(1bit/DDC)>I2S/USB>


2020-04-08 112417.jpg 2020-04-07 161023.jpg


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 楼主| 发表于 2020-4-23 20:18:19 | 显示全部楼层
本帖最后由 waversa 于 2020-4-23 20:24 编辑

Waversa W唯 WLAN3 WUSB3 隔离串流线 调试中

预计价格10500元人民币

特别为NET 1000M串流音乐特别开发,18650电池供电。
架构;数据整理时钟恢复


879e02d8c29bcd168f650995eadf34a.jpg O1CN01yeD38X25pOmv1qe7M_!!264427575.jpg




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 楼主| 发表于 2020-4-29 21:21:44 | 显示全部楼层
本帖最后由 waversa 于 2020-6-18 15:51 编辑

Waversa W唯 smart hub 加强版升级
62f12108d1cc9672b8b244f068cc22f.jpg







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 楼主| 发表于 2020-5-8 23:33:48 | 显示全部楼层
本帖最后由 waversa 于 2020-5-15 00:52 编辑

Waversa W唯 Wamp pro 开发中
内置4CH+4CH 功率模块每CH 200W
可升级2CH-4CH电分
可升级HDMI/USB32bit数字输入(连接DDC)
功率每声道200/400/800W调整
可升级增加音箱接线柱输出,出厂一组音箱输出。



82d9d9ae74ffc2efe874bdd65fc7246.png 21eb4de14147ce75c22f9be043cb151.jpg

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 楼主| 发表于 2020-5-15 00:55:56 | 显示全部楼层
Waversa W唯 Wmini nas mk2V2 上市准备中


内置最新开发FLAC封装WAV (16/24/32bit)可选择


WMiniNAS_01.jpg
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 楼主| 发表于 2020-5-20 15:55:23 | 显示全部楼层
本帖最后由 waversa 于 2020-6-7 13:17 编辑

Waversa W唯 smart hub V2 LAN/USB隔离交换器


内置网络串流时钟,网络数据恢复时钟,USB数据恢复时钟。(TCXO时钟)
100M高清串流设计,
专门为DXD32bit和DSD1024的1000M高清串流准备(另外升级)
IPS显示屏,一键式网络升级


IMGP0115.JPG



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 楼主| 发表于 2020-6-6 00:02:31 | 显示全部楼层
Waversa W唯 Ws4.5aio 开发中


cd09fb656e04fc0dff493882e664a31.jpg
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 楼主| 发表于 2020-6-18 14:38:45 | 显示全部楼层
Waversa W唯 smart hub V2 上市准备中

内置wlps电源处理器
内置coxo串流时钟
提供smart hub 个性升级方案

7e9c26e1db05c44a22234f8c2718050.jpg 62f12108d1cc9672b8b244f068cc22f.jpg 287dc85674ef103ad3e76f934bfde9e.jpg abbbf372fca39ad5a09766ec8356399.jpg 69df55849157de463451df5aaa90b7f.png
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 楼主| 发表于 2020-6-22 15:10:59 | 显示全部楼层
Waversa W唯 德国 stereoplay.de测评 WSlim LITE

stereoplay_2020-07_Waversa_Wslim_LITE_1__(1)_(1)[1] (2).pdf

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发表于 2020-6-23 07:57:58 | 显示全部楼层
很高级的工业设计
HIFI系统,德国意力509音箱,德国ELAC 4 Pi Plus.2 蘑菇头高音,德国MBL1531A CD机,德国Audionet Pre G2 二代前级,德国AA TUBE PREAMP II-MK2前级,德国AA AMP III 后级,德国  FE 限量版主参考重型机架
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 楼主| 发表于 2020-6-25 23:02:22 | 显示全部楼层

Waversa W唯 核心技术介绍

Waversa Audio Processor - at the heart of it all.
55996-84c65d0bbb0261a3ec799192865774cd.jpg

To first introduce Waversa, I believe it best to discuss what is at the heart of their product line, and that common denominator is the Waversa Audio Processor. The Waversa Audio Processor is fundamentally unique in the industry, a very different approach to digital processing, designed from “the ground-up”. The Waversa approach encompasses processing by both in-house designed and built processing hardware as well as integrated custom software, rather than by using what is available in, or software manipulation of processing by, “off-the-shelf” DAC chips, or other purely software-based processing methods.



WAP (Waversa Audio Processor)


Waversa Systems’ WAP (Waversa Audio Processor) provides:

  • a hardware-based processing method with a very low jitter rate and highly accurate timing
  • a proprietary solution from digital input to processor
  • Dual WAP, capturing all signals on the optimized route
  • Centralized clock management in the signal path
  • Technology to minimize Quantization Error
  • huge information processing up to 32Bit 1.5MHz
  • the highest level signal restoration algorithm by applying medical technology

Generally, upsampling uses an FIR filter (Finite Impulse Response, fixed-form impulse response filter). Interpolation is performed during the upsampling process to correct the sound quality. FIR Interpolation is a mathematical calculation that estimates and fills between digital points.


In the case of the Saber ES90x8 series, such FIR filters are basically built-in and easily implemented by DAC manufacturers. Waversa Systems uses a proprietary WAP instead of the basic FIR filter included in the DA chip. Waversa Audio Processor (WAP) is designed in-house with a multi-stage structure including a number of proprietary FIR filters and IIR filters (Infinite Impulse Response Filter) and performs high-resolution upsampling. This high-resolution upsampled signal is processed through thousands of iterative calculations using state-of-the-art source estimation algorithms to reduce digital errors and create a waveform that is as identical as possible to the original analog signal. This is the role of WAP.
image5.png

Figure 1: Software processing using ES9038PRO and Waversa hardware-based WAP Processing


The software processing method has elements that cause errors because the processing is sequential and complicated. On the other hand, in the hardware processing method, since signal processing is performed once, at the same time, there is no room for jitter, and the timing of the audio signal is exactly the same.


Waversa Systems’ digital signal processing is hardware based, so digital signals are processed simultaneously in a simple, optimized path resulting in fewer errors, and the timing of the audio signal is handled more accurately.


Dual WAP captures all signals in order to dramatically increase processing speed and efficiently manage signal processing. The first WAP (P1) processes all input signals, and the second WAP (P2) receives signals processed by P1 on I2S and decodes signals with clocks according to sampling rates. In this way, by assigning a unique role to each digital processor, signal interference is minimized, more sophisticated clock management is performed, and sound quality benefits from accurate signals that do not compromise digital signal integrity.

image1.png

Figure 2: Dual WAP processing



The most recently developed WAP has greatly increased the amount of data that can be processed. This new WAP has succeeded its predecessor (24Bit / 368kHz) with 32Bit / 1.5MHz data processing. For comparison, in 16Bit, 65,532 digital signal processes are performed; in 32Bit, there are 4 billion digital signal processes, and the sophistication of signal processing is dramatically increased. This has made it possible to generate digital signals that are closer to analog, and the subsequent digital restoration technology has become more accurate.



The heart of WAP lies in signal restoration using 32Bit 1.5 MHz data processing, allowing for processing of huge amounts of information:

image4.png


Figure 3: Data signal conformity with 16 bit/44.1, 24 bit/192, and 32 bit/1.5 MHz processing speeds


To put it simply, the improved internal processing speed of 32Bit / 1.5MHz is similar to upgrading from DVD quality to 4K quality. This dramatically increases the detail and dynamic range that can be expressed.


The higher the WAP level, the more sophisticated the processing per unit time. This improves sound image and detail, overall producing a more natural sound. The tone of the instruments is also flexible, organic and easy to hear. Each Waversa product has different processing capabilities that when linked create a cumulative benefit.


WAP / X (Waversa Audio Processor Extension) that reproduces the sound of vacuum tubes

The characteristics of a vacuum tube amplifier that has been deeply loved for its warm tone are reproduced using digital technology. These overtone characteristics of WAP / X were developed focusing on the 1940's WE300B.

The technology adds a sense of overtones in WAP / X and WAP, realizing the sound of a transparent and warm vacuum tube, digitally reproduced technology designed to be upgradeable in future firmware updates.

High-end audio processing is a fairly complicated process involving a huge amount of data in real-time. Waversa addresses this in two parts. The most recent breakthrough is to task the new generation field-programmable gate array, which unknown to most of us, including myself, is an exceedingly complex fast logic circuit that has proven to handle these resource-intensive algorithms. By tasking the FPGA to take on the overtone processing algorithm [WAP/X], this processing can be done accurately to many harmonics in real-time.

Some say that analog sounds are bright and warm, while digital sounds are cool and crisp. It is also thought that harmonics are masked by jitter and electrical noise inherent in digital equipment. All DAC manufacturers have understandably focused on minimizing these issues. Waversa over the years was able to characterize the harmonics of a classic 1942 Western Electric 300b and digitally replicate using a hardware-based algorithm integrated into both the new generation FPGA and Waversa Audio Processor (WAP). As a result, you can feel warm overtones without the vacuum tube. In fact, if you want to hear the higher harmonics present in music but lost in the digitization of the music process, the only way to do so is virtually because there is a limit to the capability of a vacuum tube, no matter how good it is. The degree of harmonics is adjusted by the end-user as well as bypassing this type of processing.

Dynamic Range Enhancement is another Waversa-unique processing algorithm. It's not a volume control or output gain setting, but it is also adjustable by the end-user. This novel setting brings life to compressed recordings. Both the Harmonic (WAP-X) and Dynamic Range Enhancement algorithms provide significant flexibility - and more is not necessarily better. Settings are recording and end-user preference dependent. They act as seasonings that can make a gourmet meal truly sublime.


Last edited: May 24, 2020


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 楼主| 发表于 2020-6-27 16:56:19 | 显示全部楼层
Waversa W唯 高精度FPGA架构的32BIT R2R DA转换器
独立开发完成,即将装备。


waversa 32bitR2R.png

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 楼主| 发表于 2020-7-1 18:50:00 | 显示全部楼层
Waversa W唯 Wcore Wrouter ROON+ROON网桥 显示屏显示


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