UPD70F3786GJ-GAE-AX Renesas Electronics America, UPD70F3786GJ-GAE-AX Datasheet - Page 182

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UPD70F3786GJ-GAE-AX

Manufacturer Part Number
UPD70F3786GJ-GAE-AX
Description
MCU 32BIT V850ES/JX3-E 144-LQFP
Manufacturer
Renesas Electronics America
Series
V850ES/Jx3-Er
Datasheet

Specifications of UPD70F3786GJ-GAE-AX

Core Processor
RISC
Core Size
32-Bit
Speed
50MHz
Connectivity
CAN, CSI, EBI/EMI, Ethernet, I²C, UART/USART, USB
Peripherals
DMA, LVD, PWM, WDT
Number Of I /o
100
Program Memory Size
512KB (512K x 8)
Program Memory Type
FLASH
Ram Size
124K x 8
Voltage - Supply (vcc/vdd)
2.85 V ~ 3.6 V
Data Converters
A/D 12x10b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
*
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
UPD70F3786GJ-GAE-AX
Manufacturer:
Renesas Electronics America
Quantity:
10 000
Part Number:
UPD70F3786GJ-GAE-AX
Manufacturer:
RENESAS/瑞萨
Quantity:
20 000
Notes 1. The SIF4 function is assigned to the PDH3 pin as well as the P33 pin. When using the P33 pin for the SIF4 function, do not set the PDH3 pin to be used for
P33
P34
P35
P36
P37
Pin Name
2. The SOF4 function is assigned to the PDH4 pin as well as the P34 pin. When using the P34 pin for the SOF4 function, do not set the PDH4 pin to be used for
3. The SCKF4 function is assigned to the PDH5 pin as well as the P35 pin. When using the P35 pin for the SCKF4 function, do not set the PDH5 pin to be used
4. TOAA1OFF and INTP09 are alternate functions. When using the pin for the TOAA1OFF function, disable edge detection of INTP09, which is the alternate
5.
this function.
this function.
for this function.
function. Also, when using the pin for the INTP09 function, stop the high-impedance output controller.
μ
SIF4
TXDB0
TIAA11
TOAA11
SOF4
RXDB0
TIAA20
TOAA20
SCKF4
TIAA21
TOAA21
TOAA1OFF
INTP06
TXDC2
SDA02
CTXD0
RXDC2
SCL02
CRXD0
Alternate Function
PD70F3783 and 70F3786 only
Note 1
Note 2
Note 3
Note 5
Note 4
Note 5
Note 4
Input
Output
Input
Output
Output
Input
Input
Output
I/O
Input
Output
Input
Input
Output
I/O
Input
Input
I/O
Input
P33 = Setting not required
P33 = Setting not required
P33 = Setting not required
P33 = Setting not required
P34 = Setting not required
P34 = Setting not required
P34 = Setting not required
P34 = Setting not required
P35 = Setting not required
P35 = Setting not required
P35 = Setting not required
P35 = Setting not required
P35 = Setting not required
P36 = Setting not required
P36 = Setting not required
P36 = Setting not required
P37 = Setting not required
P37 = Setting not required
P37 = Setting not required
Pn Register
Pnx Bit of
PM33 = Setting not required PMC33= 1
PM33 = Setting not required PMC33= 1
PM33 = Setting not required PMC33= 1
PM33 = Setting not required PMC33= 1
PM34 = Setting not required PMC34 = 1
PM34 = Setting not required PMC34 = 1
PM34 = Setting not required PMC34 = 1
PM34 = Setting not required PMC34 = 1
PM35 = Setting not required PMC35 = 1
PM35 = Setting not required PMC35 = 1
PM35 = Setting not required PMC35 = 1
PM35 = Setting not required PMC35 = 1
PM35 = Setting not required PMC35 = 1
PM36 = Setting not required PMC36 = 1
PM36 = Setting not required PMC36 = 1
PM36 = Setting not required PMC36 = 1
PM37 = Setting not required PMC37 = 1
PM37 = Setting not required PMC37 = 1
PM37 = Setting not required PMC37 = 1
Table 4-18. Using Port Pin as Alternate-Function Pin (3/13)
PMn Register
PMnx Bit of
PMCn Register
PMCnx Bit of
PFCE33 = 0
PFCE33 = 0
PFCE33 = 1
PFCE33 = 1
PFCE34 = 0
PFCE34 = 0
PFCE34 = 1
PFCE34 = 1
PFCE35 = 0
PFCE35 = 0
PFCE35 = 1
PFCE35 = 1
PFCE35 = 1
PFCE36 = 0
PFCE36 = 0
PFCE36 = 1
PFCE37 = 0
PFCE37 = 0
PFCE37 = 1
PFCEn Register
PFCEnx Bit of
PFC33 = 0
PFC33 = 1
PFC33 = 0
PFC33 = 1
PFC34 = 0
PFC34 = 1
PFC34 = 0
PFC34 = 1
PFC35 = 0
PFC35 = 1
PFC35 = 0
PFC35 = 1
PFC35 = 1
PFC36 = 0
PFC36 = 1
PFC36 = 0
PFC37 = 0
PFC37 = 1
PFC37 = 0
PFCn Register
PFCnx Bit of
PF36 (PF3) = 1
PF37 (PF3) = 1
(Registers)
Other Bits

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