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 HANBiT
HFDOM-44LX Series
44Pin Flash Disk Module for 128MB,192M, 256M, True IDE Interface Mode, 5.0V Part No. HFDOM44LX-xxxx
GENERAL DESCRIPTION
The HFDOM40LX series 44Pin Flash Disk on Module is a flash technology based with True IDE interface flash memory card for Lexar controller. It is constructed with flash disk controller chip and NAND-type (Samsung) flash memory device. The HFDOM44LX series operates in 5.0-Volt power supplies. It comes in capacity of 128, 192MB and up to 256 MB formatted 44Pin type . By optimizing flash memory management, the life of this HFDOM44LX series can be extended to its maximum level. Because the ECC function is included, the correctness of data transfer between the HFDOM44LX series and a True IDE compatible interface device can be guaranteed. The HFDOM44LX series is fully compatible with applications such as CPU card / board, set top box, industry / military PC, security equipment, measuring instrument and embedded systems.
FEATURES
True IDE compatible host interface Direct plug in for 2.5 IDE Connectors 44 pin 2.00mm IDE Connector Ultra-High Performance Support for CIS implemented with 256 bytes of attribute memory 5.0V operation voltage Burst Rate (to/from Host): up to 16.6MB/s (PIO mode 4) Sustained Write (Host to flash): minimum of 1.2MB/s Data Transfer Rate (device to PC via USB interface): up to 850KB/s Capacity : Min. 128MB ~ Max. 256MB Auto Sleep Mode Low Power Dissipation Low VCC Program Inhibit Function
PRODUCT SPECIFICATIONS
Capacities :
128, 192 and up to 256 MB (formatted)
Operating Voltage : 5.0V 10% Power consumptions :
Read mode Write mode Sleep mode 65 mA (typ) 65 mA (typ) 300 uA (typ) 0C to + 70C - 25C to + 85C 95%(Max)
Environment conditions :
Operating temperature Storage temperature Relative humidity
Mechanical conditions :
Weight : Maximum 10.1g
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ELECTRICAL SPECIFICATIONS
Table 1.1 Absolute Maximum Ratings
Parameters Storage Temperature Power Supply Voltage Symbol Tstg Vcc Min -65 -0.3 Max 150 7
HFDOM-44LX Series
Unit C V
Test Condition
Input or Output Voltage Vin, Vout GND-0.5 Vcc+0.5 V NOTE :Stress above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any conditions above those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.
Table 1.2 Recommended Operating Conditions
Parameters Operating Temperature Supply Voltage Symbol Ta Vcc Min 0 4.5 Max 70 5.5 Unit C V Test Condition
Table 1.3 DC Characteristics (Ta = 0 to +70C, Vcc = 5V 10%, Vcc = 3V 5%)
Parameters Power Supply voltage Input Low Voltage Input High Voltage Output Low Voltage Output High Voltage Input Leakage Output Capacitance Read Current Write Current Sleep Current Symbol Vdd Vil Vih Vol Voh Il Cout Irc Iwr Isc Min 3.15 -0.5 2.0 2.4 -5 Max 5.5 0.8 Vdd+0.3 0.4 5 10 55 55 200 Unit V V V V V uA pF mA mA uA Test Condition
CAPACITY SPECIFICATIONS
Table 1.4 Capacity Specifications
Part Number HFDOM-44LX128 HFDOM-44LX192 HFDOM-44LX256 Capacity (Unformatted) Sectors/Card Cylinders Heads Sectors/Track
128,188,416 bytes 193,462,272 bytes 257,949,696 bytes
250,368 377,856 503,808
978 738 984
8 16 16
32 32 32
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PHYSYCAL SPECIFICATIONS
51.80 3/4 0.1mm
HFDOM-44LX Series
1
Jumper Slave 1,2 Close Master 2,3 Close
25.00 3/4 0.1mm
4.303/4
0.1mm
44.00 3/4
0.1mm
4.00 3/4
0.1mm 1
1.90mm 3/4 43
0.08mm
2 2.00mm 3/4 0.02mm
44
Figure 1.1 44 pin Type Flash Disk Module Dimensions
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INSTALLTION GUIDE
1) Setting Method (for example)
c e Make sure your computer is turned off before you open the case.
HFDOM-44LX Series
Plug the carefully into the 44pin IDE slot on your computer. Caution: Make sure to align pin1 on host adapter interface connector with pin 1 on your Flash Disk Module. Pin 1 is indicated by a triangle on the Flash Disk Module connector. e e The Flash Disk Module is used power connector cable of the computer. Caution: If you need to remove your Flash Disk Module, use both hands to pull it out carefully. Check all cable connections and then replace your computer cover. Before you format or partition your new drive, you must configure your computer's BIOS so that the computer can recognize your new drive.
2) BIOS setting Method (for example)
c
Turn your computer on. As your computer start up, watch the screen for a message describing how to run the system setup program on the screen (sometimes called BIOS or CMOS setup). This is usually done by pressing a special key, such as Delete, Esc or F1 during startup. See your computer manual for details. Press the appropriate key to run the system setup program. If your BIOS provides automatic drive detection (an "AUTO" drive type), select this option. ( We recommend to use Normal / CHS mode to partition your Flash Disk Module to get the maximum formatted capacity. ) This allows your computer to configure itself automatically for your new drive. If your BIOS dose not provide "AUTO" drive detection, select "User-defined" drive setting and enter the CHS values from the table. BIOS Settings (see specification) Capacity Cylinders Heads Sectors(unformatted) Save the settings and exit the System Setup program. ( your computer will automatically reboot ) After you configure your computer, you can use the standard DOS commands to partition and format your Flash Disk Module, as described below. To partition your new Flash Disk Module with Microsoft DOS program : c e Insert a bootable DOS diskette into your diskette drive and restart your computer. Insert a DOS program diskette that contains the FDISK.EXE and FORMAT.COM programs into your diskette drive. Use the same DOS version that is on your bootable diskette. At the A:\ > prompt, type "FDISK" and press Enter. Select "Create DOS partition or logical DOS drive" by pressing 1. Then press Enter. Select "Create primary DOS partition" by pressing 1 again. Then press Enter. Create your first drive partition. If you are creating a partition that will be used to boot your computer (drive C), make sure that the partition is marked active.
e
e
3) Formatting Method (for example)
e e
e i i i
Create an extended partition and additional logical drives as necessary, until all the space on your new hard drive has been partitioned. When the partitioning is complete, FDISK reboots your computer. Caution: Make sure to use the correct drive letters so that you do not format a drive that already contains data. At the A:\ > prompt, type "format D:/s", where D is HFDOM44LX, Repeat the format process for all the new partitions you have created. After you format your drive, it is ready to use.
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HFDOM-44LX Series
1. PIN INFORMATION
PIN ASSIGNMENTS AND PIN TYPE
Table 2.1 Pin Assignment and Pin type
Pin 1 3 5 7 9 11 13 15 17 19 21 23 25 27 29 31 33 35 37 39 41 43 Signal /RESET D07 D06 D05 D04 D03 D02 D01 D00 GND1 DREQ /OW /OR IOCHRDY /DACK INT A01 A00 /CS0 /DASP (LED) VCC1 GND2 Pin Type I I/O I/O I/O I/O I/O I/O I/O I/O GND1 DREQ /OW /OR IORDY /DACK IRQ I I /CS0 I/O VCC1 GND2 Pin 2 4 6 8 10 12 14 16 18 20 22 24 26 28 30 32 34 36 38 40 42 44 Signal GND3 D08 D09 D10 D11 D12 D13 D14 D15 NC GND4 GND5 GND6 H_SEL GND7 /IO16 /PDIAG A02 /CS1 GND8 VCC2 NC Pin Type GND3 I/O I/O I/O I/O I/O I/O I/O I/O KEY(no pin) GND4 GND5 GND6 CSEL GND7 /IOIS16 I/O I I GND8 VCC2 RSVD2
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HFDOM-44LX Series
Signal Descriptions
Table 2.2 Signal Descriptions
Signal Name A[2:0] -PDIAG -DASP(LED) -CS0, -CS1 Dir. I I/O I/O I Pin 33,35,36 34 39 37,38 3,4,5,6, 7,8,9,10, D[15:00] I/O 11,12,13, 14,15,16, 17,18 2,19,22, GND[8:1] -24,26, 30,40, 43 -IOR I 25 This is an I/O Read strobe generated by the host. The I/O Write strobe pulse is used to clock I/O data on the Card Data bus into the Storage Card controller registers when the Storage Card is configured to use the I/O interface. The clocking will occur on the negative to positive edge of the signal (trailing edge). In True IDE Mode signal is the active high Interrupt Request to the host. This input pin is the active low hardware reset from the host. This output signal may be used as IORDY. This output signal is asserted low when this device is expecting a word data transfer cycle. This input pin is used for VCC(5V). This pin is not used for signal on the module. -20, 44 Ground. Description In True IDE Mode only A[2:0] are used to select the one of eight registers in the Task File, the remaining address lines should be grounded by the host. This input / output is the Pass Diagnostic signal in the Master / Slave handshake protocol. This signal used either to drive an LED whenever the Disk Module is being accessed or as indication of a second drive present. This signal is active low when the Disk Module is busy. CS0 is the chip select for the task file registers while CS2 is used to select the Alternate Status Register and the Device Control Register. All Task File operations occur in byte mode on the low order bus D00-D07 while all data transfers are 16 bit using D00-D15.
-IOW
I
23
IRQ -RESET IORDY -IOCS16 VCC[2:1] NC (Not Connect)
O I O O I
31 1 27 32 41, 42
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BLOCK DIAGRAM
HFDOM-44LX Series
True IDE Mode Interface
Figure 2.1 Flash Disk Module Block Diagram
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HFDOM-44LX Series
2. INTERFACE BUS TIMING
ACCESS SPCIFICATIONS
IDE MODE I/O ACCESS SPECIFICATIONS
In this True IDE Mode the Flash Disk Module protocol and configuration are disabled and only I/O operations to the Task File and Data Register are allowed. In this mode no Memory or Attribute Registers are accessible to the host.
Table 3.1 IDE Mode I/O Read Access
Mode Invalid Mode Standby Mode Task File Read Data Register Read -CE2 L H H L -CE1 L H L H A2-A0 x x 1-7h L -IORD x x L L -IOWR x x H H D15 - D8 High-Z High-Z High-Z Odd Byte out D7 - D0 High-Z High-Z Data Out Even Byte out
Table 3.2 IDE Mode I/O Read Timing
Parameter Data Delay after IORD Data Hold following IORD IORD Width Time Address Setup before IORD Address Hold following IORD CE Setup before IORD CE Hold following IORD IOIS16 Delay Falling from Address Symbol td (IORD) th (IORD) tw (IORD) tsuA (IORD) thA (IORD) tsuCE (IORD) thCE (IORD) tdfIOIS16 (ADR) IEEE Symbol tlGLQV tlGHQX tlGLIGH tAVIGL tlGHAX tELIGL tlGHEH tAVISL 0 165 70 20 5 20 35 Min. ns Max. ns 100
IOIS16 Delay Rising from Address tdrIOIS16 (ADR) tAVISH 35 NOTE: The maximum load on -IOIS16 is 1 LSTTL with 50pF total load. All times are in nanoseconds. Minimum time from -WAIT high to -IORD high is 0nsec, but minimum -IORD width must still be met.
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HFDOM-44LX Series
Figure 3.1 IDE Mode I/O Read Timing Example
Table 3.1 IDE Mode I/O Write Access
Mode Invalid Mode Standby Mode Task File Read Data Register Read -CE2 L H L H -CE1 L H H L A2-A0 x x 1-7h 6h -IORD x x H H -IOWR x x L L D15 - D8 High-Z High-Z x x D7 - D0 High-Z High-Z Data In Control In
Table 3.3 IDE Mode I/O Write Timing
Parameter Data Setup before IOWR Data Hold following IOWR IOWR Width Time Address Setup before IOWR Address Hold following IOWR CE Setup before IOWR CE Hold following IOWR IOIS16 Delay Falling from Address Symbol tsu(IOWR) th(IOWR) twI(OWR) tsuA(IOWR) thA(IOWR) tsuCE(IOWR) thCE(IOWR) tdfIOIS16(ADR) IEEE Symbol tDVIWH tlWHDX tlWLIWH tAVIWL tlWHAX tELIWL tlWHEH tAVISL Min. ns 100 0 165 70 20 5 20 35 Max. ns
IOIS16 Delay Rising from Address tdrIOIS16(ADR) tAVISH 35 NOTE: The maximum load on -IOIS16 is 1 LSTTL with 50pF total load. All times are in nanoseconds. Minimum time from -WAIT high to -IOWR high is 0nsec, but minimum -IOWR width must still be met.
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HFDOM-44LX Series
Figure 3.2 IDE Mode I/O Write Timing Example
Ordering Infomation
NO 1 2 3 Parts DO44LX128 DO44LX192 DO44LX256 Size Capacity Media transfer mode BYTE BYTE BYTE Operation Mode True IDE True IDE True IDE
51.80x25.0x1.9mm 51.80x25.0x1.9mm 51.80x25.0x1.9mm
128Mbyte 192Mbyte 256Mbyte
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