Crown Castle: Marlborough Data Center
About Marlborough Data Center
The Crown Castle Marlborough Data Center, situated at 34 St. Martin Drive, Marlborough, Massachusetts, operates as a carrier-grade colocation and Point of Presence (PoP) within the greater Boston metro. Located in the robust 495/Turnpike submarket, this facility benefits from excellent regional connectivity, proximity to major population centers, and access to advanced fiber infrastructure. ⚙️ Facility Highlights
- The data center features a diverse power infrastructure, including multiple utility feeds, reliable backup generators, and UPS systems—ensuring seamless operations even during power disruptions.
- Employs advanced cooling systems with monitored humidity and temperature control to maintain optimal hardware performance efficiently.
- Provides high-speed, low-latency fiber connectivity through Lightower Fiber Networks, supporting rich interconnection opportunities. Supports a wide range of on-site carriers and cloud providers, enhancing network access
🔐 Security & Compliance
- Strict physical and digital security measures are in place, including 24/7 on-site security staff, CCTV surveillance, and biometric access controls.
- Certified to SSAE 16 SOC 1 and SOC 2 Type II standards for its infrastructure, demonstrating a commitment to operational integrity.
- Tier II compliance classification indicates robust reliability and performance design.
🌐 Connectivity & Carrier Access
- A carrier-neutral facility, the center offers interconnection with multiple top-tier providers, including AT&T, CenturyLink, Comcast, Verizon, and more.
- Ensures 100% network SLA with flexibility for optical fiber, copper, and wireless cross-connects. Backed by dedicated 10 G private fiber links to PoPs across the U.S. for high resilience.
💼 Who It Serves
Ideal for enterprises, cloud providers, network operators, SaaS platforms, and digital service providers seeking high-performance, secure, and resilient colocation in the Boston telecom hub. Particularly suitable for workloads requiring rich interconnectivity and strict compliance.
