LPDDR4: What Makes It Faster and Reduces Power Consumption
DRAM memories are the ‘heart’ of any computational device, e.g. smart phones, laptops, servers etc. LPDDR4 was mainly designed to increase memory speed and efficiency for mobile computing devices such as smartphones, tablets, and ultra-thin notebooks. It supports speeds up to 4267Mbps (double the speed of LPDDR3) and 1.1 V input/output buffer power, along with many other improvements compared to its predecessor (LPDDR3/LPDDR2). Below is a comparison of key features between all the three generations of LPDDR.
To read the full article, click here
Related Semiconductor IP
- GPU
- V-by-One Verification IP
- AI model compression IP
- Hardware compressed memory IP for CXL devices and chip-to-chip links
- Hardware link (de)compression IP for die-to-die, chip-to-chip, and DRAM interfaces
Related Blogs
- Breaking the Silence: What Is SoundWire‑I3S and Why It Matters
- Powering Up Efficiency: A Deep Dive into CXL L0p and its Verification
- What will it take for FPGAs to become as ubiquitous as processors?
- What did it cost to get Nokia to adopt Microsoft Windows Phone 7 as the OS for its new smartphones?
Latest Blogs
- Reprogrammable Post-Quantum Security for SoCs: Why Crypto-Agility Matters
- Designing the Beam Steering Core for a C-Band AESA: A Look at VSI's VBF0644 GaAs Beamformer IC
- Secure Boot for embedded systems: Building a complete chain of trust
- Understanding PCIe 6.0 Power States: L0p vs L0s vs L1
- Crypto mining SoC unearths a need for custom IP