Poczdam 是 Xaoc Devices 為 Leibniz Binary Subsystem 所設計的二進位資料路由與位元控制模組,其核心用途在於「重新配置數位資料流」。它能在兩組 Leibniz 資料來源之間進行手動或遠端切換,並可對資料串流中的個別 bit 進行反轉(invert)、重新取樣(reclock),甚至使用內建的高速電壓控制時脈振盪器,為整個系統引入新的時間結構。
在大型 Leibniz 系統中,Poczdam 扮演的是「資料交通樞紐」的角色,讓使用者能即時改變模組之間的資料連線關係,避免重新插拔排線;而在較小的 patch 中,它同樣能成為極具創造力的工具,例如用於波形拼接、節奏破壞、或製造不可預測的數位混沌行為。
Poczdam 並非單純的 switch,而是一個具備邏輯、時脈與位元層級操作能力的控制節點。其內建的寬頻電壓控制振盪器最高可達 2 MHz,不僅能作為 Leibniz 資料的重新時脈來源,也能獨立用於實驗性數位節奏與高速位元變化的應用。
由於 Leibniz Binary Subsystem 的可塑性極高,錯誤的連線方式可能導致預期外的結果,原廠也特別建議在使用 Poczdam 前完整閱讀使用手冊,以充分理解其資料流邏輯與設計意圖。
產品特色
Leibniz Binary Subsystem 專用位元控制與資料路由模組
可在兩組 Leibniz 資料來源間進行切換
支援個別 bit 的反轉(Bit Inversion)
具備資料重新取樣(Reclocking)能力
內建電壓控制寬頻時脈振盪器(最高 2 MHz)
可使用外部 clock 作為資料時脈來源
適用於大型複雜系統,也能用於小型創意 patch
反接電源保護設計
詳細規格
模組類型
Leibniz Binary Subsystem 元件
功能
Leibniz 二進位資料路由
資料重新取樣(Reclocking)
位元反轉(Invert individual bits)
內建 CV 控制時脈產生器
內建時脈
電壓控制寬頻振盪器
最高頻率:2 MHz
尺寸
寬度:6 hp
深度:30 mm
電力需求
+12V:20 mA
-12V:10 mA
其他
Reverse power protection(反接電源保護)
系統擴充與搭配說明(Expandability)
Drezno
Leibniz 系統的 I/O 核心模組,結合 ADC 與 DAC,可將類比電壓轉為二進位資料,或將二進位資料轉回類比訊號,即使單獨使用也能進行基於位元的訊號處理。
Lipsk
二進位邏輯處理擴充模組,能對數位資料中的個別 bit 進行翻轉(invert),非常適合與 Poczdam 搭配進行更細緻的位元操作。
Jena
多功能數位模組,可作為 CV / Audio waveshaper、wavetable oscillator、Walsh function generator 或節奏產生器,並能透過 Leibniz 資料流進行掃描與控制。
Erfurt
雙向數位計數器與頻率除頻器,可作為相位來源、產生階梯電壓、節奏 gate,或回授至 Leibniz 系統中產生偽隨機與混沌行為。
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