Kingston 16GB (1x 16GB) DDR5 4800MHz SODIMM Memory
Greater starting speed performance. DDR5 debuts at 4800MHz, while DDR4 tops out at 3200MHz. This represents a 50% increase in bandwidth. In cadence with compute platform releases, DDR5 has planned performance increases that will scale to 6400MHz. Reduced power / increased efficiency. At 1.1V, DDR5 consumes 20% less power than DDR4 equivalent components at 1.2V. In addition to conserving battery life in laptops, it also has a significant advantage for enterprise servers working around the clock. PMIC. DDR5 modules feature on-board Power Management Integrate Circuits (PMIC), which help regulate the power required by the various components of the memory module (DRAM, register, SPD hub, etc). For server-class modules, the PMIC uses 12V; for PC-class modules, it uses 5V. This makes for better power distribution compared to previous generations, improves signal integrity and reduces noise. SPD hub. DDR5 utilises a new device that integrates the Serial Presence Detect (SPD) EEPROM with additional hub features, manages access to the external controller and decouples the memory load on the internal bus from external.
Greater starting speed performance. DDR5 debuts at 4800MHz, while DDR4 tops out at 3200MHz. This represents a 50% increase in bandwidth. In cadence with compute platform releases, DDR5 has planned performance increases that will scale to 6400MHz. Reduced power / increased efficiency. At 1.1V, DDR5 consumes 20% less power than DDR4 equivalent components at 1.2V. In addition to conserving battery life in laptops, it also has a significant advantage for enterprise servers working around the clock. PMIC. DDR5 modules feature on-board Power Management Integrate Circuits (PMIC), which help regulate the power required by the various components of the memory module (DRAM, register, SPD hub, etc). For server-class modules, the PMIC uses 12V; for PC-class modules, it uses 5V. This makes for better power distribution compared to previous generations, improves signal integrity and reduces noise. SPD hub. DDR5 utilises a new device that integrates the Serial Presence Detect (SPD) EEPROM with additional hub features, manages access to the external controller and decouples the memory load on the internal bus from external.
Greater starting speed performance. DDR5 debuts at 4800MHz, while DDR4 tops out at 3200MHz. This represents a 50% increase in bandwidth. In cadence with compute platform releases, DDR5 has planned performance increases that will scale to 6400MHz. Reduced power / increased efficiency. At 1.1V, DDR5 consumes 20% less power than DDR4 equivalent components at 1.2V. In addition to conserving battery life in laptops, it also has a significant advantage for enterprise servers working around the clock. PMIC. DDR5 modules feature on-board Power Management Integrate Circuits (PMIC), which help regulate the power required by the various components of the memory module (DRAM, register, SPD hub, etc). For server-class modules, the PMIC uses 12V; for PC-class modules, it uses 5V. This makes for better power distribution compared to previous generations, improves signal integrity and reduces noise. SPD hub. DDR5 utilises a new device that integrates the Serial Presence Detect (SPD) EEPROM with additional hub features, manages access to the external controller and decouples the memory load on the internal bus from external.
Greater starting speed performance. DDR5 debuts at 4800MHz, while DDR4 tops out at 3200MHz. This represents a 50% increase in bandwidth. In cadence with compute platform releases, DDR5 has planned performance increases that will scale to 6400MHz. Reduced power / increased efficiency. At 1.1V, DDR5 consumes 20% less power than DDR4 equivalent components at 1.2V. In addition to conserving battery life in laptops, it also has a significant advantage for enterprise servers working around the clock. PMIC. DDR5 modules feature on-board Power Management Integrate Circuits (PMIC), which help regulate the power required by the various components of the memory module (DRAM, register, SPD hub, etc). For server-class modules, the PMIC uses 12V; for PC-class modules, it uses 5V. This makes for better power distribution compared to previous generations, improves signal integrity and reduces noise. SPD hub. DDR5 utilises a new device that integrates the Serial Presence Detect (SPD) EEPROM with additional hub features, manages access to the external controller and decouples the memory load on the internal bus from external.
in 3 offers
The lowest price for Kingston 16GB (1x 16GB) DDR5 4800MHz SODIMM Memory right now is $68.98 at Future Electronics, compared across 3 retailers.
The all-time low was $68.98 on 16 Aug 2026. That's the lowest price we've ever tracked — a great time to buy.
Prices last updated 16 Aug 2026.
Last updated at 16/08/2026 03:17:50
KVR48S40BS8-16 in BULK by KINGSTON | DRAM (Dynamic RAM) | Module DRAM | Future Electronics
Delivery between 20–24 Aug $35.32
Mastercard $100 OFF | Kingston DDR5 4800MHz 16GB SO-DIMM Memoruy (KVR48S40BS8-16)
Delivery $18.00
Kingston 16GB (1x 16GB) DDR5 4800MHz SODIMM Laptop Memory
Free delivery between 19–26 Aug
originally posted on pbtech.co.nz
I bought this RAM to upgrade my laptop so that I can have the advantage of 16GB * 2 dual-channel memory. And it's working perfectly as expected.
| General | |
| Capacity | 16 GB |
| Upgrade Type | Generic |
| Width | 69.6 mm |
| Height | 30 mm |
KVR48S40BS8-16 in BULK by KINGSTON | DRAM (Dynamic RAM) | Module DRAM | Future Electronics
Delivery between 20–24 Aug $35.32
Mastercard $100 OFF | Kingston DDR5 4800MHz 16GB SO-DIMM Memoruy (KVR48S40BS8-16)
Delivery $18.00
Kingston 16GB (1x 16GB) DDR5 4800MHz SODIMM Laptop Memory
Free delivery between 19–26 Aug
I bought this RAM to upgrade my laptop so that I can have the advantage of 16GB * 2 dual-channel memory. And it's working perfectly as expected.
| General | |
| Capacity | 16 GB |
| Upgrade Type | Generic |
| Width | 69.6 mm |
| Height | 30 mm |