Equipment - Function Generators

Image Part Number Description / PDF Quantity Rfq
4078

4078

B&K Precision

FUNCTION GENERATOR 25MHZ DL CHNL

0

4055

4055

B&K Precision

FUNCTION GENERATOR 50MHZ SWEEP

0

4017A

4017A

B&K Precision

FUNCTION GENERATOR 10MHZ SWEEP

6

4003A

4003A

B&K Precision

FUNCTION GENERATOR 4MHZ SWEEP

0

4007B

4007B

B&K Precision

FUNCTION GENERATOR 7MHZ DDS

23

4079

4079

B&K Precision

FUNCTION GEN 50MHZ DUAL CHANNEL

0

4053

4053

B&K Precision

FUNCTION GENERATOR 10MHZ SWEEP

0

4013B

4013B

B&K Precision

FUNCTION GENERATOR 12 MHZ DDS

7

4034

4034

B&K Precision

50 MHZ DUAL CH PULSE GENERATOR

0

4076

4076

B&K Precision

FUNCTION GENERTR 50MHZ ARBITRARY

0

4053B

4053B

B&K Precision

FUNCTION GENERATOR 10MHZ SWEEP

10

4047B

4047B

B&K Precision

20 MHZ DUAL CHANNEL FUNCTION/ARB

6

4054

4054

B&K Precision

FUNCTION GENERATOR 25MHZ SWEEP

0

4075

4075

B&K Precision

FUNCTION GENERATOR 25MHZ ARBTRRY

0

4033

4033

B&K Precision

50 MHZ PULSE GENERATOR

0

4045

4045

B&K Precision

FUNCTION GENERATOR 20MHZ SWEEP

0

4063B

4063B

B&K Precision

80 MHZ DUAL CH FUNCTION/ARBITRAR

6

4064B

4064B

B&K Precision

120 MHZ DUAL CH FUNCTION/ARBITRA

4

4012A

4012A

B&K Precision

FUNCTION GENERATOR 5 MHZ SWEEP

1

4065

4065

B&K Precision

160MHZ DUAL WAVEFROM GEN

12

Equipment - Function Generators

1. Overview

Function generators are electronic test equipment that generate precise AC signals with adjustable frequency, amplitude, and waveform. They play a critical role in designing, testing, and repairing electronic circuits by simulating real-world signal conditions. These instruments enable engineers to verify circuit behavior under controlled parameters, making them indispensable in R&D, manufacturing, and educational settings.

2. Major Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Arbitrary Waveform Generators (AWG)Custom waveform creation, high-resolution signal editingRadar simulation, communication protocol testing
Signal GeneratorsStandard waveforms (sine, square, triangle), frequency sweepingComponent characterization, impedance measurement
Function GeneratorsBasic waveforms with variable duty cycle and offsetEducational labs, sensor testing
RFG GeneratorsHigh-frequency signal generation (GHz range)Wireless communication testing, aerospace applications

3. Structure and Components

Typical function generators consist of:

  • Digital signal processor (DSP) for waveform generation
  • DAC (Digital-to-Analog Converter) module
  • Amplification and attenuation circuits
  • Control interface (knobs, touchscreen, or software)
  • BNC output ports with 50 impedance matching
  • Power supply unit with voltage regulation

4. Key Technical Specifications

ParameterImportance
Frequency range: 1 Hz - 1GHzDetermines application versatility
Output amplitude: -20dBm to +30dBmEnables testing under various power levels
Waveform resolution: 12-16 bitsAffects signal fidelity
Sample rate: 1-10 GSPSDictates maximum frequency capability
Phase noise: -100dBc/Hz @1kHz offsetCritical for communication systems

5. Application Fields

  • Telecommunications: 5G NR signal testing, fiber optic modulation
  • Automotive: Sensor signal simulation for ADAS systems
  • Medical: Biomedical signal emulation for diagnostic equipment
  • Education: Circuit analysis in undergraduate laboratories
  • Aerospace: Avionics component validation under extreme conditions

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
Keysight Technologies33500B Series320 MSa/s sample rate, 16-bit resolution
Teledyne LeCroyWaveStation 2000Arbitrary waveform capability, 25MHz bandwidth
NI (National Instruments)PXIe-5433Modular design, 100MHz output
Rohde & SchwarzSMA100B6GHz frequency range, ultra-low phase noise

7. Selection Guidelines

Key selection criteria include:

  • Required frequency range and amplitude accuracy
  • Waveform complexity requirements
  • Interface preferences (GPIB, USB, LAN, PXI)
  • Form factor (benchtop vs modular)
  • Phase noise requirements for communication systems
  • Budget considerations (entry-level vs high-end models)

Example: For IoT device testing, select a generator with at least 20MHz bandwidth, built-in modulation schemes (AM/FM), and USB interface compatibility.

8. Industry Trends

Current trends include:

  • Integration with AI for automated test pattern generation
  • Increased adoption of software-defined instruments
  • Development of mmWave signal generation capabilities
  • Cloud connectivity for remote monitoring and control
  • Miniaturization through System-on-Chip (SoC) technology

Market forecasts indicate 7.2% CAGR through 2027, driven by 5G deployment and automotive electronics demand.

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