Voltage Regulation
1-24
ADSP-BF537 Blackfin Processor Hardware Reference
interrupt causes the processor to sense the value of the bypass bit (
BYPASS
)
in the PLL control register (
PLL_CTL
). If bypass is disabled, the processor
transitions to the full on mode. If bypass is enabled, the processor transi-
tions to the active mode.
When in the sleep mode, system DMA access to L1 memory is not
supported.
Deep Sleep Mode (Maximum Power Savings)
The deep sleep mode maximizes power savings by disabling the processor
core and synchronous system clocks (
CCLK
and
SCLK
). Asynchronous sys-
tems, such as the RTC, may still be running, but cannot access internal
resources or external memory. This powered-down mode can only be
exited by assertion of the reset interrupt or by an asynchronous interrupt
generated by the RTC. When in deep sleep mode, an RTC asynchronous
interrupt causes the processor to transition to the active mode. Assertion
of
RESET
while in deep sleep mode causes the processor to transition to the
full on mode.
Hibernate State
For lowest possible power dissipation, this state allows the internal supply
(V
DDINT
) to be powered down, while keeping the I/O supply (V
DDEXT
)
running. Although not strictly an operating mode like the four modes
detailed above, it is illustrative to view it as such.
Voltage Regulation
The processor provides an on-chip voltage regulator that can generate
internal voltage levels (0.8 V to 1.2 V) from an external 2.25 V to 3.6 V
supply.
shows the typical external components required to
complete the power management system. The regulator controls the inter-
nal logic voltage levels and is programmable with the voltage regulator
Summary of Contents for Blackfin ADSP-BF537
Page 42: ...Contents xlii ADSP BF537 Blackfin Processor Hardware Reference ...
Page 90: ...Development Tools 1 32 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 138: ...Programming Examples 4 26 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 340: ...SDC Programming Examples 6 84 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 606: ...Programming Examples 9 94 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 660: ...Programming Examples 10 54 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 720: ...Electrical Specifications 11 60 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 840: ...Programming Examples 13 42 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 876: ...Programming Examples 14 36 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 938: ...Programming Examples 15 62 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 958: ...Programming Examples 17 12 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 986: ...Programming Examples 18 28 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 1162: ...G 26 ADSP BF537 Blackfin Processor Hardware Reference ...
Page 1218: ...Index I 56 ADSP BF537 Blackfin Processor Hardware Reference ...