AD9375BBCZ-REEL - Dual RF Transceiver with DPD | Analog Devices
MPN: AD9375BBCZ-REEL ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $245 | $245.00 |
| 10 | $220.5 | $2,205.00 |
| 100 | $196 | $19,600.00 |
| 500 | $171.5 | $85,750.00 |
| 1,000 | $147 | $147,000.00 |
Drop-in alternatives for AD9375BBCZ-REEL — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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View Datasheet →AD9375BBCZ-REEL Maximum Ratings & Electrical Characteristics
| Type | RF Transceiver |
| Frequency Range | 300 MHz to 6 GHz |
| Number of Channels | 2 Tx, 2 Rx |
| Package | 196-LFBGA, CSPBGA |
| Terminal Pitch | 0.8 mm |
| Supply Voltage | 1.3 V nominal |
| Operating Temperature Range | -40°C to +85°C |
| Peak Reflow Temperature | 260°C |
| Number of Terminals | 196 |
| Mounting Type | Surface Mount |
| Interface | SPI, JESD204B |
| Integrated DPD | Yes |
| Observation Path | Yes |
| Sniffer Receiver | Yes |
| RoHS Status | Compliant |
AD9375BBCZ-REEL Pin Configuration
| Pin A1 | VDD1P3 — 1.3V power supply |
| Pin A2 | GND — Ground |
| Pin B1 | TX1_P — Transmit channel 1 positive output |
| Pin B2 | TX1_N — Transmit channel 1 negative output |
| Pin C1 | RX1_P — Receive channel 1 positive input |
| Pin C2 | RX1_N — Receive channel 1 negative input |
| Pin D1 | SPI_CLK — SPI clock input |
| Pin D2 | SPI_CS — SPI chip select |
| Pin E1 | SPI_SDI — SPI data input |
| Pin E2 | SPI_SDO — SPI data output |
| Pin F1 | JESD_TX_P — JESD204B transmit data positive |
| Pin F2 | JESD_TX_N — JESD204B transmit data negative |
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
AD9375BBCZ-REEL is suitable for 6 applications: 4G/5G Base Stations, Small Cells, Massive MIMO Systems, Software-Defined Radios, Wireless Infrastructure, Test and Measurement Equipment.
4G/5G Base Stations
The AD9375BBCZ-REEL is ideal for 4G/5G base stations due to its wide frequency range (300 MHz to 6 GHz) and dual-channel architecture. It supports multiple standards including LTE and 5G NR, enabling a single hardware platform for multi-band operation. The integrated DPD linearizes power amplifiers, improving efficiency and reducing distortion, which is critical for high-power base station transmitters. Its JESD204B interface simplifies high-speed data transfer to baseband processors, reducing pin count and layout complexity. The device's high dynamic range ensures reliable signal reception in dense urban environments.
Recommended
Small Cells
For small cells, the AD9375BBCZ-REEL provides a compact, highly integrated solution that reduces board space and BOM cost. Its dual-channel capability supports 2x2 MIMO, while the integrated DPD allows the use of lower-cost, less linear power amplifiers, reducing overall system cost. The device's low power consumption and small footprint make it suitable for indoor and outdoor small cell deployments. The SPI interface enables flexible configuration for different frequency bands and standards, allowing a single design to serve multiple markets. The observation path enables real-time monitoring and calibration, ensuring optimal performance in varying environmental conditions.
Recommended
Massive MIMO Systems
The AD9375BBCZ-REEL is well-suited for massive MIMO systems, where multiple transceivers are used to serve many users simultaneously. Its dual-channel architecture allows each device to handle two antenna elements, reducing the number of components needed. The integrated DPD is essential for linearizing the many power amplifiers in a massive MIMO array, improving efficiency and reducing heat dissipation. The device's wide frequency range supports various bands used in 5G massive MIMO, and its JESD204B interface simplifies synchronization across multiple transceivers. The sniffer receiver enables calibration and monitoring of the array, ensuring consistent performance.
Recommended
Software-Defined Radios
In software-defined radios (SDRs), the AD9375BBCZ-REEL provides the flexibility to cover a wide frequency range (300 MHz to 6 GHz) with a single hardware platform. Its dual-channel architecture supports simultaneous transmit and receive, essential for full-duplex SDRs. The device's SPI interface allows dynamic reconfiguration of frequency, gain, and filtering, enabling rapid adaptation to different communication standards. The integrated DPD is beneficial for SDRs that need to linearize external power amplifiers, improving overall system performance. The JESD204B interface ensures high-speed data transfer to FPGAs or DSPs, making it a popular choice for SDR designs.
Recommended
Wireless Infrastructure
The AD9375BBCZ-REEL is a key component in wireless infrastructure, including remote radio heads (RRHs) and distributed antenna systems (DAS). Its wide frequency range and dual-channel capability make it suitable for multi-band, multi-standard operation, reducing the need for multiple discrete transceivers. The integrated DPD improves power amplifier efficiency, reducing operational costs and cooling requirements. The device's high dynamic range ensures reliable performance in challenging RF environments. The JESD204B interface simplifies integration with baseband processors, and the SPI interface allows for flexible configuration. The observation path enables real-time monitoring and calibration, ensuring optimal performance over time.
Recommended
Test and Measurement Equipment
The AD9375BBCZ-REEL is used in test and measurement equipment such as signal analyzers and channel emulators. Its wide frequency range and dual-channel capability allow it to generate and analyze signals across multiple bands. The integrated DPD is useful for testing power amplifiers, as it can linearize the device under test. The device's high dynamic range and low noise figure ensure accurate measurements. The SPI interface enables precise control of frequency and gain, and the JESD204B interface allows high-speed data transfer to processing units. The sniffer receiver can be used for spectrum monitoring and signal analysis, making it a versatile tool for test applications.
Recommended
Recommended Products Summary
Engineering reference data for AD9375BBCZ-REEL — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | AD9375BBCZ | ADRV9002BBCZ | AD9361BBCZ |
|---|---|---|---|---|
| Package | 196-LFBGA, CSPBGA | 196-LFBGA, CSPBGA | 196-LFBGA, CSPBGA | 196-LFBGA, CSPBGA |
| Brand | Analog Devices | Analog Devices | Analog Devices | Analog Devices |
| Frequency Range | 300 MHz to 6 GHz | 300 MHz to 6 GHz | 75 MHz to 6 GHz | 70 MHz to 6 GHz |
| Number of Channels | 2 Tx, 2 Rx | 2 Tx, 2 Rx | 2 Tx, 2 Rx | 1 Tx, 1 Rx |
| Integrated DPD | Yes | Yes | No | No |
| Supply Voltage | 1.3V | 1.3V | 1.3V | 1.3V |
| Operating Temperature | -40°C to +85°C | -40°C to +85°C | -40°C to +85°C | -40°C to +85°C |
| Interface | SPI, JESD204B | SPI, JESD204B | SPI, JESD204B | SPI, CMOS/LVDS |
Key Differentiators
- Integrated DPD (vs ADRV9002BBCZ)
- Wider frequency range (vs AD9361BBCZ)
- Dual-channel architecture (vs AD9361BBCZ)
Design Notes
The AD9375BBCZ-REEL requires a clean 1.3V supply for optimal performance. Use low-dropout regulators (LDOs) with low output noise and high PSRR to minimize supply-induced spurs. Decouple each supply pin with a 100nF capacitor placed as close as possible to the pin, and add a 10uF bulk capacitor per supply domain. Refer to the AD9375 datasheet for recommended supply sequencing.
For the 196-ball LFBGA/CSPBGA package, use a multi-layer PCB with a solid ground plane directly under the device. Ensure all ground balls are connected to the ground plane with low-impedance vias. Route high-speed JESD204B differential pairs with controlled impedance (100 ohms differential) and keep them away from noisy digital traces. Follow the layout guidelines in the AD9375 datasheet for optimal RF performance.
The AD9375BBCZ-REEL can dissipate significant power, especially when transmitting at high output power. Ensure adequate thermal relief by providing a thermal pad on the PCB connected to a large copper area. Use thermal vias to transfer heat to inner layers. The operating temperature range is -40°C to +85°C, so verify that the junction temperature stays within limits under worst-case conditions.
Compliance Information
RoHS compliance is indicated by Analog Devices. Other compliance details are not specified in the provided data.