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ADRF5238BCRZN-R7 Scheda tecnica(PDF) 11 Page - Analog Devices |
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ADRF5238BCRZN-R7 Scheda tecnica(HTML) 11 Page - Analog Devices |
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11 / 13 page ![]() Data Sheet ADRF5238 THEORY OF OPERATION analog.com Rev. 0 | 11 of 13 The ADRF5238 integrates a driver to perform logic functions inter- nally and to provide the advantage of a simplified CMOS-/LVTTL- compatible control interface. There are two digital control input pins (EN and CTRL) that determine which RF port is in the insertion loss state and in the isolation state. See Table 7 for the control voltage truth table. When the EN pin is logic high, all RF paths are in isolation state regardless of the logic state of the CTRL pin. The RFx ports are terminated to internal 50Ω resistors, and RFC becomes reflective. RF INPUT AND OUTPUT The RF pins (RFC, RF1, and RF2) are DC-coupled, and DC blocking capacitors are required on the RF lines. The RF ports are internally matched to 50Ω. Therefore, external matching networks are not required. When the EN pin is logic low, the logic level applied to the CTRL pin determines which RF port is in an insertion loss state and which RF port is in an isolation state. The insertion loss path conducts the RF signal between the selected RF throw port and the RF common port. The isolation path provides high loss between the insertion loss path and the unselected RF throw port that is terminated to an internal 50Ω resistor. When the EN pin is logic high, the switch is in an all off state regardless of the logic state of the CTRL pin. Both the RF1 to RFC path and the RF2 to RFC path are in an isolation state. The RF1 and RF2 ports are terminated to internal 50Ω resistors, and the RFC port becomes reflective open. The ADRF5238 is bidirectional with equal power handling capabili- ties. The RF input signal can be applied to the RFC port or the selected RF throw port. POWER SUPPLY The ADRF5238 requires a positive supply on the VDD pin. Bypass- ing capacitors are recommended on the supply lines to minimize RF coupling. The power-up sequence is as follows: 1. Connect GND. 2. Power up VDD. 3. Apply the digital control inputs. The relative order of the logic control inputs is not important. Powering the digital control inputs before VDD can inadvertently forward bias and damage ESD protection structures. To avoid this damage, use a series 1kΩ resistor to limit the current flowing into the digital control pins. Use pull-up or pull-down resistors if the controller is in a high impedance state after VDD is powered up and the control pins are not driven to a valid logic state. 4. Apply RF input signal. The ideal power-down sequence is the reverse order of the power- up sequence. Table 7. Control Voltage Truth Table CTRL State EN State RFC to RF1 RFC to RF2 Low Low Off On High Low On Off Low High Off Off High High Off Off |
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