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MT40A1G16TB-062E:F
MT40A1G16TB-062E:F
简介
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有货 77791 PCS
more_spec
MT40A1G16 Product details
Features
• VDD = VDDQ = 1.2V ±60mV
• VPP = 2.5V, –125mV, +250mV
• On-die, internal, adjustable VREFDQ generation
• 1.2V pseudo open-drain I/O
• TC maximum up to 95°C
– 64ms, 8192-cycle refresh up to 85°C
– 32ms, 8192-cycle refresh at >85°C to 95°C
• 16 internal banks (x4, x8): 4 groups of 4 banks each
• 8 internal banks (x16): 2 groups of 4 banks each
• 8n-bit prefetch architecture
• Programmable data strobe preambles
• Data strobe preamble training
• Command/Address latency (CAL)
• Multipurpose register READ and WRITE capability
• Write leveling
• Self refresh mode
• Low-power auto self refresh (LPASR)
• Temperature controlled refresh (TCR)
• Fine granularity refresh
• Self refresh abort
• Maximum power saving
• Output driver calibration
• Nominal, park, and dynamic on-die termination (ODT)
• Data bus inversion (DBI) for data bus
• Command/Address (CA) parity
• Databus write cyclic redundancy check (CRC)
• Per-DRAM addressability
• Connectivity test
• JEDEC JESD-79-4 compliant
• sPPR and hPPR capability
more_desctext
MICRON - MT40A1G16TB-062E:F - DRAM, DDR4, 16 Gbit, 1G x 16bit, FBGA, 96 Pins
Pin Count--------96
Part Category--------Integrated Circuit
Package Category--------BGA
Footprint Name--------BGA - 96-Ball FBGA – x16 (LY
more_faq
MT40A1G16TB-062E:F Frequently Asked Questions (FAQs)
What is the maximum operating temperature range for this module?
The maximum operating temperature range for this module is 0°C to 85°C.
How do I ensure signal integrity on the address and command bus?
To ensure signal integrity, use a signal integrity analysis tool to optimize the PCB layout, and consider using a signal integrity model for the module. Additionally, follow the recommended routing guidelines and layout considerations outlined in the datasheet.
What is the recommended refresh rate for this module?
The recommended refresh rate for this module is 8192 refreshes per second, with a refresh interval of 7.8 microseconds.
Can I use this module in a system with a different voltage supply?
No, this module is designed to operate at a voltage supply of 1.2V, and using a different voltage supply may damage the module or affect its performance.
How do I handle errors and retries in my system design?
Implement an error detection and correction mechanism, such as ECC or CRC, to detect and correct errors. Also, design a retry mechanism to handle errors that occur during data transfer.