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ADAR2001ACCZ-R7 Folha de dados(PDF) 20 Page - Analog Devices

Nome de Peças ADAR2001ACCZ-R7
Descrição Electrónicos  10 GHz to 40 GHz, 1:4 Channel, 4횞 Frequency Multiplier/Filter
PDF  39 Pages
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Fabricante Electrônico  AD [Analog Devices]
Página de início  http://www.analog.com
Logo AD - Analog Devices

ADAR2001ACCZ-R7 Folha de dados(HTML) 20 Page - Analog Devices

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ADAR2001
Data Sheet
Rev. 0 | Page 20 of 39
MULTICHANNEL FREQUENCY SWEEP
Figure 31 shows an example of how the two state machines can
be used to perform a multichannel frequency sweep from
20 GHz to 40 GHz (that is, sweep through a frequency range
while on one channel, move to the next channel, and repeat the
sweep). In this example, because both MULT_STATES
(Register 0x018, Bits[3:0]) and TX_STATES (Register 0x017
Bits[6:0]) are 0 indexed, MULT_STATES is defined as 2
because there are three states inside the multiplier/filter loop
and TX_STATES as 3 because there are four states inside the
transmitter loop.
As shown in Figure 31,
Multiplier/Filter State 0 = sleep (outside the loop)
Multiplier/Filter State 1 = output 20 GHz to 25 GHz to PAs
Multiplier/Filter State 2 = output 25 GHz to 30 GHz to PAs
Multiplier/Filter State 3 = output 30 GHz to 40 GHz to PAs
Transmit State 0 = sleep (outside the loop)
Transmit State 1 = transmit on Channel 1
Transmit State 2 = transmit on Channel 2
Transmit State 3 = transmit on Channel 3
Transmit State 4 = transmit on Channel 4
Reset pulses on TxRST and MRST put both state machines in
their initial states, which in this case are defined as sleep modes.
Pulses on MADV and TxADV then advance both state
machines to their first active state.
In this example, an initial ready state is skipped, and the circuit
goes directly from sleep mode to active mode. Additional pulses
on MADV are applied as the frequency is swept. Multiplier
ready modes are used to ensure the fastest switching of the
multiplier/filter circuitry.
After the frequency sweep is completed on Channel 1, both
MADV and TxADV are pulsed to put the multiplier/filter back
into its first state and the transmitter switches the active
channel from 1 to 2. Then, the frequency sweep repeats itself
using repeated pulses on the MADV pin.
In this example, after the four channels are frequency swept,
both state machines loop back to their first active state. In a
large array, it is recommended to loop them back to a sleep or
ready state to wait for their turn to transmit again.
SEQUENCER SLEEP CONTROL
To further simplify the control of the ADAR2001, it is possible
to link the sleep states of the two state machines so that one
sequencer going to sleep forces the other to sleep as well. This
link helps to limit the total number of required states to achieve
a desired type of operation. To use this feature, one of the two
sleep control bits must be set, but not both.
MULT_STATE_0
TX_STATE_0
MULT: ALL SLEEP
BPF: N/A
PA: ALL SLEEP
SLEEP
MULTIPLIER
RESET
TRANSMITTER
RESET
MULTIPLIER
ADVANCE
TRANSMITTER
ADVANCE
MULT: MID ACT
BPF: HIGH
PA: CH. 1 ACT
CHANNEL 1
20GHz TO 25GHz
MULT_STATE_1
TX_STATE_1
MULT: HIGH ACT
BPF: LOW
PA: CH. 1 ACT
CHANNEL 1
25GHz TO 30GHz
MULT_STATE_2
TX_STATE_1
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULTIPLIER
ADVANCE
MULT: HIGH ACT
BPF: HIGH
PA: CH. 1 ACT
CHANNEL 1
30GHz TO 40GHz
MULT_STATE_3
TX_STATE_1
MULT: MID ACT
BPF: HIGH
PA: CH. 2 ACT
CHANNEL 2
20GHz TO 25GHz
MULT_STATE_1
TX_STATE_2
MULT: HIGH ACT
BPF: LOW
PA: CH. 2 ACT
CHANNEL 2
25GHz TO 30GHz
MULT_STATE_2
TX_STATE_2
MULT: HIGH ACT
BPF: HIGH
PA: CH. 2 ACT
CHANNEL 2
30GHz TO 40GHz
MULT_STATE_3
TX_STATE_2
TRANSMITTER
ADVANCE
MULTIPLIER
ADVANCE
TRANSMITTER
ADVANCE
MULTIPLIER
ADVANCE
TRANSMITTER
ADVANCE
MULTIPLIER
ADVANCE
TRANSMITTER
ADVANCE
MULT: MID ACT
BPF: HIGH
PA: CH. 3 ACT
CHANNEL 3
20GHz TO 25GHz
MULT_STATE_1
TX_STATE_3
MULT: HIGH ACT
BPF: LOW
PA: CH. 3 ACT
CHANNEL 3
25GHz TO 30GHz
MULT_STATE_2
TX_STATE_3
MULT: HIGH ACT
BPF: HIGH
PA: CH. 3 ACT
CHANNEL 3
30GHz TO 40GHz
MULT_STATE_3
TX_STATE_3
MULT: MID ACT
BPF: HIGH
PA: CH. 4 ACT
CHANNEL 4
20GHz TO 25GHz
MULT_STATE_1
TX_STATE_4
MULT: HIGH ACT
BPF: LOW
PA: CH. 4 ACT
CHANNEL 4
25GHz TO 30GHz
MULT_STATE_2
TX_STATE_4
MULT: HIGH ACT
BPF: HIGH
PA: CH. 4 ACT
CHANNEL 4
30GHz TO 40GHz
MULT_STATE_3
TX_STATE_4
Figure 31. State Machine Loop Example for 4-Channel Frequency Sweep



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