Manufacturer Part #
PIC16F946-I/PT
PIC16F Series 14 kB Flash 336 B RAM 20 MHz 8-Bit Microcontroller - TQFP-64
Product Specification Section
Microchip PIC16F946-I/PT - Product Specification
Shipping Information:
Item cannot ship to certain countries. See List
Item cannot ship to following countries:
ECCN:
EAR99
PCN Information:
N/A
File
Date
Part Status:
Active
Active
Microchip PIC16F946-I/PT - Technical Attributes
Attributes Table
Family Name: | PIC16 |
Core Processor: | PIC |
Program Memory Type: | Flash |
Flash Size (Bytes): | 14kB |
RAM Size: | 336B |
Speed: | 20MHz |
No of I/O Lines: | 53 |
InterfaceType / Connectivity: | I2C/SPI/USART |
Peripherals: | Analog Comparators/I2C/LCD Segments/On-Chip-ADC/PWM/SPI/USART/Watchdog |
Number Of Timers: | 3 |
Supply Voltage: | 2V to 5.5V |
Operating Temperature: | -40°C to +85°C |
On-Chip ADC: | 8-chx10-bit |
Watchdog Timers: | 1 |
Package Style: | TQFP-64 |
Mounting Method: | Surface Mount |
Features & Applications
The PIC16F946-I/PT 8-bit Microcontroller has 14 K of Flash Program Memory with 54 I/O's. It's maximum CPU speed is 20 MHz with an operating voltage range of 2 V - 5.5 V in a 64-Pin TQFP package. It has an industrial temperature range of -40°C to +85°C and is lead free.
The PIC16F946 has a 13-bit program counter capable of addressing an 8 k x 14 program memory space (0000h-1FFFh). The Reset vector is at 0000h and the interrupt vector is at 0004h.
Features:
- Up to 168 LCD segments
- Internal 32 kHz to 8 MHz oscillator
- 25 mA Source/Sink current I/O
- Two 8-bit Timer (TMR0/TMR2)
- One 16-bit Timer (TMR1)
- Extended Watchdog Timer (EWDT)
- Wide Operating Voltage (2.0 V – 5.5 V)
- Brown-Out Reset (BOR) with Software Control
- In Circuit Serial Programming (ICSP)
- Programmable Low Voltage Detect (PLVD)
- I2C, SPI, AUSART
Pricing Section
Global Stock:
0
USA:
0
Factory Lead Time:
4 Weeks
Quantity
Web Price
1
$4.78
10
$4.60
25
$4.47
75
$4.31
150+
$4.13
Product Variant Information section
Available Packaging
Package Qty:
160 per Tray
Package Style:
TQFP-64
Mounting Method:
Surface Mount