ADSP-21364BSWZ-1AA Analog Devices Inc, ADSP-21364BSWZ-1AA Datasheet - Page 13

IC DSP 32BIT 333MHZ EPAD 144LQFP

ADSP-21364BSWZ-1AA

Manufacturer Part Number
ADSP-21364BSWZ-1AA
Description
IC DSP 32BIT 333MHZ EPAD 144LQFP
Manufacturer
Analog Devices Inc
Series
SHARC®r
Type
Fixed/Floating Pointr
Datasheet

Specifications of ADSP-21364BSWZ-1AA

Interface
DAI, SPI
Clock Rate
333MHz
Non-volatile Memory
ROM (512 kB)
On-chip Ram
384kB
Voltage - I/o
3.30V
Voltage - Core
1.20V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
144-LQFP Exposed Pad, 144-eLQFP, 144-HLQFP
Frequency
333MHz
Supply Voltage
1.2V
Embedded Interface Type
Serial, SPI
Supply Voltage Range
1.14V To 1.26V
Operating Temperature Range
-40°C To +85°C
Digital Ic Case
RoHS Compliant
No. Of Bits
32 / 40
Rohs Compliant
Yes
Package
144LQFP EP
Numeric And Arithmetic Format
Floating-Point
Maximum Speed
333 MHz
Ram Size
384 KB
Device Million Instructions Per Second
333 MIPS
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ADSP-21364BSWZ-1AA
Manufacturer:
Analog Devices Inc
Quantity:
10 000
Table 6. Pin Descriptions (Continued)
1
2
3
4
Pin
BOOT_CFG1–0
RESETOUT
RESET
TCK
TMS
TDI
TDO
TRST
EMU
V
V
A
A
GND
The following symbols appear in the Type column of
S = synchronous, (A/D) = active drive, (O/D) = open drain, and T = three-state, (pd) = pull-down resistor, (pu) = pull-up resistor.
RD, WR, and ALE are three-stated (and not driven) only when RESET is active.
Output only is a three-state driver with its output path always enabled.
Input only is a three-state driver with both output path and pull-up disabled.
Three-state is a three-state driver with pull-up disabled.
DDINT
DDEXT
VDD
VSS
Type
I
O
I/A
I
I/S
(pu)
I/S
(pu)
O
I/A
(pu)
O (O/D)
(pu)
P
P
P
G
G
ADSP-21362/ADSP-21363/ADSP-21364/ADSP-21365/ADSP-21366
State During and
After Reset
Input only
Output only
Input only
Input only
Three-state with
pull-up enabled
Three-state with
pull-up enabled
Three-state
Three-state with
pull-up enabled
Three-state with
pull-up enabled
3
4
Rev. G | Page 13 of 56 | March 2011
Table
Function
Boot Configuration Select. This pin is used to select the boot mode for the processor.
The BOOT_CFG pins must be valid before reset is asserted. For a description of the boot
mode, refer to the ADSP-2136x SHARC Processor Hardware Reference .
Reset Out. Drives out the core reset signal to an external device.
Processor Reset. Resets the ADSP-2136x to a known state. Upon deassertion, there is a
4096 CLKIN cycle latency for the PLL to lock. After this time, the core begins program
execution from the hardware reset vector address. The RESET input must be asserted
(low) at power-up.
Test Clock (JTAG). Provides a clock for JTAG boundary scan. TCK must be asserted
(pulsed low) after power-up or held low for proper operation of the processors.
Test Mode Select (JTAG). Used to control the test state machine. TMS has a 22.5 kΩ
internal pull-up resistor.
Test Data Input (JTAG). Provides serial data for the boundary scan logic. TDI has a 22.5
kΩ internal pull-up resistor.
Test Data Output (JTAG). Serial scan output of the boundary scan path.
Test Reset (JTAG). Resets the test state machine. TRST must be asserted (pulsed low)
after power-up or held low for proper operation of the ADSP-2136x. TRST has a 22.5 kΩ
internal pull-up resistor.
Emulation Status. Must be connected to the processor’s JTAG emulators target board
connector only. EMU has a 22.5 kΩ internal pull-up resistor.
Core Power Supply. Nominally +1.2 V dc for the K, B grade models, and 1.0 V dc for the
Y grade models, and supplies the processor’s core.
I/O Power Supply. Nominally +3.3 V dc.
Analog Power Supply. Nominally +1.2 V dc for the K, B grade models, and 1.0 V dc for
the Y grade models, and supplies the processor’s internal PLL (clock generator). This pin
has the same specifications as V
more information, see Power Supplies on Page 8.
Analog Power Supply Return.
Power Supply Return.
6: A = asynchronous, G = ground, I = input, O = output, P = power supply,
DDINT
, except that added filtering circuitry is required.
For

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