of the chip. ?
(Hex) of the chip. ?
Program the two parts into two chips respectively.
When loading the file, select Even as the File Mode to write the data in the
addresses 0,2,4,6, etc. to one chip. Select Odd as the File mode to write the data
at the address 1,3,5,7, etc. to the other chip.
2. Based on the byte (8 ‐ bit), divide the file into four parts by address of the first
byte, the second byte, the third byte and the fourth byte out of every four bytes.
Program the four parts to four chips respectively.
When loading the file, select the 1 st byte of 4 as the File Mode to write the data
in the addresses 0, 4, 8, 12 (or C if HEX), etc. to one chip. Then select 2 nd byte
of 4 , 3 rd byte of 4 , and finally 4 th byte of 4 to write the remaining data to the
other three chips.
3. Based on the word (16 ‐ bit), divide the file into two parts by address of the first
two bytes and the last two bytes out of every four bytes. Program the two parts
to two chips respectively.
When loading the file, select the 1 st 2_type of 4 as the File Mode to write
the data in the addresses 0, 1, 5, 6, etc. to one chip. Then select 2 nd _byte of 4
to write the remaining data to the other chip.
Program Two or More Files to One Chip
You can load several files into the buffer and write them to the chip. The following
explanation gives an example of programming three files (Sample1, Sample2, and
Sample3) to one chip. The example assumes the following:
? Write the data from the address 200 (Hex) of the file Sample1 to the address 0
?
? Write the data from the address 0 (Hex) of the file Sample2 to the address 3000
?
? Write the data from the address 4000 (Hex) of the file Sample3 to the address
4000 (Hex) of the chip. ?
1. Select Edit from the Buffer menu. Make sure that the Buffer clear on data load
option is not checked.
2. Select Load from the File menu to load the Sample1 file.
?
? In the Buffer Address field, enter 0. ?
? In the File Address field, enter 200. ?
Superpro ? 5000 User’s Guide
82
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