LTE Measurement Application

Measurements

Description

 

Specifications

 

Supplemental Information

 

 

 

 

 

 

Adjacent Channel Power

 

 

 

Single Channel

 

Minimum power at RF

 

 

 

50 dBm (nominal)

input

 

 

 

 

 

 

Accuracy

 

Channel Bandwidth

 

 

Radio

Offset

5 MHz

10 MHz

20 MHz

ACPR Range for Specification

MS

Adjacenta

±0.15 dB

±0.21 dB

±0.36 dB

33 to 27 dBc with opt MLb

BTS

Adjacentc

±0.81 dB

±1.02 dB

±1.58 dB

48 to 42 dBc with opt MLd

BTS

Alternatec

±0.27 dB

±0.46 dB

±0.87 dB

48 to 42 dBc with opt MLe

Dynamic Range E-UTRA

 

 

 

Test conditionsf

 

 

 

 

 

 

Dynamic

Optimum

 

Channel

 

 

 

Range

Mixer Level

Offset

BW

 

 

 

(nominal)

(nominal)

Adjacent

5 MHz

 

 

 

70.0 dB

16.5 dBm

Adjacent

10 MHz

 

 

 

69.3 dB

16.5 dBm

Adjacent

20 MHz

 

 

 

68.4 dB

16.3 dBm

Alternate

5 MHz

 

 

 

75.8 dB

16.6 dBm

Alternate

10 MHz

 

 

 

73.2 dB

16.4 dBm

Alternate

20 MHz

 

 

 

70.3 dB

16.3 dBm

Dynamic Range UTRA

 

 

 

Test conditionsg

 

 

 

 

 

 

Dynamic

Optimum

 

Channel

 

 

 

Range

Mixer Level

Offset

BW

 

 

 

(nominal)

(nominal)

2.5 MHz

5 MHz

 

 

 

70.5 dB

16.6 dBm

2.5 MHz

10 MHz

 

 

 

70.5 dB

16.4 dBm

2.5 MHz

20 MHz

 

 

 

71.4 dB

16.3 dBm

7.5 MHz

5 MHz

 

 

 

76.5 dB

16.6 dBm

7.5 MHz

10 MHz

 

 

 

76.5 dB

16.4 dBm

7.5 MHz

20 MHz

 

 

 

75.7 dB

16.3 dBm

 

 

 

 

 

 

 

a.Measurement bandwidths for mobile stations are 4.5, 9.0 and 18.0 MHz for channel bandwidths of 5, 10 and 20 MHz respectively.

b.The optimum mixer levels (ML) are 19, 17 and 17 dBm for channel bandwidths of 5, 10 and 20 MHz respectively.

c.Measurement bandwidths for base transceiver stations are 4.515, 9.015 and 18.015 MHz for channel bandwidths of 5, 10 and 20 MHz respectively.

d.The optimum mixer levels (ML) are 11, 8 and −6 dBm for channel bandwidths of 5, 10 and 20 MHz respectively.

e.The optimum mixer level (ML) is 8 dBm.

f.E-TM1.1 and E-TM1.2 used for test. Noise Correction set to On.

g.E-TM1.1 and E-TM1.2 used for test. Noise Correction set to On.

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Chapter 16

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Agilent Technologies N9010A specifications Adjacent Channel Power, 194

N9010A specifications

Agilent Technologies, now known as Keysight Technologies, offers a wide range of sophisticated measurement instruments, one of which is the N9010A, a high-performance signal analyzer. The N9010A is a versatile tool designed to meet the needs of engineers and researchers dealing with complex signal generation and analysis.

The N9010A signal analyzer is built on the X-Series signal analysis platform, making it an outstanding choice for various applications, including wireless communication, radar, and electronic warfare. Its main features include an extensive frequency range from 9 kHz to 6 GHz, which provides users with the capability to analyze a diverse array of signals.

One of the defining characteristics of the N9010A is its high dynamic range and sensitivity. The instrument has been engineered to ensure that weak signals can be accurately detected in the presence of strong interfering signals. This quality is crucial for applications such as spectrum monitoring and interference analysis.

Equipped with advanced digital signal processing techniques, the N9010A allows for real-time analysis of complex signals. The analyzer supports various modulation techniques and can perform measurements on frequency, time, and phase to provide a comprehensive view of signal performance. Users can leverage its abilities to analyze a wide range of formats including LTE, Wi-Fi, and many others.

Another significant feature of the N9010A is its flexibility. The instrument includes various software options and measurement applications that can be configured to meet specific testing requirements. This adaptability is essential for engineers who need to stay current with industry developments and evolving technologies.

User-friendliness is also a hallmark of the N9010A. The device features an intuitive interface that simplifies the navigation process, making it easier for users to set up tests and perform analyses with reduced training time.

Additionally, the N9010A can be integrated into a broader test environment, allowing for seamless operation within automated measurement systems. This capability enhances productivity and efficiency in design validation and compliance testing.

In summary, the Agilent Technologies N9010A signal analyzer combines advanced technology, high performance, and user-friendly features. Its ability to handle a wide range of applications makes it an essential tool in the toolbox of modern engineers and researchers working in signal analysis, making it a valuable investment in the pursuit of technological advancements.