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ADRF5144BCCZN-R7 데이터시트(PDF) 4 Page - Analog Devices |
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ADRF5144BCCZN-R7 데이터시트(HTML) 4 Page - Analog Devices |
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4 / 12 page ![]() Data Sheet ADRF5144 SPECIFICATIONS analog.com Rev. 0 | 4 of 12 Table 1. Electrical Specifications (Continued) Parameter Symbol Test Conditions/Comments Min Typ Max Unit RF Input Power2 PIN f = 1 GHz to 18 GHz, TCASE = 85°C Insertion Loss Path RF signal applied to the RFC or through connected RF1/RF2 Average 40 dBm Pulsed3 >100 ns pulse width, 15% duty cycle 43 dBm Peak ≤100 ns peak duration, 5% duty cycle 44 dBm Hot Switching RF signal applied to the RFC 37 dBm Case Temperature TCASE −40 +85 °C 1 For more details, see the Theory of Operation section. 2 For power derating over frequency, see Figure 2 and Figure 3. 3 For different pulsed conditions, contact Applications Support. SINGLE-SUPPLY OPERATION VDD = 3.3 V, VSS = 0 V, VCTRL = 0 V or VDD V, TCASE = 25°C, 50 Ω system, unless otherwise noted. Table 2. Single-Supply Operational Specifications Parameter Symbol Test Conditions/Comments Min Typ Max Unit FREQUENCY RANGE f 1000 20,000 MHz SWITCHING CHARACTERISTICS Rise and Fall Time tRISE, tFALL 10% to 90% of RF output 0.66 µs On and Off Time tON, tOFF 50% VCTRL to 90% of RF output 1.5 µs 0.1 dB RF Settling Time 50% VCTRL to 0.1 dB of final RF output, PIN ≤ 24 dBm 1.8 µs INPUT LINEARITY f = 1 GHz to 18 GHz 0.1 dB Power Compression P0.1dB 29 dBm Input Third-Order Intercept IIP3 Two tone input power = 20 dBm each tone, Δf = 1 MHz 58 dBm Input Second-Order Intercept IIP2 Two tone input power = 20 dBm each tone, Δf = 1 MHz 109 dBm RECOMMENDED OPERATING CONDITONS RF Input Power Wait Time1 tWait PIN ≤ 24 dBm 0 µs 24dBm < PIN ≤ 29.5dBm 2.2 µs RF Input Power2 PIN f = 1 GHz to 18 GHz, TCASE = 85°C Insertion Loss Path RF signal applied to the RFC or through connected RF1/RF2 Average 30 dBm Pulsed3 >100 ns pulse width, 15% duty cycle 30 dBm Peak ≤100 ns peak duration, 5% duty cycle 30 dBm Hot Switching RF signal applied to the RFC 24 dBm 1 For more details, see the Theory of Operation section. 2 For power derating over frequency, see Figure 2 and Figure 3. 3 For different pulsed conditions, contact Applications Support. |
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