產品詳細資料

Resolution (Bits) 12 Number of DAC channels 4 Interface type I2C Output type Buffered Voltage Settling time (µs) 10 Features Low Power Reference type Ext Architecture String Rating Catalog Output range (max) (mA/V) 5.5 Output range (min) (mA/V) 0 Sample/update rate (Msps) 0.043 Power consumption (typ) (mW) 0.85 Operating temperature range (°C) -40 to 105
Resolution (Bits) 12 Number of DAC channels 4 Interface type I2C Output type Buffered Voltage Settling time (µs) 10 Features Low Power Reference type Ext Architecture String Rating Catalog Output range (max) (mA/V) 5.5 Output range (min) (mA/V) 0 Sample/update rate (Msps) 0.043 Power consumption (typ) (mW) 0.85 Operating temperature range (°C) -40 to 105
VSSOP (DGS) 10 14.7 mm² 3 x 4.9
  • Micropower Operation: 600 µA at 5 V VDD
  • Power-On Reset to Zero
  • +2.7 V to +5.5 V Analog Power Supply
  • 12-Bit Monotonic
  • I2C™ Interface Up to 3.4 Mbps
  • Data Transmit Capability
  • On-Chip Output Buffer Amplifier, Rail-to-Rail Operation
  • Double-Buffered Input Register
  • Address Support for up to Four DAC7574s
  • Synchronous Update Support for up to 16 Channels
  • Operation From –40°C to 105°C
  • Small 10 Lead MSOP Package
  • APPLICATIONS
    • Process Control
    • Data Acquisition Systems
    • Closed-Loop Servo Control
    • PC Peripherals
    • Portable Instrumentation

I2C is a trademark of Philips Corporation.

  • Micropower Operation: 600 µA at 5 V VDD
  • Power-On Reset to Zero
  • +2.7 V to +5.5 V Analog Power Supply
  • 12-Bit Monotonic
  • I2C™ Interface Up to 3.4 Mbps
  • Data Transmit Capability
  • On-Chip Output Buffer Amplifier, Rail-to-Rail Operation
  • Double-Buffered Input Register
  • Address Support for up to Four DAC7574s
  • Synchronous Update Support for up to 16 Channels
  • Operation From –40°C to 105°C
  • Small 10 Lead MSOP Package
  • APPLICATIONS
    • Process Control
    • Data Acquisition Systems
    • Closed-Loop Servo Control
    • PC Peripherals
    • Portable Instrumentation

I2C is a trademark of Philips Corporation.

The DAC7574 is a low-power, quad channel, 12-bit buffered voltage output DAC. Its on-chip precision output amplifier allows rail-to-rail output swing to be achieved. The DAC7574 utilizes an I2C compatible two wire serial interface supporting high-speed interface mode with address support of up to four DAC7574s for a total of 16 channels on the bus.

The DAC7574 uses VDD and GND to set the output range of the DAC. The DAC7574 incorporates a power-on-reset circuit that ensures that the DAC output powers up at zero volts and remains there until a valid write takes place to the device. The DAC7574 contains a power-down feature, accessed via the internal control register, that reduces the current consumption of the device to 200 nA at 5 V.

The low power consumption of this part in normal operation makes it ideally suited to portable battery operated equipment. The power consumption is less than 3mW at VDD = 5 V reducing to 1 µW in power-down mode.

The DAC7574 is available in a 10-lead MSOP package.

The DAC7574 is a low-power, quad channel, 12-bit buffered voltage output DAC. Its on-chip precision output amplifier allows rail-to-rail output swing to be achieved. The DAC7574 utilizes an I2C compatible two wire serial interface supporting high-speed interface mode with address support of up to four DAC7574s for a total of 16 channels on the bus.

The DAC7574 uses VDD and GND to set the output range of the DAC. The DAC7574 incorporates a power-on-reset circuit that ensures that the DAC output powers up at zero volts and remains there until a valid write takes place to the device. The DAC7574 contains a power-down feature, accessed via the internal control register, that reduces the current consumption of the device to 200 nA at 5 V.

The low power consumption of this part in normal operation makes it ideally suited to portable battery operated equipment. The power consumption is less than 3mW at VDD = 5 V reducing to 1 µW in power-down mode.

The DAC7574 is available in a 10-lead MSOP package.

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類型 標題 日期
* Data sheet Quad 12-Bit Low Power, Voltage Output, I2C Interface Digital-to-Analog Converter datasheet 2002年 11月 7日
Application note A Basic Guide to I2C PDF | HTML 2022年 11月 8日
User guide DAC7571/4, DA6571/4, DAC5571/4, DAC8571 EVM (Rev. A) 2004年 2月 5日

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開發板

DAC7574EVM — DAC7574 評估模組

This EVM features one of the following digital-to-analog converter (DACs); the DAC7574, DAC7571, DAC6564, DAC6571, DAC5574, DAC5571 and DAC8571. The board provides a quick and easy way to evaluate the functionality and performance of these high-resolution I2C-input DACs. Although the EVM supports (...)

使用指南: PDF
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DXP DXP EVM GUI

DAC Exerciser Program (DXP)is a software tool from Texas Instruments for evaluating DACs without the requirements of expensive pattern generators or writing complex software. When used with a Texas Instruments DAC EVM and a modular motherboard, it allows for simple and easy digital signal (...)

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產品
精密 DAC (≤10 MSPS)
DAC1220 20 位元 Delta-Sigma 低功耗數位轉類比轉換器 DAC5311 採用 SC70 封裝的 8 位元、單通道、80uA、1.8V-5.5V DAC DAC60004 具 1LSB INL/DNL 的超小型真實 12 位元四電壓輸出 DAC DAC6311 採用 SC70 封裝的 10 位元、單通道、80uA、2.0V-5.5V DAC DAC70004 具有 1LSB INL/DNL 的超小型、真實 14 位元四路電壓輸出 DAC DAC7311 採用 6 接腳 SC70 封裝且適用電池供電應用的 12 位元單通道超低功耗 DAC DAC7554 低功耗、低突波、12 位元 DAC DAC7558 12 位元、八路、超低突波干擾、電壓輸出數位轉類比轉換器 DAC7562 具 2.5V、4ppm/°C 參考的 12 位元、雙、低功耗、超低突波緩衝電壓輸出 DAC DAC7568 具 2.5V、2ppm/℃ 內部參考的 12 位元、八通道、超低突波、電壓輸出 DAC DAC7573 具有 I2C 數位介面的四路 12 位元 10us 數位轉類比轉換器 DAC7574 具有 I2C 介面的 12 位元四路電壓輸出數位轉類比轉換器 DAC7678 具 2.5V 內部參考的 12 位元、8 通道、超低突波、電壓輸出、2 線介面 DAC DAC7714 四路序列輸入 12 位電壓輸出數位轉類比轉換器 DAC7716 四 12 位元高準確度 +/-16.5V 輸出串聯輸入數位轉類比轉換器 DAC7718 八路、低功耗、12 位元 +/-16.5V 輸出串聯輸入數位轉類比轉換器 DAC7811 具有 0.2us 安定時間的 12 位元單通道序列輸入加乘 DAC DAC80004 具有 1LSB INL/DNL 的超小型、真實 16 位元四路電壓輸出 DAC DAC8164 具 2.5V、2ppm/°C 內部參考和重設為零功能的 14 位元、四通道、超低突波 vout DAC DAC8165 具 2.5V、2ppm/°C 內部參考和重設為中階功能的 14 位元、四通道、超低突波 vout DAC DAC8168 具 2.5V、2ppm/℃ 內部參考的 14 位元、八通道、超低突波、電壓輸出 DAC DAC8218 八、低功耗、14 位元 +/-16.5V 輸出串聯輸入數位轉類比轉換器 DAC8234 四 14 位元高準確度 +/-16.5V 輸出串聯輸入數位轉類比轉換器 DAC8311 採用 SC70 封裝的 14 位元、單通道、80uA、2.0V-5.5V DAC DAC8411 採用 SC70 封裝的 16 位元、單通道、80uA、2.0V-5.5V DAC DAC8534 2.7V 至 5.5V 四通道 16 位元序列輸入 DAC DAC8550 16 位元超低突波電壓輸出 DAC DAC8551 16 位元、超低突波干擾、電壓輸出數位轉類比轉換器 DAC8552 16 位元、雙通道、超低突波干擾、電壓輸出數位轉類比轉換器 DAC8554 16 位元、四通道、超低突波干擾、電壓輸出數位轉類比轉換器 DAC8555 16 位元、四通道、超低突波、電壓輸出數位轉類比轉換器 DAC8560 具 2.5V、2ppm/°C 參考的 16 位元、單通道、低功耗、超低突波、緩衝電壓輸出 DAC DAC8562 具 2.5V、4ppm/°C 參考的 16 位元、雙通道、低功耗、超低突波、緩衝電壓輸出 DAC DAC8564 具有 2.5-V、2-ppm/C 內部參考的 16 位元、四通道、超低突波、Vout DAC DAC8565 具 2.5V、2ppm/C 內部參考和重設爲中幅的 16 位元、四通道、超低突波 vout DAC DAC8568 具 2.5V、2ppm/°C 內部參考的 16 位元、八通道、超低突波、電壓輸出 DAC DAC8571 低功耗軌至軌輸出 16 位元 I2C 輸入 DAC DAC8574 低功耗四路軌至軌輸出 16 位元 I2C 輸入數位類比轉換器 DAC8580 16 位高速低雜訊電壓輸出數位轉類比轉換器 DAC8581 16 位元高速低雜訊電壓輸出數位轉類比轉換器 DAC8718 八路、低功耗、16 位元 +/-16.5V 輸出序列輸入數位轉類比轉換器 DAC8734 16 位元四路高精度 +/-16.5V 輸出數位轉類比轉換器 DAC8801 14 位單通道序列介面乘法數位轉類比轉換器 DAC8803 14 位元四通道序列介面乘法數位轉類比轉換器 DAC8811 具有 0.5us 安定時間的 16 位元單通道序列輸入加乘 DAC DAC8814 16 位元、四路、序列輸入乘以數位轉類比轉換器 DAC8831 16 位元、超低功耗、電壓輸出數位轉類比轉換器 DAC8832 16 位元、超低功耗、電壓輸出數位轉類比轉換器 DAC8871 16 位元單通道串聯介面,+/-18V (高壓雙極) 輸出 DAC DAC8881 單通道 16 位元低雜訊電壓輸出數位轉類比轉換器 DAC9881 18 位元單通道低雜訊電壓輸出 DAC,適用高精度應用
硬體開發
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DAC8411EVM-PDK DAC8411 性能展示套件 DAC8560EVM-PDK DAC8560 性能展示套件 DAC8811EVM-PDK DAC8811 性能展示套件 DAC8832EVM-PDK DAC8832 性能展示套件 DAC9881EVM-PDK DAC9881 性能展示套件
軟體
軟體程式設計工具
DXP DXP DAC 操作器程序
模擬型號

DAC7574 IBIS Model

SBAM068.ZIP (56 KB) - IBIS Model
計算工具

ANALOG-ENGINEER-CALC — 類比工程師計算機

The Analog Engineer’s Calculator is designed to speed up many of the repetitive calculations that analog circuit design engineers use on a regular basis. This PC-based tool provides a graphical interface with a list of various common calculations ranging from setting op-amp gain with feedback (...)
模擬工具

PSPICE-FOR-TI — PSpice® for TI 設計與模擬工具

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
模擬工具

TINA-TI — 基於 SPICE 的類比模擬程式

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
使用指南: PDF
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VSSOP (DGS) 10 檢視選項

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