Difference between revisions of "EEEPC SSD SATA Adapter"
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We tried SATA Mini PCIe SSD [http://www.supertalent.com/products/ssd_detail.php?type=SATA%20Mini%20PCIe FPM64GRSE] purchased from Newegg for EEE PC 1000 - it turned out not to be compatible with that model (works with some other EEE PCs). This SSD has SATA connected to the PCIe connector (not a part of the standard), there is JMicron JMF601 SATA II Flash controller (also has USB port) on board. Realizing that this board will not work for the EEE (and the compatible non-SATA SSD for the EEE PC 1000 is much slower) we decided to try that board with the camera as if it works it will be possible to fit it inside the camera body - 64GB, faster than most CF cards and not having the DMA problem of most CF cards. | We tried SATA Mini PCIe SSD [http://www.supertalent.com/products/ssd_detail.php?type=SATA%20Mini%20PCIe FPM64GRSE] purchased from Newegg for EEE PC 1000 - it turned out not to be compatible with that model (works with some other EEE PCs). This SSD has SATA connected to the PCIe connector (not a part of the standard), there is JMicron JMF601 SATA II Flash controller (also has USB port) on board. Realizing that this board will not work for the EEE (and the compatible non-SATA SSD for the EEE PC 1000 is much slower) we decided to try that board with the camera as if it works it will be possible to fit it inside the camera body - 64GB, faster than most CF cards and not having the DMA problem of most CF cards. | ||
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+ | The board was nicely recognized by the camera: | ||
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+ | # hdparm -i /dev/hda | ||
+ | /dev/hda: | ||
+ | Model=FPM64GRSE, FwRev=081210, SerialNo=P546549-AAJQ-22690A3 | ||
+ | Config={ Fixed } | ||
+ | RawCHS=16383/16/63, TrkSize=0, SectSize=0, ECCbytes=63 | ||
+ | BuffType=(0) unknown, BuffSize=0kB, MaxMultSect=1, MultSect=off | ||
+ | CurCHS=16383/16/63, CurSects=16514064, LBA=yes, LBAsects=126189568 | ||
+ | IORDY=on/off, tPIO={min:120,w/IORDY:120}, tDMA={min:120,rec:120} | ||
+ | PIO modes: pio0 pio1 pio2 pio3 pio4 | ||
+ | DMA modes: mdma0mdma1*mdma2 | ||
+ | UDMA modes: udma0 udma1 udma2 udma3 udma4 udma5 | ||
+ | AdvancedPM=no WriteCache=disabled | ||
+ | * current active mode | ||
+ | |||
+ | Showed that it was formated with a non-supported by the camera file system | ||
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+ | Disk /dev/hda: 64.6 GB, 64609058816 bytes | ||
+ | 255 heads, 63 sectors/track, 7854 cylinders | ||
+ | Units = cylinders of 16065 * 512 = 8225280 bytes | ||
+ | Device Boot Start End Blocks Id System | ||
+ | /dev/hda1 1 7854 63087223+ 7 '''HPFS/NTFS''' | ||
+ | |||
+ | and we measured about 18MB/sec write speed (limited by the ETRAX FS CPU), /dev/circbuf is ~19MB pseudo file in the camera: | ||
+ | |||
+ | # time dd if=/dev/circbuf of=/var/hdd/test1.dd bs=1M | ||
+ | 18+1 records in | ||
+ | 18+1 records out | ||
+ | real 0m 1.06s | ||
+ | user 0m 0.02s | ||
+ | sys 0m 1.00s |
Revision as of 09:55, 26 March 2009
We tried SATA Mini PCIe SSD FPM64GRSE purchased from Newegg for EEE PC 1000 - it turned out not to be compatible with that model (works with some other EEE PCs). This SSD has SATA connected to the PCIe connector (not a part of the standard), there is JMicron JMF601 SATA II Flash controller (also has USB port) on board. Realizing that this board will not work for the EEE (and the compatible non-SATA SSD for the EEE PC 1000 is much slower) we decided to try that board with the camera as if it works it will be possible to fit it inside the camera body - 64GB, faster than most CF cards and not having the DMA problem of most CF cards.
After examining the board it was obvious what pins did they use for the SATA, and the nice thing is that the power needed is 3.3V - same as 353 camera has 'natively'. So we soldered Mini PCIe connector to the 7-pin SATA one according to the following table (power was provided directly from the camera via two extra wires):
SATA Pin | SATA Pin Name | Mini PCIe pin | Mini PCIE Description | Notes |
---|---|---|---|---|
1 | GND | 35 | GND | |
2 | +Transmit | 33 | PETp0 | |
3 | -Transmit | 31 | PETn0 | |
4 | GND | 29, 27 | GND | |
5 | -Receive | 23 | PERn0 | |
6 | +Receive | 25 | PERp0 | |
7 | GND | 51,49,47 | +3.3 Power | (only 51,49 connected on the prototype) |
- | - | 50,40,34,18,4 | GND (power) | more GND pins: 15,9 available |
The board was nicely recognized by the camera:
# hdparm -i /dev/hda /dev/hda: Model=FPM64GRSE, FwRev=081210, SerialNo=P546549-AAJQ-22690A3 Config={ Fixed } RawCHS=16383/16/63, TrkSize=0, SectSize=0, ECCbytes=63 BuffType=(0) unknown, BuffSize=0kB, MaxMultSect=1, MultSect=off CurCHS=16383/16/63, CurSects=16514064, LBA=yes, LBAsects=126189568 IORDY=on/off, tPIO={min:120,w/IORDY:120}, tDMA={min:120,rec:120} PIO modes: pio0 pio1 pio2 pio3 pio4 DMA modes: mdma0mdma1*mdma2 UDMA modes: udma0 udma1 udma2 udma3 udma4 udma5 AdvancedPM=no WriteCache=disabled * current active mode
Showed that it was formated with a non-supported by the camera file system
Disk /dev/hda: 64.6 GB, 64609058816 bytes 255 heads, 63 sectors/track, 7854 cylinders Units = cylinders of 16065 * 512 = 8225280 bytes Device Boot Start End Blocks Id System /dev/hda1 1 7854 63087223+ 7 HPFS/NTFS
and we measured about 18MB/sec write speed (limited by the ETRAX FS CPU), /dev/circbuf is ~19MB pseudo file in the camera:
# time dd if=/dev/circbuf of=/var/hdd/test1.dd bs=1M 18+1 records in 18+1 records out real 0m 1.06s user 0m 0.02s sys 0m 1.00s