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ADRV9009 Folha de dados(PDF) 5 Page - Analog Devices |
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ADRV9009 Folha de dados(HTML) 5 Page - Analog Devices |
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5 / 127 page ![]() Data Sheet ADRV9009 Rev. B | Page 5 of 127 SPECIFICATIONS Electrical characteristics at VDDA1P31 = 1.3 V, VDDD1P3_DIG = 1.3 V, VDDA1P8_TX = 1.8 V, junction temperature (TJ) = full operating temperature range. LO frequency (fLO) = 1800 MHz, unless otherwise noted. The specifications in Table 1 are not de-embedded. Refer to the Typical Performance Characteristics section for input and output circuit path loss. The device configuration profile for the 75 MHz to 525 MHz frequency range is as follows: receiver = 50 MHz bandwidth (inphase quadrature (IQ) rate = 61.44 MHz), transmitter = 50 MHz transmitter large signal bandwidth and 100 MHz transmitter synthesis bandwidth (IQ rate = 122.88 MHz), observation receiver = 100 MHz bandwidth (IQ rate = 122.88 MHz), JESD204B rate = 9.8304 GSPS, and device clock = 245.76 MHz. Unless otherwise specified, the device configuration for all other frequency ranges is as follows: receiver = 200 MHz bandwidth (IQ rate = 245.76 MHz), transmitter = 200 MHz transmitter large signal bandwidth and 450 MHz transmitter synthesis bandwidth (IQ rate = 491.52 MHz), observation receiver = 450 MHz bandwidth (IQ rate = 491.52 MHz), JESD204B rate = 9.8304 GSPS, and device clock = 245.76 MHz. Table 1. Parameter Symbol Min Typ Max Unit Test Conditions/Comments TRANSMITTERS Center Frequency 75 6000 MHz Transmitter Synthesis Bandwidth 450 MHz Transmitter Large Signal Bandwidth 200 MHz Peak-to-Peak Gain Deviation 1.0 dB 450 MHz bandwidth, compensated by programmable finite impulse response (FIR) filter Gain Slope ±0.1 dB Any 20 MHz bandwidth span, compensated by programmable FIR filter Deviation from Linear Phase 1 Degrees 450 MHz bandwidth Transmitter Attenuation Power Control Range 0 32 dB Signal-to-noise ratio (SNR) maintained for attenuation between 0 dB and 20 dB Transmitter Attenuation Power Control Resolution 0.05 dB Transmitter Attenuation Integral Nonlinearity INL 0.1 dB For any 4 dB step Transmitter Attenuation Differential Nonlinearity DNL 0.04 dB Monotonic Transmitter Attenuation Serial Peripheral Interface 2 (SPI 2) Timing See Figure 4 Time from CS Going High to Change in Transmitter Attenuation tSCH 19.5 24 ns Time Between Consecutive Microattenuation Steps tACH 6.5 8.1 ns A large change in attenuation can be broken up into a series of smaller attenuation changes Time Required to Reach Final Attenuation Value tDCH 800 ns Time required to complete the change in attenuation from start attenuation to final attenuation value Maximum Attenuation Overshoot During Transition −1.0 +0.5 dB Change in Attenuation per Microstep 0.5 dB Maximum Attenuation Change when CS Goes High 32 dB |
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