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AD9953 数据表(PDF) 21 Page - Analog Devices |
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AD9953 数据表(HTML) 21 Page - Analog Devices |
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21 / 32 page ![]() Data Sheet AD9953 Rev. B | Page 21 of 32 next address, and the timer reloads the ramp rate bits and continues counting down. This sequence continues until the RAM address generator has incremented to an address equal to the RAM segment final address bits of the current RSCW. Upon reaching this terminal address, the RAM address generator reloads the RAM segment beginning address bits and the sequence repeats. The sequence of circulating through the specified RAM addresses repeats for as long as the part is programmed for this mode. The no-dwell bit is a Don’t Care in this mode. RAM Controlled Modes of Operation Notes and Summary Notes: 1. The user must ensure that the beginning address is lower than the final address. 2. Changing profiles or issuing an I/O UPDATE automatically terminates the current sweep and starts the next sweep. 3. Setting the RAM destination bit true such that the RAM output drives the phase offset adder is valid. While the above discussion describes a frequency sweep, a phase sweep operation is also available. The AD9953 offers five modes of RAM controlled operation (see Table 6). Table 6. RAM Modes of Operation RSCW<7:5> (Binary) Mode Notes 000 Direct Switch No Sweeping, Profiles Valid, No Dwell Invalid 001 Ramp Up Sweeping, Profiles Valid, No Dwell Valid 010 Bidirectional Ramp Sweeping, Profile <0> Is a Direction Control Bit, No Dwell Invalid 011 Continuous Bidirectional Ramp Sweeping, Profiles Valid, No Dwell Invalid 100 Continuous Recirculate Sweeping, Profiles Valid, No Dwell Invalid 101, 110, 111 Open Invalid Mode—Default To Direct Switch Internal Profile Control The AD9953 offers a mode in which a composite frequency sweep can be built, for which the timing control is software programmable. The internal profile control capability disen- gages the Profile<1:0> pins and enables the AD9953 to take control of switching between profiles. Modes are defined that allow continuous or single burst profile switches for three combinations of profile selection bits. These are listed in Table 7. When any of the CFR1<29:27> bits are active, the internal profile control mode is engaged. Internal profile control is only valid when the device is operating in RAM mode. There is no internal profile control for linear sweeping operations. When the internal profile control mode is engaged, the RAM segment mode control bits are Don’t Care and the device operates all profiles as if these mode control bits were programmed for ramp-up mode. Switching between profiles occurs when the RAM address generator has exhausted the memory contents for the current profile. Table 7. Internal Profile Control CFR1<29:27> (Binary) Mode Description 000 Internal Control Inactive 001 Internal Control Active, Single Burst, Activate Profile 0, Then 1, Then Stop 010 Internal Control Active, Single Burst, Activate Profile 0, Then 1, Then 2, Then Stop 011 Internal Control Active, Single Burst, Activate Profile 0, Then 1, Then 2, Then 3, Then Stop 100 Internal Control Active, Continuous, Activate Profile 0, Then 1, Then Loop Starting 0 101 Internal Control Active, Continuous, Activate Profile 0, Then 1, Then 2, Then Loop Starting 0 110 Internal Control Active, Continuous, Activate Profile 0, Then 1, Then 2, Then 3, Then Loop Starting 0 111 Invalid A single burst mode is one in which the composite sweep is executed once. For example, assume the device is programmed for ramp-up mode and the CFR1<29:27> bits are written to Logic 010(b). Upon receiving an I/O UPDATE, the internal control logic signals the device to begin executing the ramp-up mode sequence for Profile 0. Upon reaching the RAM segment final address value for Profile 0, the device automatically switches to Profile 1 and begins executing that ramp-up sequence. Upon reaching the RAM segment final address value for Profile 1, the device automatically switches to Profile 2 and begins executing that ramp-up sequence. When the RAM segment final address value for Profile 2 is reached, the sequence is over and the composite sweep has completed. Issuing another I/O UPDATE restarts the burst process. A continuous internal profile control mode is one in which the composite sweep is continuously executed for as long as the device is programmed into that mode. Using the example above, except programming the CFR1<29:27> bits to Logic 101(b), the operation would be identical until the RAM segment final address value for Profile 2 is reached. At this point, instead of stopping the sequence, it repeats, starting with Profile 0. |
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