Specialmedier

Udskrivning på brevpapir

Der kan udskrives på den ene eller begge sider af brevpapir. Se side 14 for at få oplysninger om papirvægt og -formater, der kan bruges.

1.Du kan enten:

Anbringe brevpapiret i standardpapir/transparentbakken (med bakkekontakten på Paper (Papir)), eller i en stor bakke.

Enkeltsidet job – anbring brevpapiret med forsiden opad og brevhovedet mod bakkens forkant.

Dobbeltsidet job – anbring brevpapiret med forsiden nedad og brevhovedet mod bakkens bagkant.

Vælg manuel indføring af papiret. Anbring ikke papiret i det manuelle fødningsslot, før du bliver bedt om det på printerens frontpanel.

2.I printerdriveren:

Vælg den bakke, der indeholder brevpapiret, eller vælg Manual Feed-Paper(Manuel fødning).

Vælg enten enkelt- eller dobbeltsidet udskrivning.

3.Send jobbet til printeren.

4.Hvis du valgte Manual Feed-Paper(Manuel fødning), skal du vente med at indføre papiret, indtil du bliver bedt om det på printerens frontpanel.

Enkeltsidet job – Anbring brevpapiret med forsiden nedad, så brevhovedet føres først ind i det manuelle fødningsslot.

Dobbeltsidet job – Anbring brevpapiret med forsiden opad, så brevhovedet føres sidst ind i det manuelle fødningsslot.

Vent med at indføre næste ark papir, indtil du bliver bedt om det.

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Phaser 860-farveprinter

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Image 53
Tektronix 860 manual Udskrivning på brevpapir

860 specifications

The Tektronix 860 is a versatile, high-performance oscilloscope known for its advanced capabilities in electronic testing and analysis. This instrument is especially popular among engineers and technicians working in the fields of telecommunications, automotive, aerospace, and education due to its precision and reliability in measuring and analyzing electronic signals.

One of the main features of the Tektronix 860 is its bandwidth. With options typically ranging from 100 MHz to 1 GHz, this oscilloscope is capable of capturing high-frequency signals with great accuracy. This makes it suitable for observing fast digital signals, making it an essential tool for digital circuit design and debugging.

The Tektronix 860 offers a high sample rate, allowing users to capture waveforms and transient events with exceptional detail. This high sampling rate, coupled with deep memory capabilities, enables engineers to record long-duration signals without sacrificing resolution. This is particularly beneficial in scenarios where understanding signal behavior over time is crucial.

Another standout feature is the Tektronix 860's user-friendly interface. The design incorporates intuitive controls, making it accessible for both seasoned professionals and newcomers to the field of electronics. This ease of use means operators can quickly set up experiments, identify problems, and gather data, enhancing productivity.

The oscilloscope also comes equipped with advanced triggering options, including edge, pulse width, and glitch triggers. These sophisticated triggering capabilities allow engineers to capture specific events within complex signals easily. Additionally, the Tektronix 860 supports serial data analysis, enabling the decoding and visualization of communication protocols such as I2C, SPI, and CAN, fostering greater efficiency in troubleshooting.

Furthermore, the Tektronix 860's display technology enhances visual interpretation of waveforms. With a high-resolution color display, users can easily differentiate between multiple signals, aiding in the analysis and comparison of data.

In terms of connectivity, the Tektronix 860 includes USB and LAN options, facilitating data transfer and remote access to the oscilloscope. This connectivity is vital for modern laboratory environments, where remote monitoring and data sharing are essential.

In summary, the Tektronix 860 combines high bandwidth, exceptional sample rates, advanced triggering, and user-friendly features, making it a reliable choice for professionals in various sectors. Its ability to handle complex signal analysis while providing a clear visual representation of data underlines its reputation as a powerful tool in electronic testing and measurement.