ADL8113 (Rev.0)

Document overview

  • Manufacturer or author: Analog Devices, Inc.
  • PDF pages: 37

Technical content

10MHz to 12GHz Low Noise Amplifier with 10MHz to 14GHz Bypass Switches Rev. 0 DOCUMENT FEEDBACK TECHNICAL SUPPORT Information furnished by Analog Devices is believed to be accurate and reliable "as is". However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective owners. All Analog Devices products contained herein are subject to release and availability.

FEATURES

►Wideband amplifier with multiple bypass modes ►4 pin-selectable operating modes ►Internal amplifier mode operating from 10MHz to 12GHz ►Internal bypass mode operating from 10MHz to 14GHz ►Two external bypass modes from 10MHz to 14GHz ►Integrated power-supply decoupling ►Reflective bypass switches ►In internal amplifier mode ►Small signal gain: 14.0dB typical from 200MHz to 6GHz ►OP1dB: 20.5dBm typical from 200MHz to 6GHz ►OIP3: 35.5dBm typical from 200MHz to 6GHz ►OIP2: 44.6dBm typical from 9GHz to 12GHz ►Noise figure: 3.8dB typical from 200MHz to 6GHz ►In internal bypass switch mode ►Insertion loss: 2.2dB typical from 200MHz to 6GHz ►Operating temperature range: −40°C to +85°C ►RoHS-compliant, 6mm × 6mm, 28-terminal LGA

APPLICATIONS

►Electronic test and measurement equipment ►Electronic warfare ►Wireless receivers FUNCTIONAL BLOCK DIAGRAM Figure 1. Functional Block Diagram frequency, temperature, power supply, and from device to device. 6mm, 28-terminal land grid array (LGA) package.

analog.com Rev. 0 | 2 of 37 Signal Path Modes for Digital Control Inputs....34 Recommended Turn-On and Turn-Off Bias

REVISION HISTORY

3/2025—Revision 0: Initial Version

positive supply voltage (VDD2) = +3.3V, and TCASE = 25°C, unless otherwise noted. Table 1. 0.01GHz to 200MHz Frequency Range Specifications

Table 1. 0.01GHz to 200MHz Frequency Range Specifications (Continued)

VDD1 = +5V, IDQ = 110mA, VSS2 = −3.3V, VDD2 = +3.3V, and TCASE = 25°C, unless otherwise noted. Table 2. 200MHz to 6GHz Frequency Range Specifications

Table 2. 200MHz to 6GHz Frequency Range Specifications (Continued)

VDD1= +5V, IDQ = 110mA, VSS2 = −3.3V, VDD2 = +3.3V, and TCASE = 25°C, unless otherwise noted. Table 3. 6GHz to 9GHz Frequency Range Specifications

Table 3. 6GHz to 9GHz Frequency Range Specifications (Continued)

VDD1 = +5V, IDQ = 110mA, VSS2 = −3.3V, VDD2 = +3.3V, and TCASE = 25°C, unless otherwise noted. Table 4. 9GHz to 12GHz Frequency Range Specifications

Table 4. 9GHz to 12GHz Frequency Range Specifications (Continued) VSS2 = −3.3V, VDD2 = +3.3V, and TCASE = 25°C, unless otherwise noted. Table 5. 12GHz to 14GHz Frequency Range Specifications

Table 6. Power Supplies Table 7. Logic Control Voltage (VA and VB)

Table 8. Absolute Maximum Ratings ing conditions for extended periods may affect product reliability. PCB thermal design is required. metal ground paddle/pad on the underside of the device). Table 9. Thermal Resistance 1 Across all specified conditions. Figure 2. RF Input Power Derating Curve sitive devices in an ESD protected area only. Human body model (HBM) per ANSI/ESDA/JEDEC JS-001. Table 10. ADL8113, 28-Terminal LGA damage may occur on devices subjected to high energy ESD. performance degradation or loss of functionality.

Figure 3. Pin Configuration Table 11. Pin Function Descriptions 1 VDD1 Amplifier Drain Bias Voltage. See Figure 4 for the interface schematic. 3, 5, 8, 10 to 12, 14, 17, 19 to 22, 24 to 26, 28GND RF and DC Ground. See Figure 6 for the interface schematic. RF line potential is not equal to 0V DC. See Figure 7 for the interface schematic. 6, 7 VA , VB Switch Control Inputs. See Figure 8 and Figure 9 for the interface schematics. 15 VSS2 Switch Negative Bias Voltage. 16 VDD2 Switch Positive Bias Voltage. EPAD Exposed Ground Pad. The exposed pad must be connected to RF and DC ground.

registered trademarks are the property of their respective owners. One Analog Way, Wilmington, MA 01887-2356, U.S.A. For the latest package outline information and land patterns (footprints), go to Package Index. Table 14. Evaluation Boards