Take Full Control of Power Management with Out-of-Band Technology
What is OOB Power Actions?
Out-of-Band (OOB) power actions give you full remote control over device power states, even if the device is unresponsive. Ideal for mission-critical systems, OOB power management reduces costly on-site interventions by enabling remote power on/off, enforcing constant power states, and scheduling actions to ensure operational continuity and optimize energy usage.
Take Full Control of Power Management with Out-of-Band Technology
List of OOB - Power Action Functions
Explore essential OOB power control features that enable efficient remote management of device power states:
Power On/Off
Control device power remotely by turning devices on or off as needed, and initiate enforced shutdowns in critical situations. Whether rebooting malfunctioning systems, powering down after hours, or shutting down due to system errors or security risks.
Power Always on
Ensure that critical systems stay operational at all times by enforcing an "always on" state. This feature prevents unexpected shutdowns, keeping mission-critical devices continuously running.
Power Scheduling
Set specific times for devices to automatically power on or off. Power scheduling optimizes energy consumption by ensuring devices run only when needed, reducing costs and unnecessary uptime.
Remote Power On/Off and Enforced Shutdown for Instant Device Control
Power On/Off
With OOB technology, you can remotely power devices on or off and initiate enforced shutdowns in critical situations, ensuring seamless control of your systems.
Ideal For: Environments needing quick remote power control for unresponsive systems in critical operations. Applications requiring enforced shutdowns to reduce downtime and avoid on-site technical interventions.
Use Case 1:
Remote Troubleshooting for Unresponsive Systems
When a device crashes or freezes, it can be remotely powered off and back on, restoring functionality without the need for an on-site visit. This reduces downtime and eliminates the need for physical intervention.
Use Case 2:
On-Premises Environment Monitoring
Enforced shutdowns can be used to remotely perform immediate maintenance, ensuring that devices are safely powered down. This minimizes potential risks, prevents further damage, and ensures efficient recovery without delaying operations.
Ensure Continuous Uptime with Power Always On
Power Always On
The Power Always On feature guarantees that critical systems remain operational without risk of accidental shutdowns. This is essential for mission-critical systems, ensuring that devices remain powered 24/7 to prevent costly downtime.
Ideal For:
Systems requiring constant uptime, preventing accidental shutdowns, especially in critical infrastructure or data centers. Devices in remote areas need continuous operation without manual intervention, ensuring consistent monitoring.
Use Case 1:
Ensure Uptime in Utilities or Critical Operations
Keep essential systems for utilities or industrial applications powered on to maintain continuous service and prevent operational losses.
Use Case 2:
Keep Remote IoT Devices Active
Devices in remote locations must stay operational. Power Always On ensures they function 24/7 without manual intervention, avoiding data loss.
Automate Power Control with Scheduling
Power Scheduling
The Power Always On feature guarantees that critical systems remain operational without risk of accidental shutdowns. This is essential for mission-critical systems, ensuring that devices remain powered 24/7 to prevent costly downtime.
Ideal For:
Businesses reducing energy costs by powering devices on or off during set hours to optimize energy usage and minimize waste. For environments where devices require scheduled on/off times to run only when necessary, ensuring systems and services run smoothly with regular resets.
Use Case 1:
Prolong Device Lifespan with Regular Resets
Regularly powering off devices during non-operational hours prevents software applications from hanging and extends device lifespan by allowing systems to reset properly.
Use Case 2:
Optimize Energy Consumption in Active Devices
Automate power schedules so devices only run when needed, significantly reducing energy consumption during off-hours and lowering electricity costs.
Sample subheading
Network Connection Methods
Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua. Ut enim ad minim veniam
Ethernet
The traditional, wired network option for stable and reliable OOB communication. Learn More.
4G LTE
Wireless connectivity offering flexibility in indoor environments. Learn More.
Wi-Fi
Ideal for outdoor and remote locations with limited wired infrastructure. Learn More.
NC-SI
Simplifies OOB management through a single Ethernet connection. Learn More.
Network Sharing via 4G
Shares the OOB 4G connection to the connected device for cost-effective redundancy. Learn More.
OOB Power Cycling
OOB power cycling allows you to remotely control the power state of your NVIDIA Jetson devices. You can revive unresponsive systems by performing a complete device reboot, or simply power-ON and power-OFF your edge devices. The Out-of-Band feature saves you a substantial amount of time troubleshooting and traveling to where NVIDIA Jetson systems are deployed.
Remote JetPack Recovery for Multiple Devices
In the rare event of a corrupted NVIDIA Jetson system, Allxon offers secure remote JetPack Recovery solutions and other remote management functions for JetPack updates.By switching a device into JetPack Recovery mode, NVIDIA Jetson systems can recover and roll back operations without the need for on-site access. Allxon saves you time and high operational costs with faster and safer remote device solutions.
Automatic System Logs Upload / Download
Allxon helps operators automatically collect system and application logs from NVIDIA Jetson edge devices. The collected logs are securely uploaded onto Allxon Cloud and made available for download. Engineers can use the data for system performance or analysis to troubleshoot and enhance edge device operations.
OTA Deployment
For systems to operate optimally and coherently, they need to run on the latest software versions. Allxon makes mass updates across any NVIDIA Jetson system possible with OTA deployment.In a click of a button, the newest software versions can be remotely deployed from Allxon Portal onto all devices, saving you time traveling to multiple locations for deployment. Allxon makes it easy to update NVIDIA edge AI models on a regular basis to ensure training intelligence and computation capabilities on NVIDIA Jetson systems stay optimized for better services.
“ Allxon's powerful turnkey solutions can unleash the potential of AI at your fingertips! Come join us!
- Alex Liu, Allxon CEO |
OOB (Out-Of-Band) Power Cycling
OOB power cycling allows you to remotely control the power state of your NVIDIA Jetson devices. You can revive unresponsive systems by performing a complete device reboot, or simply power-ON and power-OFF your edge devices. The Out-of-Band feature saves you a substantial amount of time troubleshooting and traveling to where NVIDIA Jetson systems are deployed.
Remote JetPack Recovery for Multiple Devices
In the rare event of a corrupted NVIDIA Jetson system, Allxon offers secure remote JetPack Recovery solutions and other remote management functions for JetPack updates.
By switching a device into JetPack Recovery mode, NVIDIA Jetson systems can recover and roll back operations without the need for on-site access. Allxon saves you time and high operational costs with faster and safer remote device solutions.
Automatic System Logs Upload / Download
Allxon helps operators automatically collect system and application logs from NVIDIA Jetson edge devices. The collected logs are securely uploaded onto Allxon Cloud and made available for download. Engineers can use the data for system performance or analysis to troubleshoot and enhance edge device operations.
OTA (Over-The-Air) Deployment
For systems to operate optimally and coherently, they need to run on the latest software versions. Allxon makes mass updates across any NVIDIA Jetson system possible with OTA deployment.
In a click of a button, the newest software versions can be remotely deployed from Allxon Portal onto all devices, saving you time traveling to multiple locations for deployment. Allxon makes it easy to update NVIDIA edge AI models on a regular basis to ensure training intelligence and computation capabilities on NVIDIA Jetson systems stay optimized for better services.
We Support Across Systems
Partner Name |
NVIDIA Jetson Series |
System Model Number |
Allxon RMM Supported |
Allxon swiftDR Supported with OOB Enabler |
Link |
|
AGX Orin |
BOXER-8641AI | Learn More | ||
BOXER-8640AI | |||||
|
|||||
Orin NX |
|
||||
|
|||||
|
|||||
|
|||||
Orin Nano |
BOXER-8621AI
|
||||
BOXER-8622AI
|
|||||
BOXER-8623AI
|
|||||
NANO |
BOXER-8220AI
|
||||
BOXER-8221AI
|
|||||
BOXER-8222AI
|
|||||
BOXER-8223AI
|
|||||
TX2 NX |
BOXER-8230AI
|
||||
BOXER-8233AI
|
|||||
BOXER-8233AI
|
|||||
AGX Xavier | BOXER-8240AI | ||||
Xavier NX |
BOXER-8250AI
|
||||
BOXER-8251AI
|
|||||
BOXER-8253AI | |||||
BOXER-8254AI | |||||
AGX Orin | DLAP-411 | Learn More |
|||
NANO | DLAP-211-Nano | ||||
TX2 | DLAP-201-JT2 | ||||
Xavier NX | DLAP-211-JNX | ||||
|
AGX Orin | MIC-733 | Learn More |
||
Orin NX | MIC-711-OX | ||||
AGX Xavier |
MIC-730AI | ||||
MIC-730IVA | |||||
Xavier NX |
MIC-710AIX | ||||
MIC-710AILX | |||||
MIC-710IVX | |||||
MIC-715 | |||||
TX2 | MIC-720AI | ||||
TX2NX |
MIC-710AIT | ||||
MIC-710AILT | |||||
NANO |
MIC-710AI | ||||
MIC-710AIL | |||||
MIC-710IVA | |||||
|
AGX Orin |
AIB-MX13 | Learn More | ||
AIB-MX12 | |||||
Orin NX |
AIB-SN41 | ||||
AIB-MN42 | |||||
Nano | AN110 | ||||
TX2 | AN310 | ||||
AGX Xavier | AX720 | ||||
Xavier NX | AN810 | ||||
|
AGX Orin | D315 | Learn More | ||
Orin NX | D131 | ||||
AGX Xavier | EA713 | ||||
Xavier NX | NX213B | ||||
TX2 | EX731 | ||||
Nano | EN713 | ||||
|
AGX Orin | AIE900A-AO | Learn More | ||
TX2 |
AIE500-901-FL | ||||
eBOX800-900-FL | |||||
eBOX560-900-FL | |||||
AGX Xavier | AIE900-902-FL | ||||
Xavier NX |
AIE900-XNX | ||||
AIE100-903-FL-NX | |||||
AIE800-904-FL | |||||
Nano |
eNVP-JNN-IV-D0008 | Learn More | |||
eNVP-JNN-IV-V0008 | |||||
Xavier NX |
eNVP-JNX-IV-D0008 | ||||
eNVP-JNX-IV-V0008 |
|||||
|
AGX Orin |
EAC-5000 |
Learn More | ||
AGX Xavier |
EAC-3000 |
||||
Xavier NX |
EAC-2000 |
||||
EAC-2100 |
We Support Across Systems
Allxon supports all Jetson systems with remote device management services. Integrating Allxon swiftDR OOB Enabler further enhances remote services with powerful disaster recovery solutions on all operating systems. Get to know our proud partners with Allxon integrated models and let us empower your business together.
Click contact us button to gain an efficient RMM solution for your Jetson Orin Series.
BOXER-8641AI*, BOXER-8640AI*
[NANO]
BOXER-8220AI, BOXER-8221AI, BOXER-8222AI*, BOXER-8223AI*
[TX2 NX]
BOXER-8230AI, BOXER-8231AI, BOXER-8233AI
[AGX Xavier]
BOXER-8240AI
[Xavier NX]
BOXER-8250AI, BOXER-8251, BOXER-8253AI*, BOXER-8254AI*
[Nano] DLAP-211-Nano
[TX2] DLAP-201-JT2
[Xavier NX] DLAP-211-JNX _____.
[AGX Xavier]
MIC-730AI*, MIC-730IVA
[Xavier NX]MIC-710AIX*, MIC-710AILX*, MIC-710IVX, MIC-715
[TX2]
MIC-720AI
[TX2NX]
MIC-710AIT*, MIC-710AILT*
[Nano]
MIC-710AI*, MIC-710AIL*, MIC-710IVA
[Orin NX] AIB-SN41, AIB-MN42
[Nano] AN110*
[TX2] AN310*
[AGX Xavier] AX720*
[Xavier NX] AN810*______.........
[AGX Orin] D315
[Orin NX] D131
[AGX Xavier] EA713
[Xavier NX] NX213B*
[TX2] EX731
[Nano] EN713
AIE900A-AO*
[TX2]
AIE500-901-FL, eBOX800-900-FL, eBOX560-900-FL
[AGX Xavier]
AIE900-902-FL
[Xavier NX]
AIE900-XNX*, AIE100-903-FL-NX, AIE800-904-FL
eNVP-JNN-IV-D0008*, eNVP-JNN-IV-V0008
[Xavier NX]
eNVP-JNX-IV-D0008*, eNVP-JNX-IV-V0008
- Environments requiring stable and reliable wired connections for critical OOB management, particularly for stationary devices.
- Retail, manufacturing, and on-premises environments with critical connectivity needs.
- The Allxon out-of-band solution with Ethernet connection enables remote monitoring and troubleshooting for AI Customer Traffic Monitoring systems, ensuring continuous operation without on-site visits.
- Ethernet connection provides reliable out-of-band access to devices running mission-critical operations in production, ensuring stable connectivity for consistent performance monitoring.
-
Indoor:
-
Locations with unstable Wi-Fi, where 4G LTE ensures uninterrupted OOB access.
-
Locations requiring independent, and isolated OOB networks separate from the device network.
-
-
Outdoor:
-
Remote or outdoor areas without wired infrastructure.
-
- In remote farming areas without wired infrastructure, 4G LTE provides continuous connectivity for IoT devices, enabling reliable OOB management.
- In retail environments, the OOB Enabler uses an independent 4G LTE network, ensuring device management is separated from the store's primary network for true OOB management.
Flexible OOB Connectivity for Mobility
Allxon’s OOB Enabler supports Wi-Fi, reducing the need for physical cabling and providing wireless access for devices that move within environments and cannot rely on fixed, wired networks. With dual-band (2.4 GHz and 5 GHz) support, Wi-Fi offers flexible, reliable connectivity for OOB management.
- Smart retail, manufacturing, and warehouse environments with Edge AI devices that require wireless OOB management.
- Locations where deploying Ethernet cables is impractical or challenging.
- In smart retail and warehouses, Wi-Fi replaces the need for extensive cabling, allowing seamless OOB management of AI devices without costly infrastructure setups.
- For moving AI-powered devices like robots or automated systems, Wi-Fi allows continuous OOB management, supporting device movement without the constraints of fixed network connections.
Single Ethernet Cable OOB Management
The Network Controller Sideband Interface (NC-SI) allows OOB management using just one Ethernet connection, eliminating the need to pull an extra cable for the OOB network. NC-SI communicates directly with the network interface controller (NIC), enabling OOB management through the same LAN port already used by the device.
- Environments where adding extra network cables is difficult due to infrastructure limitations.
- Projects with budget constraints where pulling new network cables for OOB would increase costs.
- In environments with existing network setups, pulling extra cables for OOB is challenging. NC-SI allows OOB access through the existing Ethernet connection without altering the current infrastructure.
- In projects with limited budgets, adding a new network cable for OOB can increase costs. NC-SI provides OOB manageability through the device’s existing LAN port, avoiding extra cabling expenses.
Cost-Effective Redundant OOB Network
Allows sharing the OOB 4G network to the device that the OOB is connected to via an Ethernet connection. This not only acts as a redundant network for the device when its primary network is down, but can also provide cost savings by using a single 4G SIM card for connectivity.
- Sites requiring a redundant network for critical devices when the primary network is down.
- Locations needing cost-effective OOB solutions by using one 4G SIM card.
- In smart traffic flow systems, Network Sharing via a 4G Module ensures OOB access to critical devices during network outages, offering a cost-effective redundant solution using a single 4G SIM card.
- For smart vending machines, Network Sharing via a 4G Module offers OOB management while saving costs, especially in locations where 4G networks are expensive, by using a single SIM for both OOB and device connectivity.
Solutions Designed for Your Success
Explore the limitless potential of OOB device management and become the most powerful weapon in Edge AI projects.