This leaflet introduces Anritsu’s automotive testing and verification solutions designed to support the development of vehicle electronics.
Leaflet
pdf 3.4 MB
27/04/2026
This guide includes the lineup of ShockLine Vector Network Analyzers, a comparison table of key specifications, and calibration kits.
Selection Guide
pdf 735.5 KB
Version: E
27/04/2026
Anritsu Electronic Measuring Instruments Catalog Condensed Version
Catalog
pdf 6.1 MB
Version: 2025
14/01/2026
Overview of RF and Microwave instruments available to meet a variety of solutions. Featuring the frequency range, measurements, and other key features. P/N: 11410-00800
Brochure
pdf 11.3 MB
Version: AF
16/12/2025
The ME7868A is part of the ShockLine family of Vector Network Analyzers. It is a modular 2-port VNA consisting of two ShockLine MS46131A 1-port VNAs synchronized with PhaseLync technology. P/N: 11410-02824
Datasheet
pdf 5.7 MB
Version: H
02/12/2025
The ShockLine ME7869A is part of the ShockLine family of Vector Network Analyzers from Anritsu. It is a modular 2-port VNA consisting of two ShockLine MS46131A 1-port VNAs synchronized with PhaseLync technology. The ShockLine ME7869A
2-port VNA is available in three frequency ranges: 1 MHz to 8/20/43.5 GHz, and is capable of S-parameter and time domain measurements. P/N: 11410-02904
Datasheet
pdf 4.3 MB
Version: F
02/12/2025
This guide provides important notices, warranty, safety, and regulatory compliance information. Be sure to read these important notices before operating the equipment. P/N: 10100-00067
Datasheet
pdf 1.5 MB
Version: K
19/09/2025
The MS46131A is a modular 1-port VNA that is configurable as single or dual 1-port VNAs controlled from a single PC. The MS46131A is available in three frequency ranges: 1 MHz to 8/20/43.5 GHz, and is capable of S-parameter and time domain measurements. P/N: 11410-01146
Datasheet
pdf 4.5 MB
Version: L
19/09/2025
The simultaneous sweep feature enables multiple MS46131A 1-port VNAs to operate in
parallel—each in its own instance of the ShockLine software. This eliminates shared configuration
constraints and allows independent, concurrent sweeps across up to four units. P/N: 11410-02971
Leaflet
pdf 1.7 MB
Version: A
03/06/2025
The simultaneous sweep feature for the MS46131A series introduces a major advancement in parallel test workflows. This capability enables users to operate multiple MS46131A VNAs concurrently in independent software instances, unlocking true parallel measurement execution. The result is significantly
enhanced test flexibility, improved throughput, and reduced total test time across diverse RF and microwave
applications. P/N: 11410-02976
Application Note
pdf 3.1 MB
Version: A
03/06/2025
The Operation Manual covers an overview of the ShockLine MS46131A Series Vector Network Analyzer (VNA) and a description of its major functions and available documentation. Also included are the Standard Device Connections, and Installation. P/N: 10410-00780
Operations Manual
pdf 19.5 MB
Version: H
02/05/2025
ShockLine VNAs supports remote operations commanded via the TCP/IP or VXI-11 protocols. This manual provides operation and programming information for this activity. P/N: 10410-00746
Programming Manual
pdf 18.3 MB
Version: AC
02/05/2025
This manual is a reference document for the Anritsu ShockLine VNA user interface (UI) menus and dialog boxes. This chapter describes the document conventions used in this manual and lists related ShockLine VNA documentation. P/N: 10410-00337
User Guide
pdf 36.1 MB
Version: AK
02/05/2025
Using traditional VNAs to test antennas in OTA chambers generally requires long test port cables. These cables introduce insertion loss and phase instability into S-parameter measurements especially
at microwave frequencies and above. As distances grow, the cable issues become so significant that additional test hardware is required to overcome the issues. P/N: 11410-02963
Application Note
pdf 842.6 KB
Version: A
18/03/2025
Testing outdoor antenna test ranges presents a challenge for traditional VNAs. The distances involved in routing the signals between the antennas on the range and the VNA can typically preclude using coax cables because of significant insertion loss and phase instability. Additional hardware and complex methodologies are used to solve the long distance interconnect issues, raising costs and time required to make antenna S-parameter measurements on outdoor ranges. P/N: 11410-02964
Application Note
pdf 944.9 KB
Version: A
18/03/2025
Using VNAs to test OTA RF/μW shielding and propagation on large vehicles generally requires very long test port cables to reach around the vehicles. At the distances required for these tests, coax cables introduce insertion loss and phase instability so significant that different transmission media (such as optical cabling) must be used to enable S-parameter measurements. The additional hardware significantly raises cost and time. P/N: 11410-02965
Application Note
pdf 947.5 KB
Version: A
18/03/2025
RF/μW cabling is used throughout modern vehicles for communications, systems control, and sensor interconnects. Checking cable phase and magnitude performance over frequency becomes more important as systems become more sophisticated and complex. This is especially true in larger vehicles like aircraft, ships, and trains where connections between different parts of the vehicle can become well over several meters in length. P/N: 11410-02966
Application Note
pdf 744.1 KB
Version: A
18/03/2025
This application note discusses how to improve high frequency S-parameter measurements by moving the VNA port to the DUT. By using the ShockLine MS46522B E-band 2-port performance VNA with a 5 meter tether and incorporating the modules, cables, and mainframe into an integrated system, high frequency S-parameter measurements can be made with a more accurate measurement. P/N: 11410-02487
Application Note
pdf 1.7 MB
Version: B
22/08/2024
This application note introduces various dielectric measurement methods for 5G and automotive materials.
Application Note
pdf 987.3 KB
01/07/2024
This instruction sheet discusses static electricity, electrostatic destruction, and failure. Anti-Static Measures is covered as well.
Instruction Sheet
pdf 560.7 KB
Version: A
23/05/2024