System-in-package becomes SoC alternative
August 06, 2004 (4:34 PM EDT)

- Getting inside the SiP
Many design teams are taking a harder look at the system-in-package alternative to conventional system-on-chip design. The advantages of combining multiple dice in one package have been well-documented. The SiP approach exploits the low cost and rigorous testing of commodity ICs such as DRAMs. It allows specialized circuitry, such as RF amplifiers or precision analog components, to reside on their own dice, fabricated in their own optimized processes. It can integrate high-quality passive components into the package, reducing parts count and board area in ways the SoC cannot. Compared with a complex SoC design, it can cut design risk and shorten time-to-volume production, especially if that design would require a large die area or a leading-edge process. And it can lever existing IC designs that are already in production, well up the yield curve and field-tested. But combining several dice into a single package is not simply a matter of ordering a different package option from the assembly vendor. The SiP assembly itself becomes a design project, with all of the mechanical, electrical and thermal issues that any other new package design would entail. But in the case of an SiP there are added complexities.

- Cu links on the straight and narrow
- SiPs pose considerations for die design
- A systems approach delivers SiP design
- Analog BIST locates good dice

- Management of Technical Details Further Enhances Benefits of System-In-Package (SIP) Technology
- Component Partitioning for System in Package (SiP) Applications
- Design Tools Key to SiP Cycle Time Reduction
Related Semiconductor IP
- nQrux® Root of Trust IP
- AXI to UCIe Bridge IP
- UCIe 2.x Controller IP
- SWI3S (SoundWire I3S Interface) Peripheral Controller Core IP
- OpenTitan-based RISC-V Secure Element
Related Articles
- A cost-effective and highly productive Framework for IP Integration in SoC using pre-defined language sensitive Editors (LSE) templates and effectively using System Verilog Interfaces
- Power Management for Internet of Things (IoT) System on a Chip (SoC) Development
- SOC Stability in a Small Package
- Emerging Trends and Challenges in Embedded System Design
Latest Articles
- A Secure dToF LiDAR SoC with Dual-Domain Fingerprinting and Event-Driven AFE Circuit Achieving Sensor-Level Attack Resilience
- ZTA-Q: an Open-source RISC-V Platform for Accurate Quantized CNN Inference
- Automated Pre-Silicon Verification of High-Speed DDR5 and LPDDR5/6 Memory Controllers: Closed-Loop Timing, Mode Register, and PHY Synchronization in UVM
- U-Sonic: An Open-Source 8-Channel Ultrasound Transmit IP in a 130 nm RISC-V SoC
- S-ALSA: Co-Design of Adiabatic Logic-based Sensing and Balanced Bit-Cells for Secure and Energy-Efficient MRAM