CDR3 Flash (UC3F) EEPROM
MPC561/MPC563 Reference Manual, Rev. 1.2
Freescale Semiconductor
21-9
MSB
0
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
Field
SBEN
SBSUPV
SBDATA
SBPROTECT
—
BIU
HRESET
0
0
1
1
0
0
1
1
1
1
00_0000
Addr
0x2F C804
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
LSB
31
Field
MEMSIZ
BLK
MAP
SBLKL
FLASHID
1
HRESET
1
0
1
1
0
1
0
0_0000_0000
1 The value of FLASHID could change to show a revision of the UC3F module.
Figure 21-3. UC3FMCRE— UC3F EEPROM Extended Configuration Register
Table 21-4. UC3FMCRE Bit Descriptions
Bits
Name
Description
0:1
SBEN
Small block enable. When SBEN[M]=0, the corresponding small block M behaves logically as if
the small block is still part of the larger host block. In addition, the small block protect bit
(SBPROTECT[M]), the small block supervisor bit (SBSUPV[M]), the small block data bit
(SBDATA[M]), and the small block BLOCK bit (SBBLOCK[M]) corresponding to small block M
have no effect. The corresponding small block is controlled by the same protect, supervisor,
data, and block bits that control its host block.
When SBEN[M] = 1, the corresponding small block M can be programmed and erased
independently of its host block. The corresponding small block protect bit, the small block
supervisor bit, the small block data bit, and the small block bit are enabled by SBEN.
For example: when SBEN[0] = 0, Small Block 0 (16 Kbytes) and the residual block (48 Kbytes)
contained in the host block of Small Block 0 are programmed and erased as if the two blocks are
one large array block (64 Kbytes). When SBEN[0] = 1, small block 0 and the residual block
contained in the host block of small block 0 behave as two separate blocks, i.e. small block 0 and
the residual block in small block 0’s host block can be programmed and erased independently of
each other.
0 small block M behaves as part of the host block
1 small block M functions independent of host block
2:3
SBSUPV
Small block supervisor space. Each small array block of the UC3F EEPROM may be mapped
into supervisor or unrestricted address space. When small array block M is mapped into
supervisor address space, SBSUPV[M] = 1, only supervisor accesses are allowed. When small
block M is mapped to unrestricted address space, SBSUPV[M] = 0, both supervisor and user
accesses are allowed.
If SBEN[M] = 0, the corresponding small block M is logically part of the host block and
SBSUPV[M] has no effect. Instead, the corresponding SUPV[M] bit will be used to determine if
the small block is mapped to Supervisor or Unrestricted address space.
Like the SUPV[0:7] bits, the SBSUPV bits are not actually used in the UC3F EEPROM module
but are used by the BIU to determine access restrictions to the UC3F array. Block addresses are
decoded in the BIU to determine which small array block is selected, and the selected small
block’s SBSUPV bit is compared with the address space attributes to determine validity of an
array access.
0 small block M is placed in unrestricted address space
1 small block M is placed in supervisor address space
Summary of Contents for MPC561
Page 84: ...MPC561 MPC563 Reference Manual Rev 1 2 lxxxiv Freescale Semiconductor...
Page 144: ...Signal Descriptions MPC561 MPC563 Reference Manual Rev 1 2 2 46 Freescale Semiconductor...
Page 206: ...Central Processing Unit MPC561 MPC563 Reference Manual Rev 1 2 3 62 Freescale Semiconductor...
Page 302: ...Reset MPC561 MPC563 Reference Manual Rev 1 2 7 14 Freescale Semiconductor...
Page 854: ...Time Processor Unit 3 MPC561 MPC563 Reference Manual Rev 1 2 19 24 Freescale Semiconductor...
Page 968: ...Development Support MPC561 MPC563 Reference Manual Rev 1 2 23 54 Freescale Semiconductor...
Page 1144: ...Internal Memory Map MPC561 MPC563 Reference Manual Rev 1 2 B 34 Freescale Semiconductor...
Page 1212: ...TPU3 ROM Functions MPC561 MPC563 Reference Manual Rev 1 2 D 60 Freescale Semiconductor...
Page 1216: ...Memory Access Timing MPC561 MPC563 Reference Manual Rev 1 2 E 4 Freescale Semiconductor...