AP-CF008GLAFS-NR
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AP-CF128GLAFS-ETNR (pdf) |
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AP-CF008GLAFS-ETNR |
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Halogen Free & RoHS Recast Complaint CompactFlash Series 6 Specifications for Industrial CompactFlash Card January 30th, 2013 Version Apacer Technology Inc. 4th Fl., 75 Hsin Tai Wu Rd., Sec.1, Xizhi, New Taipei City 221, Taiwan Tel +886-2-2698-2888 Fax +886-2-2698-2889 Compact Flash 6 series Features: PIO Mode 6 Multiword DMA Mode 4 Ultra DMA Mode 6 PCMCIA UDMA Mode 5 Capacities 8, 16, 32, 64, 128 GB Performance* Sustained read Up to 110 MB/sec Sustained write Up to 60 MB/sec Intelligent ATA/IDE module Wear-leveling algorithms to substantially increase longevity of flash media Built-in BCH ECC capable of correcting up to 72 bits in 1KB data Supports S.M.A.R.T commands NAND Flash Type MLC Power Management Power Smart Design Built-in 1.2V Power-On-Reset Built-in 2.7V Voltage detector for power fail protection Temperature ranges 0°C to 70°C for operation Standard -40°C to 85°C extended temperature -40°C to 100°C for storage Operating voltage for read and write V Power consumption typical * Active mode 265 mA/5.0V Standby mode 1 mA/5.0V Connector Type 50 pins female Physical Dimensions 36.4mm x 42.8mm x 3.3mm RoHS Recast Compliant Complies with 2011/65/EU Halogen Free *Performance and power consumption may vary depending on capacities, flash configuration or host system settings. 1 2013 Apacer Technology Inc. Compact Flash 6 series Table of Contents 1.GENERAL DESCRIPTION 3 PERFORMANCE-OPTIMIZED CONTROLLER Power Management Error Correction Code ECC INTELLIGENT ENDURANCE Wear-leveling algorithms S.M.A.R.T. Technology Flash Block Management Power Failure Management FUNCTIONAL BLOCK 5 PIN ASSIGNMENTS 6 PRODUCT SPECIFICATION 8 PERFORMANCE ENVIRONMENTAL CERTIFICATION & COMPLIANCE SOFTWARE INTERFACE 10 CF-ATA COMMAND OPERATING 12 PHYSICAL CHARACTERISTICS 13 PRODUCT ORDERING INFORMATION 14 PRODUCT CODE DESIGNATIONS 2 2013 Apacer Technology Inc. Compact Flash 6 series Performance-Optimized Controller The CompactFlash Card Controller translates standard CF signals into flash media data and control signals. Power Management The controller unit of this ComactFlash is built with power management design that optimizes power utilization and voltage flow. It enhances the power efficiency of CompactFlash Card Controller by employing advanced circuit regulator technology. The controller is implemented with RAM as a data process to optimize data transfer between the host and the flash media. Error Correction Code ECC The CompactFlash card is programmed with BCH Error Detection Code EDC and Error Correction Code ECC algorithms capable of correcting up to 72 random bits in 1KB bytes data. High performance is achieved through hardware-based error detection and correction. Intelligent Endurance Design Wear-leveling algorithms Flash memory devices differ from Hard Disk Drives HDDs in terms of how blocks are utilized. For HDDs, when a change is made to stored data, like erase or update, the controller mechanism on HDDs will perform overwrites on blocks. Unlike HDDs, flash blocks cannot be overwritten and each P/E cycle wears down the lifespan of blocks gradually. Repeatedly program/erase cycles performed on the same memory cells will eventually cause some blocks to age faster than others. This would bring flash storages to their end of service term sooner. Wear leveling is an important mechanism that level out the wearing of blocks so that the wearing-down of blocks can be almost evenly distributed. This will increase the lifespan of SSDs. Commonly used wear leveling types are Static and Dynamic. 3 2013 Apacer Technology Inc. Compact Flash 6 series S.M.A.R.T. Technology S.M.A.R.T. is an acronym for Self-Monitoring, Analysis and Reporting Technology, an open standard allowing disk drives to automatically monitor their own health and report potential problems. It protects the user from unscheduled downtime by monitoring and storing critical drive performance and calibration parameters. Ideally, this should allow taking proactive actions to prevent impending drive failure. Apacer SMART feature adopts the standard SMART command B0h to read data from the drive. When the Apacer SMART Utility running on the host, it analyzes and reports the disk status to the host before the device is in critical condition. Flash Block Management Current production technology is unable to guarantee total reliability of NAND flash memory array. When a flash memory device leaves factory, it comes with a minimal number of initial bad blocks during production or out-of-factory as there is no currently known technology that produce flash chips free of bad blocks. In addition, bad blocks may develop during program/erase cycles. When host performs program/erase command on a block, bad block may appear in Status Register. Since bad blocks are inevitable, the solution is to keep them in control. Apacer flash devices are programmed with ECC, block mapping technique and S.M.A.R.T to reduce invalidity or error. Once bad blocks are detected, data in those blocks will be transferred to free blocks and error will be corrected by designated algorithms. Power Failure Management Power Failure Management plays a crucial role when experiencing unstable power supply. Power disruption may occur when users are storing data into the SSD. In this urgent situation, the controller would run multiple write-to-flash cycles to store the metadata for later block rebuilding. This urgent operation requires about several milliseconds to get it done. At the next power up, the firmware will perform a status tracking to retrieve the mapping table and resume previously programmed NAND blocks to check if there is any incompleteness of transmission. 4 2013 Apacer Technology Inc. Compact Flash 6 series Functional Block The CompactFlash Card CFC includes a controller and flash media, as well as the CompactFlash standard interface. Figure 2-1 shows the functional block diagram. Figure 2-1 Functional block diagram 5 2013 Apacer Technology Inc. Compact Flash 6 series Pin Assignments Table 3-1 lists the pin assignments with respective signal names for the 50-pin configuration. A “#” suffix indicates the active low signal. The pin type can be input, output or input/output. Pin No. 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 Table 3-1 Pin assignments 1 of 2 Memory card mode Signal name GND D3 D4 D5 D6 D7 #CE1 A10 #OE A9 A8 A7 VCC A6 A5 A4 A3 A2 A1 A0 D0 D1 D2 WP #CD2 #CD1 D11 D12 D13 D14 D15 #CE2 #VS1 #IORD #IOWR #WE RDY/-BSY VCC #CSEL #VS2 RESET Pin I/O type I/O I/O I/O I/O I/O I/O I/O I/O I/O I/O I/O I/O I/O I O I O I O I Product Ordering Information Product Code Designations A P CF x L A X S Specification RM Removable NR Non-Removable ET Extended Temperature NDRM Non-DMA + Removable NDNR Non-DMA + Non-Removable ETRM Ext. Temp. + Removable ETNR Ext. Temp. + Non-Removable ETNDRM Ext. Temp + Non-DMA + Removable ETNDNR Ext. Temp + Non-DMA + Non-Removable Halogen Free Compliant Configuration Single Channel Dual Channel CTL Type CFC Type Capacities: 08G 016G 032G 064G 128G 8GB 16GB 32GB 64GB 128GB Model Name Apacer Product Code 14 2013 Apacer Technology Inc. Compact Flash 6 series Valid Combinations Standard Temperature Non-Removable Capacity AP/N AP-CF008GLAFS-NR 16GB AP-CF016GLAFS-NR 32GB AP-CF032GLAFS-NR 64GB AP-CF064GLAFS-NR 128GB AP-CF128GLAFS-NR Removable Capacity AP/N AP-CF008GLAFS-RM 16GB AP-CF016GLAFS-RM 32GB AP-CF032GLAFS-RM 64GB AP-CF064GLAFS-RM 128GB AP-CF128GLAFS-RM |
More datasheets: 9081C-05-00 | B59935C0160A070 | 96VG-128M-PE-MA | AP-CF032GLAFS-ETNR | AP-CF064GLAFS-ETNR | AP-CF032GLAFS-NR | AP-CF128GLAFS-NR | AP-CF016GLAFS-NR | AP-CF008GLAFS-NR | AP-CF064GLAFS-NR |
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