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H26M51002KPR
+BOM16GB eMMC 5.1 FBGA-153 Memory (ICs) RoHS
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メーカーHYNIX
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メーカー品番 #H26M51002KPR
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データシート H26M51002KPR DataSheet
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在庫状況6206
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Packaging | FBGA-153 |
| Controller Operating Voltage (VCCQ) | 1.7V~1.95V |
| Controller Stand-By Current | 120uA |
| Interface | eMMC 5.1 |
| Memory Size | 16GB |
| NAND Operating Voltage (VCCF) | 2.7V~3.6V |
| NAND Stand-By Current | 30uA |
| Operating temperature | -25℃~+85℃ |
| Reading Speed in Sequence | 250MB/S |
| Writing Speed in Sequence | 45MB/S |
概要
Description
For such components, important attributes might include their capacity, speed, technological generation, intended application (e.g., consumer electronics, industrial use), and any unique features that differentiate them from other models. If you are looking for detailed technical specifications or usage instructions, these can usually be found in the product's datasheet or technical documentation provided by the manufacturer. Additionally, contacting the manufacturer or consulting with a technical expert may provide further insights specific to the H26M51002KPR model.
Equivalent
Features
1. Type: NAND Flash memory.
2. Capacity: Typically available in multi-gigabyte storage capacities, suitable for consumer electronics.
3. Architecture: Based on multi-level cell (MLC) or triple-level cell (TLC) technology, which allows for high-density storage.
4. Performance: Offers reliable read and write speeds, optimized for use in applications requiring efficient data access.
5. Interface: Uses a standard interface for compatibility with a wide range of devices.
6. Applications: Commonly used in smartphones, tablets, SSDs, and other portable electronics for data storage.
7. Reliability: Equipped with error correction capabilities to ensure data integrity and longevity.
8. Power Efficiency: Designed to consume low power, making it suitable for battery-operated devices.
These features make the H26M51002KPR a versatile and efficient solution for modern data storage needs in various consumer electronics.
Pinout
As a general reference, NAND Flash memory chips like this one are used for storing data in a wide range of electronic devices, such as smartphones, tablets, and solid-state drives (SSDs). The function of the H26M51002KPR is to provide non-volatile storage, meaning it retains data even when the power is turned off.
For precise information regarding the pin count and specific functions of each pin for the H26M51002KPR, it is best to consult the datasheet or technical documentation provided by SK Hynix. This documentation will provide detailed specifications, including pin configurations, electrical characteristics, and operational guidelines.
Manufacturer
Application
1. Mobile Devices: Used in smartphones and tablets for data storage due to its high-density and compact size.
2. Consumer Electronics: Integral in devices like digital cameras, MP3 players, and smart TVs for reliable data storage.
3. Computing: Utilized in laptops and desktops as SSD storage, providing faster data access speeds.
4. Embedded Systems: Incorporated in industrial and automotive applications for robust and durable storage solutions.
5. IoT Devices: Supports data logging and processing in IoT applications due to its efficiency and low power consumption.
These applications leverage the chip's capacity, reliability, and speed characteristics.
Package
Frequently Asked Questions
Q: What interface standard does the H26M51002KPR support?
A: It supports the eMMC 5.1 interface, ensuring high compatibility with modern embedded systems.
Q: What are the operating temperature ranges for this memory?
A: It operates reliably from -25°C to +85°C, suitable for industrial and automotive applications.
Q: What is the typical read and write speed?
A: Sequential read speed is 250 MB/s, and sequential write speed is 45 MB/s under eMMC 5.1.
Q: What are the voltage requirements for VCCQ and VCCF?
A: VCCQ (Controller) is 1.7V~1.95V, and VCCF (NAND) is 2.7V~3.6V.
Q: How much power does the controller consume in standby?
A: Controller standby current is only 120 μA, ideal for low-power embedded designs.