ATMEL Manuals (Others)

ATMEL AT29 Manual(1)

This application note describes the design benefits of Atmel's AT29 Flash architecture as well as how the device ID feature is used to adjust for varying densities and supply voltages.

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Atmel AT29 Flash Memories Manual

Atmel Flash memories are programmable erasable read-only memories implemented on an advanced sub-micron process using a highly efficient memory cell. They use Fowler-Nordheim tunneling for erasing and programming, requiring low programming current and supporting sector programming. Compared to first generation Flash memories, they offer a cleaner hardware implementation and more flexible and simple programming commands.

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ATMEL AT29 Manual(1)(1)

This document introduces the software chip erase method of AT29 series flash, including the principle and steps of the method, and gives an example code.

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ATMEL AT20C010A Manual

This document is a reliability data report for AT29C020 Programmable Read-Only Memory (PEROM), including dynamic operating life test, high temperature retention bake, cycle test, etc. The product is characterized by high reliability and stability.

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ATMEL AT29C010A handbook

The AT29C010A is a 5-volt-only in-system Flash programmable and erasable read only memory (PEROM). It features fast read access time, sector program operation, internal program control and timer, hardware and software data protection, etc.

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ATMEL AT29C020 handbook

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ATMEL AT29C040A handbook

AT29C040A is a 5V only in-system Flash Programmable and Erasable Read Only Memory (PEROM). Its 4 megabits of memory is organized as 524,288 words by 8 bits. Manufactured with Atmel’s advanced nonvolatile CMOS EEPROM technology, the device offers access times up to 90 ns, and a low 220 mW power dissipation. When the device is deselected, the CMOS standby current is less than 100 µA. The device endurance is such that any sector can typically be written to in excess of 10,000 times. The programming algorithm is compatible with other devices in Atmel’s 5-volt only Flash family. To allow for simple in-system reprogrammability, the AT29C040A does not require high input voltages for programming. Five-volt-only commands determine the operation of the device. Reading data out of the device is similar to reading from an EPROM. Reprogramming the AT29C040A is performed by internal address and data latches in a single cycle reprogram (erase and program).

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ATMEL AT49F1024A handbook

The AT49F1024A is a 5-volt-only in-system Flash memory organized as 65,536 words by 16 bits. Manufactured with Atmel’s advanced nonvolatile CMOS technology, the devices offer access times to 45 ns with power dissipation of just 275 mW over the commercial temperature range. It features single-voltage operation, fast erase cycle time, hardware data protection, and is suitable for simple in-system reprogrammability.

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ATMEL AT27BV010 handbook

The AT27BV010 is a high-performance, low-power, low-voltage 1,048,576-bit one- time programmable read-only memory (OTP EPROM) organized as 128K by 8 bits. It requires only one supply in the range of 2.7V to 3.6V in normal read mode operation, making it ideal for fast, portable systems using either regulated or unregulated battery power. Atmel’s innovative design techniques provide fast speeds that rival 5V parts while keeping the low power consumption of a 3V supply. At VCC = 2.7V, any byte can be accessed in less than 90 ns. With a typical power draw of only 18 mW at 5 MHz and VCC = 3V, the AT27BV010 consumes less than one fifth the power of a standard 5V EPROM. Standby mode supply current is typically less than 1 µA at 3V.

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ATMEL AT27BV020 handbook

Atmel AT27BV020 is a high-performance, low-power, low-voltage, 2,097,152-bit, one-time programmable, read-only memory (OTP EPROM) organized as 256K by 8 bits.

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ATMEL AT27BV040 handbook

The AT27BV040 chip is a high performance, low power, low voltage, 4,194,304-bit one-time programmable read only memory (EPROM) organized as 512K by 8 bits. It requires only one supply in the range of 2.7 to 3.6V in normal read mode operation, making it ideal for fast, portable systems using either regulated or unregulated battery power. Atmel’s innovative design techniques provide fast speeds that rival 5V parts while keeping the low power consumption of a 3V supply. At VCC = 2.7V, any byte can be accessed in less than 100 ns. With a typical power dissipation of only 18 mW at 5 MHz and VCC = 3V, the AT27BV040 consumes less than one fifth the power of a standard 5V EPROM. Standby mode supply current is typically less than 1 µA.

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ATMEL AT27BV1024 handbook

AT27BV1024 is a high-performance, low-power, low-voltage 1,048,576-bit one-time programmable read-only memory (OTP EPROM) organized as 64K by 16 bits. It requires only one supply in the range of 2.7V to 3.6V in normal read mode operation. The by-16 organization makes this part ideal for portable and handheld 16- and 32-bit microprocessor based systems using either regulated or unregulated battery power. Atmel’s innovative design techniques provide fast speeds that rival 5V parts while keeping the low power consumption of a 3V supply. At VCC = 2.7V, any word can be accessed in less than 120 ns. With a typical power dissipation of only 18 mW at 5MHz and VCC = 3V, the AT27BV1024 consumes less than one fifth the power of a standard 5V EPROM. Standby mode supply current is less than 1µA.

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ATMEL AT27BV256 handbook

The AT27BV256 is a high-performance, low-power, low-voltage 262,144-bit one-time programmable read-only memory (OTP EPROM) organized as 32K by 8 bits. It requires only one supply in the range of 2.7V to 3.6V in normal read mode operation, making it ideal for fast, portable systems using either regulated or unregulated battery power. Atmel’s innovative design techniques provide fast speeds that rival 5V parts while keeping the low power consumption of a 3V supply. At VCC = 2.7V, any word can be accessed in less than 70 ns. With a typical power dissipation of only 18 mW at 5 MHz and VCC = 3V, the AT27BV256 consumes less than one fifth the power of a standard 5V EPROM. Standby mode supply current is typically less than 1

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ATMEL AT27C010 handbook

This document describes the AT27C010 in detail. It is a low-power, high-performance 1,048,576-bit one-time programmable read-only memory (OTP EPROM) with a fast read access time, low power consumption, and high reliability

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ATMEL AT27C020 handbook

The AT27C020 is a low-power, high-performance, 2,097,152-bit, one-time programmable read-only memory (OTP EPROM) organized as 256K by 8 bits. It requires only one 5V power supply in normal read mode operation. Any byte can be accessed in less than 55 ns, eliminating the need for speed-reducing WAIT states on high-performance microprocessor systems. In read mode, the AT27C020 typically consumes 8 mA. Standby mode supply current is typically less than 10 µA. The AT27C020 is available in a choice of industry-standard JEDEC-approved one-time programmable (OTP) plastic PDIP, PLCC and TSOP packages. All devices feature two-line control (CE, OE) to give designers the flexibility to prevent bus contention. With 256K bytes storage capability, the AT27C020 allows firmware to be stored reliably and to be accessed by the system without the delays of mass storage media. Atmel’s AT27C020 has additional features to ensure high quality and efficient production.

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ATMEL AT27C040 handbook

The AT27C040 is a low-power, high-performance, 4,194,304-bit one-time pro- grammable read-only memory (OTP EPROM) organized as 512K by 8 bits.

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ATMEL AT27C080 handbook

This document introduces the features and characteristics of the Atmel AT27C080 chip, including fast read access time, low-power CMOS operation, JEDEC standard packages, 5V ± 10% supply, high-reliability CMOS technology, rapid programming algorithm, CMOS and TTL compatible inputs and outputs, integrated product identification code, industrial temperature range, green (lead/halide-free) packaging options, etc.

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ATMEL AT27C1024 handbook

AT27C1024 is a low-power, high-performance 1,048,576 bit one-time programmable read-only memory (OTP EPROM) organized 64K by 16 bits. In normal read mode operation, it requires only one 5V power supply. Any word can be accessed in less than 45 ns, eliminating the need for speed reducing WAIT states.

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ATMEL AT27C2048 handbook

The AT27C2048 is a low-power, high-performance 2,097,152-bit one-time program-mable read-only memory (OTP EPROM) organized 128K by 16 bits. It requires a single 5V power supply in normal read mode operation. Any word can be accessed in less than 55 ns, eliminating the need for speed-reducing WAIT states. The by-16 organization makes this part ideal for high-performance 16 and 32 bit microprocessor systems. In read mode, the AT27C2048 typically consumes 15 mA. Standby mode supply cur-rent is typically less than 10 µA. The AT27C2048 is available in industry-standard JEDEC-approved one-time pro-grammable (OTP) plastic PDIP, PLCC, and VSOP packages. The device features two-line control (CE, OE) to eliminate bus contention in high-speed systems. With high density 128K word storage capability, the AT27C2048 allows firmware to be stored reliably and to be accessed by the system without the delays of mass storage media.

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ATMEL AT27C256R handbook

The AT27C256R is a low-power, high-performance 262,144-bit one-time programmable read-only memory (OTP EPROM) organized 32K by 8 bits. It requires only one 5V power supply in normal read mode operation. Any byte can be accessed in less than 45 ns, eliminating the need for speed reducing WAIT states on high-performance microprocessor systems. Atmel’s scaled CMOS technology provides low-active power consumption, and fast programming. Power consumption is typically only 8 mA in Active Mode and less than 10 µA in Standby. The AT27C256R is available in a choice of industry-standard JEDEC-approved one time programmable (OTP) plastic DIP, PLCC, SOIC, and TSOP packages. All devices feature two-line control (CE, OE) to give designers the flexibility to prevent bus contention. With 32K byte storage capability, the AT27C256R allows firmware to be stored reliably and to be accessed by the system without the delays of mass storage media. Atmel’s AT27C

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