Index

A

 

AC noise filter

4-9

actuator

1-6

air circulation

1-6

allowable input voltage and current

4-8

alternate area

3-9

alternate block allocation

3-10

alternate block allocation by FORMAT

 

UNIT command

3-11

alternate block allocation by REASSIGN

 

BLOCKS command

3-12

alternate block allocation during

 

FORMAT UNIT command execution

.... 3-11

alternate cylinder

3-4

alternate spare area

3-4

automatic alternate block allocation

3-13

automatic alternate block allocation at

 

read operation

3-13

automatic alternate block allocation at

 

write operation

3-13

automatic alternate block reassignment

1-4

B

 

basic operation test

6-5

BCRC

3-7

block address of user space

3-9

block descriptor

5-9

C

 

cache feature

1-3

caching parameter

5-14

changing revision number in field

6-8

checking at abnormal end

5-9

checking connection

5-6

checking HDD connection

5-7, 5-8

checking initial operation

5-5

checking operation after installation and

 

preparing HDD for use

5-5

checking procedure

5-6

command queuing feature

1-3

compactness

1-2

connection requirement

4-9

connector

4-9

continuous block processing

1-2

controller circuit

1-6

current waveform

4-8

cylinder configuration

3-1

D

 

data field

3-7

data format

3-1

data security at power failure

2-7

data space

3-1

defect list

3-10

defect management

3-10

defective block slipping

1-4

definition of sense data

7-3

delivery

5-2

diagnosis

1-5

diagnostic

6-1

diagnostic test

6-11

diagnostics and maintenance

6-1

disconnection/reconnection parameter

5-13

disk

1-5

disk drive replacement

6-7

disk drive troubleshooting

6-14

disk read error

7-4

dismounting drive

5-16

dual-port support

1-2

E

 

ECC

3-7

enclosure service function

1-3

environmental magnetic field

4-7

environmental specification

2-4

environmental temperature

4-5

environmental/power requirement

2-4

error analysis

7-1

error analysis information collection

7-1

error information indicated with sense

 

data

7-3

error rate

2-5

error recovery

1-4

error recovery during self-diagnostic

6-3

error recovery parameter

5-12

example of FC-AL system configuration

1-7

external dimension

4-1

F

 

factory maintenance

6-7

FC model drives outer view

1-5

FC-AL standard

1-2

FC-SCA connector

A-2

fibre channel interface error

7-4

field maintenance

6-7

finding possibly faulty part

6-15

C141-E234

IN-1

Page 105
Image 105
Fujitsu MAX3073FC, MAX3036FC, MAX3147FC manual Bcrc, Ecc

MAX3147FC, MAX3036FC, MAX3073FC specifications

The Fujitsu MAX3036FC, MAX3073FC, and MAX3147FC are advanced integrated circuits that cater to a variety of high-performance applications, predominantly in the realm of communications and data transmission. Each model comes laden with unique features that help in addressing specific requirements in modern electronic systems.

The MAX3036FC, for instance, stands out due to its robust signal processing capabilities. It is particularly optimized for high-speed data communications, making it an excellent choice for applications that demand minimal latency and high data integrity. This featured IC operates within a wide voltage range, ensuring versatility in different circuit environments. It also adopts technology enabling low power consumption, an essential attribute in battery-operated devices.

In contrast, the MAX3073FC brings a distinct set of features suitable for more specialized applications. Its architecture supports a comprehensive serial data communication framework, making it ideal for designs that utilize various communication protocols, including those in industrial automation and automotive systems. The MAX3073FC supports advanced error correction mechanisms which enhance reliability, ensuring more accurate data transmission even over longer distances.

The MAX3147FC, on the other hand, focuses on integrating advanced timing and synchronization technologies. This model is particularly significant in applications that require precise timing signals, such as in telecommunications infrastructure and high-frequency trading systems. The MAX3147FC features integrated oscillators and buffers, streamlining the design process and reducing component count. Additionally, it boasts immunity to electromagnetic interference, a critical factor in maintaining signal integrity in noisy environments.

Common to all three models is Fujitsu's commitment to use cutting-edge manufacturing processes. This ensures the devices are compact, enhancing their suitability for modern designs where space is constrained. The ICs are also designed to handle varying temperature ranges, making them resilient for use in diverse environments.

Each IC is supported by comprehensive documentation and development tools that aid engineers in the rapid prototyping and deployment of their designs. The integration of these advanced features and technologies not only simplifies the design process but also accelerates time-to-market for new products. Whether addressing the demands of communication systems, industrial controls, or consumer electronics, the MAX3036FC, MAX3073FC, and MAX3147FC from Fujitsu represent exceptional flexibility and performance in the landscape of integrated circuit technology.