Abbreviations

A

 

AC

Alternating Current

ACK

ACKnowledge

ALPG

Automatic Laser Power Control

AM

Address Mark

ANSI

American National Standards

 

Institute

ARRE

Automatic Read Reallocation

 

Enabled

ASC

Additional Sense Code

ASCII

American Standard Code for

 

Information Interchange

ASCQ

Additional Sense Code Qualifier

ATN

ATteNtion

AWG

American Wire Gauge

AWRE

Automatic Write Reallocation

 

Enabled

B

 

BCV

Buffer Control Valid

BPV

Bit Pointer Varid

BSY

BuSY

BytChk

Byte Check

C

 

C/D

Control/Data

CCS

Common Command Set

CDB

Command Descriptor Block

CDRH

Center for Devices and

 

Rediological Health

CRC

Cyclic Redundancy Code

CSA

Canadian Standards Association

D

 

DB

Data Bus

DBD

Disable Block Descripter

DBP

Data Bus Parity

DC

Direct Current

DCRT

Disable CeRTification

DDS

Disk Definition Sector

DMA

Defect Management Area

DPO

Disable Page Out

DPRY

Disable PRimarY

DSP

Digital Signal Processor

E

 

EBC

Enable Blank Check

EBP

Erase By-Pass

ECC

Error Correction Code

EN

European Norm

EVPD

Enable Vital Product Data

F

 

FG

Frame Ground

FIFO

First In First Out

FmtData

Format data

FOV

Format Options Valid

FRU

Field Replaceable Unit

G

 

GND

Ground

I

 

I/O

Input/Output

IC

Integrated Circuit

ID

IDentifier

IDD

Intelligent Disk Drive

IEC

International Electrotechnical

 

Commission

Immed

Immediate

IP

Initialize Pattern

ISO

International Standardization

 

Organization

L

 

LD

Laser Diode

LED

Light Emitting Diode

LoEj

Load Eject

LSB

Least Significant Byte

LUN

Logical Unit Number

M

 

MPU

MicroProcessor Unit

MSB

Most Significant Byte

MSG

MeSeaGe

MTBF

Mean Time Between Failures

MTTR

Mean Time To Repair

C156-E142-02EN

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Fujitsu MCF3064AP Ack, Alpg, Arre, Ascii, Atn Awg, Bcv, Bpv, Bsy, Ccs, Cdb, Cdrh, Crc, Csa, Dbd, Dbp, Dds, Dpo, Dpry

MCE3130AP, MCE3064AP, MCF3064AP specifications

The Fujitsu MCF3064AP, MCE3064AP, and MCE3130AP are notable models in the realm of semiconductor technology and memory solutions. Each of these integrated circuits brings distinct features, technologies, and capabilities to various applications in modern electronics.

Starting with the MCF3064AP, this dynamic RAM device is built to provide efficient memory management and performance. It has a capacity of 64 kilobits, making it an ideal solution for early computer systems, embedded applications, and industrial electronics. The key characteristic of this chip is its fast access time, which facilitates quicker data retrieval and enhances overall system performance. The MCF3064AP supports a standard 16-pin DIP package, making it compatible with a variety of circuit designs, simplifying integration into existing systems.

On the other hand, the MCE3064AP also offers a 64 kilobit memory capacity but comes with enhanced features aimed at improving power efficiency and performance stability. This version is well suited for battery-operated devices where power consumption is a critical consideration. With its advanced static RAM architecture, the MCE3064AP ensures lower power usage while maintaining high-speed performance. Its operational characteristics allow it to function seamlessly over various temperature ranges, making it suitable for diverse application environments.

Lastly, the MCE3130AP distinguishes itself by offering an increased memory capacity of 128 kilobits. This model is tailored for applications that require higher data storage, such as telecommunications and networking equipment. The MCE3130AP employs sophisticated memory technology that not only optimizes data transfer rates but also enhances durability and reliability. It features an optimized pin configuration allowing easy integration into modern systems, along with advanced error detection and correction functionalities, ensuring data integrity across critical applications.

Collectively, the Fujitsu MCF3064AP, MCE3064AP, and MCE3130AP exemplify innovations in memory technology, catering to a wide range of electronic applications. Their distinctive features, varying capacities, and high-performance characteristics make them essential components in the advancement of computing systems and electronic devices. As technology continues to evolve, these semiconductor solutions from Fujitsu pave the way for more efficient, reliable, and powerful electronic systems.