MAXQ3108 Maxim Integrated Products, MAXQ3108 Datasheet - Page 19

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MAXQ3108

Manufacturer Part Number
MAXQ3108
Description
Dual-Core Microcontroller
Manufacturer
Maxim Integrated Products
Datasheet

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MREQ1 (0Fh, 00h)
Initialization:
Read/Write Access:
MREQ1.[15:0]:
MREQ2 (10h, 00h)
Initialization:
Read/Write Access:
MREQ2.[15:0]:
ADCN (11h, 00h)
Initialization:
Read/Write Access:
ADCN.0: ABF0
ADCN.1: ABF1
ADCN:2: ABF2
ADCN.3: ABF3
ADCN.4: ABF4
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Low-Power, Dual-Core Microcontroller
Master Request Register 1
This register is reset to 0000h on all forms of reset.
Unrestricted read/write access only to the UserCore.
Unrestricted read access only to the DSPCore.
Master Request Register 1 Bits 15:0. These bits are used to supply follow-on address and data
information for commands issued by the master. To notify the slave that data is ready to be read,
the REQCDV bit should be set to 1. The master should poll the REQCDV bit to know when the slave
has read MREQ1 and when it is safe to write further data to MREQ1.
Master Request Register 2
This register is reset to 0000h on all forms of reset.
Unrestricted read/write access only to the UserCore.
Unrestricted read access only to the DSPCore.
Master Request Register 2 Bits 15:0. These bits are used to supply follow-on address and data
information for commands issued by the master. To notify the slave that data is ready to be read,
the REQCDV bit should be set to 1. The master should poll the REQCDV bit to know when the slave
has read MREQ2 and when it is safe to write further data to MREQ2.
Analog-to-Digital Converter Control Register
This register is cleared to 0000h on all forms of reset.
UserCore: Unrestricted read/write access except bits 0:5 are read only and 6:7 have hardware
restricted write access.
DSPCore: Read-only.
ADC0 Buffer Full Flag. This bit is set by hardware to indicate that a sample is available from
ADC0. An interrupt request is generated to a CPU if IF01E = 1 and interrupts are not otherwise
masked globally or modularly. This bit is cleared by hardware by a CPU read (either the UserCore
or the DSPCore) of the AD0 output register. The ABF0 and ABF1 flags are set in the same clock
cycle.
ADC1 Buffer Full Flag. This bit is set by hardware to indicate that a sample is available from
ADC1. An interrupt request is generated to a CPU if IF01E = 1 and interrupts are not otherwise
masked globally or modularly. This bit is cleared by hardware by a CPU read (either the UserCore
or the DSPCore) of the AD1 output register. The ABF0 and ABF1 flags are set in the same clock
cycle.
ADC2 Buffer Full Flag. This bit is set by hardware to indicate that a sample is available from
ADC2. An interrupt request is generated to a CPU if IF23E = 1 and interrupts are not otherwise
masked globally or modularly. This bit is cleared by hardware by a CPU read (either the UserCore
or the DSPCore) of the AD2 output register. The ABF2 and ABF3 flags are set in the same clock
cycle.
ADC3 Buffer Full Flag. This bit is set by hardware to indicate that a sample is available from
ADC3. An interrupt request is generated to a CPU if IF23E = 1 and interrupts are not otherwise
masked globally or modularly. This bit is cleared by hardware by a CPU read (either the UserCore
or the DSPCore) of the AD3 output register. The ABF2 and ABF3 flags are set in the same clock
cycle.
ADC4 Buffer Full Flag. This bit is set by hardware to indicate that a sample is available from
ADC4. An interrupt request is generated to a CPU if IF45E = 1 and interrupts are not otherwise
masked globally or modularly. This bit is cleared by hardware by a CPU read (either the UserCore
or the DSPCore) of the AD4 output register. The ABF4 and ABF5 flags are set in the same clock
cycle.
Special Function Register Bit Descriptions (continued)
19

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