CY62147DV30LL-70BVI

CY62147DV30LL-70BVI

Premium Infineon CY62147DV30LL-70BVI is a high-performance 4Mb asynchronous MoBL™ SRAM memory chip housed in a 48-ball VFBGA package. Featuring a 70ns fast access time matrix, ultra-low standby current consumption, and flexible byte-level control configurations, this rugged platform delivers deterministic telemetry pipelines required for advanced industrial embedded frameworks.

Info Product

SKU: CY62147DV30LL-70BVI 品牌:

描述

CY62147DV30LL-70BVI MoBL™ SRAM

4Mb Storage Density meets 70ns Access Speed – The Professional Ultra-Low Power SRAM Choice for Rugged Embedded Battery Systems.

// Infineon / Cypress Premium Original Factory Sealed Allocation
// High-Reliability 3.0V Low-Power Base 48-Ball VFBGA Matrix Portfolio

The Ultra-Low Standby Power Storage Advantage

The CY62147DV30LL-70BVI represents a premier flagship single-chip asynchronous volatile storage solution for high-density, space-constrained data processing units demanding absolute power budget efficiency and high hardware reliability. Engineered by Cypress (Infineon Technologies) inside their industry-standard MoBL™ (More Battery Life) silicon framework, this 4-Megabit static RAM manages system bus allocations flawlessly without constant refresh clock cycles. Housed in an incredibly small 48-ball VFBGA package layout footprint, it secures pure, deterministic cache telemetry loops and completely removes battery-drain hazards.

  • 4-Megabit dense memory array organized as 256K words by 16 bits configuration
  • 70ns Maximum access address speed delivering optimized low-latency timing parameters
  • Advanced byte-enable logic allowing independent upper-byte and lower-byte memory control

CY62147DV30LL-70BVI

Key Performance Advantages

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MoBL™ Technology

Utilizes special advanced circuitry loops to dramatically reduce standby current levels, vastly extending battery operating lifespans inside portable hardware setups.

70ns Fast Access

Maintains a highly responsive asynchronous read/write timeline cycle, matching high-frequency direct memory interfacing requirements cleanly.

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48-Ball VFBGA Form

Housed in a standard space-saving Very Fine Pitch Ball Grid Array profile layout, optimizing internal trace routing density on complex multi-layer PCBs.

Technical Specifications

Parameter Node Detailed Engineering Specification
Manufacturer Infineon Technologies / Cypress Semiconductor
Part Number (MPN) CY62147DV30LL-70BVI
Product Category High-Performance Asynchronous SRAM (静态随机存取存储器)
Memory Density 4 Megabit (4 Mb Array Mapped as 256K x 16-bit Structure)
Max Access Time 70 ns Maximum Speed Cycle Timing Boundary
Core Supply Rails 2.2V to 3.6V Extended Operating Supply Range Profile
Current Draw (Standby) Ultra-Low MoBL Microampere Consumption Limits
Control Pin Logic Byte High Enable (BHE) and Byte Low Enable (BLE) Architecture
Package / Case Form VFBGA-48 Package (Very Thin Fine Pitch Ball Grid Array SMT Layout)
Temperature Window Industrial Operating Temperature Spectrum Ranges (-40°C to +85°C)

Versatile Low-Power Applications

  • Industrial Automations: Highly dependable data cache buffering for programmable logic controllers (PLCs) and remote telemetry terminal units.
  • Handheld Terminals: Primary low-power working registers inside rugged field barcode scanners, dataloggers, and GPS tracking nodes.
  • Medical Diagnostics: Safe non-volatile buffer infrastructure for patient monitoring screens and portable testing hardware equipment.
  • Telecom Infrastructure: Provides deterministic data exchange corridors inside base stations and smart network router sub-boards.

Industrial Quality Protections

100% Original Sourcing: Procured securely through fully audited tier-1 franchise lines, completely ensuring anti-counterfeit protection.

Anti-Static Handling: Stored and picked in full alignment with international ANSI/ESD cleanroom facility benchmarks.

Full Batch Traceability: Verified via intensive certificate analysis and rigorous documentation tracking prior to export dispatch.

ULTRA-LOW POWER STATIC RAM INTEGRATION // DIRECT SOURCE ARCHITECTURE

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