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TNETV2664FIBZWT Datasheet(PDF) 152 Page - Texas Instruments

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No. de pieza TNETV2664FIBZWT
Descripción Electrónicos  Fixed-Point Digital Signal Processor
PDF  249 Pages
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Fabricante Electrónico  TI1 [Texas Instruments]
Página de inicio  http://www.ti.com
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TNETV2664FIBZWT Datasheet(HTML) 152 Page - Texas Instruments

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TMS320C6424
SPRS347D – MARCH 2007 – REVISED DECEMBER 2009
www.ti.com
6.5.1.2
Latching Boot and Configuration Pins
Internal to the chip, the two device reset pins RESET and POR are logically AND’d together only for the
purpose of latching device boot and configuration pins. The values on all device and boot configuration
pins are latched into the BOOTCFG register when the logical AND of RESET and POR transitions from
low-to-high.
6.5.2
Warm Reset (RESET Pin)
A Warm Reset is activated by driving the RESET pin active low. This resets everything in the device
except the emulation logic. An emulator session will stay alive during warm reset.
For more information on POR vs. RESET usage, see Section 6.5.1.1, Usage of POR versus RESET Pins
and Section 6.5.1.2, Latching Boot and Configuration Pins.
The following sequence must be followed during a Warm Reset:
1. Power supplies and input clock source should already be stable.
2. The RESET pin must be asserted (low) for a minimum of 12 MXI cycles.
Within the low period of the RESET pin, the following happens:
The reset signals flow to the entire chip resetting all the modules on chip, except the emulation
logic.
The PLL Controllers are reset thereby, switching back to PLL Bypass Mode and resetting all their
registers to default values. Both PLL1 and PLL2 are placed in reset and lose lock.
The RESETOUT pin becomes asserted (low), indicating the device is in reset.
3. The RESET pin may now be deasserted (driven high).
When the RESET pin is deasserted (high), the configuration pin values are latched and the PLL
Controllers changed their system clocks to their default divide-down values. Both PLL Controllers are
still in PLL Bypass Mode. Other device initialization also begins.
4. After device initialization is complete, the PLL Controllers pause the system clocks for 10 cycles. At the
end of these 10 cycles, the RESETOUT pin is deasserted (driven high).
At this point:
The I/O pins are controlled by the default peripherals (default peripherals are determined by
PINMUX0 and PINMUX1 registers).
The clock and reset of each peripheral is determined by the default settings of the Power and Sleep
Controller (PSC).
The PLL Controllers are operating in PLL Bypass Mode.
The C64x+ begins executing from DSPBOOTADDR (determined by bootmode selection).
After the reset sequence, the boot sequence begins. For more details on the boot sequence, see the
Using the TMS320C642x Bootloader Application Report (literature number SPRAAK5).
After the boot sequence, follow the software initialization sequence described in Section 3.8, Device
Initialization Sequence After Reset.
6.5.3
Maximum Reset
A Maximum (Max) Reset is initiated by the emulator or the watchdog timer (Timer 2). The effects are the
same as a warm reset, except the device boot and configuration pins are not re-latched. The emulator
initiates a maximum reset via the ICEPICK module. This ICEPICK initiated reset is non-maskable. When
the watchdog timer counter reaches zero, this will also initiate a maximum reset to recover from a runaway
condition. The watchdog timeout reset condition is masked if the TIMERCTL.WDRST bit is cleared to "0".
To invoke the maximum reset via the ICEPICK module, the user can perform the following from the Code
Composer Studio™ IDE menu: Debug
→ Advanced Resets → System Reset
This is the Max Reset sequence:
152
Peripheral Information and Electrical Specifications
Copyright © 2007–2009, Texas Instruments Incorporated
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Product Folder Link(s): TMS320C6424



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