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产品参数表 产品参数表
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芯片型号 描述
ATC09 The ATC09 Cell-based ASIC family features a comprehensive library of 90 nanometer standard logic and I/O cells designed to operate with a supply voltage of 1.0V +/- 0.1V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC13 The ATC13 Cell-based ASIC family features a comprehensive library of 0.13-micron standard logic and I/O cells designed to operate with a supply voltage of 1.2V +/- 0.12V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC13/Flash The ATC13/Flash Cell-based ASIC family features a comprehensive library of 0.13-micron standard logic, I/O and embedded Flash memory cells designed to operate with a supply voltage of 1.2V +/- 0.12V, and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC15/E2 The ATC15 Cell-based ASIC family features a comprehensive library of 0.18/0.13-micron standard logic, I/O and embedded NVM cells designed to operate with a supply voltage of 1.8V +/- 0.15V, and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC18 The ATC18 Cell-based ASIC family features a comprehensive library of 0.18-micron standard logic and I/O cells designed to operate with a supply voltage of 1.8V +/- 0.15V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC18/E2 The ATC18/E2 Cell-based ASIC family features a comprehensive library of 0.18-micron standard logic, I/O and embedded NVM cells designed to operate with a supply voltage of 1.8V +/- 0.15V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory standard-interface, analog and application-specific cells.
ATC20 The ATC20 Cell-based ASIC family features a comprehensive library of 0.21-micron standard logic and I/O cells designed to operate with a supply voltage of 1.8V +/- 0.15V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory, standard-interface, analog and application-specific cells.
ATC25 The ATC25 Cell-based ASIC family features a comprehensive library of 0.25-micron standard logic and I/O cells designed to operate with a supply voltage of 2.5V +/- 0.25V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory, standard-interface, analog and application-specific cells.
ATL25 The ATL25 series gate array and embedded array families from Atmel are fabricated on a 0.25 micron CMOS process with 5 levels of metal. This family features arrays with up to 6.9 million routable gates and 976 pins. The high density and high pin count capabilities of the ATL25 family, coupled with the ability to embed microcontroller cores, DSP engines and memory, all on the same silicon, make the ATL25 series of arrays an ideal choice for system level integration.
ATC35 The ATC35 Cell-based ASIC family features a comprehensive library of 0.35-micron standard logic and I/O cells designed to operate with a supply voltage of 3.3V +/- 0.3V and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory, standard-interface, analog and application-specific cells.
ATL35 The ATL35 series gate array and embedded array families from Atmel are fabricated on a 0.35 micron CMOS process with up to 5 levels of metal. This family features arrays with up to 2.7 million routable gates and 976 pins. The high density and high pin count capabilities of the ATL35 family, coupled with the ability to embed microcontroller cores, DSP engines and memory all on the same silicon, and incorporate 5V-tolerant I/O, make the ATL35 series of arrays an ideal choice for system level integration.
ATC35/E2 The ATC35 Cell-based ASIC family features a comprehensive library of 0.35-micron standard logic, I/O and embedded NVM cells designed to operate with a supply voltage of 3.3V +/- 0.3V, and memory cells compiled to the precise requirements of the design. It is fully compatible with Atmel's extensive range of microcontroller, DSP, memory, standard-interface, analog and application-specific cells.
ATL60 The ATL60 series CMOS Gate Arrays are fabricated using a 0.6 micron drawn gate, oxide isolated, triple level metal process. Extensive cell libraries are available and support the major CAD software tools.

产品参数表
芯片型号 Process Name Geometry Kgates/mm2 Core Supply IO (Lib) Metal Layers 1-Mbit SRAM 1-Mbit ROM 1-Mbit EEPROM 1-Mbit Flash Analog Low Leakage Availability
ATC09 AT72K 90 nm 240 1.0V - 8 1.7 mm2 0.35 mm2 - - MiM Yes 2006
ATC13 AT59.1K 0.13 祄 140 1.2V - 4 to 8 3.2 mm2 0.7 mm2 - - MiM Yes 4Q05
ATC13/Flash AT66.7K 0.13 祄 140 1.2V - 6 to 8 3.2 mm2 0.7 mm2 - 1.5 mm2 MiM Yes 4Q05
ATC15/E2 AT58.85K 0.18 祄 90 1.8V - 4 to 6 4.7 mm2 1.1 mm2 3.2 mm2 2.5 mm2 No MiM Yes 4Q05
ATC18 AT58K 0.18 祄 70 1.8V - 4 to 6 6.3 mm2 1.4 mm2 - - MiM Yes In volume
ATC18/E2 AT58.8K 0.18 祄 70 1.8V - 4 to 6 6.3 mm2 1.4 mm2 4.1mm2 3.4 mm2 No MiM Yes In volume
ATC20 AT57.5K 0.21 祄 - 1.8V - 4 to 5 12 mm2 1.8 mm2 - - 2nd Poly Yes In volume
ATC25 AT57K 0.25 祄 - 2.5V - 4 to 5 12 mm2 1.8 mm2 - - - - In volume
ATC35 AT56K 0.35 祄 16 3.3V - 3 to 4 23 mm2 3.5 mm2 - - 2nd Poly - In volume
ATC35/E2 AT56.8K 0.35 祄 16 3.3 - 3 to 4 23 mm2 3.5 mm2 11 mm2 - 2nd Poly - In volume