Account Contact
Your Cart
Pay the courier with no extra fees.
Need help? DistriNode AI can handle any task on our site.

HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black

HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
R4,778
High-performance DDR4 memory kit engineered for gaming and intensive computing, delivering 3600MHz speed with vibrant addressable RGB lighting. This 16GB dual-channel kit (2x8GB) combines aggressive aesthetics with reliable performance, featuring a sleek black aluminum heat spreader and support for ... Read More
Stock 25 Code 3351645 Brand HIKSEMI Model HSC416U36C5 Warranty 2 Years

Shipping & Returns

Estimated delivery Tuesday, September 29
You will be kept updated through our detailed tracking system
Payment options
EFTPayFastBank CardSnapScanZapperGoogle PayApple PayMobicredMoreTymePay on Arrival

High-performance DDR4 memory kit engineered for gaming and intensive computing, delivering 3600MHz speed with vibrant addressable RGB lighting. This 16GB dual-channel kit (2x8GB) combines aggressive aesthetics with reliable performance, featuring a sleek black aluminum heat spreader and support for Intel XMP 2.0 for effortless overclocking.

Advantages

The HIKSEMI Future RGB series stands out with its addressable RGB lighting, allowing full customization to match your build's theme. The aluminum heat spreader ensures efficient heat dissipation, maintaining stability even under heavy loads. With a low CAS latency of CL18 and a voltage of 1.35V, this memory delivers responsive performance for gaming and multitasking. The dual-channel configuration maximizes bandwidth, improving overall system responsiveness.

Suitable for

  • Gaming PCs requiring high frame rates and smooth gameplay
  • Content creation and video editing workstations
  • Enthusiasts seeking customizable RGB lighting
  • Systems supporting DDR4 with XMP 2.0 profiles

Key specifications

  • Capacity: 16GB (2 x 8GB)
  • Speed: 3600MHz (PC4-28800)
  • CAS Latency: CL18 (18-22-22-42)
  • Voltage: 1.35V
  • Form Factor: 288-pin UDIMM
  • ECC: Non-ECC, Unbuffered
  • Lighting: Addressable RGB
  • Heat Spreader: Aluminum, Black
  • Profile: Intel XMP 2.0
  • Compatibility: Desktop PC

Recommendations

For optimal performance, install this kit in a motherboard that supports DDR4-3600MHz and enable the XMP profile in BIOS. Ensure your case has adequate airflow to complement the heat spreader design.

Specifications
Backlight
Yes
Backlight colour
RGB
Brand
HIKSEMI
Buffered memory type
Unbuffered
CAS latency
CL18
Category
Memory
Component for
PC
Cooling type
Aluminium heat spreader
EAN
6976695091873
ECC
Non-ECC
Intel Extreme Memory Profile (XMP)
Yes
Intel Extreme Memory Profile (XMP) version
2.0
Internal memory
16 GB
Internal memory type
DDR4
Memory data transfer rate
3600 MHz
Memory form factor
288-pin DIMM
Memory layout (modules x size)
2 x 8 GB
Memory voltage
1.35 V
Model
Future RGB
Module configuration
Dual-channel kit
MPN
HSC416U36C5
Product colour
Black
Weight
193 kg
Price history over the last 6 months
HIKSEMI Future RGB 16GB Kit (2x8GB) 3600MHz DDR4 Desktop Gaming Memory Black
Current
R4,778
Lowest
R4,757
Highest
R4,780
Change 24H
+R16   +0%
Week
+R18   +0%
Month
—   

Popular products in this category

WhatsApp
Hi, I’m DistriNode’s AI assistant. I can help you find products, compare options, create quote PDFs, or open support requests.