产品详情

Resolution (Bits) 10 Number of DAC channels 8 Interface type I2C Output type Buffered Voltage Settling time (µs) 7 Features Cost Optimized, Low Power, Reset to Mid-Scale, Small Size Reference type Ext Architecture String Rating Catalog Output range (max) (mA/V) 5.5 Output range (min) (mA/V) 0 Sample/update rate (Msps) 0.083 Power consumption (typ) (mW) 3.4 Operating temperature range (°C) -40 to 125
Resolution (Bits) 10 Number of DAC channels 8 Interface type I2C Output type Buffered Voltage Settling time (µs) 7 Features Cost Optimized, Low Power, Reset to Mid-Scale, Small Size Reference type Ext Architecture String Rating Catalog Output range (max) (mA/V) 5.5 Output range (min) (mA/V) 0 Sample/update rate (Msps) 0.083 Power consumption (typ) (mW) 3.4 Operating temperature range (°C) -40 to 125
TSSOP (PW) 16 32 mm² 5 x 6.4 VQFN (RGE) 24 16 mm² 4 x 4
  • Relative Accuracy:
    • DAC5578 (8 bit): 0.25LSB INL
    • DAC6578 (10 bit): 0.5LSB INL
    • DAC7578 (12 bit): 1LSB INL
  • Glitch Energy: 0.15nV-s
  • Power-On Reset to Zero Scale or Midscale
    • Devices in the TSSOP Package Reset to Zero Scale
    • Devices in the QFN Package Reset to Zero Scale or Midscale
  • Ultra-Low Power Operation: 0.13mA/ch at 5V
  • Wide Power-Supply Range: +2.7V to +5.5V
  • 2-Wire Serial Interface (I2C compatible)
  • Temperature Range: –40°C to +125°C
  • APPLICATIONS
    • Portable Instrumentation
    • Closed-Loop Servo Control
    • Process Control
    • Data Acquisition Systems

All other trademarks are the property of their respective owners

  • Relative Accuracy:
    • DAC5578 (8 bit): 0.25LSB INL
    • DAC6578 (10 bit): 0.5LSB INL
    • DAC7578 (12 bit): 1LSB INL
  • Glitch Energy: 0.15nV-s
  • Power-On Reset to Zero Scale or Midscale
    • Devices in the TSSOP Package Reset to Zero Scale
    • Devices in the QFN Package Reset to Zero Scale or Midscale
  • Ultra-Low Power Operation: 0.13mA/ch at 5V
  • Wide Power-Supply Range: +2.7V to +5.5V
  • 2-Wire Serial Interface (I2C compatible)
  • Temperature Range: –40°C to +125°C
  • APPLICATIONS
    • Portable Instrumentation
    • Closed-Loop Servo Control
    • Process Control
    • Data Acquisition Systems

All other trademarks are the property of their respective owners

The DAC5578 (8 bit), DAC6578 (10 bit), and DAC7578 (12 bit) are low-power, voltage-output, octal channel, digital-to-analog converters (DACs). The devices are monolithic, provide good linearity,and minimize undesired code-to-code transient voltages (glitch).

The devices use a versatile, 2-wire serial interface that is I2C-compatible and operates at clock rates of up to 3.4MHz. Multiple devices can share the same bus.

The devices incorporate a power-on-reset (POR) circuit that ensures the DAC output powers up to zero-scale or midscale until a valid code is written to the device. These devices also contain a power-down feature, accessed through the serial interface, that reduces the current consumption of the devices to typically 0.42µA at 5V. Power consumption is typically 2.32mW at 3V, reducing to 0.68µW in power-down mode. The low power consumption and small footprint make these devices ideal for portable, battery-operated equipment.

The DAC5578, DAC6578, and DAC7578 are drop-in and functionally-compatible with the DAC7678. All devices are available in a 4x4, QFN-24 package and a TSSOP-16 package.

The DAC5578 (8 bit), DAC6578 (10 bit), and DAC7578 (12 bit) are low-power, voltage-output, octal channel, digital-to-analog converters (DACs). The devices are monolithic, provide good linearity,and minimize undesired code-to-code transient voltages (glitch).

The devices use a versatile, 2-wire serial interface that is I2C-compatible and operates at clock rates of up to 3.4MHz. Multiple devices can share the same bus.

The devices incorporate a power-on-reset (POR) circuit that ensures the DAC output powers up to zero-scale or midscale until a valid code is written to the device. These devices also contain a power-down feature, accessed through the serial interface, that reduces the current consumption of the devices to typically 0.42µA at 5V. Power consumption is typically 2.32mW at 3V, reducing to 0.68µW in power-down mode. The low power consumption and small footprint make these devices ideal for portable, battery-operated equipment.

The DAC5578, DAC6578, and DAC7578 are drop-in and functionally-compatible with the DAC7678. All devices are available in a 4x4, QFN-24 package and a TSSOP-16 package.

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类型 标题 下载最新的英语版本 日期
* 数据表 8/10/12-Bit, Octal-Chan, Ultra-Low Glitch, Voltage Output, 2-Wire Interface DACs 数据表 (Rev. B) 2012年 8月 30日
应用手册 A Basic Guide to I2C PDF | HTML 2022年 11月 8日
应用手册 所选封装材料的热学和电学性质 2008年 10月 16日
应用手册 高速数据转换 英语版 2008年 10月 16日

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评估板

DAC7678EVM — DAC7678 评估模块

DAC7678EVM 设计用来评估 DAC7678、DAC5578、DAC6578 或 DAC7578 数模转换器。默认情况下,DAC7678EVM 安装有 DAC7678,但可采用任何一种其他引脚可兼容器件进行替换。该 EVM 使您可以轻松快捷地评估这个低功率、高分辨率、8 至 12 位系列数模转换器 (DAC) 的功能和性能。使用了双线 I?C 接口头,可以轻松连接从 DAC 至任何主机微处理器或基于 TI DSP 的系统的 SCL 和 SDA 引脚。默认情况下,DAC7678EVM 设计为使用板载外部参考,但可以适当修改以使用 DAC 内部参考(如果是 (...)

用户指南: PDF
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仿真模型

DAC5(6,7)578 IBIS Model

SBAM034.ZIP (59 KB) - IBIS Model
计算工具

ANALOG-ENGINEER-CALC — 模拟工程师计算器

模拟工程师计算器旨在加快模拟电路设计工程师经常使用的许多重复性计算。该基于 PC 的工具提供图形界面,其中显示各种常见计算的列表(从使用反馈电阻器设置运算放大器增益到为稳定模数转换器 (ADC) 驱动器缓冲器电路选择合适的电路设计元件)。除了可用作单独的工具之外,该计算器还能够很好地与模拟工程师口袋参考书中所述的概念配合使用。
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PSpice® for TI 可提供帮助评估模拟电路功能的设计和仿真环境。此功能齐全的设计和仿真套件使用 Cadence® 的模拟分析引擎。PSpice for TI 可免费使用,包括业内超大的模型库之一,涵盖我们的模拟和电源产品系列以及精选的模拟行为模型。

借助 PSpice for TI 的设计和仿真环境及其内置的模型库,您可对复杂的混合信号设计进行仿真。创建完整的终端设备设计和原型解决方案,然后再进行布局和制造,可缩短产品上市时间并降低开发成本。

在 PSpice for TI 设计和仿真工具中,您可以搜索 TI (...)
模拟工具

TINA-TI — 基于 SPICE 的模拟仿真程序

TINA-TI 提供了 SPICE 所有的传统直流、瞬态和频域分析以及更多。TINA 具有广泛的后处理功能,允许您按照希望的方式设置结果的格式。虚拟仪器允许您选择输入波形、探针电路节点电压和波形。TINA 的原理图捕获非常直观 - 真正的“快速入门”。

TINA-TI 安装需要大约 500MB。直接安装,如果想卸载也很容易。我们相信您肯定会爱不释手。

TINA 是德州仪器 (TI) 专有的 DesignSoft 产品。该免费版本具有完整的功能,但不支持完整版 TINA 所提供的某些其他功能。

如需获取可用 TINA-TI 模型的完整列表,请参阅:SpiceRack - 完整列表 

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用户指南: PDF
英语版 (Rev.A): PDF
封装 引脚 下载
TSSOP (PW) 16 查看选项
VQFN (RGE) 24 查看选项

订购和质量

包含信息:
  • RoHS
  • REACH
  • 器件标识
  • 引脚镀层/焊球材料
  • MSL 等级/回流焊峰值温度
  • MTBF/时基故障估算
  • 材料成分
  • 鉴定摘要
  • 持续可靠性监测
包含信息:
  • 制造厂地点
  • 封装厂地点

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