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STLC1502 View Datasheet(PDF) - STMicroelectronics

Part Name
Description
Manufacturer
STLC1502
ST-Microelectronics
STMicroelectronics 
STLC1502 Datasheet PDF : 81 Pages
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STLC1502
• Timer2
• UART
• Dual Port RAM
• I2C
• Ethernet switch DMAC1
• Ethernet switch DMAC2
• SPI
• DMAC
• IRQ1/GPIO18
• IRQ2/GPIO19
• IKybd
• HPI
• Timer3
Even if only a single bit position is defined for FIQ, the interrupt controller can drive one of the interrupt source
(IRQ interrupt sources), through a register, in order to generate the FIQ interrupt.
The IRQ interrupt controller uses a bit position for each different interrupt source.
All interrupt source inputs must be active HIGH and level sensitive and it remain active until the interrupt cause
has been cancelled.
No hardware priority scheme nor any form of interrupt vectoring is provided, because these functions can be
provided in software.
A programmed interrupt register is also provided to generate an interrupt under software control.
Every interrupt source can be masked.
7.4.1 Interrupt control
The IRQ interrupt management is done as described in the following:
• An interrupt is generated by a given device/source;
• This cause is readable by the IRQRawStatus register;
• If not masked (the mask is set by IRQEnableSet and reset by IRQEnableClear), this interrupt will
generate a IRQ signal to the ARM and the interrupt source will be known by a read of the IRQStatus
register.
• The ARM will serve the IRQ reading at first in the IRQStatus the active interrupt requests and will
execute with a given priority the proper interrupt routine. Every routine must erase (quite soon) in
some way its interrupt request source. This causes also for the proper bit in the IRQRawStatus regis-
ter and in the IRQStatus register to disappear.
The same interlock is present for the FIQ interrupt.
7.4.2 Interrupt control scheme
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