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VectorStar MS464xB Series Microwave Vector Network Analyzer Technical Data Sheet

This document provides detailed specifications for the MS4640B series microwave Vector Network Analyzers (VNAs), including all related options, and accessories. P/N: 11410-00611

Datasheet pdf 8.2 MB Version: AU 07/10/2026

O/E Calibration Module MN4765B Technical Data Sheet

The MN4765B is a characterized, unamplified photodiode module. It is used as an optical receiver with the Anritsu VectorStar MS4640B Series VNA, and ShockLine MS4652xB Series VNA to perform highly accurate and stable optoelectronic measurements of both modulators (E/O) and photoreceivers (O/E). Model MN4765B is the base calibration module. P/N: 11410-00843

Datasheet pdf 3.1 MB Version: N 02/12/2025

Electro-Optical Measurements Using Anritsu VNAs

This paper presents an accurate, flexible and cost-effective technique to conduct electro-optical testing on fiber optic components, such as laser modulators and photodiodes, using VNAs. The simplicity of Anritsu’s MN4765B O/E calibration modules allows highly accurate, vector-error-corrected and stable measurements with the full line of Anritsu VNAs. P/N: 11410-01034

Application Note pdf 1.2 MB Version: D 28/10/2025

Anritsu Vector Network Analyzers — The Perfect Tool for Electro-Optical Measurements

By using instrument grade O/E calibration modules characterized by Anritsu and de-embedding techniques included in both VectorStar and ShockLine software, Anritsu VNAs can make s-parameter measurements of high speed optical components just like their electrical counterparts. P/N 11410-01031

Leaflet pdf 4.8 MB Version: C 28/10/2025

145 GHz Optical-to-Electrical Measurement Solution Application Flyer

The growth of AI and Machine Learning is pushing data centers to 448 Gbps per lane, requiring component bandwidths greater than 130 GHz. The MN4765B-0140 is the world’s first traceable O/E photodetector module designed to test these next-generation E/O Modulators and O/E Receivers, ensuring reliable data flow for 1.6T/3.2T systems. P/N: 11410-02988

Application Note pdf 983.4 KB Version: A 28/10/2025

VectorStar Opto-Electronic Network Analyzer ME7848A Quick Fact Sheet

This two page flyer covers the key benefits and features of the opto-electronic network analyzer. P/N: 11410-01151

Brochure pdf 1.1 MB Version: E 28/10/2025

MN4765B O/E Calibration Module Operation Manual

The MN4765B is a characterized, unamplified photodiode module. It is used as an optical receiver with the Anritsu MS464xB and MS4652xB Series VNAs to perform highly accurate and stable optoelectronic measurements of both modulators (E/O) and photoreceivers (O/E). P/N: 10410-00742

Operations Manual pdf 1.7 MB Version: K 21/10/2025

Opto-electronic Network Analyzer ME7848A Technical Data Sheet

The VectorStar Opto-electronic Network Analyzer (ONA) ME7848A-02xx system includes the VectorStar VNA combined with a traceable calibration O/E detector module and an E/O converter. The ME7848A ONA with the E/O converter and O/E calibration module detector enables the measurement of domain-transfer devices such as optical modulators, modulated lasers, optical transmitters, photodiodes, photo-receivers and transceivers. P/N: 11410-01145

Datasheet pdf 8.1 MB Version: R 21/08/2025

O/E Calibration Module Declaration of Conformity

The O/E Calibration Module Declaration of Conformity is a special document issued by Anritsu to state that the product meets all of the applicable legislation and European directives. P/N: 10101-00045

Datasheet pdf 117.0 KB Version: D 21/07/2025

Wideband Optical Modulator and Detector Characterization

The characterization and measurement of E/O and O/E components at higher microwave frequencies has a different uncertainty distribution than at lower frequencies. A careful process can help minimize many of those categories. The individual uncertainty components have very different effects on final subsystem modeled time domain results, such as eye diagrams. Understanding that error propagation can be useful. In a practical example, optimizing the critical uncertainty components can lead to noticeably better eye behavior in the final model.

White Paper pdf 817.7 KB Version: B 06/02/2018

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