Seeed Studio
Seeed Studio Kudelski IoT keySTREAM PicoSE 800 Development Kit
Development kit that secures Raspberry Pi boards with a PicoSE 800 secure element for end-to-end IoT device management
- TypeSensors
- End-to-end IoT security management for device lifecycle
- Built-in PicoSE 800 secure element for hardware-rooted trust
- Unique immutable identity prevents device cloning attacks
- Stackable Raspberry Pi HAT with Arduino-compatible connectors
- Late provisioning enables secure deployment at scale
IoT Security Development Kit
The Kudelski IoT keySTREAM PicoSE 800 Development Kit adds a hardware secure element to a Raspberry Pi board. It targets engineers and integrators who need device identity, data protection and lifecycle management for connected products.
Thermal and Power Profile
The shield draws power directly from the Raspberry Pi GPIO header and operates without active cooling. Its low-power secure element adds negligible heat and silent operation to the host platform.
Build and Connectors
The HAT-form-factor PCB stacks on the Raspberry Pi and exposes Arduino-compatible headers for additional expansion boards. This layout keeps the secure element physically close to the host while leaving room for further sensor or actuator modules.
Highlights
- End-to-end IoT security management for device lifecycle
- Built-in PicoSE 800 secure element for hardware-rooted trust
- Unique immutable identity prevents device cloning attacks
- Stackable Raspberry Pi HAT with Arduino-compatible connectors
- Late provisioning enables secure deployment at scale
Specifications
| Type | Sensors |
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Questions about this item
How do I install the Kudelski IoT keySTREAM PicoSE 800 Development Kit on my Raspberry Pi?
Stack the shield onto the Raspberry Pi GPIO header, aligning the pins carefully before pressing down firmly. The kit includes Arduino-compatible connectors so additional HATs can be stacked on top afterwards.
What maintenance or replacement will the PicoSE 800 secure element need over time?
The PicoSE 800 secure element is a hardware root of trust with an immutable identity; it does not require scheduled replacement. Key rotation and credential updates are handled remotely through the keySTREAM cloud platform.
What limit appears first when the development kit runs continuously under heavy cryptographic workloads?
The primary limit is the Raspberry Pi host's thermal throttling point, since the PicoSE 800 itself draws minimal power and has no active cooling requirement.
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