
ADRF5545ABCPZN-RL
ActiveDUAL-CHANNEL, 2.4 GHZ TO 4.2 GHZ RECEIVER FRONT END
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ADRF5545ABCPZN-RL
ActiveDUAL-CHANNEL, 2.4 GHZ TO 4.2 GHZ RECEIVER FRONT END
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Technical Specifications
Parameters and characteristics for this part
| Specification | ADRF5545ABCPZN-RL |
|---|---|
| Features | SPDT |
| Frequency [Max] | 4.2 GHz |
| Frequency [Min] | 2.4 GHz |
| Package / Case | 40-VFQFN Exposed Pad, CSP |
| RF Type | General Purpose |
| Supplier Device Package | 40-LFCSP-VQ (6x6) |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | Tape & Reel (TR) | 2500 | $ 16.79 | |
Description
General part information
ADRF5545A Series
The ADRF5545A is a dual-channel, integrated radio frequency (RF), front-end multichip module designed for time division duplexing (TDD) applications that operates from 2.4 GHz to 4.2 GHz. The ADRF5545A is configured in dual channels with a cascading two-stage low noise amplifier (LNA) and a high power silicon single-pole, double-throw (SPDT) switch.In high gain mode, the cascaded two-stage LNA and switch offer a low noise figure (NF) of 1.45 dB and a high gain of 32 dB at 3.6 GHz with an output third-order intercept point (OIP3) of 32 dBm (typical). In low gain mode, one stage of the two-stage LNA is in bypass, providing 16 dB of gain at a lower current of 36 mA. In power-down mode, the LNAs are turned off and the device draws 12 mA.In transmit operation, when RF inputs are connected to a termination pin (TERM-ChA or TERM-ChB), the switch provides a low insertion loss of 0.65 dB and handles long-term evolution (LTE) average power (9 dB peak to average ratio (PAR)) of 40 dBm for full lifetime operation and 43 dBm for single event (<10 sec) LNA protection operation.The device comes in an RoHS compliant, compact, 6 mm × 6 mm, 40-lead LFCSP package.ApplicationsWireless infrastructureTDD massive multiple input and multiple output and active antenna systemsTDD-based communication systems