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ADF41513 Scheda tecnica(PDF) 4 Page - Analog Devices |
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ADF41513 Scheda tecnica(HTML) 4 Page - Analog Devices |
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4 / 33 page ![]() ADF41513 Preliminary Technical Data Rev. PrL | Page 4 of 33 Parameter Min Typ Max Unit Test Conditions/Comments POWER SUPPLIES AVDD1, AVDD2, AVDD3, AVDD4, AVDD5, VP 3.135 3.3 3.465 V IDD13 0.3 mA Current drawn by AVDD1 IDD24 63.5 mA Current drawn by AVDD2 IDD35 2.1 mA Current drawn by AVDD3 IDD46 2.6 mA Current drawn by AVDD4 IDD57 1.7 mA Current drawn by AVDD5 IP 4.5 mA Current drawn by VP Power-Down Mode 0.4 µA TA = 25°C, CE = low, total of all rails NOISE CHARACTERISTICS Normalized Phase Noise Floor (PNSYNTH)8 in Integer N Mode −234 dBc/Hz PLL loop bandwidth (BW) = 1 MHz (integer N mode) Normalized Phase Noise Floor (PNSYNTH)5 in Fractional-N Mode −231 dBc/Hz PLL loop BW = 1 MHz (fractional-N mode) Normalized 1∕f Noise (PN1_f)9 −127 dBc/Hz 10 kHz offset, normalized to 1 GHz SPURIOUS SIGNALS Reference Spurious −90 dBc At reference = 100 MHz PFD Spurious −87 dBc At PFD = 50 MHz In-Band Integer Boundary Spurious −45 dBc 10 kHz offset, PLL loop BW = 250 kHz 1 This is the maximum operating frequency of the N counter. Ensure that the RF input divides down to a frequency that is less than this value by choosing a prescaler value that is less than the maximum operating frequency of the N counter. 2 AC coupling ensures 1 V bias. 3 TA = 25°C, AVDD1 = 3.3 V, prescaler (P) = 8/9, fRFIN = 12.0 GHz, REFIN = 100 MHz, PFD frequency input (fPFD) = 100 MHz. 4 TA = 25°C, AVDD2 = 3.3 V, P = 8/9, fRFIN = 12.0 GHz, REFIN = 100 MHz, fPFD = 100 MHz. 5 TA = 25°C, AVDD3 = 3.3 V, P = 8/9, fRFIN = 12.0 GHz, REFIN = 100 MHz, fPFD = 100 MHz. 6 TA = 25°C, AVDD4 = 3.3 V, P = 8/9, fRFIN = 12.0 GHz, REFIN = 100 MHz, fPFD = 100 MHz. 7 TA = 25°C, AVDD5 = 3.3 V, P = 8/9, fRFIN = 12.0 GHz, REFIN = 100 MHz, fPFD = 100 MHz. 8 The synthesizer phase noise floor is estimated by measuring the in-band phase noise at the output of the VCO and subtracting 20 log N (where N is the N divider value) and 10 log fPFD. PNSYNTH = total phase noise measured at the VCO output (PNTOT) − 10 log fPFD − 20 log N. 9 The PLL phase noise is composed of 1/f (flicker) noise plus the normalized PLL noise floor. The formula for calculating the 1/f noise contribution at an RF frequency, fRF, and at a frequency offset, f, is given by phase noise (PN) = P1_f + 10 log(10 kHz/f) + 20 log(fRF/1 GHz). Both the normalized phase noise floor and flicker noise are modeled in the ADIsimPLL. TIMING CHARACTERISTICS AVDDX = VP = 3.3 V ± 5%, GND = 0 V, RSET = 2.7 kΩ, dBm referred to 50 Ω, TA = TMAX to TMIN, unless otherwise noted. Table 2. Read and Write Timing Parameter Limit at TMIN to TMAX Unit Test Conditions/Comments t1 20 ns min LE setup time t2 10 ns min DATA to CLK setup time t3 10 ns min DATA to CLK hold time t4 25 ns min CLK high duration t5 25 ns min CLK low duration t6 10 ns min CLK to LE setup time t7 20 ns min LE pulse width t8 10 ns min LE setup time to MUXOUT when MUXOUT is configured as SPI output t9 15 ns min CLK setup time to MUXOUT when MUXOUT is configured as SPI output |
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