
Out of Stock
Vertiv Avocent SV220D-001 Desktop KVM Switch | 4K, DisplayPort, USB
Vertiv
MPN: SV220D-001
$469.62$655.00
MAP: $412.65
Free shipping on orders over $500
Authorized Dealer — Full manufacturer warranty
Key Features
- Desktop KVM switch
- DisplayPort video support
- 4K graphic mode
- Wired connectivity technology
- Zero-delay switching
- 100 to 240 V AC input voltage range
- 2-year limited warranty
- Vertiv Avocent platform
Streamline day-to-day server access without giving up desk space or response time. The Vertiv Avocent SV220D-001 desktop KVM switch is built for operators who need direct, reliable control of connected systems from a single console. With wired connectivity, DisplayPort support, and 4K graphic mode, it fits environments where clear video and immediate switching matter.
This model is designed for practical control at the edge of the rack, in a lab, or at a secure admin station. Its desktop form factor keeps deployment simple, while zero-delay switching helps reduce friction during frequent system changes. The 100 to 240 V AC input range supports flexible installation across standard power environments.
For teams that value consistency over excess, this KVM focuses on the essentials that affect daily operations: stable access, clear display output, and a compact footprint. Backed by a 2-year limited warranty, it is a strong fit for infrastructure teams that want dependable control hardware without overbuilding the workstation.
Ideal For
- Administer a small server pair from a single desktop console
- Support lab validation workflows that require rapid system switching
- Equip a secure operations desk with compact KVM control
- Manage rack-adjacent systems where space and response time matter
Why This Product
- 1Desktop form factor fits smaller control stations better than rack-mounted alternatives
- 2DisplayPort support aligns with modern server and workstation video paths
- 34K graphic mode preserves console clarity for detailed admin work
- 4Zero-delay switching improves operator flow during frequent system changes




