STMicroelectronics, 32 bit ARM Cortex M0+, STM32L072RZ Microcontroller, 32 MHz, 192kB FLASH, 64-Pin LQFP
- RS-artikelnummer:
- 189-3876
- Tillv. art.nr:
- STM32L072RZT6
- Tillverkare / varumärke:
- STMicroelectronics
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Enheter | Per enhet | Per Bricka* |
|---|---|---|
| 160 - 160 | 45,364 kr | 7 258,24 kr |
| 320 - 320 | 44,138 kr | 7 062,08 kr |
| 480 - 800 | 42,976 kr | 6 876,16 kr |
| 960 - 2400 | 41,875 kr | 6 700,00 kr |
| 2560 + | 40,828 kr | 6 532,48 kr |
*vägledande pris
- RS-artikelnummer:
- 189-3876
- Tillv. art.nr:
- STM32L072RZT6
- Tillverkare / varumärke:
- STMicroelectronics
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Välj alla | Attribut | Värde |
|---|---|---|
| Brand | STMicroelectronics | |
| Product Type | Microcontroller | |
| Series | STM32L072RZ | |
| Package Type | LQFP | |
| Mount Type | Surface | |
| Pin Count | 64 | |
| Device Core | ARM Cortex M0+ | |
| Data Bus Width | 32bit | |
| Program Memory Size | 192kB | |
| Maximum Clock Frequency | 32MHz | |
| RAM Size | 20kB | |
| Maximum Supply Voltage | 3.6V | |
| Minimum Operating Temperature | -40°C | |
| Maximum Operating Temperature | 85°C | |
| Width | 10 mm | |
| Standards/Approvals | No | |
| Maximum Power Dissipation Pd | 435mW | |
| Analogue Comparators | 2 | |
| DACs | 2 x 12 Bit | |
| Number of Programmable I/Os | 84 | |
| Height | 1.45mm | |
| Length | 10mm | |
| Minimum Supply Voltage | 1.65V | |
| Number of Timers | 1 | |
| ADCs | 16 x 12 Bit | |
| Program Memory Type | FLASH | |
| Automotive Standard | No | |
| Instruction Set Architecture | RISC | |
| Välj alla | ||
|---|---|---|
Brand STMicroelectronics | ||
Product Type Microcontroller | ||
Series STM32L072RZ | ||
Package Type LQFP | ||
Mount Type Surface | ||
Pin Count 64 | ||
Device Core ARM Cortex M0+ | ||
Data Bus Width 32bit | ||
Program Memory Size 192kB | ||
Maximum Clock Frequency 32MHz | ||
RAM Size 20kB | ||
Maximum Supply Voltage 3.6V | ||
Minimum Operating Temperature -40°C | ||
Maximum Operating Temperature 85°C | ||
Width 10 mm | ||
Standards/Approvals No | ||
Maximum Power Dissipation Pd 435mW | ||
Analogue Comparators 2 | ||
DACs 2 x 12 Bit | ||
Number of Programmable I/Os 84 | ||
Height 1.45mm | ||
Length 10mm | ||
Minimum Supply Voltage 1.65V | ||
Number of Timers 1 | ||
ADCs 16 x 12 Bit | ||
Program Memory Type FLASH | ||
Automotive Standard No | ||
Instruction Set Architecture RISC | ||
The ultra-low-power STM32L072xx microcontrollers incorporate the connectivity power of the universal serial bus (USB 2.0 crystal-less) with the high-performance Arm® Cortex®-M0+ 32-bit RISC core operating at a 32 MHz frequency, a memory protection unit (MPU), high-speed embedded memories (up to 192 Kbytes of Flash program memory, 6 Kbytes of data EEPROM and 20 Kbytes of RAM) plus an extensive range of enhanced I/Os and peripherals. The STM32L072xx devices provide high power efficiency for a wide range of performance. It is achieved with a large choice of internal and external clock sources, an internal voltage adaptation and several low-power modes. The STM32L072xx devices offer several Analogue features, one 12-bit ADC with hardware oversampling, two DACs, two ultra-low-power comparators, several timers, one low-power timer (LPTIM), four general-purpose 16-bit timers and two basic timer, one RTC and one SysTick which can be used as timebase. They also feature two watchdogs, one watchdog with independent clock and window capability and one window watchdog based on bus Clock. Moreover, the STM32L072xx devices embed standard and advanced communication interfaces: up to three I2Cs, two SPIs, one I2S, four USARTs, a low-power UART (LPUART), and a crystal-less USB. The devices offer up to 24 capacitive sensing channels to simply add touch sensing functionality to any application. The STM32L072xx also include a real-time clock and a set of backup registers that remain powered in Standby mode. The ultra-low-power STM32L072xx devices operate from a 1.8 to 3.6 V power supply (down to 1.65 V at power down) with BOR and from a 1.65 to 3.6 V power supply without BOR option. They are available in the -40 to +125 °C temperature range. A comprehensive set of power-saving modes allows the design of low-power applications.
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