The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The First Touch Starter Kit allows quick, easy and cheap testing of the integrity, flexibility and real mixed signal program of the PSoC controller. The kit consists of a Plug and Play USB Interface Dongle (FTPC Bridge) and an expansion card (FTMF Expansion Card). Thus you can experience the power of PSoC components with the following "Out of the box' designs without writing a single line C or Assembler code: LED colour control using proximity or contact sensor, controlling LED colours / flash rate and the buzzer by means of temperature measurement, controlling LED brightness by light measurement. Following additional features are provided for testing: Developments that utilize the above mentioned detection and control features as well as other responsive function pins. The kit can be used for other developments by the removable multifunctional expansion card.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
This controller supports 4 to 10 capacitive sensors. The type of function is configured by a I2C Port and can be saved onboard on a non-volatile memory for automatic charging with Power-On The CY8C20110 is ideally suited for dimming of LEDs in 15 selectable PWM levels (background lighting). The controller can be configured in such a way that 10 GPIOs can be connected with PWM output.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The Evaluation kit contains an Evaluation Board and a Programmer with USB port. The Evaluation Board has a LCD Module, potentiometer, LEDs and a lot of space for installation of test. PSoC component can be directly programmed on Evaluation Board or on other boards with the programmer.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.
The AVR microcontroller family by Atmel is based on an entirely new architecture. It is a real RISC architecture in which the quartz frequency is not internally divided, ie a 10 MHz quartz crystal gives an order throughput of 10 million orders per second. The relatively low oscillation frequency means that power consumption remains very low. All AVRs have flash programme memories, EEPROM data memories and can be programmed in the system. Programming of the OnChip flash and EEPROM memory functions solely by sendind commands. No programming voltage is required. The AVRs have 32 equivalent registers that can be used in parallel. The command set comprises 120 instructions allowing you to write extremely efficient programmes.