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LMX2572LP Datasheet(PDF) 65 Page - Texas Instruments |
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LMX2572LP Datasheet(HTML) 65 Page - Texas Instruments |
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65 / 82 page ![]() 1 / fPD Configurable pause time Accumulated ramp frequency. RAMP_THRESH Total ramp time = Desired ramp duration + sum of all pause time. RAMP_THRESH RAMPx_INC 65 LMX2572LP www.ti.com SNAS764 – MAY 2018 Product Folder Links: LMX2572LP Submit Documentation Feedback Copyright © 2018, Texas Instruments Incorporated Table 138. Automatic Ramping Mode Programming (continued) REGISTER FIELD VALUE DESCRIPTION RAMP0_LEN RAMP1_LEN 0 to 216 Set the number of ramp required in each ramp profile. Maximum value is 216. If this number is exceeded, enable the RAMPx_DLY bit or reduce the phase detector frequency. RAMPx_LEN = Ramp duration of a ramp profile × fPD RAMP0_DLY RAMP1_DLY 0 or 1 If this bit is set to 1, the output frequency will ramp every two fPD cycles. RAMP0_NEXT RAMP1_NEXT Equal to the next ramp Set the next ramping profile when the present profile is finished. RAMP0_NEXT_TRIG RAMP1_NEXT_TRIG 0 = RAMP_LENx time out counter Set these bits to 0 in order to start the next ramp immediately after the previous ramp. RAMP0_RST RAMP1_RST 0 or 1 If the stop frequency of the present ramp profile is different from the start frequency of the next ramp profile, set this bit to 1. RAMP_SCALE_COU NT RAMP_DLY_CNT Suggest a minimum pause time of 50 µs These two register fields set the minimum pause time when RAMP_THRESH is hit. This pause time must be sufficient to allow the VCO to complete a calibration, otherwise it will be overwritten by the actual VCO calibration time. Minimum pause time = RAMP_DLY_CNT × 2RAMP_SCALE_COUNT × 2CAL_CLK_DIV / fOSCin Figure 162. Auto Ramp Waveform 8.1.8 Application for FSK In fractional mode, the finest delta frequency difference between two programmable output frequencies is equal to Equation 7: f1 – f2 = Δfmin = fPD × {[(PLL_N + 1) / PLL_DEN] – (PLL_N / PLL_DEN)} = fPD / PLL_DEN (7) In other words, when the fractional numerator is incremented by 1 (one step), the output frequency will change by Δfmin. A two steps increment will therefore change the frequency by 2 × Δfmin. In FSK operation, the instantaneous carrier frequency is kept changing among some pre-defined frequencies. In general, the instantaneous carrier frequency is defined as a certain frequency deviation from the nominal carrier frequency. The frequency deviation could be positive and negative. |
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