The AFE7958 is a high performance, wide bandwidth multi-channel
transceiver, integrating four (4T) RF sampling transmitter (TX) chains and a total
of six (6R) RF sampling receivers. With operation up to 12GHz, the AFE enables
direct RF sampling in the L, S, C and X-band frequency ranges without the need for
additional frequency conversions stages. This high density and configurability
enables high-channel-count, multi-mission systems.
The TX and RX interface data rates can
be chosen based on signal bandwidths, and is limited by the JESD204B/C interface
speed. The data streams are matched to the DAC update rate or to the ADC conversion
rate using interpolation in the DUC or decimation in the DDC.
The DAC runs at a maximum rate of
12GSPS, and has a mode to operate in the 2nd Nyquist, enabling the generation of RF
signals up to 12GHz. A variable gain amplifier (termed as TDSA) enables changing the
power output from the transmitter.
Each receive chain has a Digital Step
Attenuator (RDSA) followed by a 3GSPS ADC which can convert higher Nyquist zones to
digitize RF signals up to a maximum of 12GHz. Digital peak detectors at the ADC
output can be configured to assist an external Automatic Gain control (AGC) loop to
control LNA (external) gain and DSA (internal) attenuation.
The AFE7958 can be programmed using the SPI interface. The device also has
several GPIOs that can be configured to provide interrupts and to achieve a fast
control of functions like NCO switching.
The AFE7958 is a high performance, wide bandwidth multi-channel
transceiver, integrating four (4T) RF sampling transmitter (TX) chains and a total
of six (6R) RF sampling receivers. With operation up to 12GHz, the AFE enables
direct RF sampling in the L, S, C and X-band frequency ranges without the need for
additional frequency conversions stages. This high density and configurability
enables high-channel-count, multi-mission systems.
The TX and RX interface data rates can
be chosen based on signal bandwidths, and is limited by the JESD204B/C interface
speed. The data streams are matched to the DAC update rate or to the ADC conversion
rate using interpolation in the DUC or decimation in the DDC.
The DAC runs at a maximum rate of
12GSPS, and has a mode to operate in the 2nd Nyquist, enabling the generation of RF
signals up to 12GHz. A variable gain amplifier (termed as TDSA) enables changing the
power output from the transmitter.
Each receive chain has a Digital Step
Attenuator (RDSA) followed by a 3GSPS ADC which can convert higher Nyquist zones to
digitize RF signals up to a maximum of 12GHz. Digital peak detectors at the ADC
output can be configured to assist an external Automatic Gain control (AGC) loop to
control LNA (external) gain and DSA (internal) attenuation.
The AFE7958 can be programmed using the SPI interface. The device also has
several GPIOs that can be configured to provide interrupts and to achieve a fast
control of functions like NCO switching.