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產品詳細資料

Resolution (Bits) 8 Number of DAC channels 1 Interface type Parallel Output type Unbuffered Current Settling time (µs) 0.1 Features Current Output Reference type Ext Architecture Multiplying DAC Rating Catalog Output range (max) (mA/V) 2 Output range (min) (mA/V) 0 Sample/update rate (Msps) 6.6 Power consumption (typ) (mW) 33 Operating temperature range (°C) 0 to 70
Resolution (Bits) 8 Number of DAC channels 1 Interface type Parallel Output type Unbuffered Current Settling time (µs) 0.1 Features Current Output Reference type Ext Architecture Multiplying DAC Rating Catalog Output range (max) (mA/V) 2 Output range (min) (mA/V) 0 Sample/update rate (Msps) 6.6 Power consumption (typ) (mW) 33 Operating temperature range (°C) 0 to 70
SOIC (D) 16 59.4 mm² 9.9 x 6
  • Fast Settling Output Current: 100 ns
  • Full Scale Error: ±1 LSB
  • Nonlinearity Over Temperature: ±0.1%
  • Full Scale Current Drift: ±10 ppm/°C
  • High Output Compliance: −10V to +18V
  • Complementary Current Outputs
  • Interface Directly with TTL, CMOS, PMOS and Others
  • 2 Quadrant Wide Range Multiplying Capability
  • Wide Power Supply Range: ±4.5V to ±18V
  • Low Power Consumption: 33 mW at ±5V
  • Low Cost

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  • Fast Settling Output Current: 100 ns
  • Full Scale Error: ±1 LSB
  • Nonlinearity Over Temperature: ±0.1%
  • Full Scale Current Drift: ±10 ppm/°C
  • High Output Compliance: −10V to +18V
  • Complementary Current Outputs
  • Interface Directly with TTL, CMOS, PMOS and Others
  • 2 Quadrant Wide Range Multiplying Capability
  • Wide Power Supply Range: ±4.5V to ±18V
  • Low Power Consumption: 33 mW at ±5V
  • Low Cost

All trademarks are the property of their respective owners.

The DAC0800 series are monolithic 8-bit high-speed current-output digital-to-analog converters (DAC) featuring typical settling times of 100 ns. When used as a multiplying DAC, monotonic performance over a 40 to 1 reference current range is possible. The DAC0800 series also features high compliance complementary current outputs to allow differential output voltages of 20 Vp-p with simple resistor loads. The reference-to-full-scale current matching of better than ±1 LSB eliminates the need for full-scale trims in most applications, while the nonlinearities of better than ±0.1% over temperature minimizes system error accumulations.

The noise immune inputs will accept a variety of logic levels. The performance and characteristics of the device are essentially unchanged over the ±4.5V to ±18V power supply range and power consumption at only 33 mW with ±5V supplies is independent of logic input levels.

The DAC0800, DAC0802, DAC0800C and DAC0802C are a direct replacement for the DAC-08, DAC-08A, DAC-08C, and DAC-08H, respectively. For single supply operation, refer to AN-1525.

The DAC0800 series are monolithic 8-bit high-speed current-output digital-to-analog converters (DAC) featuring typical settling times of 100 ns. When used as a multiplying DAC, monotonic performance over a 40 to 1 reference current range is possible. The DAC0800 series also features high compliance complementary current outputs to allow differential output voltages of 20 Vp-p with simple resistor loads. The reference-to-full-scale current matching of better than ±1 LSB eliminates the need for full-scale trims in most applications, while the nonlinearities of better than ±0.1% over temperature minimizes system error accumulations.

The noise immune inputs will accept a variety of logic levels. The performance and characteristics of the device are essentially unchanged over the ±4.5V to ±18V power supply range and power consumption at only 33 mW with ±5V supplies is independent of logic input levels.

The DAC0800, DAC0802, DAC0800C and DAC0802C are a direct replacement for the DAC-08, DAC-08A, DAC-08C, and DAC-08H, respectively. For single supply operation, refer to AN-1525.

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* Data sheet DAC0800/DAC0802 8-Bit Digital-to-Analog Converters datasheet (Rev. C) 2013年 2月 19日
User guide AN-706 LM628/629 User Guide (Rev. D) 2013年 5月 6日
Application note AN-1525 Single Supply Operation of the DAC0800 and DAC0802 (Rev. A) 2013年 4月 22日

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