Reference

International

 

DECLARATION OF CONFORMITY

Manufacturer’s Name:

According to ISO/IEC Guide 22 and EN 45014

Hewlett Packard Company

Manufacturer’s Address:

Hewlett Packard Company

 

Digital Projection & Imaging

 

1000 NE Circle Blvd.

Declares, that the product(s):

Corvallis, OR 97330-4239

 

Product Name:

Advanced Connectivity Module

Model Number (s):

L1581A

Conforms to the following product specifications:

Safety: IEC 60950:1999/EN 60950:2000

IEC 60825-1:1993 +A1/EN 60825-1:1994 +A11 Class 1 LED

GB4943-1995

EMC: EN 55022: 1998 Class B [1]

CISPR 24:1997/EN 55024: 1998

IEC 61000-3-2:1995/EN 61000-3-2:2000

IEC 61000-3-3:1994/EN 61000-3-3:1995+A1:2001

GB9254-1998

FCC Title 47 CFR, Part 15 Class B/ANSI C63.4:1992

AS/NZS 3548:1995 Rules and Regulations of Class B

Supplementary information:

The product herewith complies with the requirements of following Directives and carries the CE marking accordingly:

-Low Voltage Directive: 73/23/EEC

-EMC Directive: 89/336/EEC

[1]The product was tested in a typical configuration with Hewlett Packard Personal Computer peripherals. This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions:

(1)this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation.

Corvallis, Oregon, August 21, 2003

Steve Brown, General Manager

European Contact for regulatory topics only: Hewlett Packard GmbH, HQ-TRE, Herrenberger Straße 140, 71034 Boeblingen, Germany. (FAX:+49-7031-143143).

USA Contact: Hewlett Packard Co., Corporate Product Regulations Manager, 3000 Hanover Street, Palo Alto, CA

94304. Phone: (650) 857-1501.

User’s Guide

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HP L1581A manual International, Declaration of Conformity

L1581A specifications

The HP L1581A is a high-performance test instrument designed specifically for the testing and evaluation of fiber optic components and systems. Targeted at telecommunications and networking applications, this device epitomizes precision and reliability in optical testing, making it an invaluable tool for engineers and technicians.

One of the standout features of the HP L1581A is its capability to deliver accurate measurements of optical power and signal quality across a wide range of wavelengths. This versatility allows it to support multiple fiber optic standards, accommodating both single-mode and multimode fibers. The instrument's wide wavelength range typically spans 1260 nm to 1650 nm, covering the primary wavelengths used in modern fiber optic communications.

The HP L1581A employs advanced technologies for signal processing and analysis, ensuring high-resolution measurements and minimal uncertainty. It incorporates state-of-the-art photodetectors that provide improved sensitivity and dynamic range. Additionally, the device features a user-friendly interface, often accompanied by a graphical display, which simplifies the analysis process with clear visual representations of data.

In terms of characteristics, the HP L1581A is noted for its compact design and portability, making it suitable for field operations as well as laboratory environments. Its robust construction ensures durability under varying conditions, which is critical in the demanding field of telecommunications.

Moreover, the instrument supports various measurement modes, including relative power measurement and absolute optical power measurement, providing users with flexibility depending on their testing needs. The L1581A also offers data logging capabilities, enabling users to store and analyze measurements over time, which is critical for long-term performance assessments.

Another significant feature of the HP L1581A is its compatibility with various software applications, allowing for seamless integration into existing test setups. This feature enables remote control and automation, which enhances productivity and efficiency in testing processes.

In conclusion, the HP L1581A is a sophisticated instrument equipped with high-precision measurement capabilities, advanced technologies for signal processing, and versatile operational features. Its robustness and user-friendly interface make it essential for professionals working with fiber optic systems, ensuring accurate testing and maintenance of critical telecommunications infrastructure.