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USER MANUAL AT42QT1060 Microchip
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Abstract collage of five circular icons: semiconductor, car, health, home, and industrial plant, set against a dotted background with colorful circles (no text or symbols)Product Selection Guide
Volume 11
Atmel®
Table of Contents
Atmel Microcontroller Portfolio .... 4
AVR 8-bit Microcontroller Offering....6
Atmel | SMART 32-bit ARM Microcontroller Offering......10
Atmel Tools and Software......14
Capacitive Touch Interface Devices .... 16
Atmel Automotive Solutions..... 17
Atmel Wireless Platform......18
Atmel Smart Metering....24
Atmel Security Solutions......25
Atmel Memory Solutions......26
Inspiring Smart and Secure Connected Designs
Atmel at the Heart of the Connected World
Many electronics industry analysts predict The Internet of Things (IoT) will experience phenomenal growth in the next few years, with connected devices numbering in the tens of billions. Since its inception 30 years ago, Atmel® has provided innovations in the essential building blocks of IoT designs—from embedded processing and connectivity to sensors, security, and software. Atmel ties it all together with a rich ecosystem of design tools, including the free Atmel Studio IDE, making it simple to leverage these industry-leading technologies.

flowchart
graph TD
A["802.15.4 ZigBee 6LoWPAN LWMesh\n250kb/s Up to 300m range"] --> B["32-bit MPU\nHighly Secure Low Cost ARM9 &A5 Cores"]
C["Bluetooth\nLow Energy & Dual Mode\n3Mb/s Up to 30m range"] --> B
D["Narrowband\nFSK 2.4GHz & Sub GHz ~2-5Kb/s Up to 2Km range"] --> B
E["Wi-Fi\n802.11a/b/g/n\n72Mb/s Up to 200m range"] --> B
F["Crypto Authentication\nSHA AES ECC"] --> G["8-bit Flash MCU\nIndustry Leading 8-bit AVR Micros"]
H["32-bit Flash MCU\nLowest Power ARM M0+, M4 & M7 Cores Event System, Sercom, & PTC"] --> G
I["Automotive CAN / LIN Tx High Voltage"] --> G
J["Memory\nSerial EEPROM MAC Address"] --> K["Atmel Companion Devices"]
L["Analog\nAFE Metrology Temp Sensor"] --> K
B --> M["Microcontrollers"]
G --> M
K --> M
Atmel®
Atmel Microcontroller Portfolio

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| Feature | Performance Level | Description | |---------|-------------------|-----------| | 32-bit Flash MCU | Lowest Power | AVR & ARM Cortex-M Cores Event System, SERCOM, PTC | | SAM9 | 440 DMIPS | Microprocessor | | SAM5 | 850 DMIPS | FPU, 850 DMIPS, FPU Low Power | | SAM9 | 440 DMIPS | Microprocessor | | SAM S70/E70 | Highest Performing MCU | Cortex-M7 | | SAM4 & SAMG | Cortex-M4 FPU, 180 DMIPs | 512KB to 2MB Flash | | SAM D, SAM L, SAM C | Cortex-M0+, 45 DMIPS | 16 KB to 256KB Flash | | SAM W, SAM R, SAM B Wireless | Wi-Fi, ZigBee, BLE | - | | Legacy 32/bit | SAM7, SAM3, UC3 | - | | XMEGA | 8-bit AVR, 32 MIPS | 16KB to 384KB Flash | | megaAVR | 8-bit AVR, 20 MIPS | 4KB to 256KB Flash | | tinyAVR | 8-bit AVR, 20 MIPS | 0.5KB to 16KB Flash | | 8051 | 8-bit | - |AVR and ARM Cortex-M0+ Families
The world's widest and most successful 8-bit and 32-bit line card

heatmap
| Category | Product | Automotive | IoT & Sensor Hub | Lighting | Industrial & Appliance | Consumer | Low Power | | :--- | :--- | :--- | :--- | :--- | :--- | :--- | :--- | | AVR | High Performance in a Small Package: tinyAVR | | | ✓ | ✓ | ✓ ✓ ✓ | ✓ | | AVR | World's Most Popular 8-bit MCU: megaAVR | ✓ | | ✓ | ✓ | ✓ ✓ ✓ | ✓ | | AVR | Highest Performance 8-bit: AVR XMEGA | | | | ✓ | ✓ ✓ ✓ | | | AVR | 32-bit AVR: UC3 | ✓ | ✓ | | | ✓ ✓ ✓ | ✓ | | Cortex-M0+ | General Purpose: SAM D | ✓ | ✓ | ✓ | ✓ | ✓ ✓ | | | Cortex-M0+ | Industry's Lowest Power Cortex-M: SAM L | | ✓ | | | ✓ ✓ ✓ | ✓ | | Cortex-M0+ | 5V for Industrial & Appliance: SAM C | ✓ | | | ✓ | | | | Cortex-M0+ | Connected Smart Lighting: SAM R | | ✓ | ✓ | | | | #1 Open Source MCU Best Cap Touch Industry's Lowest Power Best Automotive Touch Industry Only MCU SolutionHigh Performance ARM Cortex Families
High performance, low power, small footprint MPU and MCU

Atmel®
AVR® 8-bit Microcontroller Offering

World's Most Efficient 8-bit CPU
- Single cycle instructions
• 32 working registers
• Designed for high-level languages
Lowest Power Consumption
- picoPower™ technology
Improves efficiency
Reduces code size by 30–60%

Ease of Use
- Atmel development tools
- AVR ^® Freaks
- Arduino and Maker movement
Increase battery life
Reduced power supply requirements

Scalable Product Family
- \~2000 products available
• Memory, pin and feature options
Faster product development
Reuse of SW and HW

more than
7 BILLION AVRs shipped
AVR 8-bit Product Families
tinyAVR—Small and Powerful
| Part Number Pins | Flash (KB) | SRAM (B) | EEPROM (B) | I/O ADC Packages Comments | ||||
| TINY 4 4/6 0.5 | 32 N/A 4 | SOT23-6, UDFN-8 | Low Cost | |||||
| TINY 5 4/6 0.5 | 32 N/A 4 | 4 x 8bit | SOT23-6, UDFN-8 | Low Cost | with ADC | |||
| TINY 9 4/6 | 1 | 32 N/A 4 | SOT23-6, UDFN-8 | Low Cost | ||||
| TINY 10 | 4/6 | 1 | 32 | N/A | 4 | 4 x 8bit | SOT23-6, UDFN-8 | Low Cost with ADC |
| TINY 13A | 8/10/12 | 1 | 64 | 64 | 6 | 4 x 10bit | PDIP-8, SOIC-8, QFN-10, QFN-20 | Picopower |
| TINY 20 | 14/15/20 | 2 | 128 | N/A | 10/12 | 8 x 10bit | SOIC-14, TSSOP-14, WCCSP-12, UFBGA-15, VQFN-20 | Qtouch |
| TINY 24A | 14/15/20 | 2 | 128 | 128 | 12 | 12 x 10bit | SOIC-14, PDIP-14, UFBGA-15, QFN-20, MLF-20, VQFN-20 | Diff ADC Gain Stage |
| TINY 25 | 8/20 | 2 | 128 | 128 | 6 | 4 x 10bit | PDIP-8, SOIC-8, QFN-20, QFN-20 | High Speed Diff ADC Gain Stage |
| TINY 40 | 20 | 4 | 256 | N/A | 18 | 8 x 10bit | SOIC-14, TSOP-20, VQFN-20 | Qtouch |
| TINY 44A | 14 | 4 | 256 | 256 | 12 | 8 x 10bit | SOIC-14, PDIP-14, UFBGA-15, QFN-20, MLF-20, VQFN-20 | Qtouch Diff ADC Gain Stage |
| TINY 45 | 8/20 | 4 | 256 | 256 | 6 | 4 x 10bit | PDIP-8, SOIC-8, TSOP-8, QFN-20 | High Speed Diff ADC Gain Stage |
| TINY 48 | 28/32 | 8 | 256 | 64 | 24/28 | 10bit | PDIP-28, QFN-28, QFP-32, QFN-32 | Qtouch |
| TINY 84A | 14 | 8 | 512 | 512 | 12 | 8 x 10bit | SOIC-14, PDIP-14, UFBGA-15, QFN-20, MLF-20, VQFN-20 | Qtouch Diff ADC Gain Stage |
| TINY 85 | 8/20 | 8 | 512 | 512 | 6 | 4 x 10bit | PDIP-8, SOIC-8, QFN-20 | High Speed Diff ADC Gain Stage |
| TINY 88 | 28/32 | 8 | 512 | 64 | 24/28 | 10 bit | PDIP-28, QFN-28, QFP-32, QFN-32 | Qtouch |
| TINY 102 | 8 | 1 | 32 | N/A | 6 | 5 x 10bit | UDFN-8, SOIC-8 | USART/SPI |
| TINY 104 | 14 | 1 | 32 | N/A | 12 | 8 x 10bit | SOIC-14 | USART/SPI |
| TINY 261A | 20/32 | 2 | 128 | 128 | 16 | 11 x 10bit | SOIC-20, PDIP-20, TSOP-20, QFN-32 | High Speed PWM Diff ADC Gain Stage |
| TINY 441 | 14/20 | 4 | 256 | 128 | 12 | 12 x 10bit | SOIC-14, MLF-20, QFN-20 | Acc VREF 2% osc Diff ADC Gain Stage |
| TINY 461A | 20/32 | 4 | 256 | 256 | 16 | 11 x 10bit | SOIC-20, PDIP-20, TSOP-20, QFN-32 | High Speed PWM Diff ADC Gain Stage |
| TINY 841 | 14 | 8 | 512 | 256 | 12 | 12 x 10bit | SOIC-14, MLF-20, QFN-20 | Acc VREF 2% osc Diff ADC Gain Stage |
| TINY 861A | 20/32 | 8 | 512 | 512 | 16 | 11 x 10bit | SOIC-20, PDIP-20, TSOP-20, QFN-32 | High Speed PWM Diff ADC Gain Stage |
| TINY 1634 | 20 | 16 | 256 | 1 | 18 | 12 x 10bit | SOIC-20, QFN-20 | 2 x USART |
Atmel®
AVR 8-bit Product Families (Continued)
megaAVR—Robust and Flexible
| Part Number Pins | Flash (KB) | SRAM (KB) | EEPROM (KB) | I/O ADC Packages Comments | ||||
| MEGA16A | 40/44 | 16 | 1 | 0.5 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | Low Cost QTouch |
| MEGA32A | 40/44 | 32 | 2 | 1 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | Low Cost QTouch |
| MEGA48PB | 32 | 4 | 0.5 | 0.25 | 27 | 8 x 10bit | MLF-32, QFP-32 | |
| MEGA64A | 64 | 64 | 2 | N/A | 53 | 8 x 10bit | MLF-64, QFP-64 | |
| MEGA88PB | 32 | 8 | 1 | 0.5 | 23 | 8 x 10bit | MLF-32, QFP-32 | |
| MEGA162 | 40/44 16 1 0.5 35 N/A PDIP-40, MLF-44, QFP-44 | |||||||
| MEGA164PA | 40/44/49 | 16 | 1 | 0.5 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | |
| MEGA168PB | 32 | 16 | 1 | 0.5 | 27 | 8 x 10bit | MLF-32, QFP-32 | |
| MEGA169PA | 64 | 16 | 1 | 0.5 | 54 | 8 x 10bit | MLF-64, QFP-64, QFN-64 | |
| MEGA324PB | 44 | 32 | 2 | 1 | 39 | 8 x 10bit | MLF-44, QFP-44 | |
| MEGA328PB | 32 | 32 | 2 | 1 | 27 | 8 x 10bit | MLF-32, QFP-32 | |
| MEGA329PA | 64 | 32 | 2 | 1 | 54 | 8 x 10bit | MLF-64, QFP-64 | |
| MEGA 640 | 100 | 64 | 8 | 4 | 86 | 16 x 10bit | BGA-100, QFP-100 | |
| MEGA 644PA | 40/44 | 64 | 4 | 2 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | |
| MEGA 649P | 64 | 64 | 4 | 2 | 54 | 8 x 10bit | MLF-64, QFP-64 | |
| MEGA 1280 | 100 | 128 | 8 | 4 | 86 | 16 x 10bit | BGA-100, QFP-100 | |
| MEGA 1281 | 64 | 128 | 8 | 4 | 54 | 16 x 10bit | MLF-64, QFP-64 | |
| MEGA 1284 | 40/44 | 128 | 16 | 4 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | |
| MEGA 2560 | 100 | 256 | 8 | 4 | 86 | 16 x 10bit | BGA-100, QFP-100 | |
| MEGA 2561 | 64 | 256 | 8 | 4 | 54 | 8 x 10bit | MLF-64, QFP-64 | |
| MEGA3290P | 100 | 32 | 2 | 1 | 69 | 8 x 10bit | QFP-100 | LCD PicoPower |
| MEGA6490P | 100 | 64 | 4 | 2 | 69 | 8 x 10bit | QFP-100 | LCD PicoPower |
| MEGA 8515 | 40/44 | 8 | 0.5 | 0.5 | 35 | N/A | PDIP-40, MLF-44, QFP-44 | External SRAM |
| MEGA 8535 | 40/44 | 8 | 0.5 | 0.5 | 32 | 8 x 10bit | PDIP-40, MLF-44, QFP-44 | |
XMEGA—More Performance
| Part Number | Pins Flash | (KB) | SRAM | (KB) | EEPROM (KB) | I/O ADC Packages | Comments | |
| A1U 100 | 64/128 | 4/8 | 278 | 2 - 16 x 12bit | 2msps | TQFP-100, BGA-100 VFBGA-100 | ||
| A3U 64 | 64/128 | 4/8/16 | 2/4 | 50 | 2 - 16 x 12bit | TQFP-64, QFN-64 | ||
| 192/256 | 2msps | |||||||
| A4U 44 | 16/32 | 2/4/8 | 1/2 | 34 | 12 x 12bit | QFP-44, QFN-44 VFBGA-49 | ||
| 64/128 | 2msps | |||||||
| B1 | 100 | 64/128 | 4/8 | 2 | 53 | 2 - 8 x 12bit | TQFP-100, VFBGA-100 | |
| B3 | 64 | 64/128 | 4/8 | 2 | 36 | 1 - 8 x 12bit | TQFP-64, QFN-64 DRQFN-64 | |
| C3 | 64 | 32/64128/192256/384 | 2/4/8/16 | 4/8/16 | 50 | 1 - 16 x 12bit | TQFP-64, VQFN-64 | |
| C4 | 44 | 16/32 | 2/4 | 1 | 34 | 1 - 16 x 12bit | TQFP-44, QFN-44 VFBGA-49 | |
| D3 | 64 | 32/64128/192256/384 | 4/816/32 | 1/2/4 | 50 | 1 - 16 x 12bit | TQFP-64, QFN-64 | |
| D4 | 44 | 16/3264/128 | 1/2/4/8 | 1/2/4 | 34 | 1 - 12 x 12bit | TQFP-44, VFBGA-49 | |
| E5 | 32 | 8/16/32 | 1/2/4 | 0.5/1 | 26 | 1 - 16 x 12bit | QFP-44, QFN-44 UQFN-44 |

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| System | Performance (Lower) | Performance (Upper) | |------------|---------------------|---------------------| | XMEGA | 0 | 1 | | megaAVR | 0 | 1 | | tinyAVR | 0 | 1 | | AVR CPU | 0 | 1 |Atmel®
Atmel | SMART 32-bit ARM Microcontroller Offering
Broad ARM Cortex M0+ Offerings
SAM D, SAM L and SAM C Series

other
| Device | Count | | :--- | :--- | | Cortex M0+ | 8-16KB Flash | | Event System | 14, 20 and 24 pins 32, 48 and 64 pins | | SERCOM | | | PTC | 6-ch DMA 12-ch DMA 10-ch DMA 12-ch DMA | | 10-bit 350 ksps DAC | | | 2xAnalog Comparator | 1x T/C for Control 3x T/O 3x 3x 3x 3x | | 32-bit RTC with Calendar | | | Serial Wire Debug | 12-bit 350Ksps ADC 12-bit, 20ch, 1Msps ADC* | | BOR and POR | FS USB Device | | Internal RCs | | | Watchdog | | | High GPIO Count | | | Comments | | SAML22 has integrated SLCD | • SAMC21 has 16 bit Sigma Delta • SAMC20 has 12 channel 1MSPS ADC | | FS USB H&D | | | I²S SLCD* HW Div | | | 5V Operation | |Series Descriptions
- SAM D09 – The smallest member of the SAM D family in terms of memory, pin count, and features. Compatible with the SAM D10, SAM D11, SAMD20, and SAM D21.
- SAM D10/11 – Feature upgrade from the SAM D09 with additional serial interfaces, timers, Analog Comparator, DAC, and Peripheral Touch Controller.
-
SAM D20/21 – Offers a rich set of peripherals, flexibility, and ease-of-use with low power consumption Full Speed USB, DMA, high-end timers/counters
-
SAM DA1 – Automotive qualified microcontrollers, embedding Peripheral Touch Controller (PTC) enabling efficient Button/Slider/Wheel and Proximity detection solutions for automotive HMI applications
- SAM L21/22 - Ultra Low Power version featuring 35uA/MHz in active mode, 1Msps ADC and DAC, Custom Configurable Logic, PTC and more
- SAM C20/21 – 5V version for Industrial applications that need to interface with higher powered devices. Features CAN, RS485, 16-bit Sigma Delta ADC and QTouch
Atmel ARM Cortex-M4 Summary
SAM4 & SAM G
| SAM 4/G Family Features | SAM4N SAM4S SAM4E SAM4L SAM G | ||||
| Cortex M4/M4F | 100 MHz 120 MHz 120 MHz 48 MHz 120 MHz | ||||
| Up to 2MB Dual Bank Flash | 512KB-1MB Single Bank - | 128KB-2MB Single/Dual Bank Cache | 512KB-1MB Single Bank Cache | 128-512KB Single Bank - | 256-512KB Single Bank Cache |
| High I/O Pin DMA | 48, 64 and 100 pins 100, 144 pins | 48, 64 and 100 pins | 49 and 64 pins | ||
| Communication (USB, CAN, Ethernet) CMOS Interface | DMA DMA DMA | ||||
| Safety and Security I2S | FS USB Device - - | FS USB Device 2x CAN 1x Ethernet | FS USB H&D - - | ||
| CMOS Interface | |||||
| CRC - - | CRC AES 256 - | CRC AES 256 RNG | CRC - - | ||
| I2S | I2S | I2S | |||
Series Descriptions
- SAM4N – Ideal for a wide range of applications in industrial automation, consumer and appliance, and energy metering markets. Pin compatible with SAM3S, SAM3N and SAM7S,
- SAM4S – Features a multi-layer bus matrix, multi-channel direct memory access (DMA) and distributed memory to support high data rate communication.
-
SAM4E – Offers a rich set of connectivity peripherals including 10/100Mbps Ethernet MAC supporting IEEE1588 and dual CAN as well as single-precision FPU.
-
SAM4L – Ideal for power sensitive designs delivering down to 90uA/MHz in active mode as well as sleep mode with full RAM retention of 1.5uA and wake-up time of 1.5us.
- SAM G – Optimized for ultra-low power and high performance. Small form factor bundled with FPU, DMA and good SRAM to flash ratio in a very tiny 3x3mm package
Atmel®
Atmel | SMART ARM Cortex-M7 MCU Family
Perfectly matching the increasing application requirements

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EEMBC CoreMark Score | Category | EEMBC CoreMark Score | |---|---| | Atmel SMART | SAM S70 | E70 | V71 | V70 | | CM7 | Brand S | | CM7 | Brand S | | CM7 | Brand F | | CM4 | Brand F || SAM S70 | SAM E70 | SAM V70 | SAM V71 | |
| Frequency 300MHz | ||||
| Flash 512KB/1MB/2MB | ||||
| SRAM 256KB/384KB/384KB | ||||
| Backup SRAM 1KB | ||||
| Ext Bus Interface 16-bit (SDRAM, SRAM) | ||||
| Ethernet 1588 (MAC) | - | 10/100 Mbps | - | 10/100 Mbps |
| CAN-FD - 2 2 2 | ||||
| Media LB - Yes | ||||
| Automotive qualified - Yes | ||||
| Camera interface 1 | ||||
| QSPI | 1 | |||
| HSMCI/SDIO/eMMC 1 | ||||
| USB 1x HS (Host/Device) | ||||
| USART or SPI/UART | 5/3 | |||
| SPI/I2C/SSC | 2/3/1 | |||
| 12-bit ADC | 2x 12-ch 2Mbps | |||
| 12-bit DAC | 2-ch 2 Mbps | |||
| Timers/PWM | 12/8 | |||
| Crypto | TRNG, AES256, SHA1/256 | |||
| Pin count | 64–100–144 | |||
| Package | QFP, BGA | |||
High Performance
• ARM Cortex-M7 – 300MHz, 1500 CoreMark
• 16kB+16kB of I&D cache with ECC
• Execution in place from on-chip flash, NVM connected to QSPI and EBI
• Multi-port SRAM minimizing latency
- User configurable SRAM and TCM size
Features
• HS USB host/device with integrated PHY
• Memory integrity check monitor
• CMOS camera interface
- Ethernet and dual CAN on SAM E70
- Sleepwalking on UART and I ^2 C
- Event system
Advanced Analog Front-end (AFE)
• Dual S&H, 12-bit ADC, 16-bit HW averaging
• Differential input, programmable gain
• Automatic gain and offset error correction
• DMA support, HW & SW trigger
Extended Industrial Temperature
-40 to 105°C
Atmel eMPU Product Portfolio
Offers rich, peripheral set, low power and ease of use
| SAMA5D2 | SAMA5D3 | SAMA5D4 | ||
| Max CPU/DDR speed (MHz) 500/166 536/166 600/200 | ||||
| Neon | √ | -- | √ | |
| L2 cache (KB) 128 -- 128 | ||||
| DDR3 & Quad SPI | √ | -- -- | ||
| USB HSIC | √ | -- -- | ||
| EMAC 1x 10/100 1x Gbit 1x 10/100 2x 10/100 | ||||
| CAN | √ | √ | -- | |
| LCD Interface | √ √ √ | |||
| Video -- -- Yes (720p) | ||||
| Thrust Zone | √ | -- | √ | |
| On-the-fly memory encryption/Tamper detection | √ | -- | √ | |
| Temperature range up to 105° | √ | √ | -- |
SAMA5D2 series:
The Atmel | SMART SAMA5D2 series extends the SAMA5 family by offering great features integrated into lower pin count packages, making it ideal for applications where security, power consumption or space constraints are key considerations.
SAMA5D3 series:
Operating at 850DMIPS at under 150mW, the Atmel | SMART SAMA5D3 MPU is ideal for any high-performance, low-power and cost-sensitive industrial application.
SAMA5D4 series:
The Atmel | SMART SAMA5D4 MPU operates at 945DMIPS, includes a 720p hardware video decoder and high level of security making it ideal for any high-performance, secure and cost-sensitive industrial application requiring video playback. Updated A5D4 speed from 528Mhz to 600Mhz.
Atmel®
Atmel Tools and Software

flowchart
graph TD
A["COMMERCIAL SOFTWARE"] --> B["PROTOTYPE"]
B --> C["EVALUATION"]
C --> D["MASS PRODUCTION"]
D --> E["POWER MANAGEMENT SOLUTION"]
E --> F["CONNECTIVITY SOLUTION"]
F --> G["SYSTEM ON MODULE"]
G --> H["DEBUGGER / IDE / COMPILER"]
H --> I["GRAPHICS / UI SOLUTION"]
I --> J["Atmel"]

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ATMEL STUDIO 7700,000+
Studio downloads since 2012
93%
Users ratings excellent, very good, good
Atmel Studio 7
Available for free at atmel.com
Powerful
- Based on Visual Studio 2015 frontend
• Supports 8/32-bit AVR and ARM development and debugging for Atmel MCU targets
• Supports project migration from earlier Studio versions
Easy to Use
- Extensive embedded software library
- Integrated training modules and examples
Extensible
- Rich 3rd-party ecosystem of plugins
- Configuration tools for Atmel Touch and Wireless technologies
• Supports data and power visualization
Atmel START
Web-based Software Configuration & Deployment Engine
- Automatic software integration engine, lets developers focus on their application instead of integrating off-the-shelf software.
- Intuitive graphical Software configuration
- Deploy software to Atmel board, or users own custom board
• Supports "top down" evaluation of Atmel technology

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Atmel | STARTAtmel Data Visualizer
View MCU Data at Runtime
• MCU Data streamed from power debugger to Data Visualizer
• Viewed in configurable UI Objects
- Oscilloscope view, text terminal, buttons, checkboxes, gauges, textbox...
- Can run as Studio 7 plug-in, or stand alone
Power Analysis (Xplained Pro kits w/ XPM and Power Debugger Probe)
• Power and Battery estimation between currsors over duty cycle
• Correlation between current consumption and code location
Atmel Power Debugger
Combined Debugger and Power Measurement Probe
- Simultaneous debugging and power measuring
- Two independent channels for power measurement
• CDC virtual COM port
• DGI for streaming application & power data - Provides target power, 1.6 – 5.5V, up to 100mA
• Status LEDs for debugging and target supply

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Blue printed circuit board with various traces and connectors (no visible text or symbols)
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Light Sense Example Light Sensor Value Night Light Hydthereis Values: Low High LED Control Toggle LED Auto-ctrl Automatically W F Legend: Auto-ctrl
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Circuit Waveform Current: 4.625V, Current: 3.00V Capacitor: 4.227V, 4.239mA, 4.133mA, 4d 5b 48m Ach (current) (Dial) (current) (Dial) (current) (Dial) (current) (Dial) (current) Signal Voltage: 0.00000000000 Ground: 0.00000000000 Ground: 0.00000000000 Ground: 0.00000000000 Ground: 0.00000000000 Ground: 0.00000000000 Ground: 0.0000000000Atmel®
Capacitive Touch Interface Devices
Touching the Connected Car
Opportunities for capacitive touch technologies

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Mirror Buttons and proximity Overhead panel Proximity, buttons, slider Anti pinch sensor Proximity Electronic pedal Proximity and buttons Centerstack Touchscreen, proximity, buttons, sliders, wheels Door panel Proximity, buttons, sliders, wheels Middle console Touchpad, BSWPeripheral Touch Controller — PTC
HW Module for Capacitive Touch Sensing
- Buttons, Sliders, and Wheels
-
Mutual- and self-capacitive touch
-
Can run both at the same time
• Self-(re)calibrating, no tuning needed
• No external components needed
• Excellent conducted immunity (CI)
• Built-in hardware filtering
- Passes 10V Cl*
- Low standby power consumption
• 4μ stand with wake-up touch
- Low CPU utilization
• Autonomous operation
• Non blocking interrupt behavior
• High channel count
- Up to 256 mutual cap channels
- Up to 32 self cap channels
* 100K series resistor might be needed in some designs

flowchart
graph TD
CPU["CPU"] -->|PORT A| Memory["Memory"]
CPU -->|PORT B| Memory
CPU -->|PORT C| Memory
CPU -->|PORT D| Memory
CPU -->|PORT E| Memory
CPU -->|PORT F| Memory
CPU -->|PORT G| Memory
CPU -->|PORT H| Memory
CPU -->|PORT I| Memory
CPU -->|PORT J| Memory
CPU -->|PORT K| Memory
CPU -->|PORT L| Memory
CPU -->|PORT M| Memory
CPU -->|PORT N| Memory
CPU -->|PORT O| Memory
CPU -->|PORT P| Memory
CPU -->|PORT Q| Memory
CPU -->|PORT R| Memory
CPU -->|PORT S| Memory
CPU -->|PORT T| Memory
CPU -->|PORT U| Memory
CPU -->|PORT V| Memory
CPU -->|PORT W| Memory
CPU -->|PORT X| Memory
CPU -->|PORT Y| Memory
CPU -->|PORT Z| Memory
CPU -->|PORT AA| Memory
CPU -->|PORT AB| Memory
CPU -->|PORT AC| Memory
CPU -->|PORT AD| Memory
CPU -->|PORT AE| Memory
CPU -->|PORT AF| Memory
CPU -->|PORT AG| Memory
CPU -->|PORT AH| Memory
CPU -->|PORT AI| Memory
CPU -->|PORT AJ| Memory
CPU -->|PORT AK| Memory
CPU -->|PORT AL | Memory
CPU -->|PORT AM | Memory
CPU -->|PORT AN | Memory
CPU -->|PORT AO | Memory
CPU -->|PORT AP | Memory
CPU -->|PORT AQ | Memory
CPU -->|PORT AR | Memory
Atmel Automotive Solutions
You can rely on Atmel with over 30 years of design experience and expertise in the automotive field. You can also depend on us to support you with extensive demonstration and evaluation kits, reference boards, software, detailed documentation, and our expert staff of application engineers.
Automotive Microcontrollers
Our wide range of cost-effective, top-quality products with fully functional design kits support your designs, whether they are large, complex electronic systems for automotive safety or body control, or smaller, independent applications.
Automotive Serial EEPROMs
We offer a complete line of automotive temperature grade Serial EEPROMs supporting I^2C , SPI and Microwire protocols. These products are ideal for high-speed designs in robust and noisy environments.
Automotive Touch
The maXTouch ^® family — known for its superior performance and rich feature set — is now qualified for automotive applications such as automotive touchscreens and touchpads used in center stack displays, navigation systems, radio human-machine interfaces (HMIs) and rear-seat entertainment systems.
Broadcast Radio
Backed by more than 30 years' experience in designing broadcast radio solutions, as well as support for industry standards (ISO9001 and ISO16949), our solutions are ideal for the quality and performance requirements of the car radio market.
CAN/VAN Networking
Controller Area Network (CAN) networking is widely used in electronic architectures for today's modern vehicles. Atmel offers a wide range of solutions for CAN networking, including AVR 8-bit RISC microcontrollers and transceivers ready to go with data-rates up to 5Mbit/s supporting the new CAN Flexible Data-rate standard (CAN FD).

natural_image
Black and white photo of a car driving on a road with motion blur, sun rays visible (no text or symbols)Car Access
Our devices support access applications including remote keyless entry (RKE) and passive entry/go (PEG) systems, so you can deliver the convenience as well as security that drivers expect.
Drivers/High-Temperature ICs
With our devices, you can meet the stringent requirements of “under the hood” systems. We understand that high temperatures, strong mechanical vibration and fluctuating electromagnetic fields require products based on decades of good architecture, meticulous manufacturing and robust testing.
Battery Management
Lithium-Ion (Li-Ion) batteries tend to overheat when overcharged or during deep discharge, so our devices are equipped to provide protection and safety features that are critical in high cell count Li-Ion battery applications.
LIN Networking
Our devices support the low-cost local interconnect networking (LIN) systems that are used throughout automobiles for comfort, powertrain, sensor and actuator applications.
Atmel®
Atmel Wireless SmartConnect IoT Platform
Enabling Connectivity Solutions

flowchart
graph LR
A["Cloud Partners"] --> B["Internet"]
B --> C["Wi-Fi"]
C --> D["802.15.4"]
D --> E["BLE Node to GW Authentication/Security"]
E --> F["ZigBee 6LowPan"]
subgraph Cloud Partners
B
C
D
E
end
subgraph Wi-Fi
B
C
D
E
end
subgraph BLE Node to GW Authentication/Security
E
F
end
style Cloud Partners fill:#f9f,stroke:#333
style Wi-Fi fill:#ccf,stroke:#333
style BLE Node to GW Authentication/Security fill:#cfc,stroke:#333
note right of E: Thread 6LowPan
note left of F: Pre-Packaged Solutions
note right of O: Solution Pending

other
Sub GHz Wi-Fi 802.11 BT/BLE ZigBee 802.15.4 | Component | Model Name | Power (bgn) | Band | | :--- | :--- | :--- | :--- | | WiFi | ATA 8515 Transceiver w/ AVR MCU | - | - | | WiFi | ATA 8510 Transceiver MCU + Flash | - | - | | WiFi | ATA 8215 Receiver w/ AVR MCU | - | - | | WiFi | ATA 8210 Receiver MCU + Flash | - | - | | WiFi | ATA 840x Transmitter | - | - | | WiFi | ATA 874x Transmitter MCU + Flash | - | - | | WiFi | SAM W25 802.11bgn Standalone Module | - | - | | WiFi | WINC1500 802.11bgn Network Controller Module | - | - | | WiFi | WILC1000 802.11bgn LINK Controller Module | - | - | | WiFi | SAMB11 BLE4.1 Standalone Module | - | - | | WiFi | BTLC1000 BLE4.1 Link Controller Module | - | - | | WiFi | *WINC3400 802.11bgn/BLE4.0 Combo Network Controller Module | - | - | | WiFi | Z | - | - | | WiFi | MEGA RFR 2.4G Standalone SiP/Module | - | - | | WiFi | SAM R21 2.4G Standalone SiP/Module | - | - | | WiFi | 86RF212B Sub-G ZigBit Module | - | - | | WiFi | 86RF23x 2.4G ZigBit Module | - | - | | WiFi | 86RF212B Sub-G Radio | - | - | | WiFi | 86RF23x 2.4G Radio | - | - | Z: 86RF215 Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 2.4G Dual Band Radio Sub-G & 3G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-G Radio Sub-VR MCU Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash Sub-VR MCU + Flash *WINC3400 *WINC3400 *WINC3400 *WINC3400 *WINC3400* Customer Sampling
WILC1000 Network Controllers Series
| Ordering Codes Description | |
| ATWILC1000B-MU-T/Y | Single 802.11 b/g/n chip, 5X5 QFN (Tape & Reel / Tray) |
| ATWILC1000B-UU-T/Y | Single 802.11 b/g/n chip, 3x3 CSP PKG (Tape & Reel / Tray) |
| ATWILC1000-MR110PB | Certified WILC1000B Module W/ PCB Antenna |
| ATWILC1000-MR110UB | Certified WILC1000B Module W/ uFL connector |
| ATWILC1000-SDPRO | ATWILC1000-SDRO extension board to connect over SD/MMC (SDIO) to peer host |
Key Features:
- IEEE 802.11 b/g/n (1x1) for up to 72 Mbps
- Integrated PA and T/R switch
- Superior sensitivity and range via advanced PHY signal processing
• Wi-Fi Direct, station mode and Soft-AP support
• Supports IEEE 802.11 WEP, WPA - On-chip memory management engine to reduce host load
• SPI, SDIO, UART and I²C as host interfaces
• WSC (wireless simple configuration WPS)

flowchart
graph TD
A["App + Linux"] --> B["SDIO Driver"]
C["Host MCU/MPU"] --> D["SDIO Driver"]
C --> E["SDIO Driver"]
C --> F["API"]
C --> G["WiFi Stack"]
D --> H["22mm"]
E --> H
F --> H
G --> H
H --> I["15mm"]
Atmel®
WINC1500 Network Controllers Series
| WINC1500MR210PB/UB | WINC1510MR210PB/UB | |
| Wi-Fi SoC | WINC1500B WINC1510B | |
| External Host Type | MCU MCU | |
| External Host Interface | UART, SPI UART, SPI | |
| Single Band 802.11n | √ | √ |
| WPS,WPA/WPA2 Supplicant | √ | √ |
| TCP/UPD, DNS, HTTP/ HTTPS, TLS | √ | √ |
| Stacked Flash | 4M 8M | |
| Antenna Design | PCB/uFL PCB/uFL | |
| OTA Upgrade | √ | √ |
| Dimensions | 22 x15mm | |
| Pin Out | 28x castellation | |
| Certification | FCC, IC, ETSI | |
| Availability (MP) | NOW | |
Certified module used as a turn key add-on module adding Wi-Fi connectivity to an existing system.
Key Features:
- IEEE 802.11 b/g/n (1x1) for up to 72 Mbps
- Integrated PA and T/R switch
- Superior sensitivity and range via advanced PHY signal processing
• Wi-Fi Direct, station mode and Soft-AP support
• Supports IEEE 802.11 WEP, WPA - On-chip memory management engine to reduce host load
- 4/8 Mbit stacked Flash memory with OTA firmware upgrade
• SPI, UART and I2C as host interfaces - TCP/IP protocol stack (client/server) sockets applications
• Network protocols (DHCP/DNS), including secure TLS stack
• WSC (wireless simple configuration WPS)

flowchart
graph TD
A["Host Application"] --> B["Socket API"]
B --> C["SPI Driver"]
C --> D["4KB Flash 1KB RAM"]
D --> E["SPI Driver"]
E --> F["API"]
F --> G["TCP/IP TLS"]
G --> H["Wi-Fi Stack"]
I["Host MCU"] --> J["SPI, UART"]
J --> K["22mm"]
L["Microchip with ATWINC1500-MR210PA, FCC ID:W4W4TWINC1500, MAC:FBF00620AA2D, DIC:1438"] --> M["15mm"]
Atmel | SMART SAM W25
Standalone Applications Wi-Fi Module
Key Features:
- IEEE 802.11 b/g/n (1x1) for up to 72 Mbps
- Integrated PA and T/R switch can operate completely host-less in most applications
- Superior sensitivity and range via advanced PHY signal processing
• Wi-Fi Direct, station mode and Soft-AP support
• Supports IEEE 802.11 WEP, WPA - On-chip memory management engine to reduce host load
- 4 Mbit internal Flash memory with OTA firmware upgrade
- SPI, UART and I²C as host interfaces
- TCP/IP protocol stack (client/server) sockets applications
• Network protocols (DHCP/DNS), including secure TLS stack
• WSC (wireless simple configuration WPS)
| SAMW25H18-MR210PB | SAMW25H18-MR510PB | |
| Wi-Fi SoC | WINC1510B WINC1510B | |
| Embedded Host MCU | SAM D21 SAM D21 | |
| Single Band 802.11n | √ | √ |
| WPS,WPA/WPA2 Supplicant | √ | √ |
| TCP/UPD, DNS, HTTP/HTTPS, TLS | √ | √ |
| CryptoAuthentication (ECC508A) | - | √ |
| Antenna Design | PCB PCB | |
| OTA Upgrade | √ | √ |
| Dimensions | 34 x15mm | |
| Pin Out | 51 castellations | |
| Certification | FCC, IC, ETSI, TELEC | |
| Availability (MP) | NOW | |

flowchart
graph TD
A["Host Application"] --> B["Socket API"]
A --> C["SPI Driver"]
B --> D["SPI Driver"]
C --> D
D --> E["API"]
E --> F["TCP/IP TLS"]
F --> G["Wi-Fi Stack"]
H["4KB Flash 1KB RAM"] --> I["SPI"]
I --> D
J["ATMEL CORP © 2014"] --> K["34mm"]
L["15mm"] --> M["Data Block"]
Atmel®
Atmel | SMART SAMR21 ARM Cortex-M0+
with 2.4 GHz 802.15.4 Transceiver
Memories
• 64/128/256/768 (256+512) flash
• 8K/16K/32KB SRAM
Peripherals
• 4-SERCOM interfaces
- I²C, SPI, and USART
- 4x16 bit timers
• 4-Ch 12-bit ADC
- Analog comparator
Sleep Power Consumption
• <150μA/MHz active (CoreMark®)
• <4μA with RTC and Full RAM retention
Key features
• HW AES
• Automatic external FEM control, antenna diversity
• Capacitive touch HW engine (PTC)
• Integrated 32KHz crystal
- Ranging engine
Package Options
• 32pin 5x5mm, 48pin 7x7mm
| Link Controller SAM R21 | |
| CPU Core | ARM Cortex-M0+ @ 48MHz |
| Max PHY Rate | 2Mbit |
| Frequency | 2.4GHz |
| Stacks | Bitcloud, Contiki, OpenWSNComing:mBED, Thread, iControl |
| Applications | Lighting, Sensor Networks, Home Automation, ESL |
| Interfaces | SPI, UART |
| Tx/Rx Peak | 13.8mA/11.8mA @ 3.0V |
| Tx Pout | +4dBrn |
| Rx Sensitivity | -99dBrn |
| Sleep Mode | <4uA (RTC+RAM) |
| Package | 6x6 QFN485x5 QFN32 |
| Power Supply | 1.8V-3.6V |
| Temp Range | -40 to +125°C |

text_image
ATSAMR21B18-MZ210PA A09-2450 15mm 20mm 19mm 20mm| SAMR21B18-MZ210PA | SAMR21G18-MR210UA | |
| Target Market | Lighting General Purpose | |
| Form Factor | 15 x 20mm 19 x 20mm | |
| Microcontroller | SAMR21E18 SAMR21G18 | |
| RF Output Power | +4dBm +3.5dBm | |
| Rx Sensitivity | -99dBm -98dBm | |
| Antenna | PCB trace 2 x UFL | |
| Available I/O | 5 | 17 |
| Encryption | ECC508A | |
| Temperature Range | -40C - +125C | -40C - +85C |
SAM R21 Module SAM R21 Lighting Module
Atmel Bluetooth SMART® Solutions
The Lowest Power, Smallest Size Bluetooth® Smart Solution in the Industry.
- Small size enables new ultra small product forms
- Goes the longest without a charge or battery change
- Simplify your design with the Atmel® Studio and Xplained PRO ecosystem
- Easily combine Atmel® | SMART 8- and 32-bit MCUs with BLE connectivity

text_image
BLE. World's Love Wireless st Size Wireless size: 2.2 x 2.1 mm| BLE Soc BTLC1000 SAMB11 | ||
| CPU Core | Cortex-M0 @ 26MHz | Cortex-M0 w/256KB stacked Flash |
| Max PHY Rate | 1Mbps 1Mbps | |
| Frequency | 2.4GHz 2.4GHz | |
| Stacks | Self Contained GATT and GATT-based profiles BLE 4.1 | Self Contained GATT and GATT-based profiles BLE 4.1 |
| Applications | Wearable, IoT Wearable, IoT | |
| Interfaces | SPI, UART, I2C, 13/15 GPIO | SPI, UART, I2C, 30 GPIO |
| Tx/Rx Peak (mA) | <3/4mA @ 3.6V <3/4mA @ 3.6V | |
| Tx Pout | -30dBm to +4dBm -30dBm to +4dBm | |
| Rx Sensitivity | <-95dBm <-95dBm | |
| Sleep Mode | <1uA <1uA | |
| Package | 4x4mm QFN 32L 2.25 x 2.15mm WLCSP | 6x6mm QFN 48L |
| Power Supply | (*) 1.8V-4.3V 2.3-3.6V | |
| Temp Range | -40 to +85° c -40 to +85° c | |
- Smallest, certified modules available on the market
- 4.5x5.5mm ultra small form factor LGA package
• Integrates all BOM components except 32kHz optional Xtal
• Available with integrated antenna on package or with hookup for external antenna
Atmel®
Atmel Smart Metering

flowchart
graph TD
A["Best-in-class Metrology"] --> B["Sensing Signal Processing"]
C["Highest Integration and Flexibility"] --> D["Application Processor"]
E["Leading-edge Connectivity"] --> F["MCU"]
E --> G["MCU/MPU"]
E --> H["PRIME/G3"]
B --> I["Energy Measurement AFE 1ph/2ph/3ph M90Exx"]
D --> J["MCU SAM4, SAMD"]
F --> K["MCU/MPU SAM4, SAMA5 SAM9"]
H --> L["ATPL230, ATPL250"]
I --> M["Analog Sensor 1ph/2ph/3ph ATSENSE"]
J --> N["Application & Communications Secure ASSP, Dual Cortex - M4, PRIME / G3 SAM4CP16"]
K --> O["Metrology & Application Secure ASSP Dual Core Cortex-M4 SAM4C4/8/16/32"]
L --> P["Sub-1GHz IEEE 802.15.4 AT86RF212B AT86RF215M"]
M --> Q["Sensors & Metrology & Application Secure ASSP Dual Core Cortex-M4 1ph/3ph SAM4CMS4/8/16/32 SAM4CMP8/16/32"]
N --> R["Sub-1GHz IEEE 802.15.4 AT86RF215M"]
O --> S["2.4GHz IEEE 802.15.4 AT86RF233"]
P --> T["Dual-Band IEEE 802.15.4g AT86RF215"]

flowchart
graph TD
A["UTILITY"] --> B["WAN"]
B --> C["HAN GATEWAY"]
C --> D["Appliance"]
D --> E["Local Wind Solar"]
E --> F["HVAC"]
F --> G["IN HOME DISPLAY"]
G --> C
C --> H["HAN or Neighborhood IEEE 802.15.4(g), ZigBee"]
H --> I["H2O METER"]
I --> J["GAS METER"]
J --> K["ELECTRICITY METER"]
K --> L["Neighborhood/Metro IEEE 802.15.4g, PRIME,G3-PLC"]
L --> B
Atmel Security Solutions
More than a simple password
• Trusted and Secure Communication
- Secure updates for FW and SW
• Establish and manage Trusted Keys
- Manage and track production builds
• Authentication and verification
- Secure Boot
- Maintain Platform Integrity
• Product Lifecycle Management
- Stored Protection of Data

flowchart
graph TD
A["Atmel Software Solutions"] --> B["Application"]
B --> C["IoT Comm. Stacks + Third Party Cloud"]
C --> D["Ultra Low Power Hardware Integration"]
E["Atmel Security Solutions"] --> F["Security"]
| Part Number ATSHA204A ATAES132A ATECC508A | |||
| Description | Secure authentication and validation device | High-Security, serial EEPROM providing authentication and confidential nonvolatile storage | High speed PKI crypto engine with secure key storage. FIPS186-3 Elliptic Curve Digital Signature Algorithm (ECDSA) for ECC Sign-Verify |
| ECDH | Runs FIPS SP800-56A ECDH Algorithm | ||
| Function(s) | Authentication Encryption/Authentication Authentication and key exchange for confidentiality and data integrity | ||
Security Threats for IoT are Everywhere

flowchart
graph TD
A["Through the server or cloud with fake updates or commands"] --> B((Cloud))
B <--> C["We constantly hear about folks "listening into networks" for confidential information and data."]
C --> D["Security"]
D --> E["MCUs MPUs"]
D --> F["Energy"]
D --> G["Sensing"]
D --> H["Connectivity"]
E --> I["Through a fake device tracking back to the gateway and cloud."]
F --> I
G --> I
H --> I
style A fill:#cce5ff,stroke:#333
style B fill:#cce5ff,stroke:#333
style C fill:#cce5ff,stroke:#333
style D fill:#e6f2ff,stroke:#333
style E fill:#e6f2ff,stroke:#333
style F fill:#e6f2ff,stroke:#333
style G fill:#e6f2ff,stroke:#333
style H fill:#e6f2ff,stroke:#333
Atmel®
Atmel Memory Solutions
Atmel AT21CS Serial EEPROMs
Powerful Capabilities in a Tiny Package

flowchart
graph TD
A["AT21CS"] --> B["打印机"]
A --> C["Smartwatch"]
A --> D["USB"]
A --> E["Laptop"]
Serial EEPROM
Flexible memory devices for a variety of applications to store personal preference data, system calibration and configuration data, and high endurance data logging.
Parallel EEPROM
Byte alterable, parallel access memory devices with high endurance, long term data retention, and advanced features that ensure high quality and manufacturability of systems.
OTP EPROM
One-time Programmable (OTP) memory devices with fast parallel access times to provide secure, unalterable direct code execution memory.
In addition, Atmel offers a family of secure memory solutions that are specifically designed to prevent product counterfeiting and intellectual property theft.
CryptoMemory® EEPROMs
Memory solutions with a 64-bit embedded hardware encryption engine, four sets of non-readable, 64-bit authentication keys, and four sets of non-readable, 64-bit session encryption keys.
| I2C SPI μWire Single Wire | ||||
| Device Family | AT24C/34Cxxx AT25xxx AT93Cxxx AT21Cxxx | |||
| Densities | 1-Kbit to 2-Mbit 1-Kbit to 2-Mbit 1-Kbit to 16-Kbit 1-Kbit | |||
| Voltage Range | 1.7V to 5.5V | 1.8V to 5.5V(Will migrate to 1.7V) | 1.7V to 5.5V 1.7V to 4.5V | |
| Clock Frequency | Up to 1MHz Up to 20MHz Up to 2MHz n/a (up to 125 kbps) | |||
| Automotive Grade | Available Available Available Available | |||
| Package Options | PDIP, SOIC, TSSOP,SOT-23, DFN, BGA,WLCSP | PDIP, SOIC, TSSOP,DFN, BGA, WLCSP | PDIP, SOIC, TSSOP,DFN, BGA, WLCSP | SOIC, SOT-23, WLCSP |
48-bit MAC/EUI and 64-bit EUI Series
The 2Kb, ^1 C-compatible Atmel AT24MAC402 and AT24MAC602 Serial EEPROM devices are application-specific products that contain unique IEEE-provided 48-bit or 64-bit pre-programmed MAC/EUI addresses to enable connected devices to connect to the Internet or local network. The devices also contain a unique read-only 128-bit serial number and 2Kb of user-accessible EEPROM non-volatile memory (NVM) storage.
128-bit Serial Number Devices.
The Atmel AT24CS Series devices are general-purpose I²C-compatible Serial EEPROM devices that contain an Atmel-provided pre-programmed unique read-only 128-bit serial number with 1Kb to 32Kb of user-accessible EEPROM NVM storage.