產品詳情
產品信息
音質
對于每個音響師、藝術家和聽眾來說,音質是設備的根本。在這個前提下,通過全面分析、測試和改進電路和技術的每個細節,Yamaha CL 系列調音臺擁有了無比純凈的音質。不僅如此,它還擁有一系列豐富的“色彩”可供選擇,從而為使用它們的音頻工作者提供了大的創新自由度。調音臺的信號處理器數量龐大,音質出眾,其中包括的Portico 5033/5043EQ 均衡器和壓縮器等設備,它們將Yamaha VCM 技術與傳奇的Rupert Neve技術完美地結合在一起。在純凈自然的硬件平臺聲音基礎上,音響調音師們獲得了大幅度創造理想聲音效果的可能。
創建理想自然的聲音平臺

CL 系列調音臺全面運用了目前先進的數字音頻技術,它所詮釋的自然音質為藝術家和音響師發揮想象力提供了充分的條件。這種音質不能單單用技術指標衡量。反復聽取行業中人士的評價,進行聽音評測,作為改善其聲音品質不可或缺的環節。開發者們花費了大量的時間,付出了巨大的努力,創造了新一代CL 系列數字調音臺。
細致入微的聲音
挑戰始于調音臺的輸入口。為了獲得超高水準的音質,每個部件——供電部分、接地部分、電路板、機械結構以及信號初始輸入階段中數不勝數的細節,都必須經過為嚴苛的精選和設計。作為開發進程中重要環節的聽音實測,也正是從這個初階段開始的。 因為改變一個電子元件可能讓聲音產生非預期的結果,所以開發流程中細微的變更也注意并進行評估。AD 和DA 轉換器也進行了嚴格的測量,以達到優良的性能。另外還有詳盡的AD/DA 主時鐘頻譜分析、FPGA 時鐘信號引導的調節,以獲取自然具音樂性的聲音。任何音頻系統的另一個重要評判指標是供電部分。這其中除了供電能力以外,供電電容的品質,以及接地功能都必須嚴格設計和制造,以確保達到低阻抗等嚴格要求。這一切使輸入信號能好地自然還原,為信號處理和效果器提供良好的基準,終產生完美的聲音。
非凡的品質和創新潛力

為了創造盡可能豐富的現場聲并滿足藝術家的要求,音響師會運用他們的經驗和想象力創造大量實用或是富于創造力的音效。因此調音師的首要工具——調音臺,必須能滿足上述一切要求。當然音質是根本,但音質只是CL 系列調音臺眾多優勢的一部分。它們還配置了先進的虛擬電路建模技術,能夠按用戶的需要添加的聲音特性,在保證聲音真實性的前提下塑造聲音。
echnical Specification of CL/QL
*1) This is the maximum number of devices shown in the ONLINE DEVICE LIST of Dante SETUP. Only devices shown in the list can be mounted from the console.
*2) Each rack in the REMOTE HA ASSIGN window can have up to 32 channels.
CL5, CL3, CL1
CL5 | CL3 | CL1 | ||
---|---|---|---|---|
Sampling frequency rate | Internal | 44.1kHz / 48kHz | 44.1kHz / 48kHz | 44.1kHz / 48kHz |
External | 44.1kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm), 48kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm) | 44.1kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm), 48kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm) | 44.1kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm), 48kHz: +4.1667%, +0.1%, -0.1%, -4.0% (±200ppm) | |
Signal delay | Less than 2.5ms, OMNI IN to OMNI OUT, Fs=48kHz | Less than 2.5ms, OMNI IN to OMNI OUT, Fs=48kHz | Less than 2.5ms, OMNI IN to OMNI OUT, Fs=48kHz | |
Total harmonic distortion | Less than 0.05% 20Hz-20kHz@+4dBu into 600Ω, OMNI IN to OMNI OUT, Input Gain = Min. | Less than 0.05% 20Hz-20kHz@+4dBu into 600Ω, OMNI IN to OMNI OUT, Input Gain = Min. | Less than 0.05% 20Hz-20kHz@+4dBu into 600Ω, OMNI IN to OMNI OUT, Input Gain = Min. | |
Frequency response | +0.5, -1.5dB 20Hz-20kHz, refer to +4dBu output @1kHz, OMNI IN to OMNI OUT | +0.5, -1.5dB 20Hz-20kHz, refer to +4dBu output @1kHz, OMNI IN to OMNI OUT | +0.5, -1.5dB 20Hz-20kHz, refer to +4dBu output @1kHz, OMNI IN to OMNI OUT | |
Dynamic range | 112dB typ.: DA Converter / 108dB typ.: OMNI IN to OMNI OUT, Input Gain = Min. | 112dB typ.: DA Converter / 108dB typ.: OMNI IN to OMNI OUT, Input Gain = Min. | 112dB typ.: DA Converter / 108dB typ.: OMNI IN to OMNI OUT, Input Gain = Min. | |
Hum & noise level | Equivalent input noise | -128dBu typ., Equivalent Input Noise, Input Gain=Max. | -128dBu typ., Equivalent Input Noise, Input Gain=Max | -128dBu typ., Equivalent Input Noise, Input Gain=Max |
Residual output noise | -88dBu, Residual output noise, ST master off | -88dBu, Residual output noise, ST master off | -88dBu, Residual output noise, ST master off | |
Crosstalk | -100dB*1, adjacent OMNI IN/OMNI OUT channels, Input Gain = Min. | -100dB*1, adjacent OMNI IN/OMNI OUT channels, Input Gain = Min. | -100dB*1, adjacent OMNI IN/OMNI OUT channels, Input Gain = Min. | |
Power requirements | US/Canada: 120V 60Hz, Japan: 100V 50/60Hz, China: 110-240V 50/60Hz, Korea: 220V 60Hz, Other: 110-240V 50/60Hz | US/Canada: 120V 60Hz, Japan: 100V 50/60Hz, China: 110-240V 50/60Hz, Korea: 220V 60Hz, Other: 110-240V 50/60Hz | US/Canada: 120V 60Hz, Japan: 100V 50/60Hz, China: 110-240V 50/60Hz, Korea: 220V 60Hz, Other: 110-240V 50/60Hz | |
Power consumption | 170W: Internal Power Supply / 200W: Simultaneous use of Internal PSU and External PW800W | 170W: Internal Power Supply / 200W: Simultaneous use of Internal PSU and External PW800W | 170W: Internal Power Supply / 200W: Simultaneous use of Internal PSU and External PW800W | |
Dimensions | W | 1053mm (41 1/2in) | 839mm (33 1/8in) | 648mm (25 5/8in) |
H | 299mm (11 3/4in) | 299mm (11 3/4in) | 299mm (11 3/4in) | |
D | 667mm (26 1/4in) | 667mm (26 1/4in) | 667mm (26 1/4in) | |
Net weight | 36kg (79.4lb) | 29kg (63.9lb) | 24kg (52.9lb) | |
Others | Temperature Range: Operating temperature range: 0 - 40℃, Storage temperature range: -20 - 60℃ | Temperature Range: Operating temperature range: 0 - 40℃, Storage temperature range: -20 - 60℃ | Temperature Range: Operating temperature range: 0 - 40℃, Storage temperature range: -20 - 60℃ |
Analog Input Characteristics
*1. Sensitivity is the lowest level that will produce an output of +4dBu(1.23V) or the nominal output level when the unit is set to maximum gain.(all faders and level controls are maximum position.)
*2. XLR-3-31 type connectors are balanced..(1=GND, 2=HOT, 3=COLD)
*3. In these specifications, 0dBu = 0.775 Vrms.
*4. All input AD converters are 24bit linear, 128times oversampling.
*5. +48V DC ( phantom power ) is supplied to OMNI IN (1-8) and TALKBACK XLR type connectors via each individual software controlled switches.
Analog Output Characteristics
*1. XLR-3-32 type connectors are balanced.( 1=GND, 2=HOT, 3=COLD )
*2. PHONES stereo phone jack is unbalanced.( Tip=LEFT, Ring=RIGHT, Sleeve=GND )
*3. In these specifications, 0dBu = 0.775 Vrms.
*4. All output DA converters are 24bit, 128times oversampling.
*5. There are switches inside the body to preset the maximum output level.
*6. The position of the level control is 10dB lowered from Max.
Digital Input & Output Characteristics
Digital Output Characteristics
*1. XLR-3-32 type connectors are balanced. (1=GND, 2=HOT, 3=COLD)
I/O Slot (1-3) Characteristics
Control I/O Characteristics
Each I/O Slot accepts a Mini-YGDAI card. Only Slot1 has a serial interface.
*1. Input pins: Internal TTL-level pull-up resistors provided (47kΩ). Output pins: Open-drain output (Vmax = 12V, max. sink current/pin = 75mA) Power pins: Output voltage Vp = 5V, max. output current Imax = 300mA
*2. Pin 4 = +12V, Pin 3 = GND, lamp rating 5W. Software voltage control.
以數字方式再現動人的模擬聲

Rupert Neve 先生是音頻行業的傳奇。他的貢獻貫穿于音頻錄音和制作行業發展的歷史和,其所推出的話筒前級放大器、均衡器、壓縮器和調音臺都成為專業音頻領域的黃金標準。
毫無疑問,Mr. Neve 對待聲音的態度非常嚴肅,因此他本人和他的Rupert Neve Designs 公司正式認可Yamaha 原型VCM(虛擬電路建模)技術是我們巨大的榮幸。他們表示,該技術是能夠準確建模豐富而具表現力的模擬聲的技術。采用VCM 技術,數字音頻會被終賦予模擬設計方案的音質。
VCM 技術由Toshi Kunimoto(“Dr. K”)先生和他的Yamaha創新部門“K’s Lab”所開發,是一種電路建模概念,深入到電容和電阻層面高效模仿每個電路部件的詳細特性,終創造出一種驚人的真實電路模擬效果,這種技術的聲音輕松超越任何普通數字模仿技術的效果。然而精確性也不是的考量標準,音樂性也同樣重要,兩者都可以通過VCM 建模技術實現。
CL 配備了的Neve Portico 5033 均衡器和Portico 5043 壓縮/ 限制器等VCM 型號效果器,而這兩種效果器都是在Yamaha 和 Rupert Neve Designs 公司緊密合作下開發的。調音臺中還包括其它VCM均衡器、壓縮器和錄音棚級效果器。相信您一定會聽出其中的不同。
內建了革命性的Dan Dugan自動混音器

通過與Dan Dugan Sound Design公司的深度合作,具有先進算法的Dan Dugan自動話筒混音技術已經被應用到CL系列調音臺。方便的設置:只需將處理器插入多16個通道,即可自動優化話筒增益的分配。增益控制平滑流暢,像一名經驗豐富的音響師正在操作一樣。系統能夠有效降低反饋和梳狀濾波問題。對于演講用途,尤其是脫稿演講時,該功能可讓調音師擺脫不斷操作推子的工作,專注于其它調音細節,從而獲得持續的高品質混音。