CY7C64713-128AXC Cypress Semiconductor Corp, CY7C64713-128AXC Datasheet - Page 47

IC MCU USB EZ FX1 16KB 128LQFP

CY7C64713-128AXC

Manufacturer Part Number
CY7C64713-128AXC
Description
IC MCU USB EZ FX1 16KB 128LQFP
Manufacturer
Cypress Semiconductor Corp
Series
EZ-USB FX1™r
Datasheet

Specifications of CY7C64713-128AXC

Program Memory Type
ROMless
Package / Case
128-LQFP
Applications
USB Microcontroller
Core Processor
8051
Controller Series
CY7C647xx
Ram Size
16K x 8
Interface
I²C, USB, USART
Number Of I /o
40
Voltage - Supply
3.15 V ~ 3.45 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Processor Series
CY7C64xx
Core
M8C
Data Bus Width
8 bit
Data Ram Size
16 KB
Interface Type
I2C/USART
Maximum Clock Frequency
48 MHz
Number Of Programmable I/os
40
Number Of Timers
3
Maximum Operating Temperature
+ 70 C
Mounting Style
SMD/SMT
Development Tools By Supplier
CY3674
Minimum Operating Temperature
0 C
Cpu Family
FX2LP
Device Core
8051
Device Core Size
8b
Frequency (max)
48MHz
Program Memory Size
Not Required
Total Internal Ram Size
16KB
# I/os (max)
40
Number Of Timers - General Purpose
3
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.45V
Operating Supply Voltage (min)
3.15V
Instruction Set Architecture
CISC
Operating Temp Range
0C to 70C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
128
Package Type
TQFP
Controller Family/series
(8051) USB
Core Size
8 Bit
No. Of I/o's
40
Ram Memory Size
16KB
Cpu Speed
48MHz
No. Of Timers
3
Embedded Interface Type
I2C, SPI, UART, USB
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
428-1681 - KIT USB FX1 DEVELOPMENT BOARD428-1677 - KIT DEVELOPMENT EZ-USB FX2LP428-1339 - KIT LOW SPEED PERSONALITY BOARD
Lead Free Status / Rohs Status
Compliant
Other names
428-1678
CY7C64713-128AXC

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Sequence Diagram of a Single and Burst Asynchronous Write
In the following figure, dashed lines indicate signals with programmable polarity.
Figure 35
in an asynchronous mode. This diagram shows a single write
followed by a burst write of 3 bytes and committing the
4-byte-short packet using PKTEND.
Document #: 38-08039 Rev. *F
At t = 0 the FIFO address is applied, insuring that it meets the
setup time of t
(SLCS may be tied low in some applications).
At t = 1 SLWR is asserted. SLWR must meet the minimum
active pulse of t
t
or before SLWR is asserted.
At t = 2, data must be present on the bus t
deasserting edge of SLWR.
At t = 3, deasserting SLWR causes the data to be written from
the data bus to the FIFO and then increments the FIFO pointer.
WRpwh
FIFOADR
PKTEND
FLAGS
SLWR
DATA
SLCS
. If the SLCS is used, it must be in asserted with SLWR
shows the timing relationship of the SLAVE FIFO write
SFA
t=0
WRpwl
t
SFA
. If SLCS is used, it must also be asserted
t =1
and minimum de-active pulse width of
t
WRpwl
t=2
Figure 35. Slave FIFO Asynchronous Write Sequence and Timing Diagram
t
SFD
t=3
t
N
t
FDH
WRpwh
t
FAH
t
XFLG
SFD
T=0
before the
t
SFA
T=1
t
WRpwl
T=2
t
SFD
T=3
t
N+1
FDH
t
WRpwh
T=4
The same sequence of events are shown for a burst write and is
indicated by the timing marks of T = 0 through 5.
Note In the burst write mode, after SLWR is deasserted, the data
is written to the FIFO and then the FIFO pointer is incremented
to the next byte in the FIFO. The FIFO pointer is post incre-
mented.
In
SLWR is deasserted, the short 4-byte packet is committed to the
host using the PKTEND. The external device must be designed
to not assert SLWR and the PKTEND signal at the same time. It
must be designed to assert the PKTEND after SLWR is
deasserted and has met the minimum deasserted pulse width.
The FIFOADDR lines are to be held constant during the
PKTEND assertion.
t
WRpwl
The FIFO flag is also updated after t
edge of SLWR.
T=5
Figure
t
SFD
T=6
t
N+2
FDH
t
WRpwh
35, after the four bytes are written to the FIFO and
T=7
t
WRpwl
T=8
t
SFD
T=9
t
t
N+3
WRpwh
FDH
XFLG
t
PEpwl
from the deasserting
CY7C64713
t
XFLG
t
PEpwh
t
FAH
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