
-
STWD100NYWY3F
- For Product Pricing Customization Or Other Inquiries
- Contact Now
- Technical Documents
- Download Datasheet
Request Information For STWD100NYWY3F












STWD100NYWY3F Overview
The high-density STM8AL3xE8x ultra-low-power devices feature an enhanced STM8 CPU core providing increased processing power (up to 16 MIPS at 16 MHz) while maintaining the advantages of a CISC architecture with improved code density, a 24-bit linear addressing space and an optimized architecture for low-power operations.
The family includes an integrated debug module with a hardware interface (SWIM) which allows non-intrusive in-application debugging and ultrafast Flash programming.
All high-density STM8AL3xE8x microcontrollers feature embedded data EEPROM and low-power low-voltage single-supply program Flash memory.
The devices incorporate an extensive range of enhanced I/Os and peripherals, a 12-bit ADC, two DACs, two comparators, a real-time clock, AES, 8x40 or 4x44-segment LCD, four 16-bit timers, one 8-bit timer, as well as standard communication interfaces such as two SPIs, an I2C interface, and three USARTs. One 8x40 or 4x44-segment LCD is available on the STM8AL3LE8x devices. The modular design of the peripheral set allows the same peripherals to be found in different ST microcontroller families including 32-bit families. This makes any transition to a different family very easy, and simplified even more by the use of a common set of development tools.
Features
- AEC-Q100 grade 1 qualified
- Operating conditions
- Operating power supply range 1.8 V to 3.6 V (down to 1.65 V at power down)
- Temp. range: -40 to 85 or 125 °C
- Operating power supply range 1.8 V to 3.6 V (down to 1.65 V at power down)
- Temp. range: -40 to 85 or 125 °C
- Low-power features
- 5 low-power modes: Wait, Low-power run (5.9 μA), Low-power wait (3 μA), Active-halt with full RTC (1.4 μA), Halt (400 nA)
- Consumption: 200 μA/MHz+330 μA
- Fast wake up from Halt mode (4.7 μs)
- Ultra-low leakage per I/0: 50 nA
- 5 low-power modes: Wait, Low-power run (5.9 μA), Low-power wait (3 μA), Active-halt with full RTC (1.4 μA), Halt (400 nA)
- Consumption: 200 μA/MHz+330 μA
- Fast wake up from Halt mode (4.7 μs)
- Ultra-low leakage per I/0: 50 nA
- Advanced STM8 core
- Harvard architecture and 3-stage pipeline
- Max freq: 16 MHz, 16 CISC MIPS peak
- Up to 40 external interrupt sources
- Harvard architecture and 3-stage pipeline
- Max freq: 16 MHz, 16 CISC MIPS peak
- Up to 40 external interrupt sources
- Reset and supply management
- Low power, ultra safe BOR reset with 5 programmable thresholds
- Ultra-low-power POR/PDR
- Programmable voltage detector (PVD)
- Low power, ultra safe BOR reset with 5 programmable thresholds
- Ultra-low-power POR/PDR
- Programmable voltage detector (PVD)
- Clock management
- 32 kHz and 1-16 MHz crystal oscillators
- Internal 16 MHz factory-trimmed RC and 38 kHz low consumption RC
- Clock security system
- 32 kHz and 1-16 MHz crystal oscillators
- Internal 16 MHz factory-trimmed RC and 38 kHz low consumption RC
- Clock security system
- Low-power RTC
- BCD calendar with alarm interrupt,
- Digital calibration with +/- 0.5ppm accuracy
- Advanced anti-tamper detection
- BCD calendar with alarm interrupt,
- Digital calibration with +/- 0.5ppm accuracy
- Advanced anti-tamper detection
- DMA
- 4 ch. for ADC, encryption hardware accelerator (AES), DACs, SPIs, I2C, USARTs, Timers, 1 ch. for memory-to-memory
- 4 ch. for ADC, encryption hardware accelerator (AES), DACs, SPIs, I2C, USARTs, Timers, 1 ch. for memory-to-memory
- LCD: 8x40 or 4x44 w/ step-up converter
- 12-bit ADC up to 1 Msps / 28 channels,
- Temp. sensor and internal ref. voltage
- Temp. sensor and internal ref. voltage
- Memories
- Up to 64 Kbytes of Flash with up to 2 Kbytes of data EEPROM with ECC and RWW
- Flexible write/read protection modes
- Up to 4 Kbytes of RAM
- Up to 64 Kbytes of Flash with up to 2 Kbytes of data EEPROM with ECC and RWW
- Flexible write/read protection modes
- Up to 4 Kbytes of RAM
- 2x12-bit DAC (dual mode) with output buffer
- 2 ultra-low-power comparators
- 1 with fixed threshold and 1 rail to rail
- Wakeup capability
- 1 with fixed threshold and 1 rail to rail
- Wakeup capability
- Timers
- Three 16-bit timers with 2 channels (IC, OC, PWM), quadrature encoder
- One 16-bit advanced control timer with 3 channels, supporting motor control
- One 8-bit timer with 7-bit prescaler
- One window and one independent watchdog
- Beeper timer with 1, 2 or 4 kHz frequencies
- Three 16-bit timers with 2 channels (IC, OC, PWM), quadrature encoder
- One 16-bit advanced control timer with 3 channels, supporting motor control
- One 8-bit timer with 7-bit prescaler
- One window and one independent watchdog
- Beeper timer with 1, 2 or 4 kHz frequencies
- Communication interfaces
- Two synchronous serial interface (SPI)
- Fast I2C 400 kHz SMBus and PMBus
- Three USARTs (IrDA, LIN 1.3, LIN2.0)
- Two synchronous serial interface (SPI)
- Fast I2C 400 kHz SMBus and PMBus
- Three USARTs (IrDA, LIN 1.3, LIN2.0)
- Up to 67 I/Os, all mappable on interrupt vectors
- Fast on-chip programming and non-intrusive debugging with SWIM, Bootloader using USART
- 96-bit unique ID
Product Parameters
-
prmis_id
CP222439
-
item_name
STWD100NYWY3F
-
p_445
Yes
-
p_1387
0.5602
-
p_4418
1000
-
parent_id
PF176674
-
p_4906
true
-
p_5113
28358
-
p_163
Active
Technical Documents
-
AN3133 Using the STM8L05xxx/STM8L101xx/STM8L15xxx/STM8L162xx/STM8AL31xx/STM8AL3Lxx real-time clockDetails>>
-
AN2639 Soldering recommendations and package information for Lead-free ECOPACK MCUs and MPUsDetails>>
-
AN3101 STM8L05xxx/15xxx, STM8L162xx and STM8AL31xx/3Lxx internal RC oscillator calibrationDetails>>
-
AN3281 STM8 8-bit MCUs I2C optimized examplesDetails>>
-
AN2867 Oscillator design guide for STM8AF/AL/S, STM32 MCUs and MPUsDetails>>
Other distributor's price
Distributor | Part # | Mfg. | Description | Price |
---|---|---|---|---|
![]() |
STWD100NYWY3F | STMicroelectronics | Processor Supervisor 1 Open Drain/Push-Pull 5-Pin SOT-23 T/R |
1---$1.7270 10---$1.5585 25---$1.4583 100---$1.1993 250---$1.1122 500---$0.9704 1000---$0.9508 3000---$0.9313 |
![]() |
STWD100NYWY3F | STMicroelectronics | IC SUPERVISOR 1 CHANNEL SOT23-5 |
3000---$0.7252 |
![]() |
STWD100NYWY3F | STMicroelectronics | Processor Supervisor 1 Open Drain/Push-Pull 5-Pin SOT-23 T/R |
17---$1.9763 50---$1.8487 100---$1.5172 200---$1.4152 500---$1.2355 1000---$1.2100 |
![]() |
STWD100NYWY3F | STMicroelectronics | Supervisors |
1---$1.7200 10---$1.5500 50---$1.4500 100---$1.1900 200---$1.1100 500---$0.9690 1000---$0.9490 |
![]() |
STWD100NYWY3F | STMicroelectronics | Watchdog Timer Circuit SOT23-5, RL |
25---HK$13.1680 50---HK$12.7720 250---HK$12.3880 500---HK$12.0160 |
![]() |
STWD100NYWY3F | STMicroelectronics | Supervisory Circuits Watchdog timer Supervisor Circuit |
1---$1.6700 10---$1.5000 25---$1.4200 100---$1.1700 250---$1.0900 500---$0.9670 1000---$0.7690 3000---$0.7680 |
![]() |
STWD100NYWY3F | STMicroelectronics | STWD100 Series 5.5 V 13 uA Surface Mount Watchdog Timer Circuit - SOT-23-5 |
3000---$0.6950 6000---$0.6700 |
![]() |
STWD100NYWY3F | STMicroelectronics | Threshold Voltage:-, No. Of Supervisors/Monitors:1Monitors, Supply Voltage Min:2.7V, Supply Voltage Max:5.5V, Reset Type:Active-Low, Open-Drain, Digital Ic Case:Sot-23, No. Of Pins:5Pins, Delay Time:-, Product Range:-, Msl:- Rohs Compliant: Yes |Stmicroelectronics STWD100NYWY3F. |
3000---$0.6320 |
![]() |
STWD100NYWY3F | STMicroelectronics | Watchdog Timer 5-Pin SOT-23 T/R - Tape and Reel (Alt: STWD100NYWY3F) |
3000---$0.7129 6000---$0.6986 12000---$0.6841 18000---$0.6697 24000---$0.6553 30000---$0.6409 300000---$0.6265 |
Associated Products
-
DF2676VFC33V
Renesas
Automotive voltage monitor with watchdog timer
-
SPC5674FF3MVR3
NXP
Automotive voltage monitor with watchdog timer
-
R7F701404EAFB
Renesas
Automotive voltage monitor with watchdog timer
-
MPC5200CVR400B
NXP
Automotive voltage monitor with watchdog timer
-
TMS320F28075PTPQ
TI
Automotive C2000 32-bit MCU with 120 MHz, FPU, TM...
-
TLVH431BIDBZR
TI
0.5% low-voltage wide-operating current adjustable...
Blogs
- How to Reset a Mass Air Flow Sensor
- How to Test an IGBT Using A Multimeter
- How to Reset a Nox Sensor
- How to Test Crankshaft Sensor with Multimeter
- How to Delete O2 Sensors from ECM
- ESP32 vs. STM32
- Difference Between BJT, MOSFET and IGBT: BJT vs MOSFET vs IGBT
- IGBT Symbol Diagram, Characteristics, Circuit
- How to Reset a Coolant Temperature Sensor
- CMOS vs BSI Sensor