a/d/s/ C12ps, HT10ps, HT12ps, C10ps owner manual Specifications, Common specifications

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specifications

Model

C10ps

C12ps

HT10ps

HT12ps

Driver size

10”

12”

10”

12”

Cabinet design

Sealed

Sealed

Single-reflex bandpass

Amplifier power

200W

500W

500W

500W

Frequency response

25–250 Hz

20–250 Hz

20–180 Hz

15–180 Hz

Maximum output (@ 1M)

107 dB

110 dB

110 dB

112 dB

Weight

39 lbs (17.6 Kg)

47 lbs (21.5 Kg)

67 lbs (19 Kg)

81 lbs (24.3 Kg)

common specifications

Distortion:

Less than 1%

Low Pass Crossover Frequency:

40Hz to 180Hz, variable

High Pass Crossover Frequency:

80Hz, fixed

Low Pass Crossover Slope:

12dB per octave

High Pass Crossover Slope:

12dB per octave

Bass Boost or Cut

+/- 6dB variable, centered @ 35 Hz

Inputs

Stereo preamp/line level

 

Mono LFE/line level

 

Stereo speaker level

Outputs

Stereo preamp/line level unity gain through-pass

 

Stereo preamp/line level high pass

 

Mono LFE/line level

Subwoofer Level:

Continuously variable

Preamp Input Impedance

50K Ohms

Output Impedance

20K Ohms

Line Voltage/type

Switchable for 115V/60 cycle or 230V/50 cycle

Line Current

2.6 amp @ 300 W (C10ps 4.3 amp @ 150 W)

Specifications subject to change without notice.

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Contents C10ps C12ps HT10ps HT12ps Page Table of contents IntroductionPage About the a/d/s/ subwoofers UnpackingPlacement System connection Power connection and power switch operation Controls and connections Input/Output Control Panel and Connection Detail back panelPage Page Maintenance Voltage conversionCase of difficulty Page Typical wiring diagrams Page Page Page Specifications Common specificationsWarranty information

C10ps, C12ps, HT12ps, HT10ps specifications

The modern automotive landscape is increasingly being shaped by advanced driver systems (a/d/s), which enhance both safety and the driving experience. Central to this revolution are cutting-edge systems like HT12ps, C10ps, HT10ps, and C12ps, each representing a leap in technology and features tailored for diverse vehicular needs.

HT12ps is known for its exceptional handling of real-time data processing. With a robust architecture, it offers seamless integration with various vehicle sensors. This system is particularly noted for its adaptive cruise control, which uses radar and camera inputs to maintain safe distances from other vehicles, greatly reducing driver fatigue during long journeys. Its predictive analytics capabilities help in anticipating road conditions, ensuring a more relaxed driving experience.

On the other hand, C10ps highlights connectivity and communication. This system incorporates vehicle-to-everything (V2X) technology, allowing vehicles to communicate with each other and the surrounding infrastructure. This collaborative approach enhances traffic management and reduces the likelihood of collisions. Its intuitive interface provides drivers with real-time alerts about road hazards and traffic conditions, ensuring a safer driving environment.

HT10ps stands out with its focus on automation. Designed for a range of vehicles, from personal cars to commercial fleets, this system employs advanced machine learning algorithms to adapt and optimize driving styles based on individual driver behaviors. It supports features like lane-keeping assistance and automated parking, which significantly ease the mounting challenges of urban driving.

Lastly, C12ps integrates high-definition mapping and localization technologies. This system uses detailed maps, coupled with inertial sensor data, to deliver accurate positioning, even in urban canyons where GPS signals may falter. Its emphasis on real-time updates allows for enhanced route planning and navigation, greatly improving overall efficiency for drivers.

Together, these a/d/s systems represent a significant advancement in automotive technology. By integrating varied features—ranging from automated driving assistance to powerful connectivity and real-time data processing—they contribute to a safer, more efficient, and enjoyable driving experience. As these systems evolve, they hold the promise of transforming the future of mobility, paving the way towards fully autonomous vehicles and smarter transportation networks.