The role involves owning the micro-architecture and design of SoC infrastructure, including reset sequencing, power management, and secure boot. You will collaborate with cross-functional teams to define hardware/software interfaces and drive power intent sign-off for high-performance AI and HPC applications.
Role Overview
We are looking for a highly skilled RTL Designer to develop high-performance, scalable, and power-efficient digital designs for next-generation SoCs and Chiplets targeting AI, HPC, and Networking applications. This role requires deep expertise in RTL design, micro-architecture, and integration of high-speed interfaces, along with a strong focus on quality, performance, and first-time silicon success.
WhatYou’llDo
Specify and own the reset sequencing architecture. Own the secure boot and fuse micro architecture and design.
Coordinate with the subsystem leads on reference clock distribution, clock-domain crossing points at subsystem interfaces.
Collaborate with the firmware team to define the hardware/software interface: interrupt controller, timer, UART/JTAG debug port, and any DMA or mailbox channels
Own the clock-gating implementation strategy: coarse-grain vs. fine-grain gating, ICG cell selection, and sign-off methodology for dynamic power reduction.
Define the chip-level power-domain plan: which blocks share supplies, where level-shifters and isolation cells are required, and how power states map to the PCIe and UCIe link power management protocols.
Own the on-chip power management logic: power-state machine, supply sequencing, voltage regulator integration, and the firmware interface for runtime power control.
Drive power intent (UPF/CPF) authoring and sign-off, coordinating with physical design team on power-domain floorplan, always-on routing, and isolation verification.
Own the embedded management processor subsystem: processor integration, on-chip SRAM and ROM sizing, boot sequence, fuse and OTP interface, and the firmware execution environment.
Define the management register map: the address space through which firmware configures operating modes, reads telemetry, controls power states, and manages DFT operations.
Specify thermal monitoring integration: on-die temperature sensor placement, readout path to the management processor, and thermal throttling hooks.
WhatWe’reLooking For
12+ years of digital IC design, with at least 5 years owning chip infrastructure — clocking, power management, reset or DFT — at block-lead or subsystem-owner level.
Familiarity with embedded microcontroller integration: memory maps, boot ROM, interrupt controllers, and firmware bring-up at the hardware level.
Experience with reset-domain architecture and reset synchronizer design in multi-power-domain chips.
Strong SystemVerilog skills for infrastructure RTL: clock-gating cells, power FSMs, scan-enable muxing, and BIST controllers.
BS/MS in Electrical Engineering, Computer Engineering, or equivalent.
Good to Have
Background integrating a RISC-V or ARM Cortex-M class processor as a management/configuration engine in a non-CPU chiplet.
Exposure to hardware security: secure boot, anti-tamper fuse programming, or related infrastructure.
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