t
w(RSL1)
t
h(XPLLDIS)
t
h(XMP/MC)
t
h(boot-mode)
(See Note D)
V
DDIO
, V
DD3VFL
V
DDAn
, V
DDAIO
(3.3 V)
(See Note B)
XCLKIN
2.5 V
0.3 V
X1
XRS
XF/XPLLDIS
XMP/MC
Boot-Mode Pins
V
DD
, V
DD1
(1.8 V (or 1.9 V))
XCLKOUT
I/O Pins
User-Code Dependent
User-Code Dependent
User-Code Dependent
Boot-ROM Execution Starts
Peripheral/GPIO Function
Based on Boot Code
GPIO Pins as Input
XPLLDIS Sampling
GPIOF14
XCLKIN/8 (See Note C)
GPIO Pins as Input (State Depends on Internal PU/PD)
t
OSCST
(Don’t Care)
(Don’t Care)
User-Code Dependent
Address/Data/
Control
Address/Data Valid. Internal Boot-ROM Code Execution Phase
User-Code Execution Phase
NOTES: A. The state of the GPIO pins is undefined (i.e., they could be input or output) until the 1.8-V (or 1.9-V) supply reaches at least 1 V
and 3.3-V supply reaches 2.5 V.
B. V
DDAn
− V
DDA1
/V
DDA2
and AV
DDREFBG
C. Upon power up, SYSCLKOUT is XCLKIN/2 if the PLL is enabled. Since both the XTIMCLK and CLKMODE bits in the XINTCNF2
register come up with a reset state of 1, SYSCLKOUT is further divided by 4 before it appears at XCLKOUT. This explains why
XCLKOUT = XCLKIN/8 during this phase.
D. After reset, the Boot ROM code executes instructions for 1260 SYSCLKOUT cycles (SYSCLKOUT = XCLKIN/2) and then
samples BOOT Mode pins. Based on the status of the Boot Mode pin, the boot code branches to destination memory or boot
code function in ROM. The BOOT Mode pins should be held high/low for at least 2520 XCLKIN cycles from boot ROM execution
time for proper selection of Boot modes.
If Boot ROM code executes after power-on conditions (in debugger environment), the Boot code execution time is based on
the current SYSCLKOUT speed. The SYSCLKOUT is based on user environment and could be with or without PLL enabled.
t
d(EX)
See Note A
t
su(XPLLDIS)
SM320F2812-HT
SGUS062B
–
JUNE 2009
–
REVISED JUNE 2011
www.ti.com
Figure 6-9. Power-on Reset in Microcomputer Mode (XMP/MC = 0) (See Note A)
96
Electrical Specifications
Copyright
©
2009
–
2011, Texas Instruments Incorporated
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