Microcontrollers and Memory Devices (results: 6412)
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Case
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Supply voltage range
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Number of I/O
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RAM memory
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Frequency
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Manufacturer
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FLASH memory
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EEPROM memory
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Architecture
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Operating temperature (range)
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EPROM memory
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ETHERNET interface
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ADC
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CAN interface
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Capacity [Mbit]
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DAC
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Encryption
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SPI interface
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TWI (I2C) interface
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UART/USART interface
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USB interface
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Input voltage
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Type
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STM32F071C8U7
ARMR CortexR-M0 STM32F0 Microcontroller IC 32-Bit Single-Core 48MHz 64KB (64Kx8) STM32F071C8U7TR;
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SST39VF040-70-4C-WHE
Parallel Flash, Uniform Sector, 4Mbit (512k x 8bit), 70ns, 3V, 0÷70°C
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AS6C4008A-55TINTR Alliance Memory, Inc.
IC SRAM 4M PARALLEL 32TSOP I SRAM - Asynchronous 4Mb (512K x 8) 2.7V-3.6V -40+85°C 32-TSOP I
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SST39VF6402B-70-4C-EKE Microchip Technology
FLASH 64Mb(4Mx16) - 70ns Parallel 2.7V~3.6V 0+70°C 48-TSOP
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MK60FX512VMD12
MCU 32-bit ARM Cortex M4 RISC 512KB Flash 1.8V/2.5V/3.3V LBGA256
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MK61FN1M0VMD12
MCU 32-bit ARM Cortex M4 RISC 1MB Flash 1.8V/2.5V/3.3V 144-Pin MAP-BGA
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MK61FX512VMJ12
MCU 32-bit ARM Cortex M4 RISC 512KB Flash 1.8V/2.5V/3.3V 256MAP-BGA
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W25Q128JVFIQ
Serial FLASH, SPI, 128Mbit (16M x 8-bit), 133MHz, 2.7÷3.6V, -40÷85°C W25Q128FVFIG
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W25Q128JVPIQ
Serial FLASH, SPI, 128Mbit (16M x 8-bit), 133MHz, 2.7÷3.6V, -40÷85°C W25Q128JVPIQ/TUBE; W25Q128JVPIQ/REEL ; W25Q128JVPIQ TRAY;
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W25Q256JVEIQ
Serial FLASH, SPI, 256Mbit (32M x 8-bit), 104MHz, 2.7÷3.6V, -40÷85°C W25Q256FVEIG W25Q256FVEIP W25Q256FVEIG W25Q256FEIF W25Q256FVEIQ
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MK66FX1M0VMD18
MCU 32-bit ARM Cortex M4 RISC 1280KB Flash 2.5V/3.3V LBGA256
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W25Q256JVFIQ
Serial FLASH, SPI, 256Mbit (32M x 8-bit), 104MHz, 2.7÷3.6V, -40÷85°C
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AX8052F143-3-TX30
MCU 8-bit 8052 CISC 64KB Flash 2.5V/3.3V 40-Pin QFN EP
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W25Q32JVZPIQ
Serial FLASH, Dual/Quad SPI Int. 32Mbit (4M x 8-bit), 104MHz, 2.7÷3.6V, -40÷85°C odpowiednik: W25Q32JVZPIQ-TUBE; W25Q32JVZPIQ/REEL; W25Q32JVZPIQ/TRAY; W25Q32JVZPIQ/TUBE;
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W25Q64JVSFIQ
Serial FLASH, SPI, 64Mbit (8M x 8-bit), 133MHz, 2.7÷3.6V, -40÷85°C
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W25Q64JVZPIQ
Serial FLASH, SPI, 64Mbit (8M x 8-bit), 133MHz, 2.7÷3.6V, -40÷85°C W25Q64FVZPIG
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SST26VF032BEUI-104I/SM MICROCHIP
32MB 2.3V TO 3.6V SQI FLASH MEMORY W/EUI 8 SOIJ .208IN TUBE 23AH3611
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SOIC08(0.209") | 2.7~3.6V | 104MHz | MICROCHIP | 4MB | 8-bit | -40°C ~ 85°C | NO | NO | NO | NO | NO | YES | NO | NO | NO | |||||||||||
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IS25LP032D-JBLE-TR ISSI
NOR Flash Serial-SPI 3V/3.3V 32M-bit 8ns 8-Pin SOIC T/R
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IS25WP064A-JBLE
NOR Flash Serial (SPI, Dual SPI, Quad SPI) 1.8V 64M-bit 8ns 8-Pin SOIC IS25WP064A-JBLE-TR;
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SOP08 | 1.65V ~ 1.95V | 133MHz | ISSI | 64MB | 16M-bit | -40°C ~ 105°C | YES | YES | ||||||||||||||||||
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AS6C2016-55ZIN Alliance Memory, Inc.
IC SRAM 2M PARALLEL 44TSOP II SRAM - Asynchronous 2Mb (128K x 16) 2.7V-5.5V -40+85°C 44-TSOP II
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AT80C32X2-SLSUM
256B-RAM 32I/O 4,5÷5,5V 40MHz 3xtimer UART -40÷85°C *Obsolete! TS80C32X2-MCB, TS80C32X2-MIB, P80C32SBAA
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AS7C34098A-10TIN Alliance Memory, Inc.
IC SRAM 4M PARALLEL 44TSOP II AS7C34098A-10TINTR;
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Microcontrollers as ubiquitous control systems
Nowadays microcontrollers are present in basically every electronic device. Those small computers revolutionised the world by automatizing countless everyday activities. You will find every most popular kind of microcontroller in our offer. We offer products from the best brands, which meet the highest quality standards. Lets however explain in short what exactly a microcontroller is and how it works. What are the most popular models of those devices?
What are microcontrollers?
Basically, we can call a microcontroller a microcomputer. It has all the necessary components allowing it to use this nomenclature. At the same time, it is just a single integrated circuit. Every microcontroller has a central processing unit, that is a processor. The so-called processing unit can be characterised by different power, depending on a type of device. Moreover, microcontrollers also have data and program memory. Among other important elements there are also input/output ports and timer-counter circuits.
Elements mentioned above are basically common for every microcontroller. However there are various types of microcontrollers which differentiate not only by values of individual parameters, but also by their construction. This means that those small computers also feature a number of additional elements. They may include for example analog to digital converters or also ones that convert the signal in the opposite direction. Various external parameters sensors, supervisory circuit for monitoring operating correctness, serial communication controller and much more.
What is the microcontroller used for?
Its main purpose is to control the operation of devices. What does it mean in practice? In fact, various things, depending on what computer we are talking about. Whether it is most commonly used 8051 microcontroller, or STM32 microcontroller which has above-average computing power. Devices in which microcontrollers are applied should also be taken into consideration. They serve different purposes in audiovisual devices, different in home appliances, and yet different in measurement equipment or industrial process automation systems. However, basically, the microcontroller collects all signals sent by receivers installed in the device. In other words, setting a washing machine program, turning on given operating mode in a power tool, or changing the volume or brightness settings in the television, sends a signal to a microcontroller. Then, in a microcontroller, a conversion of the signal takes place, which results in a reaction of sending the signal further in an appropriate direction.
What kinds of microcontrollers are there?
As it was mentioned above, there are various kinds of microcontrollers. It is impossible to distinguish every kind, because there are a lot of them. Among the most popular ones we can name:
- 8051 Microcontrollers
- STM32 Microcontrollers
- AVR Microcontrollers
Without a doubt, as the most groundbreaking and as to today the most important to electronics, we have to consider the 8051 microcontrollers. They were created by Intel. It took place over 40 years ago, however this kind of microcontrollers are being manufactured to this day. For years, other companies referred to this standard, which somehow marked the direction in which the technology in this field should develop. Whereas STMicroelectronics manufactures STM32 microcontrollers, which are 32-bit computers, that means they have exceptionally high computing power. AVR microcontrollers, on the other hand, are advanced voltage regulators by Atmel company. Every microcontroller mentioned above is available in our offer. We encourage you to get acquainted with the full range of stock in our store.