Memory ICs
Subcategories
Products (476)
MT40A512M16LY-075:E - 8Gb DDR4 SDRAM 2666MT/s | Micron
The Micron MT40A512M16LY-075:E is a high-performance DDR4 SDRAM device organized as 512M x 16, providing 8Gb of memory density. It operates at a clock frequency of 1.33 GHz, achieving a data rate of 2666 MT/s with a CAS latency of 19. The device is housed in a 96-ball FBGA package (7.5x13.5mm) and operates from a 1.2V supply (VDD = VDDQ = 1.2V ±60mV), with a separate 2.5V VPP supply for wordline boost. DDR4 SDRAM (Double Data Rate 4 Synchronous Dynamic Random-Access Memory) is a type of volatile memory that transfers data on both edges of the clock signal, doubling the data rate compared to DDR3. It is the industry standard for main memory in servers, desktops, and laptops, offering higher bandwidth and lower power consumption than its predecessors. DDR4 operates at lower voltages (1.2V vs 1.5V for DDR3), reducing power dissipation and enabling higher density modules. Key features include on-die, internal, adjustable VREFDQ generation for improved signal integrity, 1.2V pseudo open-drain I/O for compatibility with modern controllers, and a refresh time of 8192 cycles with temperature-dependent refresh rates: 64ms at -40°C to 85°C, 32ms at >85°C to 95°C, and 16ms at >95°C to 105°C. The device supports auto self-refresh, auto precharge, write leveling, dynamic on-chip termination (DTC), CRC function, and data mask function, ensuring reliable operation in high-speed systems. The MT40A512M16LY-075:E is designed for high-bandwidth applications such as enterprise servers, networking equipment, and high-performance computing. Its 16-bit data bus and 8Gb density make it suitable for memory modules (DIMMs) and embedded systems requiring large memory capacity. The device is compliant with JEDEC DDR4 standards and is RoHS compliant. When designing with this component, ensure proper decoupling of VDD and VDDQ with 0.1uF and 1uF capacitors placed close to the pins. The VPP supply must be clean and within 2.5V ±250mV. Follow Micron's layout guidelines for DDR4 routing to maintain signal integrity at 2666 MT/s.
MT40A512M16TB-062E - 8Gb DDR4 SDRAM 512Mx16 | Micron
The Micron MT40A512M16TB-062E is a high-performance DDR4 SDRAM device organized as 512M x 16, providing 8Gb of memory density. It operates from a 1.2V VDD and VDDQ supply with a VPP of 2.5V, and features on-die, internal, adjustable VREFDQ generation. The device supports data rates up to 1600 MHz (DDR4-3200) with a typical tRCD of 19 ns, and is housed in a 96-ball FBGA package (7.5x13 mm). DDR4 SDRAM (Double Data Rate 4 Synchronous Dynamic Random-Access Memory) is a type of volatile memory that transfers data on both edges of the clock, doubling the data rate compared to DDR3. It is the industry standard for main memory in servers, desktops, and laptops, offering higher bandwidth and lower power consumption than previous generations. DDR4 operates at lower voltages (1.2V) and includes features like on-die termination (ODT) and write leveling to improve signal integrity at high speeds. Key features include a refresh time of 8192 cycles with temperature-dependent refresh rates: 64ms at -40°C to 85°C, 32ms at >85°C to 95°C, and 16ms at >95°C. The device supports auto self-refresh, auto precharge, write leveling, CRC, dynamic on-chip termination, and ZQ calibration. It operates over a temperature range of 0°C to +95°C for the standard version, with an industrial temperature range (-40°C to +95°C) available in the IT variant. The MT40A512M16TB-062E uses Micron's advanced DRAM process technology, offering high density and reliability. The 96-ball FBGA package provides excellent thermal and electrical performance, with a ball pitch of 0.8 mm. The device is designed for high-speed operation with low power consumption, making it suitable for a wide range of computing and embedded applications. Typical applications include servers, data centers, networking equipment, and high-performance computing systems. Its 8Gb density and x16 organization make it ideal for memory modules (DIMMs) and embedded systems requiring high capacity and bandwidth. The device is also used in industrial and automotive applications where reliability and temperature range are critical. When designing with this device, ensure proper decoupling capacitors are placed near the VDD and VDDQ pins to minimize noise. The ZQ pin requires a 240-ohm resistor to ground for calibration. Follow the DDR4 layout guidelines for signal integrity, including controlled impedance traces and proper termination.
MT40A512M16TB-062E:J - 8Gb DDR4 SDRAM 1.6GHz | Micron
The Micron MT40A512M16TB-062E:J is a high-performance DDR4 SDRAM device organized as 512M x 16, providing 8Gbit of memory density. It operates at a clock frequency of 1.6 GHz (DDR4-3200) with a CAS latency of 19 ns, and is housed in a 96-ball FBGA package (7.5x13.5 mm). This memory IC is designed for a wide range of computing, networking, and embedded applications requiring high bandwidth and low power consumption. DDR4 SDRAM (Double Data Rate 4 Synchronous Dynamic Random-Access Memory) is the fourth generation of DDR memory, offering higher speed and lower voltage compared to DDR3. It uses a 1.2V power supply (VDD and VDDQ) with a separate 2.5V VPP for wordline boost, enabling faster data transfer rates while reducing power consumption. DDR4 features on-die ECC, bank grouping, and a 16n prefetch architecture, making it suitable for servers, desktops, and high-performance embedded systems. Key features include VDD = VDDQ = 1.2V ±60mV, VPP = 2.5V (-125mV, +250mV), on-die internal adjustable VREFDQ generation, and 1.2V pseudo open-drain I/O. The device supports refresh times of 64ms at -40°C to 85°C, 32ms at >85°C to 95°C, and 16ms at >95°C, ensuring reliable operation across temperature ranges. It also features 16 internal banks (x16: 2 groups of 4 banks each) and an 8n-bit prefetch architecture. Technically, the MT40A512M16TB-062E:J utilizes Micron's advanced DRAM process technology, offering high-speed data transfer with low latency. The device supports programmable data strobe preambles, data strobe preamble training, and command/address latency (CAL), enabling fine-tuning for system optimization. Its 96-ball FBGA package provides excellent thermal and electrical performance, making it ideal for space-constrained designs. Typical applications include high-performance computing, networking equipment, data centers, and embedded systems requiring large memory capacity and high bandwidth. The device is also suitable for industrial and automotive applications where reliability and temperature tolerance are critical. When designing with this DDR4 SDRAM, ensure proper termination and signal integrity practices are followed, including impedance matching and decoupling capacitors near the power pins. The device requires a stable 1.2V supply and a 2.5V VPP supply, with careful attention to power sequencing during power-up and power-down. This memory IC is RoHS compliant and lead-free, meeting environmental standards. It is available in tape and reel packaging for automated assembly.
MT40A512M16TB-062E:R - 8Gb DDR4 SDRAM 3200MT/s | Micron
The Micron MT40A512M16TB-062E:R is a high-performance DDR4 SDRAM memory IC with a capacity of 8 gigabits (512M x 16 bits). It operates at a data rate of 3200 MT/s with a clock frequency of 1600 MHz, and is packaged in a 96-ball FBGA (7.5x13 mm) package. This device is designed for commercial temperature range (0°C to +95°C) and operates with a supply voltage of VDD = VDDQ = 1.2V ±60mV, with VPP = 2.5V (-125mV, +250mV). DDR4 SDRAM (Double Data Rate 4 Synchronous Dynamic Random-Access Memory) is a type of volatile memory that transfers data on both edges of the clock signal, effectively doubling the data rate. It is the fourth generation of DDR memory, succeeding DDR3, and offers higher speed, lower power consumption, and increased density. DDR4 is a critical component in modern computing systems, including servers, desktops, laptops, and embedded systems, where it serves as the main system memory. Key features of the MT40A512M16TB-062E:R include a 1.2V pseudo open-drain I/O interface, on-die internal adjustable VREFDQ generation, and support for auto self-refresh, auto precharge, write leveling, CRC, dynamic on-chip termination, and ZQ calibration functions. The device has a CAS latency of 22 (CL=22) and a refresh time of 8192 cycles, with refresh intervals of 64ms at -40°C to 85°C, 32ms at >85°C to 95°C, and 16ms at >95°C. This DDR4 SDRAM utilizes an 8n-prefetch architecture, which allows for high-speed data transfer by fetching 8 data words per clock cycle. The device supports a parallel interface with a 16-bit data bus, and the 96-ball FBGA package provides a compact footprint suitable for space-constrained designs. The memory is designed for reliable operation in commercial temperature environments, making it suitable for a wide range of applications. Typical applications include servers, networking equipment, industrial computing, and high-performance embedded systems. The high data rate and low power consumption make it ideal for memory-intensive tasks such as data center workloads, real-time data processing, and advanced computing platforms. When designing with this component, it is essential to follow DDR4 layout guidelines, including trace length matching and fly-by topology, to ensure signal integrity at 3200 MT/s. Proper decoupling and power integrity are also critical for reliable operation.
MT40A512M8RH-083E - 4Gb DDR4 512Mx8 2400MHz | Micron
The Micron Technology MT40A512M8RH-083E is a 4Gb DDR4 SDRAM organized as 512M x 8, operating at the DDR4-2400 speed grade (1.2 GHz clock rate) and housed in a 78-ball FBGA (9 x 10.5 mm) package. It runs from a VDD/VDDQ supply of 1.2V +/-60mV with a separate VPP of 2.5V (-125mV/+250mV) and operates over 0C to +95C. A DDR4 SDRAM is a synchronous dynamic random-access memory that transfers data on both edges of the clock (double data rate), sitting within the memory hierarchy as DRAM component -> DDR SDRAM family -> main system memory. Compared with DDR3, DDR4 lowers the core supply to 1.2V, increases the internal bank count, and adds bank groups for higher effective bandwidth. The MT40A512M8RH-083E implements 8 internal banks arranged as 2 groups of 4 banks each, with an 8n-bit prefetch architecture that lets the internal array run slower while the I/O sustains 2400 MT/s. Key features include programmable data strobe preambles, on-die internal adjustable VREFDQ generation that eliminates external reference resistors, a 1.2V pseudo open-drain I/O structure that reduces I/O power, and a 64ms, 8192-cycle refresh interval for operation up to 95C. The FBGA code for this device is D9TGG, which is useful for identifying marking codes on delivered parts. The 83E speed bin corresponds to the DDR4-2400 industry speed grade with CAS latency options defined in the Micron 4Gb x4/x8/x16 DDR4 datasheet (365 pages), which should be consulted for exact tCK, CL, and tRCD timing tables. Typical applications include desktop and notebook DIMMs, embedded and industrial x86/ARM systems, networking line cards, and test equipment main memory, where a 4Gb x8 component provides a balanced capacity-per-rank and bus-width trade-off. Design considerations: DDR4 routing requires length-matched, on-end ODT-tuned fly-by topologies, and VPP must be present at power-up for the pump circuits. Verify termination (RTT_NOM/RTT_WR) settings against your memory controller's training capability. This page adds value beyond the datasheet by consolidating distributor pricing, drop-in family alternatives, application guidance, and an engineer-oriented FAQ in one place.
MT41K256M16HA-107:E - 4Gbit DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16HA-107:E is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock frequency of 933 MHz with a CAS latency of 20 ns. It is housed in a 96-ball FBGA package (9x14 mm) and operates from a 1.35V supply, making it suitable for low-power applications. DDR3L (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory (SDRAM) that operates at 1.35V, reducing power consumption by about 20% compared to standard DDR3 (1.5V). It is part of the DDR3 family, which uses double data rate signaling to transfer data on both edges of the clock, achieving high bandwidth. DDR3L is commonly used in mobile devices, embedded systems, and servers where power efficiency is critical. Key features include a parallel interface with a data rate of 933 MHz (DDR3L-1866), a burst length of 8, and support for on-die termination (ODT) and posted CAS. The device is RoHS compliant and lead-free, meeting environmental standards. The 96-FBGA package offers a compact footprint with a 9x14 mm body, enabling high-density memory designs. Technically, the MT41K256M16HA-107:E uses Micron's advanced DRAM process technology, providing high reliability and performance. It supports a self-refresh mode for low-power standby and a temperature-compensated self-refresh (TCSR) feature. The device is designed for a wide operating temperature range of 0°C to 95°C (case temperature), making it suitable for industrial applications. Typical applications include networking equipment, enterprise storage, embedded computing, and consumer electronics such as set-top boxes and routers. Its low voltage and high density make it ideal for space-constrained designs requiring large memory capacity. When designing with this memory, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the Micron datasheet to minimize signal integrity issues. The device requires a 1.35V supply and a separate VDDQ, which should be regulated accurately.
MT41K256M16HA-107AAT:E - 4Gbit DDR3L SDRAM | Micron
The Micron MT41K256M16HA-107AAT:E is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 933 MHz (DDR3L-1866). It is housed in a 96-ball FBGA package (9x14mm) and is designed for low-power, high-bandwidth memory applications. This device is part of Micron's DDR3L family, offering a 20ns access time and a parallel interface. DDR3L SDRAM (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that operates at 1.35V, reducing power consumption by about 20% compared to standard 1.5V DDR3. It is a key component in computing systems, networking equipment, and embedded applications where high speed and low power are critical. DDR3L is backward compatible with DDR3, allowing flexible system design. Key features include a 4Gbit density, 16-bit I/O width, 933 MHz clock frequency, and a 20ns access time. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4. It also features auto-refresh and self-refresh modes for power saving. The 96-ball FBGA package provides a compact footprint suitable for space-constrained designs. Technically, the MT41K256M16HA-107AAT:E uses Micron's advanced DRAM process technology, ensuring high reliability and performance. It operates over a temperature range of 0°C to +95°C (case temperature) and is RoHS compliant. The device is designed for high-speed data transfer with minimal signal integrity issues, making it suitable for demanding applications. Typical applications include servers, networking switches, industrial computing, and embedded systems that require high-density, low-power memory. Its 1.35V operation is ideal for battery-powered devices and energy-efficient data centers. When designing with this device, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the datasheet to maintain signal integrity at 933 MHz. The device supports a 1.35V supply, and the VDDQ should be matched to the I/O voltage of the controller.
MT41K256M16HA-107G:E - 4Gbit DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16HA-107G:E is a 4Gbit DDR3L SDRAM (Synchronous Dynamic Random-Access Memory) organized as 256M x 16, operating at a clock frequency of 933 MHz with a 20 ns access time. It is housed in a 96-ball FBGA (9x14 mm) package and is designed for high-performance computing and data-intensive applications. DDR3L (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that operates at a lower voltage (1.35V) compared to standard DDR3 (1.5V), reducing power consumption while maintaining high bandwidth. It is part of the DDR3 SDRAM family, which is widely used in servers, networking equipment, and embedded systems for its balance of speed, capacity, and cost. Key features include a 4Gbit density, 16-bit data bus, 933 MHz clock speed (DDR3L-1866), and a 20 ns access time. The device supports parallel interface with a 96-FBGA package, making it suitable for space-constrained designs. It is RoHS compliant and lead-free, meeting modern environmental standards. Technically, the MT41K256M16HA-107G:E uses a 1.35V power supply, reducing power dissipation by about 15% compared to standard DDR3. It supports on-die termination (ODT) and dynamic ODT for improved signal integrity, and includes programmable CAS latency and burst lengths for flexibility. The device is designed for reliable operation in industrial temperature ranges, making it suitable for demanding environments. Typical applications include servers and data centers, networking equipment (routers, switches), embedded computing systems, and industrial control systems. Its high density and low power make it ideal for memory-intensive tasks such as virtualization, cloud computing, and real-time data processing. When designing with this component, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the Micron datasheet to maintain signal integrity at 933 MHz. The 96-FBGA package requires careful PCB design to manage thermal and electrical performance.
MT41K256M16HA-125 - 4Gbit DDR3L SDRAM 800MHz | Micron
The Micron MT41K256M16HA-125 is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a clock speed of 800 MHz (DDR3L-1600). It is housed in a 96-ball FBGA (9x14mm) package, offering a compact footprint for high-density memory applications. This device supports parallel data transfer with a burst length of 8 and provides a CAS latency of 11 cycles, ensuring high-speed data throughput for computing and embedded systems. DDR3L SDRAM is a low-voltage variant of DDR3 memory, designed to operate at 1.35V instead of the standard 1.5V, reducing power consumption by up to 20% while maintaining compatibility with DDR3L-enabled controllers. It is part of the broader DRAM family, which includes DDR3, DDR4, and LPDDR variants, each optimized for different performance and power requirements. DDR3L is widely used in mobile devices, laptops, and industrial applications where energy efficiency is critical. Key features of the MT41K256M16HA-125 include a 4Gbit density, 16-bit data bus, and a 13.75 ns access time (tRCD). It supports on-die termination (ODT) and dynamic ODT for improved signal integrity, and includes programmable CAS latency and additive latency for flexible timing. The device is RoHS compliant and lead-free, meeting environmental standards for modern electronics. Technically, the MT41K256M16HA-125 utilizes a CMOS process and features a 1.35V core supply with a separate 1.35V I/O supply. It supports auto-refresh and self-refresh modes, with a refresh interval of 7.8 us at 85C. The device includes a temperature sensor for thermal management, enabling efficient operation in high-temperature environments. The FBGA package provides excellent thermal and electrical performance, with a thermal resistance of [DATA_NEEDED: theta_JA]. Typical applications include DDR3L memory modules for laptops, embedded systems, networking equipment, and industrial PCs. Its low voltage and high density make it ideal for power-sensitive designs, while the 800 MHz speed supports bandwidth-intensive tasks such as video processing and data analytics. When designing with this device, ensure proper decoupling with 0.1uF and 1uF capacitors near the power pins, and follow the layout guidelines in the Micron datasheet to minimize signal integrity issues. The device requires a stable 1.35V supply and careful termination of the address and control lines.
MT41K256M16HA-125:E - 4Gbit DDR3L SDRAM 800MHz | Micron
The Micron MT41K256M16HA-125:E is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock frequency of 800 MHz (DDR3L-1600) with a CAS latency of 13.75 ns. It is housed in a 96-ball FBGA package (9x14 mm) and is lead-free. This memory IC is designed for low-voltage operation at 1.35V (DDR3L) while maintaining compatibility with standard 1.5V DDR3 systems, making it ideal for power-sensitive applications. DDR3L SDRAM is a low-voltage variant of DDR3 SDRAM, which is a type of synchronous dynamic random-access memory that transfers data on both edges of the clock signal. DDR3L operates at 1.35V, reducing power consumption by about 15% compared to standard DDR3 (1.5V), while offering the same performance. It is part of the DRAM family, which includes SDRAM, DDR, DDR2, DDR3, and DDR4, and is widely used in computing, networking, and embedded systems. Key features include a 4Gbit density, 16-bit data bus, 800 MHz clock speed, and a 13.75 ns CAS latency. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4 (with burst chop). It operates over a temperature range of 0°C to +95°C (TC) and is RoHS compliant. The 96-ball FBGA package (9x14 mm) is optimized for high-density PCB layouts. Technically, the MT41K256M16HA-125:E uses a CMOS process and features a 16n prefetch architecture, enabling high data rates. It includes auto-refresh and self-refresh modes, with a refresh period of 7.8 us at 85°C. The device supports DLL (Delay-Locked Loop) for precise timing and features programmable read and write latencies. Its low-voltage operation reduces I/O power, making it suitable for battery-powered devices. Typical applications include DDR3L memory modules for laptops, embedded systems, networking equipment (routers, switches), and industrial computing. Its low power and high density make it ideal for applications requiring large memory capacity with minimal power consumption. When designing with this device, ensure proper decoupling capacitors near the VDD and VDDQ pins, and follow the PCB layout guidelines in the Micron datasheet to minimize signal integrity issues. The device requires a 1.35V supply for VDD and VDDQ, and a separate VREF voltage for the address/command bus.
MT41K256M16HA-125IT:E - 4Gb DDR3L SDRAM 800MHz | Micron
The Micron MT41K256M16HA-125IT:E is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at a clock speed of 800 MHz with a CAS latency of 13.75 ns. It is housed in a 96-ball FBGA package (9x14 mm) and operates from a 1.35V supply, making it ideal for low-power applications. This memory IC supports parallel interface and is lead-free and RoHS compliant. DDR3L SDRAM is a low-voltage variant of DDR3 SDRAM, operating at 1.35V instead of the standard 1.5V, reducing power consumption by up to 20% while maintaining compatibility with DDR3L and DDR3 systems. It is part of the DRAM memory hierarchy, providing high-speed, volatile storage for computing and embedded systems. Key features include a density of 4Gb, 256M words of 16 bits each, and a data rate of 800 MHz (DDR3L-1600). The device supports auto self-refresh, auto precharge, asynchronous reset, data mask, dynamic on-chip termination (ODT), ZQ calibration, and write leveling. These features enhance signal integrity and simplify system design. The MT41K256M16HA-125IT:E uses a CMOS process and operates over a temperature range of -40°C to +95°C, suitable for industrial applications. The 96-ball FBGA package with a 9x14 mm footprint is optimized for space-constrained designs, offering excellent thermal and electrical performance. Typical applications include networking equipment, servers, industrial computing, and embedded systems where high memory density and low power are critical. The 1.35V operation reduces thermal load, making it suitable for compact, fanless designs. When designing with this device, ensure proper decoupling capacitors near the power pins and follow Micron's layout guidelines for DDR3L to maintain signal integrity at 800 MHz. The device supports write leveling and ODT, which should be configured according to the memory controller requirements.
MT41K256M16HA-15EM:E - 4Gb DDR3L SDRAM 256Mx16 | Micron
The Micron MT41K256M16HA-15EM:E is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V. It is a low-voltage version of DDR3, designed for power-sensitive applications while maintaining high performance. The device is housed in a 96-ball FBGA package (9x14mm) and supports data rates up to 1333 Mbps (DDR3L-1333) with a CAS latency of 15. It is part of Micron's DDR3L family, offering a balance of speed, density, and power efficiency. DDR3L SDRAM is a type of dynamic random-access memory that operates at 1.35V, reducing power consumption by about 15% compared to standard DDR3 (1.5V). It is widely used in mobile devices, embedded systems, and networking equipment where power efficiency is critical. DDR3L is backward compatible with DDR3, allowing it to run in 1.5V mode when needed, as noted in the datasheet. Key features include a 4Gb density, 16-bit data bus, 1.35V core power supply, and support for 1.5V operation. The device offers a burst length of 8, on-die termination (ODT), and programmable CAS latency. It is RoHS compliant and lead-free, making it suitable for environmentally conscious designs. Technically, the MT41K256M16HA-15EM:E uses Micron's advanced DRAM process technology, providing high reliability and performance. The 96-ball FBGA package ensures compact footprint and good thermal characteristics. The device supports a wide operating temperature range, making it suitable for industrial applications. Typical applications include networking equipment, servers, embedded computing, and consumer electronics such as set-top boxes and routers. Its low voltage and high density make it ideal for designs where power and space are constrained. When designing with this memory, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the datasheet to minimize signal integrity issues. The device requires a stable 1.35V supply and careful termination of the address/control lines.
MT41K256M16HA-187EM:E - 4Gb DDR3L SDRAM 256Mx16 | Micron
The Micron MT41K256M16HA-187EM:E is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 1866 MT/s (CL13). It is housed in a 96-ball FBGA package (9x14mm) and is designed for high-performance computing, networking, and industrial applications requiring low power and high bandwidth. DDR3L SDRAM (Low Voltage DDR3) is a type of synchronous dynamic random-access memory that operates at 1.35V, reducing power consumption by about 20% compared to standard DDR3 (1.5V). It is part of the DDR3 memory family, which uses double data rate architecture to transfer data on both edges of the clock, achieving high bandwidth. DDR3L is backward compatible with DDR3, allowing operation in 1.5V mode when needed. Key features include a 16n prefetch architecture, on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4 (with burst chop). The device supports auto-refresh and self-refresh modes, and includes a temperature-compensated self-refresh (TCSR) for reduced power in idle states. The 96-ball FBGA package provides excellent thermal and electrical performance, with a ball pitch of 0.8mm. The MT41K256M16HA-187EM:E operates over a temperature range of 0°C to +95°C (TC) and is RoHS compliant. It features a 1.35V core and I/O supply, with a VDDQ of 1.35V. The device is compatible with JEDEC DDR3L standards, ensuring interoperability with a wide range of controllers. Typical applications include servers, networking equipment, industrial PCs, and embedded systems where low power and high density are critical. The 4Gb density and x16 organization make it ideal for memory modules and systems requiring 256M x 16 configuration. When designing with this device, ensure proper decoupling capacitors near the VDD and VDDQ pins, and follow the PCB layout guidelines in the Micron datasheet to minimize signal integrity issues. The device supports a 1.5V compatible mode, allowing it to be used in systems designed for standard DDR3.
MT41K256M16LY-107 - 4Gbit DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16LY-107 is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock speed of 933 MHz with a CAS latency of 20 ns. It is housed in a 96-ball FBGA package (7.5x13.5 mm) and supports both 1.35V (DDR3L) and 1.5V (DDR3) operation, making it suitable for a wide range of computing and embedded applications. DDR3L SDRAM is a type of double data rate synchronous dynamic random-access memory that operates at a lower voltage (1.35V) compared to standard DDR3 (1.5V), reducing power consumption by up to 20% while maintaining similar performance. It is part of the DDR3 memory family, which is widely used in servers, laptops, and industrial systems due to its high bandwidth and cost-effectiveness. Key features include a 4Gbit density, 16-bit data bus, 933 MHz clock speed, and a 20 ns CAS latency. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4. It also features auto-refresh and self-refresh modes for low-power standby, making it ideal for battery-powered devices. Technically, the MT41K256M16LY-107 uses Micron's advanced DRAM process technology, offering high reliability and performance. It supports a data rate of 1866 MT/s (megatransfers per second) with a 16n prefetch architecture. The device includes a temperature-compensated self-refresh (TCSR) feature that adjusts refresh rate based on temperature, enhancing data integrity in varying thermal conditions. Typical applications include main memory in laptops, servers, networking equipment, and industrial PCs. Its low-voltage operation makes it particularly suitable for energy-efficient designs, while the high density supports memory-intensive applications like virtualization and data analytics. When designing with this component, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the Micron datasheet to minimize signal integrity issues. The device supports both 1.35V and 1.5V operation, but the voltage must be consistent across all memory devices in the system.
MT41K256M16LY-107:N - 4Gbit DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16LY-107:N is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock frequency of 933 MHz with a CAS latency of 13 (CL=13) and an access time of 20 ns. It is housed in a 96-ball FBGA package (7.5x13.5 mm) and operates from a 1.35V supply, making it ideal for low-power applications. This memory device supports parallel data transfer and is designed for high-bandwidth computing, networking, and embedded systems. DDR3L (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory (SDRAM) that operates at 1.35V, reducing power consumption by about 20% compared to standard 1.5V DDR3. It is part of the DDR3 family, which uses double data rate signaling to transfer data on both edges of the clock, achieving high throughput. DDR3L is commonly used in laptops, servers, and industrial applications where energy efficiency is critical. Key features include a 4Gbit density, 16-bit data bus width, 933 MHz maximum clock frequency, and a 20 ns access time. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4. It operates over a temperature range of 0°C to 95°C (case temperature) and is RoHS compliant. The 96-ball FBGA package offers a compact footprint suitable for space-constrained designs. Technically, the MT41K256M16LY-107:N uses Micron's advanced DRAM process technology, providing high reliability and performance. It features a 1.35V core and I/O supply, with a self-refresh mode for low-power standby. The device supports DLL (Delay-Locked Loop) for precise timing and includes programmable read and write latencies. Its architecture allows for efficient burst operations, making it suitable for high-speed data processing. Typical applications include DDR3L memory modules for laptops and ultrabooks, networking equipment such as routers and switches, embedded systems for industrial automation, and high-performance computing platforms. Its low voltage and high density make it ideal for power-sensitive designs. When designing with this component, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the Micron datasheet to maintain signal integrity at 933 MHz. The device requires a 1.35V supply and a separate VDDQ, which should be regulated accurately.
MT41K256M16MTW-107IT - 4Gb DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16MTW-107IT is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at a clock speed of 933 MHz (DDR3L-1866) with a CAS latency of 13. It is housed in a 96-ball FBGA package (8x14 mm) and operates from a 1.35V supply, making it suitable for low-power applications. The device supports industrial temperature range from -40°C to +95°C, ensuring reliable operation in harsh environments. DDR3L SDRAM is a type of double data rate synchronous dynamic random-access memory that operates at a lower voltage (1.35V) compared to standard DDR3 (1.5V), reducing power consumption by up to 20%. It is part of the DDR3 memory family, which uses an 8n-prefetch architecture to achieve high bandwidth. DDR3L is commonly used in servers, networking equipment, and embedded systems where power efficiency is critical. Key features include a 16-bit data bus, 4Gbit density, 933 MHz clock speed, and a 20 ns row cycle time. The device supports auto self-refresh, auto precharge, asynchronous reset, output enable, dynamic on-chip termination (DTC), ZQ calibration, and write leveling. These features enhance signal integrity and simplify system design. The MT41K256M16MTW-107IT uses a CMOS process and is designed for high-speed data transfer with low power consumption. The 96-ball FBGA package provides excellent thermal and electrical performance, and the industrial temperature rating ensures operation in extreme conditions. The device is RoHS compliant and lead-free. Typical applications include industrial computing, networking routers, telecommunications equipment, and embedded systems that require high-density, low-power memory. The 1.35V operation makes it ideal for battery-powered devices and energy-efficient data centers. When designing with this memory, ensure proper decoupling capacitors are placed near the power pins to minimize noise. The ZQ calibration pin must be connected to a 240-ohm resistor to ground for proper on-die termination calibration.
MT41K256M16RE-125:D - 4Gb DDR3L SDRAM 256Mx16 | Micron
The Micron MT41K256M16RE-125:D is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 1600 MT/s (DDR3L-1600). It comes in a 96-ball FBGA package (9x14mm) and is lead-free and RoHS compliant. This component is designed for high-performance computing, networking, and industrial applications requiring low power consumption and high memory density. DDR3L SDRAM (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that operates at 1.35V, reducing power consumption by about 20% compared to standard 1.5V DDR3. It is part of the DDR3 family, which uses double data rate signaling to transfer data on both edges of the clock, achieving high bandwidth. DDR3L is backward compatible with DDR3 and is widely used in servers, laptops, and embedded systems. Key features include a 4Gb density, 256Mx16 organization, 1.35V supply voltage, and a CAS latency of 11 (CL11) at 1600 MT/s. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4. It also features auto-refresh and self-refresh modes for power saving. The FBGA-96 package offers excellent thermal and electrical performance, making it suitable for space-constrained designs. Technically, the MT41K256M16RE-125:D uses Micron's advanced DRAM process technology, providing high reliability and low leakage. The device includes a temperature-compensated self-refresh (TCSR) feature that adjusts refresh rate based on temperature, enhancing data integrity. The 1.35V operation reduces I/O power, and the 96-ball FBGA package with a 0.8mm ball pitch ensures good signal integrity. Typical applications include DDR3L memory modules for servers, networking equipment, industrial PCs, and embedded systems. It is also used in consumer electronics like set-top boxes and routers. The low voltage and high density make it ideal for power-sensitive designs. When designing with this component, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the datasheet to minimize signal integrity issues. The device requires a stable 1.35V supply and a reference voltage (VREF) for the I/O.
MT41K256M16RE-15E:D - 4Gb DDR3L SDRAM 256Mx16 | Micron
The Micron MT41K256M16RE-15E:D is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 667 MHz (DDR3L-1333). It is housed in a 96-ball FBGA (10x14mm) package and is designed for low-power applications requiring high memory density and bandwidth. DDR3L (Low Voltage DDR3) is a type of synchronous dynamic random-access memory (SDRAM) that operates at 1.35V, reducing power consumption by about 15% compared to standard 1.5V DDR3. It is part of the DDR3 SDRAM family, which uses double data rate signaling to transfer data on both edges of the clock, achieving high bandwidth. DDR3L is commonly used in mobile devices, embedded systems, and servers where power efficiency is critical. Key features include a 4Gb density, 16-bit data bus, 667 MHz clock speed (PC3L-10600), and an access time of 13.5 ns. The device supports on-die termination (ODT), programmable CAS latency, and burst lengths of 8 and 4. It operates over a temperature range of -40°C to 95°C (TC) for the industrial variant, making it suitable for harsh environments. The MT41K256M16RE-15E:D uses a 30nm DRAM process technology, enabling high density with low power. It features a 1.35V core and I/O supply, with a separate VDDQ for improved signal integrity. The device includes auto-refresh and self-refresh modes for power saving, and supports DLL (delay-locked loop) for precise timing. Typical applications include embedded computing, networking equipment, industrial automation, and automotive infotainment systems. Its low voltage and high density make it ideal for power-sensitive designs that require large memory capacity. When designing with this device, ensure proper decoupling of the VDD and VDDQ pins with 0.1uF and 1uF capacitors. The DDR3L interface requires careful PCB layout to maintain signal integrity, including matched trace lengths and controlled impedance.
MT41K256M16TG-125 - 4Gb DDR3L SDRAM 800MHz | Micron
The Micron MT41K256M16TG-125 is a 4Gb DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a data rate of 800 MHz (DDR3L-1600). It is housed in a 96-ball FBGA package (8x14mm) and is designed for low-power applications requiring high memory density and bandwidth. DDR3L SDRAM is a low-voltage variant of DDR3 memory, operating at 1.35V instead of the standard 1.5V, reducing power consumption by approximately 20% while maintaining compatibility with DDR3 systems. It is part of the DRAM memory hierarchy, positioned between DDR3 and DDR4, and is widely used in computing, networking, and embedded systems. Key features include a parallel interface with 800 MHz clock speed, 20 ns access time, and support for 1.35V operation with 1.5V compatibility mode. The device offers burst lengths of 8 and 4, on-die termination (ODT), and programmable CAS latency. Its low voltage operation makes it ideal for power-sensitive applications such as laptops, servers, and industrial electronics. The MT41K256M16TG-125 utilizes Micron's advanced DRAM process technology, providing high reliability and performance. The 96-ball FBGA package ensures excellent thermal and electrical characteristics, with a compact footprint suitable for space-constrained designs. The device supports standard DDR3L features including auto-refresh, self-refresh, and partial array self-refresh for enhanced power management. Typical applications include main memory for embedded systems, networking equipment, and industrial computing. Its high density and low power make it suitable for applications requiring large memory capacity with minimal energy consumption. When designing with this device, ensure proper decoupling and signal integrity practices are followed. The 1.35V supply should be regulated accurately, and the memory controller must be configured for DDR3L timing parameters.
MT41K256M16TW-093 - 4Gbit DDR3L SDRAM 1.066GHz | Micron
The Micron MT41K256M16TW-093 is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock frequency of 1.066 GHz (DDR3L-2133) with a CAS latency of 14. It is housed in a 96-ball FBGA (8x14mm) package and operates from a 1.35V supply, with compatibility for 1.5V DDR3 operation. This memory IC features a parallel interface with a data rate of 2133 MT/s and an access time of 20 ns. DDR3L SDRAM (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that transfers data on both edges of the clock, achieving high bandwidth. It is a low-voltage variant of DDR3, operating at 1.35V instead of 1.5V, reducing power consumption by about 15% while maintaining similar performance. DDR3L is part of the DDR SDRAM family, which includes DDR, DDR2, DDR3, and DDR4, each generation offering higher speed and lower power. In a system hierarchy, DDR3L SDRAM sits between the memory controller (often integrated in the CPU or SoC) and the system bus, providing temporary data storage for active processes. Key features include a 4Gbit density, 16-bit data bus width, 1.35V core voltage, and support for auto self-refresh, auto precharge, asynchronous reset, data mask, dynamic on-chip termination (DTC), ZQ calibration, and write leveling. These features enhance signal integrity and power efficiency, making it suitable for high-performance computing and mobile applications. The device also supports a temperature range of 0°C to +95°C (TC) for standard operation, with an industrial temperature variant available. Technically, the MT41K256M16TW-093 uses a 30nm-class process technology, enabling high density and low power. It incorporates on-die termination (ODT) to improve signal quality on the memory bus, and its ZQ calibration feature allows precise impedance matching. The device is designed for reliable operation in demanding environments, with a mean time between failures (MTBF) that meets industry standards. Typical applications include servers, networking equipment, industrial computing, and embedded systems where high memory bandwidth and low power are critical. Its 1.35V operation makes it ideal for power-sensitive designs, such as laptops and portable devices, while its high speed supports data-intensive tasks like real-time analytics and virtualization. When designing with this component, ensure proper decoupling capacitors are placed near the power pins to minimize noise, and follow the PCB layout guidelines in the datasheet to maintain signal integrity at 2133 MT/s. The device requires a stable 1.35V supply and careful termination of the address/control bus.
MT41K256M16TW-093:P - 4Gbit DDR3L SDRAM 256Mx16 | Micron
The Micron MT41K256M16TW-093:P is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at 1.35V with a maximum clock frequency of 1.066 GHz and an access time of 20 ns. It comes in a 96-ball FBGA (8x14) package, offering high-density memory for computing and embedded systems. DDR3L SDRAM is a low-voltage variant of DDR3 memory, designed to operate at 1.35V while remaining backward-compatible with standard 1.5V DDR3. This reduction in voltage significantly lowers power consumption, making it ideal for power-sensitive applications such as laptops, servers, and industrial electronics. DDR3L is part of the DDR SDRAM family, which uses double data rate architecture to transfer data on both edges of the clock, effectively doubling throughput. Key features include a differential bidirectional data strobe, 8n-bit prefetch architecture, on-die termination (ODT), and ZQ calibration. The device supports auto self-refresh, auto precharge, asynchronous reset, and write leveling, ensuring reliable operation in high-speed systems. The 1.35V operation reduces power dissipation by up to 20% compared to standard DDR3, making it suitable for energy-efficient designs. The MT41K256M16TW-093:P utilizes Micron's advanced DRAM process technology, providing high-speed data transfer with low latency. The 8n-prefetch architecture enables burst lengths of 8, improving memory bandwidth efficiency. The device also features dynamic on-chip termination, which adjusts termination impedance during writes to improve signal integrity, and write leveling for improved timing margins in multi-rank systems. Typical applications include DDR3L memory modules for laptops, servers, networking equipment, and embedded systems. Its 4Gbit density and x16 organization make it ideal for applications requiring high memory capacity with a narrow bus, such as industrial PCs, routers, and test equipment. The 1.35V operation is particularly beneficial in battery-powered devices where power efficiency is critical. When designing with this component, ensure proper decoupling capacitors are placed near the power pins to minimize noise. The FBGA package requires careful PCB layout to maintain signal integrity at high frequencies. Refer to the Micron DDR3L datasheet for detailed timing and layout guidelines.
MT41K256M16TW-107 - 4Gb DDR3L SDRAM 933MHz | Micron
The Micron Technology MT41K256M16TW-107 is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a 933 MHz clock (DDR3L-1866 data rate) with 20 ns access time, housed in a 96-ball FBGA (8x14 mm) package running from a 1.35V supply. DDR3L (Double Data Rate 3 Low Voltage) SDRAM is a synchronous dynamic random-access memory that transfers data on both rising and falling clock edges, doubling effective data rate relative to the clock frequency. As a member of the JEDEC DDR3 memory family hierarchy, DDR3L operates at 1.35V instead of the 1.5V used by standard DDR3, cutting I/O and core power by roughly 15% while remaining backward compatible with 1.5V operation, making it a cornerstone power-management-friendly memory for embedded and computing systems. Key features of this device include the 4Gbit density on a 16-bit data bus, 933 MHz clock speed, auto self-refresh, auto precharge, asynchronous reset, data mask (DM) support, write leveling, dynamic on-die termination (ODT), and ZQ calibration for precise output impedance matching. These signal-integrity features allow reliable operation at DDR3L-1866 speeds on cost-effective PCB stackups. Technically, the device uses Micron's advanced DRAM CMOS process and supports JEDEC-standard DDR3L command timing. Dynamic ODT adjusts termination impedance between write and read phases to reduce reflections, while ZQ calibration compensates for process, voltage, and temperature drift. Commercial grade variants are rated 0C to +95C, and industrial AAT variants extend to -40C to +105C. Typical applications include embedded computing platforms, networking and telecom infrastructure, industrial control systems, set-top boxes, and router designs where a 4Gb x16 DDR3L foot print at low voltage maximizes bandwidth per watt. When designing with this part, keep 1.35V VDD and VDDQ rails tightly decoupled, route address/command lines as a length-matched fly-by group, and complete ZQ calibration with a precision 240-ohm resistor to GND per Micron layout guidance. This page synthesizes distributor pricing, drop-in alternatives, and practical design notes not found in the manufacturer datasheet, with prices as of 2026-09-02.
MT41K256M16TW-107 AUT:P - DDR3L 4Gb 933MHz SDRAM | Micron
The Micron Technology MT41K256M16TW-107 AUT:P is a 4 Gbit DDR3L SDRAM memory IC organized as 256M x 16, operating at 933 MHz clock speed (DDR3L-1866) with 20 ns access time, housed in a 96-ball FBGA (9 x 14 mm) package rated for the automotive -40C to +125C temperature range on a 1.35V supply. DDR3L SDRAM (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that transfers data on both the rising and falling edges of the clock, doubling effective bandwidth compared to SDR memories. Within the memory hierarchy, DRAM sits between processor caches and non-volatile storage, serving as the main working memory in embedded, industrial, and automotive computing platforms. The L suffix denotes a reduced core voltage of 1.35V (versus 1.5V for standard DDR3), lowering dynamic power consumption by roughly 17 percent while remaining backward-compatible with 1.5V operation per JEDEC DDR3L definitions. Key differentiating features of this device include its 4 Gbit density in a single x16 die, the 933 MHz maximum clock rate (DDR3L-1866 data rate class), the AUT automotive temperature grade of -40C to +125C, and lead-free (P suffix) RoHS-compliant construction. The x16 organization simplifies bus design for single-controller systems by providing full 16-bit data width from one device. Architecturally, the part implements a standard DDR3L core with eight internal banks, on-die termination (ODT), CAS and address pipelining, and programmable burst lengths, enabling efficient precharge and refresh management at high data rates. The 96-ball FBGA package provides low parasitic inductance for signal integrity at 1866 MT/s and a compact 9 x 14 mm footprint for space-constrained boards. Typical applications include automotive infotainment and ADAS memory, telematics gateways, industrial HMI and automation controllers, and embedded networking equipment, where the automotive temperature grade and DDR3L power efficiency directly extend system reliability and battery or rail power budgets. A key design consideration is fly-by termination routing and DQS/data-group length matching at DDR3L-1866 speeds; ensure the PCB controller supports ODT calibration and the 96-FBGA footprint follows Micron layout guidelines for ball-via placement. This page synthesizes distributor availability, drop-in alternatives, and practical design notes not found in the manufacturer datasheet.
MT41K256M16TW-107:P - 4Gb DDR3L SDRAM 933MHz | Micron
The Micron MT41K256M16TW-107:P is a 4Gbit DDR3L SDRAM organized as 256M x 16, operating at a clock frequency of 933 MHz (DDR3L-1866) with a CAS latency of 13. It is housed in a 96-ball FBGA (8x14mm) package and operates from a 1.35V supply, with an I/O voltage of 1.35V. This memory device supports a data rate of 1866 MT/s and features a burst length of 8, with a 20ns tRCD and 20ns tRP. It is designed for high-performance computing, networking, and industrial applications requiring low power consumption and high bandwidth. DDR3L SDRAM (Double Data Rate 3 Low Voltage) is a type of synchronous dynamic random-access memory that operates at a lower voltage (1.35V) compared to standard DDR3 (1.5V), reducing power consumption by up to 20% while maintaining similar performance. It is part of the DDR3 family, which uses double data rate signaling to transfer data on both edges of the clock, and is widely used in servers, laptops, and embedded systems. DDR3L is backward compatible with DDR3 slots, making it a versatile choice for upgrades and new designs. Key features include a 4Gbit density, 16-bit data bus, 933 MHz clock speed, and support for JEDEC-standard DDR3L-1866 timing. The device includes auto self-refresh, auto precharge, write leveling, dynamic on-chip termination (ODT), and ZQ calibration, ensuring signal integrity and reliable operation. It operates over a temperature range of 0°C to +95°C, making it suitable for commercial and industrial environments. Technically, the MT41K256M16TW-107:P uses a high-performance CMOS process and features a programmable CAS latency of 11, 12, 13, and 14, with a burst length of 8 and burst chop of 4. It supports on-die termination (ODT) for improved signal integrity and includes a DLL for precise clock alignment. The device is RoHS compliant and lead-free, meeting environmental standards. Typical applications include high-performance computing, networking equipment, industrial automation, and embedded systems where low power and high bandwidth are critical. Its 1.35V operation reduces thermal load, making it ideal for compact, power-sensitive designs. When designing with this device, ensure proper decoupling capacitors near the power pins and follow the layout guidelines in the datasheet to minimize signal integrity issues. The device requires a stable 1.35V supply and careful termination of the address/control lines.