Anritsu 69347A Synthesized Sweep/Signal Generator, 0.01 – 20 GHz
Anritsu 69347A Synthesized Sweep/Signal Generator,Generates stable RF signals from 0.01 to 20 GHz with low phase noise and high reliability. Excellent for use in R&D labs, signal analysis, and automated test environments.
- Model
- Anritsu 69347A
- Calibration
- Available on request
- Price
- $7,230
- Status
- In stock
- RFQ ref
- 69347A
This unit
The Anritsu 69347A is a synthesized sweep/signal generator delivering stable RF signals from 0.01 GHz to 20 GHz for R&D, signal analysis, and automated test applications. Phase-lock frequency control enables both discrete CW operation and wide or narrow band sweeps across multiple modes. The instrument supports AM, FM, and pulse modulation with programmable frequency agility for up to 1000 non-sequential frequencies.
Full front-panel control is available, with remote operation via IEEE-488 GPIB (except power on/standby).
Technical Specifications
- Frequency Range: 0.01 GHz to 20 GHz
- Maximum Output Power: 13 dBm
- Output Accuracy: ±2 dB
- Output Impedance: 50 Ohms
- Single-Side-Band Phase Noise: –105 dBc/Hz (minimum) to –66 dBc/Hz (maximum)
- Modulation Types: AM, FM, Pulse
- Sweep Modes: Alternate, Analog, Power, Step, and Manual
- Step Sweep Switching Time: <15 ms plus 1 ms/GHz step size, or <40 ms typical maximum
- Step Dwell Time: 1 ms to 99 seconds
Key Features
- Phase-locked frequency control for precise signal generation
- Alternate sweep capability between two defined ranges with independent power levels
- Manual sweep with user-selectable step sizes and phase-locked frequency adjustment
- Programmable storage of up to 1000 non-sequential frequencies in volatile memory
- Step dwell time begins after phase lock for stable measurements
Typical Applications
- Component and subsystem characterization
- RF and microwave system testing
- Automated test systems requiring remote control
- Frequency-agile signal synthesis across microwave bands
Compatibility & Integration
- IEEE-488 GPIB remote control with SCPI programmability (Option 19)
- Available options include 110 dB step attenuator (Option 2A), 0.1 Hz frequency resolution (Option 11), and high stability time base (Option 16)
Specifications
| Parameter | Value |
|---|---|
| Frequency Range | 0.01 GHz to 20 GHz | Power Range (dBm): 13 dBm maximum output |
Anritsu 69347A — Repair & Calibration Service
Aumictech offers NIST-traceable calibration and repair for the Anritsu 69347A. Calibration covers output frequency accuracy, output power level accuracy across the full frequency range, AM/FM/PM/pulse modulation accuracy, harmonic and spurious output levels, and phase noise floor verification. All calibrations ship with a NIST-traceable certificate. Turnaround is typically 1–3 business days after receipt.
Common Anritsu 69347A faults: YIG oscillator failure (no output or loss of lock), step attenuator wear (output drops or steps at set attenuation), ALC loop failure (uncontrolled output power), I/Q modulator assembly failure. HP/Agilent 836xx series most common faults are YIG oscillator failure and step attenuator contact wear causing output steps or drops at specific attenuation settings. Keysight E4428C/E4438C units most commonly develop ALC loop failure and I/Q modulator assembly faults. YIG oscillator replacement and attenuator service are stocked repairs.
Anritsu 69347A price
This Anritsu 69347A is listed at $7,230. Calibration is available separately from $450. Contact us for volume pricing or if you need multiple units.
Anritsu 69347A calibration cost
NIST-traceable calibration for the Anritsu 69347A is $450 (standard — pass/fail certificate and calibration sticker) or $650 (full measured data at every test point, reference standards documented, traceability chain included). Calibration for this instrument covers output frequency accuracy, output power level accuracy across the full frequency range, AM/FM/PM/pulse modulation accuracy, harmonic and spurious output levels, and phase noise floor verification. Turnaround is 1 to 3 business days after receipt. See full calibration details →