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Visibility Solutions

Garland Technology is committed to educating the benefits of having a strong foundation of network visibility and access. By providing this insight we protect the security of data across your network and beyond.

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Garland Technology's resource library offers free use of white papers, eBooks, use cases, infographics, data sheets, video demos and more.

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The TAP into Technology blog provides the latest news and insights on network access and visibility, including: network security, network monitoring and appliance connectivity and guest blogs from Industry experts and technology partners

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Our extensive technology partnership ecosystem solves critical problems when it comes to network security, monitoring, application analysis, forensics and packet inspection.

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Garland Technology is dedicated to high standards in quality and reliability, while delivering the greatest economical solutions for enterprise, service providers, and government agencies worldwide.

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Whether you are ready to make a network TAP your foundation of visibility or just have questions, please contact us. Ask us about the Garland Difference!

EdgeSafe: Bypass TAP

1G/10G | Portable | Failsafe bypass | Ensure Network Uptime and Inline Tool Reliability

A Bypass TAP, also referred to as a 'bypass switch', provides the ability to manage the availability and reliability of your inline tool (IPS, WAF, firewalls) any time without network downtime or impacting business availability for maintenance or upgrades. A critical component to IT security strategies.

Garland’s 1/10G EdgeSafeTM Bypass TAPs, are purpose-built to provide the ultimate failsafe device that eliminates single points of failure, reducing network downtime, without compromising the network.

Bypass TAP "Inline lifecycle management" allows you to sandbox new tool deployments, manage updates, install patches, perform maintenance or troubleshooting and validate out-of-band, without impacting the network.

EdgeSafe Bypass EdgeSafe Bypass EdgeSafe Bypass EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP EdgeSafe: Bypass Network TAP
EdgeSafe Bypass
EdgeSafe Bypass
EdgeSafe Bypass
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP
EdgeSafe: Bypass Network TAP

Key Features

  • Inline Bypass — sandbox, deploy, troubleshoot and replace active inline tools without taking the network link down
  • Network Failsafe - Garland failsafe technology recognizes power outages and automatically closes the relay circuitry in less than eight milliseconds, reconnecting the two network devices connected to ports A and B
  • Heartbeat Health Check - Configurable Heartbeat Packets monitor the health of the inline appliance. If the tools availability changes, the Bypass TAP will automatically ‘bypass’ the tool, or failover to a redundant solution, keeping your network up while you resolve the issue
  • Multi-function and fully configurable TAP for both inline and out-of-band use that supports bypass, filtering (10G) , breakout, aggregation, and regeneration
  • [Exclusive] Bypass Filtering allows you to feed specific data streams through your inline device on the hardware level

Additional

  • 100% secure and invisible; no IP address, no Mac address; cannot be hacked
  • Supports Jumbo frames
  • Supports link failure propagation (LFP)
  • Supports packet injection
  • Passes physical errors
  • Simple easy to use GUI management
  • Dual redundant power supplies
  • Made, tested and supported in the USA
Model No. Network Speed Network Monitor Packet Injection Support
RMS-1U-V2 New-1U 4 Slot Rack Mount Plate-Blank 1U Rack Mount Kit - Hold up to 4 Portable TAPs
10G Bypass with Remote Management
P10GMSBPE 1G/10G 2 SR Multi-mode 2 SFP+ Yes
P10GSSBPE 1G/10G 2 LR Single-mode 2 SFP+ Yes

Model No. Network Speed Network Monitor Packet Injection Support
RMP-1U 1U Rack Mount Plate 1U Rack Mount Kit - Hold up to 4 Portable TAPs
1G Bypass with Remote Management
P1GCCBPE 100/1000M 2 Copper RJ-45 2 Copper-RJ45 Yes
P1GCSBPE 100/1000M 2 Copper RJ-45 2 SFP Yes
P1GCCBPPOE+E 100/1000M 2 Copper RJ-45 2 Copper RJ-45 Yes
P1GCSBPPOE+E 100/1000M 2 Copper RJ-45 2 SFP Yes
P1GMCBPE 1G 2 SX Multi-mode 2 Copper RJ-45 Yes
P1GMSBPE 1G 2 SX Multi-mode 2 SFP Yes
P1GSCBPE 1G 2 LX Single-mode 2 Copper-RJ45 Yes
P1GSSBPE 1G 2 LX Single-mode 2 SFP Yes
1G Bypass with Manual Programming
P1GCCBP 100/1000M 2 Copper-RJ45
2 Copper-RJ45 Yes
P1GCSBP 100/1000M 2 Copper-RJ45 2 SFP Yes
P1GCCBPPOE+ 100/1000M 2 Copper-RJ45 2 Copper-RJ45 Yes
P1GCSBPPOE+ 100/1000M 2 Copper-RJ45 2 SFP Yes
P1GMCBP 1G 2 SX Multi-mode, Fiber-LC 2 Copper-RJ45 Yes
P1GMSBP 1G 2 SX Multi-mode, Fiber-LC 2 SFP Yes
P1GSCBP 1G 2 LX Single-mode, Fiber-LC 2 Copper-RJ45 Yes
P1GSSBP 1G 2 LX Single-mode, Fiber-LC 2 SFP Yes
Tap 'breakout' mode Aggregation mode Regeneration/SPAN mode Bypass mode

Modes-Bypass1-1 Modes-Breakout1-1 Modes-Aggregation2 Modes-SPANRegen1-1
Bypass mode Tap 'breakout' mode Aggregation mode Regeneration/SPAN mode

 

HOW IT WORKS

    1. Blue, orange, yellow, green and purple traffic Ingress in Network Port 1 from the network
    2. A filter is created to pass the orange and green traffic to the inline tool through monitor port 3
    3. The blue, yellow and purple traffic is passed on to network port 2 and egressed, without going through the inline tool
    4. Pink and magenta traffic Ingress in network port 2 from the network
    5. A filter is created to pass the pink traffic to the inline tool through monitor port 4
    6. The magenta traffic is passed to network port 1 and egressed, without going through the inline tool
    7. Heartbeat packets (darker pink) are passed between port 3 and port 4 and the inline tool to check the connectivity health of the tool

Result: The inline tool is actively monitoring the orange and green traffic from port 1 and the pink from port 2

HOW IT WORKS

  1. Blue, orange, and green traffic Ingress in Network Port 1 from the network
  2. A filter is created to pass a copy of the orange traffic to the monitor tool through Monitor Port 3 and Port 4
  3. The blue, orange, and green traffic is passed to Network Port 2 and egressed, without blue and green traffic going to the tool
  4. Pink and magenta traffic Ingress in Network Port 2 from the network
  5. A filter is created to pass a copy of the pink traffic to the monitor tool through Port 4
  6. The pink and magenta traffic is passed to Network Port 1 and egressed, without magenta going to the tool

Result (7): The out-of-band tool is monitoring the orange traffic from Port 1 and the pink traffic from Port 2

 

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