[电子管饱和放大器插件]Wave Arts Tube Saturator 2 v2.18 [MacOSX](156.32Mb)插图Tube Saturator 2 is a super accurate circuit simulation of a tube pre-amp with analog EQ, which can be overdriven gently for warming effects, or cranked for fat distortion. Like its predecessor, Tube Saturator Vintage, TS-2 is based on circuit simulation technology to capture every nuance of an analog circuit.

 

The circuit consisting of the individual tubes, resistors, and capacitors is converted into a mathematical system of equations which is numerically solved to produce the exact same sound as a real circuit. But while the original consumed large amounts of CPU power to compute the solutions in real-time, TS-2 uses large tables of pre-computed solutions.

 

The Saturation section of TS-2 runs about 7x faster than the original and yet the modelling is even more accurate. TS-2 includes the original circuit simulation of the three band Baxandall type EQ as found in many guitar amplifiers.

 

TS-2 has many other features. You can switch between 12AX7 and 12AU7 tubes for different harmonic characteristics. The EQ can be switched to run pre or post saturation. Saturation and EQ are separately switchable. Also there is a 2x oversampling mode using a very high quality resampling algorithm. Use 2x mode to attenuate aliased distortion harmonics. Use the mix control to blend the processed sound with the original. And finally, TS-2 has a gorgeous interface.

 

HIGHLIGHTS:

 

Accurate tube preamp simulator using circuit simulation technology
Two common cathode preamp stages
12AX7 and 12AU7 tube models
Drive control for distortion adjustment
Baxandall 3-band analog EQ
Saturation and EQ bypass switches
High quality 2X oversampling mode
Wet/dry mix control
Analog style metering
No latency
Up to 192 kHz sampling rate
Mono or stereo

 

Supported Operation System:

 

OS X 10.13 or later
Apple Silicon or Intel Core processor

 

TeamHCiSO

 

🏠 HomePage

 

视频介绍演示(VIP赞助会员可见):

 

 

 

声明:本站所有文章,如无特殊说明或标注,均为本站原创发布。任何个人或组织,在未征得本站同意时,禁止复制、盗用、采集、发布本站内容到任何网站、书籍等各类媒体平台。如若本站内容侵犯了原著者的合法权益,可联系我们进行处理。