*
* The following list indicates what microcontrollers are compatible with this demo.
*
- * - Series 7 USB AVRs (AT90USBxxx7)
- * - Series 6 USB AVRs (AT90USBxxx6)
- * - Series 4 USB AVRs (ATMEGAxxU4)
- * - Series 2 USB AVRs (AT90USBxx2, ATMEGAxxU2)
+ * \li Series 7 USB AVRs (AT90USBxxx7)
+ * \li Series 6 USB AVRs (AT90USBxxx6)
+ * \li Series 4 USB AVRs (ATMEGAxxU4)
+ * \li Series 2 USB AVRs (AT90USBxx2, ATMEGAxxU2)
+ * \li Series AU XMEGA AVRs (ATXMEGAxxxAxU)
+ * \li Series B XMEGA AVRs (ATXMEGAxxxBxU)
+ * \li Series C XMEGA AVRs (ATXMEGAxxxCxU)
*
* \section Sec_Info USB Information:
*
* SCSI Block Commands Specification</td>
* </tr>
* <tr>
- * <td><b>Usable Speeds:</b></td>
+ * <td><b>Supported USB Speeds:</b></td>
* <td>Full Speed Mode</td>
* </tr>
* </table>
*
* \section Sec_Description Project Description:
*
- * Dual LUN Mass Storage demonstration application. This gives a simple
- * reference application for implementing a multiple LUN USB Mass Storage
- * device using the basic USB UFI drivers in all modern OSes (i.e. no
- * special drivers required).
+ * Mass Storage device demonstration application. This gives a simple
+ * reference application for implementing a USB Mass Storage device using
+ * the basic USB UFI drivers in all modern OSes (i.e. no special drivers
+ * required).
*
* On start-up the system will automatically enumerate and function as an
- * external mass storage device with two LUNs (separate disks) which may
- * be formatted and used in the same manner as commercial USB Mass Storage
- * devices.
+ * external mass storage device which may be formatted and used in the same
+ * manner as commercial USB Mass Storage devices.
*
- * You will need to format the mass storage drives upon first run of this
+ * You will need to format the mass storage drive upon first run of this
* demonstration - as the device acts only as a data block transport between
* the host and the storage media, it does not matter what file system is used,
* as the data interpretation is performed by the host and not the USB device.
*
- * This demo is not restricted to only two LUNs; by changing the TOTAL_LUNS
- * value in MassStorageDualLUN.h, any number of LUNs can be used (from 1 to
- * 255), with each LUN being allocated an equal portion of the available
+ * This demo is not restricted to only a single LUN (logical disk); by changing
+ * the TOTAL_LUNS value in DataflashManager.h, any number of LUNs can be used
+ * (from 1 to 255), with each LUN being allocated an equal portion of the available
* Dataflash memory.
*
* The USB control endpoint is managed entirely by the library using endpoint
*
* <table>
* <tr>
- * <td><b>Define Name:</b></td>
- * <td><b>Location:</b></td>
- * <td><b>Description:</b></td>
+ * <th><b>Define Name:</b></th>
+ * <th><b>Location:</b></th>
+ * <th><b>Description:</b></th>
* </tr>
* <tr>
* <td>TOTAL_LUNS</td>
- * <td>MassStorage.h</td>
+ * <td>AppConfig.h</td>
* <td>Total number of Logical Units (drives) in the device. The total device capacity is shared equally between each drive -
* this can be set to any positive non-zero amount.</td>
* </tr>
+ * <tr>
+ * <td>DISK_READ_ONLY</td>
+ * <td>AppConfig.h</td>
+ * <td>Configuration define, indicating if the disk should be write protected or not.</td>
+ * </tr>
* </table>
*/