VX1A00016500

TOSHIBA

Simple at-a-glance reference of your remote control

To mute the sound

For On/Standby mode

 

Number buttons

 

 

To return to the previous programme

To select input from external sources

 

 

 

Selectable picture preferences

Widescreen viewing

To exit Menus

 

On-screen Menus

 

 

 

Navigation Ring:

 

Use P fand P eto change programme

 

positions and text pages

 

Use jand j+ to alter the volume

 

When using menus press up, down, left

 

and right to move the cursor on the

 

screen. OK to confirm your selection

 

Text control buttons

To select mode

To display on-screen information

 

No function on this model

Stereo/bilingual transmissions

 

No function on this model

 

 

When using a TOSHIBA VCR or DVD:

When in TV mode:

pressm/llrto PAUSE/STEP

8/9

Time display

press rto PLAY

6/

/7To call up text

press qto REWIND

When in Text mode:

r

To reveal concealed text

presssto FAST FORWARD

q

To hold a wanted page

presswto EJECT

s

To enlarge text display size

presspto STOP

8/9 To select a page whilst viewing a

press lqto SKIP-REWIND

 

normal picture

presssl to SKIP-FORWARD

Remove the back cover to insert the batteries, make sure they are inserted the right way round.

Suitable battery types for this remote are:

AAA, IEC R03 1.5V.

Printed on recycled paper.

100% Chlorine free.

Quick Set Up Guide and Remote Control

Page 1
Image 1
Toshiba VX1A00016500 setup guide Toshiba, Simple at-a-glance reference of your remote control, When in Text mode

VX1A00016500 specifications

The Toshiba VX1A00016500 is a highly advanced semiconductor device renowned for its efficiency and high-performance attributes. This component is an essential part of modern electronic systems, showcasing Toshiba's commitment to innovation in semiconductor technology.

One of the key features of the VX1A00016500 is its capability to handle high-frequency operations. This characteristic makes it an excellent choice for applications that require rapid data processing and swift signal transmission. The semiconductor is designed to minimize signal degradation over long distances, ensuring reliable performance in various electronic applications.

The VX1A00016500 utilizes cutting-edge material technologies that enhance its operational efficiency. With a focus on reducing power consumption, this semiconductor helps in extending the battery life of devices that rely on it. The device is also optimized for thermal management, allowing it to operate effectively under varying temperature conditions, which is essential for ensuring durability and reliability in harsh environments.

Another standout feature of the VX1A00016500 is its compact design, enabling seamless integration into smaller electronic devices. This design philosophy caters to the growing demand for miniaturization in technology, providing engineers and designers with the flexibility to create more compact and efficient systems without compromising on performance.

In terms of characteristics, the VX1A00016500 boasts a wide operating voltage range, making it versatile for numerous applications across different industries. This adaptability allows it to be employed in consumer electronics, automotive systems, and industrial applications, among others. The semiconductor also offers excellent electromagnetic interference (EMI) shielding, which is crucial for maintaining signal integrity in densely packed electronic environments.

Moreover, Toshiba’s commitment to quality is evident in the VX1A00016500, which undergoes rigorous testing to adhere to international safety and performance standards. The reliability of this semiconductor is backed by Toshiba’s extensive experience in the semiconductor field, making it a trusted choice for many engineers and designers.

In summary, the Toshiba VX1A00016500 stands out for its high-frequency capabilities, efficient thermal management, compact design, and wide adaptability across various applications. Its advanced technologies and robust features make it an invaluable component in the rapidly evolving landscape of electronic systems.