• NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case
  • NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case

NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case

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NanoVNA-F Vector Network Analyzer VNA Antenna Analyzer 50K-1.5GHz with 4.3" IPS Screen Metal Case   

Description:

NanoVNA-F Mini Vector Network Analyzer is a product based on the Open Source Project of NanoVNA (https://ttrf.tk/kit/nanovna/). The RF part is consistent with the original version (NanoVNA-F uses harmonic spread measurement frequency to 1.5 GHz).

NanoVNA-F measurement range is 50k-1.5GHz. The harmonic spread measurement frequency of the output signal of the clock chip SI5351 is 1500MHz. At 600M-1GHz, the dynamic range of S11 is 40dB (standing wave ratio is less than 1.02). At the same time, a metal shield is designed for the RF front-end, so that the dynamic range of S21 is better than 60dB in the whole frequency band.  

Hardware Features & Improvements:
1. 4.3-inch IPS TFT LCD screen with a larger view angle and can be seen clearly in strong outdoor light.
2. Large capacity 5000mAh. Longer standby time and an USB expansion interface. Usually, it can be used as a power bank when the instrument is not used.
3. High current 2A charge IC makes the charging time shorter.
4. Larger and better operating thumb wheel.
5. Make power switch more comfortable to operate.  
6. Support Chinese and English menu switching.
7. Upgrade the user program by virtual U disk.
8. Standard aluminium shell to protect SMA connector and reduce the interference of external electromagnetic wave to the device.
9. Open source software github.com/flyoob/NanoVNA-F.
10. You can test the standing wave and impedance of an antenna, and you can also debug the insertion loss, isolation, and standing wave of the duplexer, filter, and test the attenuation, shortening factor, and phase of a cable. You can also test the amplification of an antenna amplifier, and it can be used as a frequency meter.

Basic Performance:
- Dimensions: 14 x 7.5 x 2 cm (LxWxH)
- Measuring Frequency: 50kHz ~ 1500MHz
- RF Output: - 13 dbm (maximum - 9 dbm)
- Frequency Accuracy: < 0.5 ppm
- Port SWR: < 1.1
- Display: 4.3 inch IPS TFT (800x480) (Visible in sunlight outdoors)
- USB Interface: USB Type-C; Communication Mode: CDC (Serial)
- Power Consumption: USB 5V 200mA; Maximum charging current 2A
- Output Capability: 5V/1A, supporting for Android and Apple phones
- Number of Calibration Points: 101
- Number of Scanning Points: 101
- Display Tracking: 4, Mark: 4, Settings Saved: 5
- Scanning Time: about 1.9s/time (50kHz-1500MHz full frequency band)
- Measurable S parameters, voltage standing wave ratio SWR, phase diagram, group delay, Smith circle diagram, etc.
- A metal shield for the RF front end allows the S21 to have a dynamic range better than 60dB over the full frequency range
- Power Bank Function: 5V/1A , supporting for Android and Apple Mobile

Package Included:
- 1 x Main Unit
- 2 x SMA-JJ RG316 Cables 20cm
- 1 x 50Ω Standard Load
- 1 x Open Circuit Calibration Part
- 1 x Short Circuit Calibration Part
- 1 x SMA-F Double-Pass Connector (Female)
- 1 x SMA Elbow Connector Female to Male
- 1 x Type-C Data Cable

Attention:
- The TX port and RX port cannot input more than 0dbm power (1mw). If it exceeds, it will burn out.
- NanoVNA-F is with a standard SMA female connector.
- With the included calibration parts, the instrument can obtain good measurement results after calibration. Products been calibrated in full band before delivery and the data is stored in parameter 0. If you need to change the measurement conditions, such as adding a patch cord or modifying the frequency range, you need to re-calibrate and store the parameters in 0-4. All parameters can be recalled through the callback function.

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