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PXI-5691, 2-Channel, 8 GHz, SMA Female Connectors, PXI RF Amplifier

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PXI-5691 National Instruments RF Amplifier | Apex Waves | Image
PXI-5691 National Instruments RF Amplifier | Apex Waves | Image
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National Instruments PXI-5691 PXI RF Amplifier

The National Instruments PXI-5691 (Part Numbers: 781035-01, 195812F-01L) is a 2-channel, 8 GHz, programmable PXI RF amplifier. It features Channel 0 as a fixed-gain amplifier and Channel 1 as a programmable-gain amplifier with a direct bypass option, all housed in a single-slot 3U PXI module. This module has a low noise figure and adjustable gain, optimizing the sensitivity and dynamic range of compatible PXI RF vector signal analyzers. The NI PXI-5691 can also bypass its gain programmatically through switching to a direct path. This functionality enhances monitoring and testing performance of compatible PXI RF Vector Signal Analyzers by providing the user with the capability to shift the dynamic range to easily and quickly monitor extremely weak or strong signals.

Channel 0 (CH 0) of this module offers ±0.9 dB level calibration accuracy, +30 dBm typical absolute maximum input power, +20 dBm maximum reverse power (without damage), +25 dBm maximum output power, and ±10 V typical DC voltage at the input. Channel 1 (CH 1) offers +31.5 dB gain range, +0.5 dB gain step size, +4 µs maximum level settling time, ±0.9 dB level calibration accuracy, and +30 dBm absolute maximum input power while operating in typical conditions. CH 1 also includes a direct path, which bypasses the amplifier circuitry and passes signals directly through with minimal attenuation. The device has a maximum power of 2.1 W at 3.3 Vdc, 6.9 W at 5 Vdc, 2.9 W at 12 Vdc, and 0.34 W at -12 Vdc.

The PXI-5691 operates with the NI driver software, which is compatible with software packages/application development environments such as LabVIEW, C, or LabWindows/CVI. The device can be configured using the Measurement & Automation Explorer (MAX) tool.

The NI PXI-5691 features 4 SMA female front panel connectors for all the channel inputs and outputs. These connectors are designed to operate at 50 Ω impedance, with AC coupling for all paths except for Channel 1’s direct path, which is DC coupled. This RF amplifier weighs 9.2 oz. and measures 21.6 × 2.0 × 13.0 cm in physical dimensions. The PXI-5691 RF amplifier is designed to operate within a frequency range of 50 MHz to 8.0 GHz. It has a recommended operating temperature range of 0 °C to 55 °C, a storage temperature range of -40 °C to 70 °C, a warm-up time of 10 minutes, and a recommended calibration interval of 1 year.

The PXI-5691 is no longer available direct from National Instruments (NI), but the PXI RF amplifier will remain available in perpetuity with Apex Waves for either purchase or repair services!

ModelPXI-5691
Part Number781035-01, 195812F-01L
ManufacturerNational Instruments
TypePXI RF Amplifier
Channels2
Frequency Range50 MHz to 8.0 GHz
Maximum Output Power+25 dBm
Bus ConnectorPXI (Standard PXI Peripheral Slot, not PXIe or Hybrid)
Gain Range (CH 1) +31.5 dB, with a 0.5 dB Step Size
Front Panel Connector TypeSMA Female
Front Panel Connector Coupling AC
DC Voltage at Input±10 V, Typically
Calibration Interval1 Year
Operating Temp Range0 °C to 55 °C
Storage Temp Range-40 °C to 70 °C
Dimensions8.5 x 0.8 x 5.1 in. (21.6 cm × 2.0 cm × 13.0 cm)
Warranty2-3 Years
PriceRequest a Quote 

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National Instruments PXI-5691 Frequently Asked Questions

 

Question: What is the input amplitude of the PXI-5691?

Answer: The input amplitude of the RF amplifier is +30 dBm maximum.

 

Question: What is the gain of the two channels on the NI PXI-5691?

Answer: Channel 0 has a fixed gain, and Channel 1 has a programmable gain.

 

Question: How long should the PXI RF amplifier warm up before use?

Answer: Before operation, the PXI-5691 should warm up for at least 10 minutes.

 

Question: What is the DC voltage at input for the PXI-5691?

Answer: The DC voltage at the input is ±10 V (typical), applicable to Channel 1's Direct Path.

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PXL-5691, PXO-5691, PXI-R691, PXI-T691, PXI-56P1
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