Microwave & RF Device Characterization Solutions



Similar documents
Measurement & Modeling Device Characterization Solutions

Maury Device C naracterization Systems

ATSv5 AUTOMATED TUNER SYSTEM SOFTWARE MT993 Series Introduction

A Network Analyzer For Active Components

High Power Amplifier Measurements Using Agilent s Nonlinear Vector Network Analyzer

UNDERSTANDING NOISE PARAMETER MEASUREMENTS (AN )

RF Network Analyzer Basics

Power Amplifier Gain Compression Measurements

Agilent PNA Network Analyzers 10 MHz to 110 GHz

DEVELOPMENT OF DEVICES AND METHODS FOR PHASE AND AC LINEARITY MEASUREMENTS IN DIGITIZERS

Basic of Load Pull Measurements Active and Passive load pull & Harmonic load pull testbench

MAURY. VNA Calibration Kits, Microwave Components & Adapters. Calibrate With Confidence IN THIS CATALOG:

Advanced Nonlinear Device Characterization Utilizing New Nonlinear Vector Network Analyzer and X-parameters

Large-Signal Network Analysis

0HDVXULQJWKHHOHFWULFDOSHUIRUPDQFH FKDUDFWHULVWLFVRI5),)DQGPLFURZDYHVLJQDO SURFHVVLQJFRPSRQHQWV

How To Use A Sound Card With A Subsonic Sound Card

Agilent 8720 Family Microwave Vector Network Analyzers

A 1 to 2 GHz, 50 Watt Push-Pull Power Amplifier Using SiC MESFETs. high RF power. densities and cor- capacitances per watt.

Time-Correlated Multi-domain RF Analysis with the MSO70000 Series Oscilloscope and SignalVu Software

RF Measurements Using a Modular Digitizer

1. The Slotted Line. ECE 584 Microwave Engineering Laboratory Experiments. Introduction:

Basics of RF Amplifier Measurements with the E5072A ENA Series Network Analyzer

Broadband covering primary wireless communications bands: Cellular, PCS, LTE, WiMAX

Application Note Noise Frequently Asked Questions

R&S ZVA Vector Network Analyzer High performance up to 110 GHz with up to four test ports

Microwave Measurements. 3rd Edition. Edited by RJ. Collier and A.D. Skinner. The Institution of Engineering and Technology

Technical Datasheet Scalar Network Analyzer Model MHz to 40 GHz

LARGE-SIGNAL NETWORK ANALYZER MEASUREMENTS AND THEIR USE IN DEVICE MODELLING

Agilent E3830 Series Wide-bandwidth Signal Analyzer Custom Systems 100 MHz Bandwidth Microwave Vector Signal Analysis

Agilent Test Solutions for Multiport and Balanced Devices

Agilent Millimeter-Wave Network Analyzers 10 MHz to 110 GHz, with Extensions to 0.5 THz

Agilent 10 Hints for Making Better Network Analyzer Measurements. Application Note B

Network Analyzer Operation

RF and Microwave Accessories. CD-ROM Catalog. Find the right component for your Rohde & Schwarz test & measurement equipment

Jeff Thomas Tom Holmes Terri Hightower. Learn RF Spectrum Analysis Basics

DC to 30GHz Broadband MMIC Low-Power Amplifier

Agilent Network Analyzer Selection Guide

Introduction to Network Analyzer Measurements

Isolated AC Sine Wave Input 3B42 / 3B43 / 3B44 FEATURES APPLICATIONS PRODUCT OVERVIEW FUNCTIONAL BLOCK DIAGRAM

TekConnect Adapters. TCA75 TCA-BNC TCA-SMA TCA-N TCA-292MM Data Sheet. Applications. Features & Benefits

81110A Pulse Pattern Generator Simulating Distorted Signals for Tolerance Testing

Improving Network Analyzer Measurements of Frequency-translating Devices Application Note

R&S ZVA Vector Network Analyzer High performance up to 67 GHz with up to four test ports

Shielding Effectiveness Test Method. Harbour s LL, SB, and SS Coaxial Cables. Designs for Improved Shielding Effectiveness

Agilent E5063A ENA Series Network Analyzer

Comparison of Vector Network Analyzer and TDA Systems IConnect Generated S-Parameters

MEASUREMENT UNCERTAINTY IN VECTOR NETWORK ANALYZER

APSYN420A/B Specification GHz Low Phase Noise Synthesizer

Agilent De-embedding and Embedding S-Parameter Networks Using a Vector Network Analyzer. Application Note

HEWLETT PACKARD. HP 8510C Network Analyzer 45 MHz to 110 GHz. Unmatched excellence in microwave network analysis

Agilent 8753ET/8753ES Network Analyzers

Broadband covering primary wireless communications bands: Cellular, PCS, LTE, WiMAX

Understanding the Effect of Uncorrelated Phase Noise on Multi-channel RF Vector Signal Generators and Analysers

GaN or GaAs, TWT or Klystron - Testing High Power Amplifiers for RADAR Signals using Peak Power Meters

Experiment 7: Familiarization with the Network Analyzer

Calculating Antenna System Return Loss As Viewed Through The RF Path

Making Spectrum Measurements with Rohde & Schwarz Network Analyzers

MAURY MICROWAVE C O R P O R A T I O N

ISC Dual Frequency WFS RFPD Test Procedure:

R&S ZCxxx Millimeter-Wave Converters Specifications

E5092A Configurable Multiport Test Set

Mobile Phone Testing using Impedance Tuners

Performing Amplifier Measurements with the Vector Network Analyzer ZVB

Agilent U2000 Series USB Power Sensors

Ralph L. Brooker, Member, IEEE. Andrew Corporation, Alexandria, VA 22314, USA

Application Note Receiving HF Signals with a USRP Device Ettus Research

Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies

Department of Electrical and Computer Engineering Ben-Gurion University of the Negev. LAB 1 - Introduction to USRP

SIGNAL GENERATORS and OSCILLOSCOPE CALIBRATION

Agilent: Profile of Oscilloscope Firsts

Microwave. 6200B series RF and Microwave Test sets.

ECE 435 INTRODUCTION TO THE MICROWAVE NETWORK ANALYZER

Spectrum Analyzer Two models available: OGR-24 (24 GHz) and OGR-8 (8 GHz)

Achieving New Levels of Channel Density in Downstream Cable Transmitter Systems: RF DACs Deliver Smaller Size and Lower Power Consumption

Current Probes. User Manual

Michael Hiebel. Fundamentals of Vector Network Analysis

DRM compatible RF Tuner Unit DRT1

What is the difference between an equivalent time sampling oscilloscope and a real-time oscilloscope?

Recommendations for TDR configuration for channel characterization by S-parameters. Pavel Zivny IEEE GCU Singapore, 2011/03 V1.

Spectrum Analyzer Two models available: OGR-24 (24 GHz) and OGR-8 (8 GHz)

Testing of 10 GHz Instantaneous Bandwidth RF Spectrum Monitoring at Idaho National Labs

R&S FSW signal and spectrum analyzer: best in class now up to 50 GHz

Agilent Network Analyzer Selection Guide

Keysight Technologies 8 Hints for Better Spectrum Analysis. Application Note

Wireless Communication and RF System Design Using MATLAB and Simulink Giorgia Zucchelli Technical Marketing RF & Mixed-Signal

Agilent E5063A ENA Series Network Analyzer. 100 khz to 4.5/ 8.5/18 GHz

GSM/EDGE Output RF Spectrum on the V93000 Joe Kelly and Max Seminario, Verigy

Optimizing IP3 and ACPR Measurements

Annex 113A Description of cable clamp and test setup. (informative) 113A.1 Overview

TOTALLY SOLID STATE NON-DIRECTIONAL RADIO BEACONS khz

A Comparison of Measurement Uncertainty in Vector Network Analyzers and Time Domain Reflectometers. White Paper

Agilent N2717A Service Software Performance Verification and Adjustment Software for the Agilent ESA Spectrum Analyzers Product Overview

Category 8 Cable Transmission Measurements Comparative Study between 4-port single wire measurements and 2-port balun measurements

ni.com/sts NI Semiconductor Test Systems

R&S ZVA Vector Network Analyzer High performance up to 110 GHz with up to four test ports

Using a design-to-test capability for LTE MIMO (Part 2 of 2)

R&S ZVB Vector Network Analyzer High measurement speed up to 20 GHz with two or four test ports

Brookhaven National Laboratoy, Upton, NY 11973, USA

Impedance 50 (75 connectors via adapters)

N6171A MATLAB Data Analysis Software for Agilent Instruments

Transcription:

Microwave & RF Device Characterization Solutions MT1000 Mixed-Signal Active Load Pull System (30.0 MHz to 40.0 GHz) And MT2001 System Software From Powered by Maury Microwave is ISO: 9001:2008/AS9100C Certified. 2900 Inland Empire Blvd. Ontario, California 91764 USA TECHNICAL DATA 4T-096

Also Available from Maury Microwave Measurement & Modeling Device Characterization Solutions Featuring The Most Complete Selection of Load Pull Solutions in the Test & Measurement Industry Helping Your Designs Succeed The First Time RF Device Characterization Methods Pitfalls To Avoid When Purchasing A Device Characterization System Device Characterization Software IVCAD Advanced Measurement & Modeling Software (MT930 Series) ATSv5 Automated Tuner System Software (MT993 Series) AMTSv3 Automated Mobile Test System Software (MT910 Series) Maury Automated Tuners LXI -Certified High-Gamma Tuners LXI -Certified High-Power Tuners LXI -Certified 7mm Tuners LXI -Certified 3.5mm Tuners LXI -Certified 2.4mm Tuners LXI -Certified 1.85mm Tuners Millimeter-Wave Tuners LXI -Certified Multi-Harmonic Tuners LXI -Certified 7mm Sensor Tuners Automated Sliding Loads Pre-Matching Probe Mounts Noise Receiver Modules 50 GHz Noise Receiver Modules 50 GHz PNA-X Noise Receiver Modules Millimeter-Wave Noise Receiver Modules Precision Low-Loss Coaxial Triplexers & Diplexers Low-Loss Couplers Low-Loss Load Pull Test Fixtures Wide Matching Range Coaxial Slide Screw Tuners RF Device Characterization System Integration Turnkey Measurement Systems Integrated Load Pull and Noise Measurement Systems Mixed-Signal Active Load Pull Systems AMCAD Engineering's PIV/PLP Family of Pulsed IV Systems For the Most Up-To-Date Information Visit MAURYMW.COM

MT1000 Mixed-Signal Active Load Pull System (30.0 MHz to 40.0 GHz) And MT2001 System Software U.S. Patent No. 8,456,175 www.anteverta-mw.com Powered by Key Features (Typical Performance) Broadband system concept (e.g. 0.7-40.0 GHz) Re-configurable hardware; single-ended number of controlled harmonics High speed and dynamic range Embedded measurement of (Pulsed/Isothermal) DC parameters Single tone "Real-time" measurement speed >1,000 power and load states per minute Multi-dimensional parameter sweeps (Pulsed/Isothermal) High Power testing Measurement of calibrated Voltage and Current waveforms Device protection included Waveform reconstruction MAURY MICROWAVE CORPORATION 3 MARKETING INFORMATION 4T-096 November 2015

"Real-Time" Load Pull Synchronization between signal generation and detection facilitates ultra-fast measurements. Independently fully controlled multidimensional Load Pull parameters sweep 5,760 measurement points in less than 5 minutes: 90 fundamental load states, swept load and source harmonic 16 power levels termination, Figure 1. Injection signals as used in the "real-time" multi-dimensional parameter sweeps. High Power/On-Wafer Configuration The active loops are fully re-configurable (e.g., the same hardware would also support source pull at f0 and load pull at f0, 2f0 and 3f0, or true differential source and load pull at f0). See [1] in the diagram below. The proprietary algorithm (patent pending) results in low requirements on the loop amplifiers, so linearity is no longer a problem in this regard, while their Psat should be just slightly larger than the power generated by the device under test (DUT). See [2] in the diagram at below. MAURY MICROWAVE CORPORATION MARKETING INFORMATION 4T-096 November 2015 4

Available Models Model System RF Bandwidth (GHz) Number of Active Tuning Loops 2 Power 1 Handling: CW/Pulsed (W) Typical Detection Dynamic Range (db) Typical Active Load Dynamic Range (db) Minimum Pulse Width (ns) MT1000HF2 0.03 2.0 2 MT1000HF4 0.03 2.0 4 50/500 MT1000A2 0.3 6.0 2 MT1000A4 0.3 6.0 4 MT1000B2 0.4 18.0 2 MT1000B4 0.4 18.0 4 100/1000 80 60 2000 MT1000D2 0.5 26.0 2 MT1000D4 0.5 26.0 4 MT1000E2 0.7 40.0 2 20/200 MT1000E4 0.7 40.0 4 1 Higher power options are available. 2 5-loop and 6-loop add-ons available. MT2001 Software Modules Module MT2001A MT2001D MT2001E MT2001F Description MT2000 POWER MEASUREMENTS (required) MT2000 NVNA (TIME DOMAIN ANALYSIS) EXTERNAL CONTROL VISUALIZATION MAURY MICROWAVE CORPORATION 5 MARKETING INFORMATION 4T-096 November 2015

MT1000 Suggested Reading 5A-044 Active Harmonic Load Pull with Realistic Wideband Communications Signals. 5A-045 Active Harmonic Load Pull for On-Wafer Out-of-Band Device Linearity Optimization. 5A-046 A Mixed-Signal Approach for High-Speed Fully Controlled Multidimensional Load Pull Parameters Sweep. 5A-047 Base-Band Impedance Control and Calibration for On-Wafer Linearity measurements 5A-048 A Mixed-Signal Load Pull System for Base-Station Applications 5C-087 Active Load Pull Surpasses 500 Watts! MAURY MICROWAVE CORPORATION MARKETING INFORMATION 4T-096 November 2015 6

Contact Us: Web: maurymw.com Email: maury@maurymw.com Voice: +1-909-987-4715 Fax: +1-909-987-1112 MAURY MICROWAVE CORPORATION TECHNICAL DATA 4T-096 November 2015 2015 Maury Microwave Corporation. All Rights Reserved. Specifications are subject to change without notice.