P6721: Difference between revisions

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The Tektronix P6721 is an optical to electrical converter for 400 to 1000 nm wavelengths.
{{Probe Sidebar
The rise time is 10 nanoseconds.
|manufacturer=Tektronix
The standard optical input connector is TOSLINK.
|model=P6721
|summary=Optical/electrical converter
|for=50 Ω scope inputs
|image=Tek p6721 1.jpg
|caption=Tektronix P6721
|introduced=1991
|discontinued=(?)
|manuals=
* ''please add''
* [[Media:Tektronix1993 oe converters.pdf|Tektronix Optical to Electrical Converters in 1993 Catalog]] (PDF, OCR)
}}
The '''Tektronix P6721''' is an optical to electrical converter for 400 to 1000 nm wavelengths.


* [[Media:Tektronix1993 oe converters.pdf|Tektronix Optical to Electrical Converters in 1993 Catalog (PDF, OCR)]]
{{MissingSpecs}}
Rise time is 10 nanoseconds in standard version. The standard optical input connector is TOSLINK, output is BNC.


The P6721 consumes power from a 7000-series scope or an [[1101A]] power supply. Conversion gain is 10 V/mW at 660 nm.
The P6721 uses a silicon PIN photodiode.
==Pictures==
<gallery>
<gallery>
Tek p6721 1.jpg
Tek p6721 1.jpg
Tek p6721 2.jpg
Tek p6721 2.jpg
Tek p6721 3.jpg
Tek p6721 3.jpg
Tek p6721 4.jpg
Tek p6721 4.jpg|TOSLINK optical input
Tek p6721 output.jpeg|BNC electrical output and power input
Tek p6721 5.jpg
Tek p6721 5.jpg
</gallery>
</gallery>


[[Category:Optoelectronic instruments]]
[[Category:Optoelectronic instruments]]
[[Category:Manual needed]]

Latest revision as of 09:19, 11 August 2024

Tektronix P6721
Optical/electrical converter
Tektronix P6721

Compatible with 50 Ω scope inputs

Produced from 1991 to (?)

Manuals


Manuals – Specifications – Links – Pictures

The Tektronix P6721 is an optical to electrical converter for 400 to 1000 nm wavelengths.

Key Specifications

  • please add

Rise time is 10 nanoseconds in standard version. The standard optical input connector is TOSLINK, output is BNC.

The P6721 consumes power from a 7000-series scope or an 1101A power supply. Conversion gain is 10 V/mW at 660 nm.

The P6721 uses a silicon PIN photodiode.

Pictures