TQ15B - Speaker Turbosound - Free user manual and instructions
Find the device manual for free TQ15B Turbosound in PDF.
| Product type | Passive subwoofer |
| Brand | Turbosound |
| Model | TQ15B |
| Speaker | 15 inches |
| Required amplification | External, compatible with Lab Gruppen PLM+ and D series with Lake presets |
| Connectors | Neutrik SpeakON NL4 (1+/- LF, 2+/- LINK) |
| Nominal impedance | 8 ohms |
| Enclosure material | Plywood with black paint |
| Dimensions (H x W x D) approx | 500 x 600 x 500 mm |
| Weight approx | 35 kg |
| Mounting options | M10 rigging points, 35 mm pole mount, slip-resistant feet |
| Required preset type | Lake only |
| Safety | Secondary suspension system mandatory for flying |
| Maintenance | Clean with a dry cloth |
| Optional accessories | Transport wheels, M20 mounting bar |
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USER MANUAL TQ15B Turbosound
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Two black industrial storage cabinets with open doors and internal compartments, shown from different angles (no text or symbols visible)TQ Series
TQ18B
Single 18" Reflex Loaded Subwoofer for Touring and Installation Applications
TQ15B
Single 15" Reflex Loaded Subwoofer for Touring and Installation Applications
2 TQ15B and TQ16B Quick Stat. Guide 3
EN
Safety Instruction
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Read these instructions.
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Keep these instructions.
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Hood all warnings.
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Followal instructions.
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Do not use this apparatus near water.
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Clean only with dry cloth
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Do not block any ventilation openings, install in
accordance with the manufacturer's Instructio
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the recycling of waste electrical and electronic equipment (EEE). The mishandling of this type of waste could have a possible negative impact on the environment and human health due to potentially hazardous substances that are generally associated with EEE. At the same time, your cooperation in the correct disposal of this product will contribute to the efficient use of natural resources. For more information about where you can take your waste equipment for recycling, please contact your local city office, or your household waste collection service.
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Thank you for choosing a Turbosound loudspeaker product for your application. If you would like further information about this or any other product, please visit our website at turbosound.com.
Unpacking the Loudspeaker
After unpacking the unit, please check carefully for damage. If damage is found, please notify your supplier at once. You, the consignee, must instigate any claim. Please retain all packaging in case of future return shipment.
About this Quick Start Guide
This QSG describes details of the TQ15B and TQ18B subwoofers. These instructions shall only be used with these components. Possession of these instructions and procedures does not imply authorisation for their use.
General Safety
The operation of your product as part of a suspended system, if installed incorrectly and improperly, can potentially expose persons to serious health risks and even death. In addition, please ensure that electrical, mechanical and acoustic considerations are discussed with qualified and certified (by local, state or national authorities) personnel prior to any installation.
Installation and setup should only be carried out by qualified and authorised personnel observing the valid local, state and other safety regulations applicable in your country. If any parts or components are missing please contact your dealer before attempting to set up the system.
It is the responsibility of the person installing the assembly to ensure that the suspension-fixing points are suitable for the intended use.
We also recommend you schedule Turbosound training with our sales partners and applications team.
Equipment used to connect to the Turbosound rigging system must be properly rated and must conform to the local, state and other safety regulations. Do not use Turbosound rigging with other types or brands of loudspeakers. This practice may compromise safety standards and Music Tribe Global Brands Ltd will not be responsible for damage or injury so caused. Do not modify the accessories, or use them in a way other than that described in this QSG. Rigging components supplied as part of a complete assembly are non-interchangeable and must not be exchanged with the component parts of any other assembly.
Welding, or any other means of permanently fixing rigging components to each other or to cabinet fixing points is not allowed. Rigging components or assemblies must only be fixed to Turbosound loudspeaker cabinets using the cabinet fixing points.
Music Tribe Global Brands Ltd assumes no liability for any damage or personal injury resulting from improper use, installation or operation of the product. Regular checks must be conducted by qualified personnel to ensure that the system remains in a secure and stable condition. Make sure that, where the product is suspended, the area underneath the product is free of human traffic. Do not suspend the product in areas which can be entered or used by members of the public.
Always refer to EASE Focus 3 modeling software error and warning indications prior to installation.
Secondary Safeties
All loudspeakers flown in theatres, studios or other places of work and entertainment shall, in addition to the principle load bearing means of suspension, be provided with an independent, properly rated, and securely attached secondary safety. Only steel wire ropes or steel chains of an approved construction and load rating shall be used as secondary safeties. Plastic-covered steel wire ropes are not permitted for use as secondary safeties.
The secondary safety suspension must be independent of the primary suspension points and capable of carrying the total system weight. The additional safety device must be mounted in a way that the loudspeaker is caught by the safety device without any drop and swing, in the event that the primary suspension fails.
Operational Safety
The procedures require the use of two or more authorised persons.
Produce a lift plan: before any lift takes place, you must formulate a lift plan that describes the exact steps and procedures that will be carried out. The plan must be shared with all assistants and stake-holders in the lift so that each person will understand their responsibilities.
Observe all instructions given on the respective instruction labels of the rigging components and loudspeakers.
When using chain hoists, make sure nobody is directly underneath or in the vicinity of the loudspeakers.
During assembly pay attention to the possible risk of crushing.
Year suitable protective clothing.
Safety Inspections
Carefully inspect rigging system components and cabinets for defects or signs of damage before proceeding to assemble the speaker to be blown, if any parts are damaged or suspect, or if there is any doubt as to the proper functioning and safety of the items DO NOT USE THEM and withdraw them from use immediately.
System Requirements
TQ15B and TQ18B subwoofers operate as a passive system and require only one amplifier channel and DSP for normal forward firing operation; Cardiolid bass set ups will require additional amplifier and DSP channels.
All TO series loudspeakers exclusively use Lake pre-sets via Lab Gruppen PLM 1 and D series L platforms, Lab Gruppen IFX Series pre-sets will be released in due time. No 3rd-party amplifier and DSP platforms are supported, no raw pre-set data is released or supported.
The TQ15B and TQ18B subvcofers have a powerful yet simple pre-set strategy utilizing the latest functionality of LAKE XP software.
Pre-set data is found either via Lake-LOAB Library (https://www.lahgruppen.com/downloads.html) or can be downloaded from https://www.turbosound.com/downloads.html
Recommended Lab Gruppen PLM+ models for Touring applications are the PLM8k41, PLM12k41 and PLM20k41.
For installations using Lab Gruppen D series L models, please use Lab Gruppen 'CAFE' software - available for download from www.labgruppen.com to determine the optimum amplifier configuration for your system.
System Cabling Requirements
To avoid wasting amplifier power, you should use heavy-duty speaker cable with a minimum wire size of 2.5 mm ^2 (74 kVG), and preferably 4 mm ^2 (12 kVG) for longer runs or where total cabinet input impedance is less than 8 ohms. For extreme cable lengths, be aware of cable impedance and resistive losses. Always observe the correct polarity.
Use genuine NEUTRIK SPEAKON CONNECTORS for reliable operation.
Attach and support the speaker cables from your amplifiers to the loudspeaker cabinets, so that no significant additional weight or lateral force is applied to the speakers by the input wiring. Input cables or link cables should never be used to angle the speakers or used as rigging in any way.
Subwoofer Cabling
NOTE: Since the TQ15B*TQ18B subwoofer is wired 1+/- = LF and 2+/- = LINK, in order to power multiple enclosures, it is advised to construct SUB LINK cables wired: 2+->1+ and 2-->1-.
To power two subpowers per amplifier channel, standard KL4 link cables from Lab Gruppen BI-wired ML4 outputs (Channel 1 = 1+/-; Channel 2 = 2+/-) can be used in conjunction with a SUB LINK cable. Refer to wiring diagrams below for further details.
To power one subwoofer per amplifier channel, a single NL4 cable from Lab Gruppen bi-wired NL4 outputs (Channel 1 = 1+/-; Channel 2 = 2+/-) connects to the first subwoofer, then the SUB LINK cable connects to the second subwoofer.
Two subwoofers per amplifier channel

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LED/SPRING/PUB + Serial Amplifier output configured and I/O software pin 1 42 and 7-5 Play Ring (Demand 1) Play Ring (Demand 1) M1.6 - M1.6 transistor conductor with substrate winding (10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x M1.6 - M1.6 transistor conductor with substrate winding (10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x10-10x M1.6 - M1.6 transistor conductor (888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888/888, 9-58 TQ13B and TQ18B Quick Stat. Guide 9
Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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USB SODRIM/PU + 5nm Amplifier output pin panel USB software on plus 1 + 2 and 3 + 4 File buttons are not to file one connection with standard wireg (1+2 to 1-3 and 3+4 to 62+1) Control: 1.0mm x 2.0mm COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM
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Output Configuration Species Motor Outputs Power Outputs Control Power Outputs Power Outputs 4 TC100 CAFE - Low 1 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Show Output Reading on Motor Panel Show Data to Output in Control PanelConnections
Caution: It is mandatory to use the official factory Lake pre-set. Failure to do so will result in component failure of the TQ passive crossover and transducers. No other 3rd party DSP or Amplifiers are supported

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Mode T015B T0180 Back Panel T015B T0180 Front Panel Connector Input SUI → Input SUI Pins 2 x 1/2, can't connect to the IF error, they are just used to link. Internal schematic 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4Rigging and Acoustic Simulation Software
The TQ158/TQ18B is not an arrayable product. It is supported in Ease Focus 3, an acoustic simulation program, available as a free download from https://www.afmg.edu/en/ease-focus

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Full EASE data can be download This will allow acoustic predict suspension to be determined. about WLL is also calculated by Turbosound TQ Series TQ15BInstallation
Safety Warning: Only authorised and certified personnel shall design and install suspended configurations. Incorrect
installation may lead to death or permanent injury. The use of a secondary safety is a mandatory safety requirement if installing this product with the M10 rigging points.
The TQ15&TQ18B has feet on the bottom for standing the speaker on a flat surface, two integral pole mount holes, and M10 mounting holes with fitted hex socket head screws.

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Pole Mount FeetGroundstacking
The TO15B/TO18B can be groundstacked in the horizontal or vertical orientation.
In the vertical orientation, try mounting two of them with the ports next to each other, as shown.
Suitable racket straps looped around the group of cabinets is advised as an additional safety measure.

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Three identical diagrams showing circular fan patterns with square markers, arranged in a grid (no text or symbols)Badge Rotation
The Turbosound badge is spring-loaded and can be rotated by hand to suit vertical or horizontal positioning.

Suspension
The TQ15B/TQ18B cabinets can be simply suspended using optional M10 shoulder eyebolts coupled to the internal rigging points provided. Remove the appropriate countersunk screws and replace them with eyebolts, which must have a thread length of at least 40 mm. Cabinets may be hung upside down if required.
Rigging Points


Eyebolts


M10 Shoulder Eyebolt
40 mm
Pole Mount
Two 35 mm holes are provided for pole mounting.
We recommend using a 35 mm pole with an M20 thread at the lower end. This type provides more security and will screw into the top receptacle of the TQ15B/TQ18B.

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Line drawing of a desktop computer with a speaker and ventilation unit (no text or symbols)Transport Wheels (option)
An optional kit allows four wheels to be mounted as shown.

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Line drawing of a rectangular industrial cart with wheels and mounting holes (no text or symbols)Lake Preset Overlays and Application Notes
All TQ series loudspeakers exclusively use Lake XP pre-sets via Lab Gruppen PLN+ and D series L platforms and the forthcoming IPX FIR-X pre-sets.
No other amplifier and DSP platforms are supported.
The TQ series has a powerful yet simple pre-set strategy utilizing the latest functionality of Lake software, along with new BLEO overlays.
Pre-set data is found either via the Lake Load Library, or can be downloaded from www.turhosound.com
TQ15B and TQ18B subwoofers each have individual 1 way passive FIR base pre-sets (1 channel DSP/AMP).
CAUTION: Do not combine TQ15B and TQ18B subwoofers on the same amplifier / DSP circuit. Failure to follow these instructions may lead to damage to the equipment.
CAUTION: Pay careful attention to output patching.
TQ15B and TQ18B modules are based on the XP module from Lake software.
This QSG refers to REV1.1 XP presets.
Lake software V7.0.7 or above must be used.
Lake XP signal flow:

flowchart
graph LR
A["INPUT 14 METERING INPUT MIXING SUM METER"] --> B["GAIN DELAY MESA EQ AP 8Q @96MHz"]
B --> C1["DELAY XOVER BR 12BQ XOVER FIR 384 taps"]
B --> C2["DELAY XOVER BR 12BQ XOVER FIR 384 taps"]
C1 --> D1["OPTIMIZER BQ 4BQ OPTIMIZER FIR 384 taps"]
C2 --> D2["OPTIMIZER BQ 4BQ OPTIMIZER FIR 384 taps"]
D1 --> E1["MIL - MULI BAND LIMTER"]
D2 --> E2["MIL - MULI BAND LIMTER"]
E1 --> F1["DSP OUTPUT"]
E2 --> F2["DSP OUTPUT"]
The download of the Lake controller includes the Lake Controller Operation Manual, which is a full tutorial of the Lake Controller and compatible hardware such as PLV+ series amplifiers
Within this OSG, we focus on the Turbosound TO series workflow and pre-set strategy, and assume basic working knowledge of the Lake Controller.
| SUBVOOFER STRATEGY ILLUSTRATION | |
| The TQ158/TQ188 subwoofers have a powerful yet simple Subwoofer pre-set strategyCurrent: for not combine TQ158 and TQ188 subwoofers on the same amplifier DSP circuit. | |
| Cardiac BFT:1 ratio1 cabinet facing Front, 1 cabinet facing BackEffective cardiac patternGood rear rejectionSome compromise of transience responseLess efficient use of subwoofers | ![]() |
| Cardiac BFF:2 ratio2 cabinets facing Front, 1 cabinet facing BackEffective cardiac patternGood rear rejectionSome compromise of transience responseThe best ratio for efficient use | ![]() |
| Invented End Fire:1 ratioFront cabinets using FRONT presetFloor cabinets using RTAR preset. Rear cabinets facing forward, at the rear in a 2 cell inverted end fire assayEffective cardiac patternGood rear rejectionExcellent transience responseEfficient use of subwoofersKnow physical depth required (500 mm + 440 mm - 500mm) | ![]() |
| Traditional:All cabinets facing FrontEffectively omnidirectionalExcellent transience response | ![]() |
| Subwoofer time alignment illustration overlay | ||
| The TC15R/TC16B autowor for pre-sets use all-pass filters to set the initial time alignment (assuming the fronts of the contacts are in line) this greatly reduces system accuracy.For example: If the fronts of the 1G speaker and autowor for are aligned, then in both pre-sets, the delay should be set to the default, which is first.However, it is not always possible to have the down speakers and the ground standard less aligned in the vertical plane.1. In this example, the sub is forward of the 1G speaker, and so the sub needs to be delayed. | 1. Sub forward | Delay adjustment of autoworers |
| 2. In this example, the down 1G speaker is forward of the subs, and so the 1G needs to be delayed.How do you find the correct delay time to align the down speakers to the ground stacked bass?Some basic knowledge of delay units can get you an acceptable result by measuring the distance between the fronts of the down speaker and the front of the ground stacked array. Remember within like software you can choose the delay unit, ms, m, or feet.1 ms imilla condensat = 0.343 m (insters) = 1.125 ft (feet).Further fine-tuning can be done by using one of the many technology standard measurement software systems, reference microphones and sound-cards. Like software others integration to many of these software systems, and further information can be found at once ballimped, com | 2. Down 1G is forward | Delay adjustment of 1G speaker |
Distance times is the difference to and to the lower array for alignment at the listening point | ||
Bienvenido
Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LAB CRISPEN PLM + Series Amplification configuration intLAB software in plus 1+1 and 2+1 R1 blocks are BL-4. Not less conductor with standardizing [1-3 to 5-7] and [6 to 7-9] Quick Tensioned 70 volts INFLTURES R1=1.2V, 2.2V INFLTURES R1=1.2V, 2.2V INFLTURES R1=1.2V, 2.2V INFLTURES R1=1.2V, 2.2V INFLTURES R1=1.2V, 2.2V INFLTURES R1=1.2V, 2.2V INFLTURE S R1=1.2V, 2.2V INFLTURE S R1=1.2V, 2.2V INFLTURE S R1=1.2V, 2.2V INFLTURE S R1=1.2V, 2.2V INFLTURE S R1=1.2V, 2.2V INFLTURE S R1=0.8V, 2.2V INFLTURE S R1=0.8V, 2.2V INFLTURE S R1=0.8V, 2.2V INFLTURE S R1=0.8V, 2.2V INFLTURE S R1=0.8V, 2.2V INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURE S R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8V, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2. INFLTURES R1=-0.8W, 2.
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Output Configuration Balance Market Output and Power Output Input Configuration Power Output A. T0135 GPR - Low F - 1 B. T0135 GPR - Low B - 4 C. C-10000 - PR - 1 D. C-10000 - PR - 28 Show Output Resulting on Median FilterConexiones
Full EASE data can be downloaded from www.turbosound.com This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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TQ15B Turboaround TQ Series TQ15B Thermal Temperature Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Volume Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000) Variance (0.0000)Instalación
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LME GRAPES P, N + 5ms Amplifier outputs configured in LME software pin 1 -- and 2+/- PLA-ML10 train condenser cable with standard winding (1=1 to 1+1 and 2=1 to 3+1) PLA-ML10 bus condenser "SHE LME" cable cross-wed from pin 2 to 1+1 and pin 2 to 1- PLA-ML10 bus condenser "SHE LME" cable cross-wed from pin 2 to 1+1 and pin 2 to 1-Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LED GRAPPER PLM + Series Analog input ports connected in L&E software on pins 1 to 2 and 3 to 4 F1 cables are 50A - 50Hz conductor with contact wiring (50A to 100A) and (50A to 100A) FIREL SIZE 100A-100A-100A FIREL Fines Fired-in/50A-100A FIREL Fines Fired-in/50A-100A FIREL Fines Fired-in/50A-100A FIREL Fines Fired-in/50A-100A FIREL Fines Fired-in/50A-100A FIREL Fines Fired-in/50A-1 FIREL Fines Fired-in/50A-1 FIREL Fines Fired-in/50A-1
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Output Configuration Reserve Motor Outputs and Power Outputs Color Power Outputs Color 4. TO105 5/4WD / Low 1 - 1 - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - Show Output Raising on Motor Set at Description: Top line is a constant inputConnexions
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Mode T015B T0180 Back Panel T015B T0180 Front Panel Connector Input SUI+ Input SUI- Pins 2 x 1/2, can't connect to the IF error, they are just used to link. Internal schematic 10.4 10.5 10.6 10.7 10.8 10.9 11.0 11.1 11.2 11.3 11.4 11.5 11.6 11.7 11.8 11.9 12.0 12.1 12.2 12.3 12.4 12.5 12.6 12.7 12.8 12.9 13.0 13.1 13.2 13.3 13.4 13.5 13.6 13.7 13.8 13.9 14.0 14.1 14.2 14.3 14.4 14.5 14.6 14.7 14.8 14.9 15.0Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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Turbocloud TQ Series TQ15B - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.0000 - 0.12347869 - 1.11111111111111111111111111111111111111111111111111111111111111111111111111111111111Installation
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Technical line drawing of two industrial fan units with ventilation grilles and mounting brackets (no text or symbols)Eyebolts


M10 Shoulder Eyebolt
40 mm
Montage sur poteau
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Line drawing of a desktop audio workstation with a stand and sound grille (no text or symbols)natural_image
Line drawing of a rectangular wheeled cart with wheels and side-mounted buttons (no text or symbols)Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LAB DRIPPTS PLM - Series Amplifier outputs contigand in LABE for have on pin 1 +1 and 2 +1 All cables are set - Not free conductor with claddinging [Pin 1 to 2] and Pin 3 to 4 Quick: 1.0 micro Forward THE MUS-RES MS1-1 and 2+1 THE MUS-RES MS1-1 and 2+1 THE MUS-RES MS1-1 and 2+1 THE MUS-RES MS1-1 and 2+1 L300 Power Fusible/Max-1/2 TO SERIES MS1-1 & 2 FRONT POWER Fusible/Max-1/2 TO SERIES MS1-1 & 2 MAX/Max-1 Fusible/Max-2 /
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Output Configuration Source: Motor Output and Power Output Input Destination: Power Output Color A: TC1352-CRED - Low 1 B: TC1352-CRED - Low 8 C: CCL HWD - Low 1 D: CCL HWD - Low 8 Show Output Reading on Motor OutputAnschlüsse
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Mode Back Panel and Front Panel Connector Internal Schematic 10/15F 10/182 Back Panel Turboelectric Input SIB = Input SIB Pens 2 x 1/2 con net connect to the IF core, they are just used to link. 10/15F 10/182 Front Panel Rust Connected Rust Connected Front input SIB = Front input SIB = 1 2 3 4 5 6 7 8 9 10.4 Input 1 Input 2 Output 1 Output 2 Output 3 Output 4 Output 5 Output 6 Output 7 Output 8 Output 9 Output 10 Output 11 Output 12 Output 13 Output 14 Output 15 Output 16 Output 17 Output 18 Output 19 Output 20 Output 21 Output 22 Output 23 Output 24 Output 25 Output 26 Output 27 Output 28 Output 29 Output 30 Output 31 Output 32 Output 33 Output 34 Output 35 Output 36 Output 37 Output 38 Output 39 Output 40 Output 41 Output 42 Output 43 Output 44 Output 45 Output 46 Output 47 Output 48 Output 49 Output 50 Output 51 Output 52 Output 53 Output 54 Output 55 Output 56 Output 57 Output 58 Output 59 Output 60 Output 61 Output 62 Output 63 Output 64 Output 65 Output 66 Output 67 Output 68 Output 69 Output 70 Output 71 Output 72 Output 73 Output 74 Output 75 Output 76 Output 77 Output 78 Output 79 Output 80text_image
Full EASE data can be download This will allow acoustic predict suspension to be determined. about WLL is also calculated byInstallation
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Line drawing of a desktop computer with a speaker mounted on top (no text or symbols)natural_image
Line drawing of a rectangular industrial cart with wheels and mounting feet (no text or symbols)text_image
M4-16-50 microcontroller "2000" cable box wind amp pin 2-1 to 1-1 and pin 2-1 to 1- M4-16-50 microcontroller "2000" cable box wind amp pin 2-1 to 1-1 and pin 2-1 to 1-1Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LED GRAPTE PLM + Single Amplifier outputs: configand m1.84E-6/4 have on pin 1 +1 and 2 +1 All cables are 50A - 34-inch conductor with conductivity. [10x10^3 / 2x10^3 / 3x10^3 / 4x10^3 / 5x10^3] QUICK: 11mmed Forward DREAM SIZE: PSS 1 - 2 and 2 + DREAM SIZE: PSS 1 - 2 and 2 + FIRET FLOW: FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x10^3 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x2 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x3 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x4 FIRE TIN: 5x5 FIRE TIN: 5x5 FIRE TIN: 5x5 FIRE TIN: 5x5 FIRE TIN: 5x5 FIRE TIN: 5x6 FIRE TIN: 5x6 FIRE TIN: 5x6 FIRE TIN: 5x6 FIRE TIN: 5x6 FIRE TIN: 5x7 FIRE TIN: 5x7 FIRE TIN: 5x7 FIRE TIN: 5x7 FIRE TIN: 5x8 FIRE TIN: 5x8 FIRE TIN: 5x8 FIRE TIN: 5x8 FIRE TIN: 5x9 FIRE TIN: 5x9 FIRE TIN: 5x9 FIRE TIN: 5x9 FIRE TIN: 5x10 FIRE TIN: 5x10 FIRE TIN: 5x10 FIRE TIN: 5x10 FIRE TIN: 5x10 FIRE TIN: 5x11 FIRE TIN: 5x11 FIRE TIN: 5x11 FIRE TIN: 5x11 FIRE TIN: 5x12 FIRE TIN: 5x12 FIRE TIN: 5x12 FIRE TIN: 5x12 FIRE TIN: 5x12 FIRE TIN: 5x12 FIRE TIN: 5x13 FIRE TIN: 5x13 FIRE TIN: 5x13 FIRE TIN: 5x13 FIRE TIN: 5x13 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14 FIRE TIN: 5x14
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Output Configuration Source: Motor Output and Power Output only Destination: Power Outputs Gray Orange A: TC152-CATD / Low 1 - - - - - - B: TC152-CATD / Low 2 - - - - C: CIL help - - - - D: CIL help - - - Other Output Reading as Median LinearConexões
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Mode T0150 TO180 Back Panel T0150 TO180 Front Panel Connector Input SUI → Input SUI Pins 2 x 1/2 on own connect to the IF core, they are just used to link. Internal schematic 10.4 10.6 10.8 10.9 11.1 10.4 10.6 10.8 10.9 11.1 10.4 10.6 10.8 11.1Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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TQ15B Turboaround TO Series TQ15B Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: 2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -2000 Temperature: -200Instalação
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Line drawing of a desktop computer with a mounted microphone and ventilation unit (no text or symbols)natural_image
Line drawing of a rectangular industrial cart with wheels and mounting feet (no text or symbols)text_image
L10542/PTF10 - Sensor Amplifier output configerr in L10542/PTF10 as pin 1 (4) and (2) M4- M4-6-6-6 conductor with standard wire (4) and (2) (4) M4- M4-6-6-6 conductor with standard wire (4) and (2) (4) M4- M4-6-6-6 conductor with standard wire (4) and (2) (4) M4- M4-6-6-6 conductor with standard wire (4) and (2) (4) M4- M4-6-6-6 conductor (4) and (2) (4) M4- M4-6-6-6 conductor (4) and (2) (4) M4- M4-6-6-6 conductor (4) and (2) (4) M4- M4-6-6-6 conductor (4) and (2) (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductor (4) M4- M4-6-6-6 conductors (4) M4- M4-6-6-6 conductors (4) M4- M4-6-6-6 conductors (4) M4- M4-6-6-6 conductors (4) M4- M4-6-6-6 conductors (4) M4- M4-6-6-6 conductors (4) M4- M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, M4, N1Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LAB DRIPPTES PLM + Series Amplifier outputs connected m1.841.1.1/4.0/2.1+ Pole 1 + 1/2 and 2 + 1- Pole 3 Pole 5 Pole 7 Pole 9 Pole 11 Pole 13 Pole 15 Pole 17 Pole 19 Pole 21 Pole 23 Pole 25 Pole 27 Pole 29 Pole 31 Pole 33 Pole 35 Pole 37 Pole 39 Pole 41 Pole 43 Pole 45 Pole 47 Pole 49 Pole 51 Pole 53 Pole 55 Pole 57 Pole 59 Pole 61 Pole 63 Pole 65 Pole 67 Pole 69 Pole 71 Pole 73 Pole 75 Pole 77 Pole 79 Pole 81 Pole 83 Pole 85 Pole 87 Pole 89 Pole 91 Pole 93 Pole 95 Pole 97 Pole 99 Pole 101 Pole 103 Pole 105 Pole 107 Pole 109 Pole 111 Pole 113 Pole 115 Pole 117 Pole 119 Pole 121 Pole 123 Pole 125 Pole 127 Pole 129 Pole 131 Pole 133 Pole 135 Pole 137 Pole 139 Pole 141 Pole 143 Pole 145 Pole 147 Pole 149 Pole 151 Pole 153 Pole 155 Pole 157 Pole 159 Pole 161 Pole 163 Pole 165 Pole 167 Pole 169 Pole 171 Pole 173 Pole 175 Pole 177 Pole 179 Pole 181 Pole 183 Pole 185 Pole 187 Pole 189 Pole 191 Pole 193 Pole 195 Pole 197 Pole 199 Pole 201 Pole 203 Pole 205 Pole 207 Pole 209 Pole 211 Pole 213 Pole 215 Pole 217 Pole 219 Pole 221 Pole 223 Pole 225 Pole 227 Pole 229 Pole 231 Pole 233 Pole 235 Pole 237 Pole 239 Pole 241 Pole 243 Pole 245 Pole 247 Pole 249 Pole 251 Pole 253 Pole 255 Pole 257 Pole 259 Pole 261 Pole 263 Pole 265 Pole 267 Pole 269 Pole 271 Pole 273 Pole 275 Pole 277 Pole 279 Pole 281 Pole 283 Pole 285 Pole 287 Pole 289 Pole 291 Pole 293 Pole 295 Pole 297 Pole 299 Pole 301
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Output Configuration Reserve Module Outputs and Power Outputs Unit Configuration Power Outputs A: TC103 GARC - Low 1 B: TC103 GARC - Low 2 C: TC103 GARC - Low 3 D: TC103 GARC - Low 4 E: TC103 GARC - Low 5 F: TC103 GARC - Low 6 G: TC103 GARC - Low 7 Show Output Resulting on Module FocusConnessioni
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Mode T015B T0180 Back Panel T015B T0180 Front Panel Connector Input SUI → Input SUI Pins 2 x 1/2 on wire connect to the IF encoder, they are just used to link. Internal Schematic 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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Turbosound TQ Series TQ15B Temperature: 100.000 (°C) Intensity: 100.000 (W) Distance: 500.000 (km) Slope: 3.74 (cm/s) Heatmap: 100.000 (mPa) Color: Red = High, Green = Low -1.00 (nm) -1.60 (nm) -2.20 (nm) -2.80 (nm) -3.40 (nm) -4.00 (nm) -4.60 (nm) -5.20 (nm) -5.80 (nm) -6.40 (nm) -7.00 (nm) -7.60 (nm) -8.20 (nm) -8.80 (nm) -9.40 (nm) -10.00 (nm) -10.60 (nm) -11.20 (nm) -11.80 (nm) -12.40 (nm) -13.00 (nm) -13.60 (nm) -14.20 (nm) -14.80 (nm) -15.40 (nm) -16.00 (nm) -16.60 (nm) -17.20 (nm) -17.80 (nm) -18.40 (nm) -19.00 (nm) -19.60 (nm) -20.20 (nm) -20.80 (nm) -21.40 (nm) -22.00 (nm) -22.60 (nm) -23.20 (nm) -23.80 (nm) -24.40 (nm) -25.00 (nm) -25.60 (nm) -26.20 (nm) -26.80 (nm) -27.40 (nm) -28.00 (nm) -28.60 (nm) -29.20 (nm) -29.80 (nm) -30.40 (nm) -31.00 (nm) -31.60 (nm) -32.20 (nm) -32.80 (nm) -33.40 (nm) -34.00 (nm) -34.60 (nm) -35.20 (nm) -35.80 (nm) -36.40 (nm) -37.00 (nm) -37.60 (nm) -38.20 (nm) -38.80 (nm) -39.40 (nm) -39.80 (nm) -41.20 (nm) -41.80 (nm) -42.40 (nm) -43.00 (nm) -43.60 (nm) -44.20 (nm) -44.80 (nm) -45.40 (nm) -46.20 (nm) -46.80 (nm) -47.40 (nm) -48.20 (nm) -48.80 (nm) -49.40 (nm) -50.00 (nm) -51.20 (nm) -51.80 (nm) -52.40 (nm) -53.00 (nm) -53.60 (nm) -54.20 (nm) -54.80 (nm) -55.40 (nm) -56.20 (nm) -56.80 (nm) -57.40 (nm) -58.20 (nm) -58.80 (nm) -59.40 (nm) -61.20( nm)Installazione
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Line drawing of a desktop audio workstation with a microphone and fan base (no text or symbols)natural_image
Line drawing of a four-wheeled cart with wheels and side-mounted buttons (no text or symbols)text_image
M4-200 Microcontroller Sensors Amplifier outputs configured in 168E software engine 1 +/- +/ - - - - - - M4-200 Micro conductor cable with standard wire (3+7 to 1+7) and (2+7 to 2+7) M4-200 Micro Channel 1 M4-200 Micro Channel 1 M4-200 Micro Channel 2 M4-200 Micro Channel 2 M4-200 Micro conductor "588 LMS" cable cross-wired bump per 2 to 1 and per 2 to 1Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LAB-CRTPSPL R-1 - Series Amplifier targets configuration in LAST tool on pre 1 +1 and 2 +1 4000 amplifier R-1 - Linear conductor with standard wiring [100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100x100 COM TOMSPL COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COM COS TO SERMS RPT 7.5 MPD TO SENSER 7.5 MPD TO PETER 7.5 MPD CO TO SERMS RPT 7.5 MPD TO SENSER 7.5 MPD CO TO SERMS RPT 7.5 MPD TO SENSER 7.5 MPD CO TO SERMS RPT 7.5 MPD TO SENSER 7.5 MPD CO TO SERMS RPT 7.5 MPD TO SENSER 7.5 MPD
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Output Configuration Input Measure Outputs and Power Outputs Color Power Outputs A: TICESI CAFD - Type 1 B: TICESI CAFD - Type 2 C: GLU NG - Type 3 D: GLU NG - Type 4 Show Output Reading on Mode LinearAansluitingen
Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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TQ15B Turbobound TO Series TQ15B S - 0.0000 S - 0.0001 S - 0.0002 S - 0.0003 S - 0.0004 S - 0.0005 S - 0.0006 S - 0.0007 S - 0.0008 S - 0.0009 S - 0.0010 S - 0.0011 S - 0.0012 S - 0.0013 S - 0.0014 S - 0.0015 S - 0.0016 S - 0.0017 S - 0.0018 S - 0.0019 S - 0.0020 S - 0.0021 S - 0.0022 S - 0.0023 S - 0.0024 S - 0.0025 S - 0.0026 S - 0.0027 S - 0.0028 S - 0.0029 S - 0.0030 S - 0.0031 S - 0.0032 S - 0.0033 S - 0.0034 S - 0.0035 S - 0.0036 S - 0.0037 S - 0.0038 S - 0.0039 S - 0.0040 S - 0.0041 S - 0.0042 S - 0.0043 S - 0.0044 S - 0.0045 S - 0.0046 S - 0.0047 S - 0.0048 S - 0.0049 S - 0.0050 S - 0.0051 S - 0.0052 S - 0.0053 S - 0.0054 S - 0.0055 S - 0.0056 S - 0.0057 S - 0.0058 S - 0.0059 S - 0.0060 S - 0.0111 S - 1.7666Installatie
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Line drawing of a desktop audio workstation with a microphone and control panel (no text or symbols)natural_image
Line drawing of a rectangular industrial cart with wheels and mounting holes (no text or symbols)Lake Preset-Overlays en toepassingsopmerkingen
Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LED GNDPTOS PL 10 - Series Amplifier units configured in LATE software on pre-1 to pre-2 4.1 4.1 blocks on 50A - 3000 micro- conductor with clock wiring [10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x10x CO PLS SERIES RPG 1.2 PB TDS 5.5 PB PAP 5.5 PB LIMI Power Fond in 5.5 PB CO PLS SERIES RPG 1.2 PB TDS 5.5 PB PAP 5.5 PB FRONT Power Fond in 5.5 PB CO PLS SERIES RPG 1.2 PB TDS 5.5 PB PAP 5.5 PB FAC/Flow: Fond in 5.5 PB /
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Output Configuration Select: Mixture Outputs and Power Outputs Generation: Voltage Range A: TC100-GWFD - Low F B: TC100-GWFD - Low R C: 3.5 Temp D: 3.5 Temp Show Output Flanking to Mixture FilterAnslutningar
Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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Line drawing of a desktop computer with a speaker mounted on top, no text or symbols presentTransporthjul (tillval)
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Line drawing of a rectangular industrial cart with wheels and mounting feet (no text or symbols)Cardiod BFF (back, forward, forward)
Using 4-Core NL4 cable, 2 DSP and 2 amplifier channels

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LAB GROUP/PSI 5.1 - Series Amplifier output configuration in LUBS software on plus 1 +1 and 2 +1 A1 cable is 504 - 164 line conductor with cooling (10x to 1x² and 2x² to 3x²) Circuit: 11 microamm 2 microamm F2001 Fuser Fusolite Pin 1-5 F2001 Fuser Fusolite Pin 2-5 F2001 Fuser Fusolite Pin 3-5
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Output Configuration Input Molecular Outputs and Power Outputs Design Power Outputs A: TCK150 CIRC - Low P B: TCK150 CIRC - Low B C: Output D: Output E: Output F: Output G: Output Show Output Resulting on Module RecalPodłączenia
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Mode T015B T0180 Back Panel T015B T0180 Front Panel Connector Input SUI → Input SUI Pins 2 x 1/2 on the connection to the IF encoder, they are just used to link. Internal schematic 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4 10.4Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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Turboquard TQ Series TQ15B Temperature: 20.000-24.000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 100000000 Volume: 1,000,000 Volume: 1,500,000 Volume: 2,000,000 Volume: 2,500,000 Volume: 3,000,000 Volume: 3,500,000 Volume: 4,000,000 Volume: 4,500,000 Volume: 5,000,000 Volume: 5,500,000 Volume: 6,000,000 Volume: 6,500,000 Volume: 7,000,000 Volume: 7,500,000 Volume: 8,000,000 Volume: 8,500,000 Volume: 9,000,000 Volume: 9,500,000 Volume: 1,5,555,555 Volume: 2,5,555,555 Volume: 3,5,555,555 Volume: 4,5,555,555 Volume: 5,5,555,555 Volume: 6,5,555,555 Volume: 7,5,555,555 Volume: 8,5,555,555 Volume: 9,5,555,555 Volume: 12,5,555,555 Volume: 13,5,555,555 Volume: 14,5,555,555 Volume: 16,5,555,555 Volume: 18,5,555,555 Volume: 21,5,555,555 Volume: 23,5,555,555 Volume: 26,5,555,555 Volume: 29,5,555,555 Volume: 32,5,555,555 Volume: 36,5,555,555 Volume: 41,5,566,666 Volume: 46,6,666,666 Volume: 49,7,666,666 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: 49.7 Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -12.2% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Volume: -8.8% Variance (x-axis) = Variance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance (y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y-axis) Balance (x-axis) = Balance( y axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axis) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes) Balance (x-axis) = Balance( x axes)Instalacja
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Line drawing of a desktop computer with a speaker mounted on top (no text or symbols)natural_image
Line drawing of a rectangular industrial cart with wheels and mounting holes (no text or symbols)text_image
US020751-3.1 ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85V/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: 6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0V ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 ACI: -6.85G/4.0 A1: Ritter is made on a closed wire. C1: Ritter is closed on a closed wire. C2: Ritter is made on a closed wire. C3: Ritter is made on a closed wire. C4: Ritter is made on a closed wire. C5: Ritter is made on a closed wire. C6: Ritter is made on a closed wire. C7: Ritter is made on a closed wire. C8: Ritter is made on a closed wire. C9: Ritter is made on a closed wire. C10: Ritter is made on a closed wire. C11: Ritter is made on a closed wire. C12: Ritter is made on a closed wire. C13: Ritter is made on a closed wire. C14: Ritter is made on a closed wire. C15: Ritter is made on a closed wire. C16: Ritter is made on a closed wire. C17: Ritter is made on a closed wire. C18: Ritter is made on a closed wire. C19: Ritter is made on a closed wire. C20: Ritter is made on a closed wire. C21: Ritter is made on a closed wire. C22: Ritter is made on a closed wire. C23: Ritter is made on a closed wire. C24: Ritter is made on a closed wire. C25: Ritter is made on a closed wire. C26: Ritter is made on a closed wire. C27: Ritter is made on a closed wire. C28: Ritter is made on a closed wire. C29: Ritter is made on a closed wire. C30: Ritter is made on a closed wire. C31: Ritter is made on a closed wire. C32: Ritter is made on a closed wire. C33: Ritter is made on a closed wire. C34: Ritter is made on a closed wire. C35: Ritter is made on a closed wire. C36: Ritter is made on a closed wire. C37: Ritter is made on a closed wire. C38: Ritter is made on a closed wire. C39: Ritter is made on a closed wire. C40: Ritter is made on a closed wire. C41: Ritter is made on a closed wire. C42: Ritter is made on a closed wire. C43: Ritter is made on a closed wire. C44: Ritter is made on a closed wire. C45: Ritter is made on a closed wire. C46: Ritter is made on a closed wire. C47: Ritter is made on a closed wire. C48: Ritter is made on a closed wire. C49: Ritter is made on a closed wire. C50: Ritter is made on a closed wire. C51: Ritter is made on a closed wire. C52: Ritter is made on a closed wire. C53: Ritter is made on a closed wire. C54: Ritter is made on a closed wire. C55: Ritter is made on a closed wire. C56: Ritter is made on a closed wire. C57: Ritter is made on a closed wire. C58: Ritter is made on a closed wire. C59: Ritter is made on a closed wire. C60: Ritter is made on a closed wire. C61: Ritter is made on a closed wire. C62: Ritter is made on a closed wire. C63: Ritter is made on a closed wire. C64: Ritter is made on a closed wire. C65: Ritter is made on a closed wire. C66: Ritter is made on a closed wire. C67: Ritter is made on a closed wire. C68: Ritter is made on a closed wire. C69: Ritter is made on a closed wire. C70: Ritter is made on a closed wire. C71: Ritter is made on a closed wire. C72: Ritter is made on a closed wire. C73: Ritter is made on a closed wire. C74: Ritter is made on a closed wire. C75: Ritter is made on a closed wire. C76: Ritter is made on a closed wire. C77: Ritter is made on a closed wire. C78: Ritter is made on a closed wire. C79: Ritter is made on a closed wire. C80: Ritter is made on a closed wire. C81: Ritter is made on a closed wire. C82: Ritter is made on a closed wire. C83: Ritter is made on a closed wire. C84: Ritter is made on a closed wire. C85: Ritter is made on a closed wire. C86: Ritter is made on a closed wire. C87: Ritter is made on a closed wire. C88: Ritter is made on a closed wire. C89: Ritter is made on a closed wire. C90: Ritter is made on a closed wire. C91: Ritter is made on a closed wire. C92: Ritter is made on a closed wire. C93: Ritter is made on a closed wire. C94: Ritter is made on a closed wire. C95: Ritter is made on a closed wire. C96: Ritter is made on a closed wire. C97: Ritter is made on a closed wire. C98: Ritter is made on a closed wire. C99: Ritter is made on a closed wire. A1-3-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC- DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-DC-64 TC153 and TC193 65
クイックス タートガイド
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USB GRIFF/FLU + Series Amplifier outputs configured or IAE software on input 1 to 2 and 3 to 4 All cables are TU - No other conductor with standard wiring (1 to 2 to 3 to 4 and 2 to 3 to 4) Control 1 Receiver 2 Receiver The 10A-10B5 FRE 1 to 2 and 3 The 10A-10B5 FRE 1 to 2 and 3 The 10A-10B5 FRE 1 to 2 and 3 The 10A-10B5 FRE 1 to 2 and 3 The 10A-10B5 FRE 1 to 2 and 3 The 10A-10B5
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Output Configuration Description Module Outputs Net Power Outputs Int Power Outputs A: TOTTER CARD - Low F B: TOTTER CARD - Low B C: CLTency D: CLTency Show Output Rooting on Multiple Process接続
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Mode Back Panel and Front Panel Connector Internal Schematic 10158 10188 Back Panel Turboelectric Input SUI + Input SIB Pens 2 x 1/2, on root, connect to the IF center, they are just used to link. 10158 10188 Front Panel Next Connectors Next Connectors Front Input SUI + Front Input SIB - 10.4 Input 10.4 Input 10.4 Inputtext_image
Full EASE data can be download This will allow acoustic predict suspension to be determined. about WLL is also calculated by C:\Turboond\TO Series\TO15B66 TC13 and TC18 67
クイックス タートガイド
インストール
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Three identical diagrams showing a circular fan or vent with mounting holes, arranged vertically (no text or symbols)バッジの回転
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Line drawing of a computer monitor mounted on a base unit (no text or symbols)@送ホイール (オプション)
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Line drawing of a rectangular industrial cart with wheels and mounting holes (no text or symbols)text_image
USB/UPPERUM + Series amplifier output configured in LME software units 1 (1-2) and (3-4) Display Channel 1 Display Channel 2 Display Channel 1 Display Channel 2 MIL-100-500 micro- cable withular die-coding (1-2) and (3-4) and (3-5) (1-2) Display Channel 1 Display Channel 2 MIL-100 micro- cable "300 LPS" cable required from 2 to 1+200 ps 2 to 3.72 TQ15B and TQ18B 73
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LAB DRIPPER PLN + Series Amplifier outputs configuration int1.840 software on plus 1 +1 and 2 +1 41 cable on 164 - MAX/linear conductor with constant wiring (3x1-3x1+3x1+3x1-3x1+3x1) Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 3.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.5mm x 4.5mm Cable 1.5mm x 2.5mm x 3.0mm x 4.0mm Cable 1.5mm x 2.5mm x 3.0mm x 4.0mm Cable 1.5mm x 2.5mm x 3.0mm x 4.0mm Cable 1.5mm x 2.5mm x 3.0mm x 4.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 4.0mm Cable 1.5mm x 2.5mm x 4.0mm Cable 1.5mm x 2.5mm x 4.0mm Cable 1.5mm x 2.5mm x 4.0mm Cable 1.5mm x 2.5mm x 4.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.5mm x 3.0mm Cable 1.5mm x 2.0m x 3.0m Cable 1.5mm x 2.0m x 3.0m Cable 1.5mm x 2.0m x 3.0m Cable 1.5mm x 2.0m x 3.0m
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Output Configuration Sequence Motion Outputs and Power Outputs Description Power Output A: T/O/SE CAFE / Low 1 B: T/O/SE CAFE / Low 2 C: 0.5 mm D: 0.5 mm Show Output Reading on Module Recal快速启动向开
连接
Full EASE data can be downloaded from www.turbosound.com. This will allow acoustic prediction, array formation and suspension to be determined. Important safety information about WLL is also calculated by EASE Focus.

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TQ15B Temperature: 20.000 - 34.000 Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: 100 MHz Current: -10.000 - 34.000 Current: -10.000 - 34.000 Current: -10.000 - 34.000 Current: -10.000 - 34.000 Current: -10.000 - 34.000 Current: -10.000 - 34.000 Current: -10.001 - 34.001 Current: -10.001 - 34.001 Current: -10.001 - 34.001 Current: -10.001 - 34.001 Current: -10.001 - 34.001 Current: -10.001 - 34.001 Current: -10.002 - 34.002 Current: -10.002 - 34.002 Current: -10.002 - 34.002 Current: -10.002 - 34.002 Current: -10.002 - 34.002 Current: -10.002 - 34.002 Current: -10.003 - 34.003 Current: -10.003 - 34.003 Current: -10.003 - 34.003 Current: -10.003 - 34.003 Current: -10.003 - 34.003 Current: -10.003 - 34.003 Current: -10.004 - 34.004 Current: -10.004 - 34.004 Current: -10.004 - 34.004 Current: -10.004 - 34.004 Current: -10.005 - 34.005 Current: -10.005 - 34.005 Current: -10.005 - 34.005 Current: -10.016 - 34.997 Current: -18.997 - 34.997 Current: -18.997 - 34.997 Current: -18.997 - 34.997 Current: -18.997 - 34.997 Current: -18.997 - 34.997 Current: -18.997 - 34.997 -18.998 - 35.998 -18.998 - 35.998 -18.998 - 35.998 -18.998 - 35.998 -18.998 - 35.998 -18.998 - 35.998 -18.998 - 35.998 -16.998 - 36.998 -16.998 - 36.998 -16.998 - 36.998 -16.998 - 36.998 -16.998 - 36.998 -16.998 - 36.998 -16.998 - 36.997 -16.998 - 36.997 -16.998 - 36.997 -16.998 - 36.997 -16.998 - 36.997 -16.998 - 36.997 -16.998 - 36.997 -12.997 - 37.997 -12.997 - 37.997 -12.997 - 37.997 -12.997 - 37.997 -12.997 - 37.997 -12.997 - 37.997 -12.997 - 37.996 -12.997 - 37.996 -12.997 - 37.996 -12.997 - 37.996 -12.997 - 37.996 -12.997 - 37.996 -12.856 - 38.856 -12.856 - 38.856 -12.856 - 38.856 -12.856 - 38.856 -12.856 - 38.856 -12.856 - 38.856 -12.856 - 38.85674 TC153 and TQ186 75
快速启动向开
安装

安全警告
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Three identical diagrams showing a circular fan pattern with internal grid patterns, no text or symbols present.徽章轮换
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Line drawing of a desktop audio workstation with a speaker and sound unit (no text or symbols)运输轮可选
可选套件允许安装四个轮子,如图所示。
Eyebolts


M10 Shoulder Eyebolt

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Line drawing of a four-wheeled cart with wheels and side-mounted buttons (no text or symbols)Lake 预设叠加和应用说明
| System | ||
| Frequency response (-1.3 dB)* 45 Hz - 120 Hz | 10 Hz - 120 Hz | |
| Frequency response (-10 dB)* 37 Hz - 200 Hz | 52 Hz - 200 Hz | |
| Nominal dispersion (8 - 6 dB pixels) Omni | ||
| Power handling (IIC) * 300 W continuous | 1000 V/Continuous | |
| Sensitivity (10^9 m^-2) | 28 dB | 96.5 dB |
| Maximum SFP | 138 dB peak | 138 dB peak |
| Impedance | 8.0 | |
| Components | 1 x 18" (350 mm) Yes LP driver | 1 x 18" (460 mm) Yes LP driver |
| Endurance | ||
| Connections | 3 x Resinix speed/20" N/L | |
| Wire ring | Plats 1+/-1- Input, pins 2+/-2- link, front pins 2+/-2- | |
| Dimensions HVO | 525 x 665 x 560 (25.66 x 26.18 x 22.04") | 525 x 785 x 560 (25.86 x 30.8 x 22.04") |
| Net weight | 37.1 kg (61.8 lbs) | 40.7 kg (85.7 lbs) |
| Construction | 15 mm and 18 mm (%' and %') plywood | |
| Finish | P/U Semi mat black point | |
| Grille | Powder coated perforated steel, cloth wrapped | |
| Drying hardware | MIO x 16 Pants | |
| IP rating | IP44 | |
| DW rating | 4.5 (XSTM G155 13) | |
| Accessories (optional) | ||
| Bag | T0150-WPC | T0150-WPC |
| Wheels | Manchester wheel kit | |
Notes:
1. Average over stated bandwidth. Measured at 1 metre on axis.
2. SPL level at 1 m under free field conditions, using pink noise with crest factor 4, with dedicated pre-set
3. Peak level at 1 m under hall space conditions using pink noise with crest factor 4, with dedicated pre-set.
4. Passive Power handling is combined LT/FF on dedicated preset with (ECI)
5. Case Data can be downloaded from www.turioscund.com
Other important information

Important information
-
Register online. Please register your new Music Tribe equipment right after you purchase it by visiting musctribe.com. Registering your purchase using our simple online form helps us to process your repair claims more quietly and efficiently. Also, read the terms and conditions of our warranty, if applicable.
-
Malfunction. Should your Music Tribe Authorized Reveller not be listed in your vicinity, you may contact the Music Tribe Authorized Further for your country listed under "Support" at musicite.com. Should your country not be listed, please check if your problem can be dealt with by our "Online Support" which may also be found under "Support" at musicite.com. Alternatively, please submit an online warranty claim at musicite.com BEFORE returning the product.

Informations importantes
Herby, Music Tribe declares that this product is in compliance with Directive
2011/65/EU and Amendment 2015/B63/EU, Directive 2012/19/EU, Regulation
519/2012 REACH SWHC and Directive 1907/2006/LC, and this passive product is not
applicable to EMC Directive 2014/30/EU, LV Directive 2014/35/EU.
Full-text of EU OcC is available at https://community.musictribe.com/
EU Representative. Music Tribe Brands DKA/S
Address: Gammel Strand 41, DK-1202 Kabenhavn K, Denmark
UK Representative: Music Tribe Brands UK Ltd.
Address: 8th Floor, 20 Farrington Street, London FC4A 495, United Kingdom
EN




Delay adjustment of autoworers
Delay adjustment of 1G speaker
Distance times is the difference to and to the lower array for alignment at the listening point