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Kingston ValueRam 8GB DDR3-1600

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DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer wid...

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Kingston ValueRam 8GB DDR3-1600
Kingston ValueRam 8GB DDR3-1600
DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer width is 8 bit, whereas DDR2s is 4 bit, and DDRs is 2 bit. Theoretically, these modules could transfer data at the effective clockrate of 800-1600MHz (for a single clock bandwidth of 400-800MHz), compared to DDR2s current range of 400-1066 MHz (200-533 MHz) or DDRs range of 200-600 MHz (100-300 MHz). To date, such bandwidth requirements have been mainly on the graphics market, where fast transfer of information between framebuffers is required. DDR3 DIMMS have 240 pins, the same number as DDR2; however, the DIMMS are physically incompatible, owing to a different key notch location. The GDDR3 memory, with a similar name but an entirely dissimilar…
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Kingston ValueRam 4GB DDR3-1600
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DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer width is 8 bit, whereas DDR2s is 4 bit, and DDRs is 2 bit. Theoretically, these modules could transfer data at the effective clockrate of 800-1600MHz (for a single clock bandwidth of 400-800MHz), compared to DDR2s current range of 400-1066 MHz (200-533 MHz) or DDRs range of 200-600 MHz (100-300 MHz). To date, such bandwidth requirements have been mainly on the graphics market, where fast transfer of information between framebuffers is required. DDR3 DIMMS have 240 pins, the same number as DDR2; however, the DIMMS are physically incompatible, owing to a different key notch location. The GDDR3 memory, with a similar name but an entirely dissimilar…
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Kingston ValueRam 4GB DDR3-1600
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DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer width is 8 bit, whereas DDR2s is 4 bit, and DDRs is 2 bit. Theoretically, these modules could transfer data at the effective clockrate of 800-1600MHz (for a single clock bandwidth of 400-800MHz), compared to DDR2s current range of 400-1066 MHz (200-533 MHz) or DDRs range of 200-600 MHz (100-300 MHz). To date, such bandwidth requirements have been mainly on the graphics market, where fast transfer of information between framebuffers is required. DDR3 DIMMS have 240 pins, the same number as DDR2; however, the DIMMS are physically incompatible, owing to a different key notch location. The GDDR3 memory, with a similar name but an entirely dissimilar…
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Kingston ValueRAM 2GB DDR3-1333 SingleRank
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DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer width is 8 bit, whereas DDR2s is 4 bit, and DDRs is 2 bit. Theoretically, these modules could transfer data at the effective clockrate of 800-1600MHz (for a single clock bandwidth of 400-800MHz), compared to DDR2s current range of 400-1066 MHz (200-533 MHz) or DDRs range of 200-600 MHz (100-300 MHz). To date, such bandwidth requirements have been mainly on the graphics market, where fast transfer of information between framebuffers is required. DDR3 DIMMS have 240 pins, the same number as DDR2; however, the DIMMS are physically incompatible, owing to a different key notch location. The GDDR3 memory, with a similar name but an entirely dissimilar…
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Corsair Vengeance 8GB DDR3-1600 kit
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Vengeance memory is designed specifically for the latest CPUs. Vengeance modules run at 1.5V for maximum compatibility with all Intel® Core™ i3, i5 and i7 processors, as well as the 2nd generation Intel processor family. Vengeance DDR3 memory is available in single modules, and two or three module kits, making it easy for you to match the DIMM population requirements of your motherboard. Specifications: - Size: 8GB Kit (4 x 2GB) - Performance Profile: XMP - Fan Included: No - Heat Spreader: Vengeance - Memory Configuration: Dual Channel - Memory Type: DDR3 - Package Memory Pin: 240 - Package Memory Format: DIMM - Tested Voltage: 1.5 - SPD Voltage: 1.5 - Speed Rating: PC3-12800 (1600MHz) - SPD Speed1333Mhz - Tested Speed: 1600Mhz - Tested Latency: 9-9-9-24 - SPD Latency: 9-9-9-24
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Vengeance memory is designed specifically for the latest CPUs. Vengeance modules run at 1.5V for maximum compatibility with all Intel® Core™ i3, i5 and i7 processors, as well as the 2nd generation Intel processor family. Vengeance DDR3 memory is available in single modules, and two or three module kits, making it easy for you to match the DIMM population requirements of your motherboard. Specifications: - Size: 8GB Kit (4 x 2GB) - Performance Profile: XMP - Fan Included: No - Heat Spreader: Vengeance - Memory Configuration: Dual Channel - Memory Type: DDR3 - Package Memory Pin: 240 - Package Memory Format: DIMM - Tested Voltage: 1.5 - SPD Voltage: 1.5 - Speed Rating: PC3-12800 (1600MHz) - SPD Speed1333Mhz - Tested Speed: 1600Mhz - Tested Latency: 9-9-9-24 - SPD Latency: 9-9-9-24
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Edimax EW-7822UMX Ax1800 Wi-fi 6 Dual-band Usb 3.0 Adapter
Edimax EW-7822UMX Ax1800 Wi-fi 6 Dual-band Usb 3.0 Adapter
Play with Blazing Speed | Wi-Fi 6Enjoy ultra-speed for your home entertainmentsMore Efficiency, Less Latency1.5X Faster SpeedMore stable and smoother streaming than ever before. No more queuing up forever.OFDMA SupportedWith Wi-Fi 6 OFDMA technology, EW-7822UMX allows many low-bandwidth streams to transmit in parallel, reducing latency and jitter. Reduced latency for the terminal device is an important requirement for IoT and video that the 802.11ax can now address.MU-MIMO SupportedEDIMAX EW-7822UMX supports MU-MIMO, it’s a multiuser technology that increases capacity, facilitates higher speeds, and is ideal for applications that require high bandwidth. Users can enjoy improved Wi-Fi performance when connected to an MU-MIMO enabled network.WPA3 High-Level SecurityBy using a 128-bit encryption key, the new WPA3 security can protect user passwords from attacks and more. As a result, it’s safer, and you will never screw up in risks.USB 3.2 Gen 1* Truly Realized 11AX SpeedUSB 3.2 Gen 1* wo…
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Productomschrijving

DDR3 SDRAM comes with a promise of a power consumption reduction of 40% compared to current commercial DDR2 modules, due to DDR3s 90 nm fabrication technology, allowing for lower operating currents and voltages (1.5 V, compared to DDR2s 1.8 V or DDRs 2.5 V). "Dual-gate" transistors will be used to reduce leakage of current DDR3s prefetch buffer width is 8 bit, whereas DDR2s is 4 bit, and DDRs is 2 bit. Theoretically, these modules could transfer data at the effective clockrate of 800-1600MHz (for a single clock bandwidth of 400-800MHz), compared to DDR2s current range of 400-1066 MHz (200-533 MHz) or DDRs range of 200-600 MHz (100-300 MHz). To date, such bandwidth requirements have been mainly on the graphics market, where fast transfer of information between framebuffers is required. DDR3 DIMMS have 240 pins, the same number as DDR2; however, the DIMMS are physically incompatible, owing to a different key notch location. The GDDR3 memory, with a similar name but an entirely dissimilar technology, has been in use for several years in high-end graphic cards such as ones from NVIDIA or ATI. Advantages compared to DDR2 Higher bandwidth (up to 1600 MHz) Performance increase at low power Longer battery life in laptops Enhanced low power features and thermal design Disadvantages compared to DDR2 Commonly higher CAS Latency Lower MFIBS per Quad Cycle

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