About
The G.Skill Trident Z Neo is a high-performance DDR4 memory kit designed for PC and server users who require reliable, fast memory solutions. With a total capacity of 64 GB, this kit is ideal for intensive tasks such as gaming, content creation, and multitasking.
- The 3600 MHz memory clock speed enhances system responsiveness and performance.
- With 64 GB capacity in a dual-channel configuration (2x32 GB), it supports heavy workloads and demanding applications.
- Designed for PC and server use without ECC, offering straightforward installation and compatibility for gaming setups.
Technical details (2)
- Producer product name: Trident Z Neo
- Net weight: 0.18 kg
Specifications (1)
- Warranty: 60 month(s)
Memory (5)
- Component for: PC/server
- ECC: No
- Internal memory type: DDR4
- Memory clock speed: 3600 MHz
- Registered: No
Performance (1)
- Capacity: 64 (2x32) GB
The G.Skill Trident Z Neo is a high-performance DDR4 memory kit designed for PC and server users who require reliable, fast memory solutions. With a total capacity of 64 GB, this kit is ideal for intensive tasks such as gaming, content creation, and multitasking.
- The 3600 MHz memory clock speed enhances system responsiveness and performance.
- With 64 GB capacity in a dual-channel configuration (2x32 GB), it supports heavy workloads and demanding applications.
- Designed for PC and server use without ECC, offering straightforward installation and compatibility for gaming setups.
Technical details (2)
- Producer product name: Trident Z Neo
- Net weight: 0.18 kg
Specifications (1)
- Warranty: 60 month(s)
Memory (5)
- Component for: PC/server
- ECC: No
- Internal memory type: DDR4
- Memory clock speed: 3600 MHz
- Registered: No
Performance (1)
- Capacity: 64 (2x32) GB
G.Skill Trident Z Neo, 64 (2x32) GB, DDR4, 3600 MHz
- Regular price
- €240,55
- Sale price
- €240,55
- Regular price
-
Before placing and paying for your order, we’ll confirm the item’s current availability to help avoid possible cancellations and refunds.
Couldn't load pickup availability