There are three issue modes available on this printer.
Batch mode:
In the batch mode, the media is continuously printed and fed until the number of media specified in the issue command has been printed.
E2- 6
Black Mark Sensor
Feed Gap
Sensor
Protrusion
Media Sensor
Centre Guide
be positioned in line with the centre of the black marks on the reverse side of the media.

2. PRINTER SETUP

ENGLISH VERSION

2.6 Loading the Media

2.6Loading the Media (Cont.)

8.Feed the media between the Media Guides.

9.Pull the media until it extends past the Media Outlet.

10.Adjust the Media Guide position to the media width.

NOTES:

Media Guide

11. Make sure that the media path through the printer is straight, otherwise skew feeding or a paper jam may occur.

12. After loading the media, manually set the Media Sensor to the correct position. When using the Feed Gap Sensor, position it to the centre of the printer. When using the Black Mark Sensor, it should

1. The Feed Gap Sensor can be correctly positioned by engaging the Protrusion of the Media Sensor with the centre guide.

2. The Black Mark Sensor is fully adjustable.

CAUTION!

To separate the printed media from the media roll in batch mode, be sure to tear off the media at the Media Outlet or cut the media past the Tear Off Bar. If you tear off the media at the Print Head by mistake, be sure to feed one label (10 mm or more) with the FEED/PAUSE Button prior to next issue. Failure to do this may cause a paper jam.

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Toshiba BSV4TGS10QMR manual Media Guide

BSV4TGS10QMR specifications

The Toshiba BSV4TGS10QMR is a highly advanced power amplifier that has garnered attention for its remarkable performance and versatility in various applications. This device is particularly suited for mobile communication systems, satellite communication, and broadcasting technologies, playing a crucial role in enhancing signal integrity and strength.

One of the most notable features of the BSV4TGS10QMR is its compact size, which facilitates easy integration into various devices without the need for significant redesigns. It is encapsulated in a small footprint package, which is essential for modern applications where space is at a premium. This amplifier's design also emphasizes thermal efficiency, ensuring that it can operate effectively even in demanding environments.

The BSV4TGS10QMR utilizes advanced GaN (Gallium Nitride) technology, which contributes to its high power density and efficiency. GaN technology is known for its ability to handle high voltages and deliver greater output power compared to traditional silicon-based options. This makes the BSV4TGS10QMR an excellent choice for applications requiring high linearity and wide bandwidth, as it maintains signal quality across a broad frequency range.

In terms of performance characteristics, the BSV4TGS10QMR exhibits impressive gain levels and low noise figures, making it an effective solution for boosting weak signals while minimizing distortion. Its robust design allows for a high degree of reliability, which is essential for mission-critical communications where any failure can lead to significant setbacks.

Another key feature of the BSV4TGS10QMR is its ability to support different modulation formats, which is crucial in today's diverse communication landscape. This adaptability allows the amplifier to be utilized in various systems, ranging from traditional radio frequency (RF) applications to cutting-edge digital communication networks.

Overall, the Toshiba BSV4TGS10QMR stands out as an exemplary power amplifier with a blend of compact design, advanced GaN technology, and impressive performance characteristics. Its versatility and reliability make it a valuable component for engineers and developers looking to enhance communication systems while ensuring efficient power usage and exceptional signal integrity. As technology continues to evolve, devices like the BSV4TGS10QMR will play a pivotal role in shaping the future of wireless communication and broadcasting industries.