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压缩器 Pulsar Audio Pulsar Mu v1.6.4 ARM MacOS

GUISEPPE | 2 June 2025 | 89 MB

工业标准管式压缩机

使用可变偏置管式压缩机有几个原因。一个是这种压缩机可以实现的特殊压缩透明度,即使被推到极端的增益降低。另一个——也许也是最常见的——是它们能够将凝聚力或“胶水”添加到总线、整体混音和母版中。

 

不幸的是,原始的硬件是昂贵的,并且很难与“盒中”工作流集成。软件模拟是存在的,但大多数硬件所有者都认为,它们无法与原始设备进行比较,因为总有“一些东西”缺失。

 

凭借其独特的拓扑保存技术,Pulsar Mu在任何生产环境下听起来都与硬件完全相同,甚至还进行了诸如提高信噪比之类的改进。

 

主要特点

拓扑保存技术

我们的建模技术保证了原始设备行为的完美模拟。从变压器中磁通的饱和,到电子管的精确响应,再到微小校准缺陷的影响,一切都被完美地再现了。有关更多信息,请查看我们关于该主题的技术文章。

 

外部sidechain

脉冲星Mu允许定义一个外部侧链输入,因为所有的压缩机应该在数字时代。这打开了一个非常广泛的应用:躲避,降噪,过滤侧链信号与你最喜欢的EQ,甚至应用动态处理。

 

Mid-Side处理

Pulsar Mu内置可选的M/S编码和解码,使信号的单声道和立体声信息分别处理不同的设置。收听按钮简化了设置,允许您在隔离中收听中音或侧音信号,现代可视化可以设置为仅监控您正在处理的频道,因此您始终知道自己在做什么。

 

向前看,回头看看

这个创新的功能可以让你改变脉冲星Mu的增益减少的时间与输入相比。前瞻性使Mu能够在瞬变发生之前就开始对其做出反应,从而确保完美的限制。相反,后视延迟增益减少,因此快速瞬变可以不处理,而增益减少在它们之后开始。这打开了各种可能性,比如在Mu完成工作后单独剪辑瞬态。

 

柔性侧链均衡器

侧链均衡部分简单而高效。你可以让你的混音更透明,通过防止低频触发压缩与高通滤波器,调整响应的人声或其他乐器多亏了参数钟滤波器,并保持影响的顶端控制与积极或消极的高架滤波器。

 

低CPU消耗

我们花了大量的时间来优化Mu,以消耗尽可能少的系统资源——尽管工作中的算法很复杂。脉冲星Mu充分利用现代cpu的优势,以更少的资源做更多的事情。但如果你的电脑可以忍受它,你喜欢让它受苦,你可以总是打开过采样,处理速率高达384kHz!

 

系统需求

macOS 10.11或更新版本

 

An industry-standard tube compressor
There are several reasons to use a variable-bias tube compressor. One is the exceptional compression transparency that this kind of compressor can achieve, even when pushed into extreme gain reduction. Another – and perhaps the most common – is their ability to add cohesion or “glue” to buses, whole mixes and masters.

Unfortunately, the original hardware is expensive and difficult to integrate with “in-the-box” workflows. Software emulations exist but most owners of the hardware agree that they cannot be compared to the original unit, as there’s always “something” missing.

With its unique Topology Preservation Technology, Pulsar Mu sounds objectively identical to the hardware in every production context, and even makes improvements such as an increased signal-to-noise ratio.

Main Features
Topology Preservation Technology
Our modelling technology guarantees a perfect emulation of the original device’s behavior. From the saturation of the magnetic flux in the transformers, to the precise response of the tubes, to the effects of tiny calibration defects, everything is perfectly reproduced. For more info, take a look at our technical article on the subject.

External sidechain
Pulsar Mu allows to define an external sidechain input, as all compressors should in the digital age. This opens a very wide range of applications: ducking, de-essing, filtering the sidechain signal with your favourite EQ, or even applying dynamic processing.

Mid-Side processing
Pulsar Mu comes with built-in optional M/S encoding and decoding, enabling a signal’s mono and stereo information to be processed separately with different settings. The Listen buttons simplify the setting by allowing you to listen to Mid or Sides signals in isolation, and the modern visualization can be set to monitor only the channel you’re working on, so you always know what you’re doing.

Look ahead, look behind
This innovative feature lets you shift the timing of Pulsar Mu’s gain reduction compared to the input. Look-ahead enables the Mu to start reacting to transients even before they happen, ensuring perfect limiting. Conversely, the look-behind delays the gain reduction, so that fast transients can be left unprocessed while the gain reduction kicks in after them. This opens up various possibilities like clipping transients separately after Mu has done its work.

Flexible sidechain equalizer
The sidechain equalization section is simple but efficient. You can let your mix more transparent by preventing low frequencies from triggering compression with the High-Pass filter, adjust the response to vocals or other instruments thanks to the parametric bell filter, and keep the influence of the top-end under control with the positive or negative High-Shelf filter.

Low CPU consumption
We spent a ridiculous amount of time optimizing Mu to consume as few system resources as possible – despite the complex algorithms at work. Pulsar Mu takes full advantage of modern CPUs to do more with less. But if your computer can stand it and you enjoy making it suffer, you can always turn oversampling on, processing at rates up to 384kHz!

System Requirements
macOS 10.11 or newer

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