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Amplitude Range | 1 mVpp to 10 Vpp into 50 Ω |
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Waveforms | Sine, Square, Triangle, Ramp, Pulse, Noise, Arbitrary |
Output Impedance | 50 Ω |
Modulation | AM, FM, PM, FSK, PWM |
Frequency Stability | ±1 ppm/year |
Weight | 4.5 kg |
Output Voltage | 20 Vpp open circuit |
Power Supply | 100 V to 240 V, 50 Hz to 60 Hz |
Describes requirements for connecting instruments to external devices for emission control.
Details specifications for signal interconnection test leads to minimize emission and ensure proper grounding.
Explains potential impact of strong electromagnetic fields on measurement accuracy.
Details frequency range, accuracy, resolution, and stability of the synthesizer.
Specifies parameters for AM modulation, including depth, resolution, and accuracy.
Outlines parameters for FM modulation, such as deviation, resolution, and bandwidth.
Lists specifications for PM modulation, including deviation range, resolution, and units.
Describes parameters for gate modulation, including on/off ratio and timing.
Covers safety requirements, precautions for mains connection, and handling of potential hazards.
Defines permissible ambient temperature, humidity, and environmental conditions for instrument use.
Outlines the manufacturer's warranty terms and conditions for defects in materials and workmanship.
Details power source requirements, voltage fluctuations, and fuse protection.
Guides through the initial power-on sequence, self-tests, and default configuration.
Explains how to set and modify instrument parameters using the keypad and rotary control.
Details the procedure for setting the output signal frequency using various input methods.
Describes how to adjust the output signal level using the front panel controls.
Guides on choosing and configuring AM, FM, PM, and GATE modulation types and their parameters.
Details setting AM depth, shape, frequency, and enabling/disabling AM modulation.
Covers setting FM deviation, shape, frequency, mode, and coupling for FM signals.
Explains how to set PM deviation, units, source, shape, and mode for phase modulation.
Guides on enabling and configuring GATE modulation with logic signals and timing parameters.
Describes how to select internal or external reference signals and check phaselock status.
Explains how to define step increments for frequency, level, and modulation parameters.
Guides configuration of beeper, encoder, communication interface, and LCD display settings.
Details settings for the standard HO90 serial interface and optional HO89 RS232.
Explains how to configure the optional HO88 IEEE-488 interface address.
Describes how to engage remote operation and return to local control mode.
Introduces command syntax, conventions, and general commands like identification and saving states.
Details commands for controlling the RF output signal state (ON/OFF).
Explains commands for setting the RF output signal level and units.
Covers commands for controlling the carrier frequency of the output signal.
Details commands for selecting the reference signal source (internal/external).
Explains commands for controlling GATE modulation, polarity, and state.
Covers commands for setting AM depth, source, frequency, shape, and state.
Details commands for FM deviation, source, frequency, shape, mode, and state.
Explains commands for PM deviation, units, source, frequency, shape, and state.
Describes the command to query the instrument's current error code.
Provides a visual guide to selecting functions like frequency, level, modulation, and step settings.
Illustrates the process for setting step values for frequency, level, and modulation parameters.
Shows the flowchart for configuring AM modulation parameters like shape, frequency, and depth.
Presents the flowchart for setting PM modulation parameters such as deviation, shape, and source.
Displays the flowchart for configuring FM modulation parameters like deviation, shape, and frequency.
Illustrates the flowchart for enabling and setting up GATE modulation parameters.
Shows the flowchart for navigating the main configuration menu, including reference and special functions.
Block diagram of the reference frequency generation and stabilization loop.
Block diagram of the main Phase-Locked Loop for frequency synthesis.
Block diagram of the secondary PLL used in frequency synthesis.
Block diagram of the transposition circuit for frequency mixing and filtering.
Block diagram of the Direct Digital Synthesis (DDS) for frequency generation.
Block diagram of the level control loop for output amplitude stabilization.
Block diagram of the programmable attenuator circuit for level control.