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Ähnliche Funktionalität wie verglichener Baustein
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Produktdetails

Resolution (bps) 8 Number of DAC channels 2 Interface type SPI Output type Buffered Voltage Output voltage range (V) 0 to 5 INL (max) (±LSB) 1 Settling time (µs) 0.8 Reference type Ext, Int Architecture String Rating Catalog Sample/update rate (Msps) 0.278 Power consumption (typ) (mW) 4.2 Operating temperature range (°C) -40 to 85 Product type General-purpose DAC
Resolution (bps) 8 Number of DAC channels 2 Interface type SPI Output type Buffered Voltage Output voltage range (V) 0 to 5 INL (max) (±LSB) 1 Settling time (µs) 0.8 Reference type Ext, Int Architecture String Rating Catalog Sample/update rate (Msps) 0.278 Power consumption (typ) (mW) 4.2 Operating temperature range (°C) -40 to 85 Product type General-purpose DAC
SOIC (D) 8 29.4 mm² 4.9 x 6
  • Dual 8-Bit Voltage Output DAC
  • Programmable Internal Reference
  • Programmable Settling Time:
  • 0.8 us in Fast Mode ,
  • 2.8 us in Slow Mode
  • Compatible With TMS320 and SPITM Serial Ports
  • Differential Nonlinearity <0.1 LSB Typ
  • Monotonic Over Temperature
  • Applications
    • Digital Servo Control Loops
    • Digital Offset and Gain Adjustment
    • Industrial Process Control
    • Machine and Motion Control Devices
    • Mass Storage Devices

SPI and QSPI are trademarks of Motorola, Inc.
Microwire is a trademark of National Semiconductor Corporation.
,

  • Dual 8-Bit Voltage Output DAC
  • Programmable Internal Reference
  • Programmable Settling Time:
  • 0.8 us in Fast Mode ,
  • 2.8 us in Slow Mode
  • Compatible With TMS320 and SPITM Serial Ports
  • Differential Nonlinearity <0.1 LSB Typ
  • Monotonic Over Temperature
  • Applications
    • Digital Servo Control Loops
    • Digital Offset and Gain Adjustment
    • Industrial Process Control
    • Machine and Motion Control Devices
    • Mass Storage Devices

SPI and QSPI are trademarks of Motorola, Inc.
Microwire is a trademark of National Semiconductor Corporation.
,

The TLV5626 is a dual 8-bit voltage output DAC with a flexible 3-wire serial interface.The serial interface allows glueless interface to TMS320 and SPITM QSPITM, and MicrowireTM serial ports. It is programmed with a 16-bit serial string containing 2 control and 8 data bits.

The resistor string output voltage is buffered by a x2 gain rail-to-rail output buffer. The buffer features a ClassAB output stage to improve stability and reduce settling time. The programmable settling time of the DAC allows the designer to optimize speed versus power dissipation. With its on-chip programmable precision voltage reference, the TLV5626 simplifies overall system design.

Because of its ability to source up to 1 mA, the reference can also be used as a system reference. Implemented with a CMOS process, the device is designed for single supply operation from 2.7 V to 5.5 V. It is available in an 8-pin SOIC package to reduce board space in standard commercial and industrial temperature ranges.

The TLV5626 is a dual 8-bit voltage output DAC with a flexible 3-wire serial interface.The serial interface allows glueless interface to TMS320 and SPITM QSPITM, and MicrowireTM serial ports. It is programmed with a 16-bit serial string containing 2 control and 8 data bits.

The resistor string output voltage is buffered by a x2 gain rail-to-rail output buffer. The buffer features a ClassAB output stage to improve stability and reduce settling time. The programmable settling time of the DAC allows the designer to optimize speed versus power dissipation. With its on-chip programmable precision voltage reference, the TLV5626 simplifies overall system design.

Because of its ability to source up to 1 mA, the reference can also be used as a system reference. Implemented with a CMOS process, the device is designed for single supply operation from 2.7 V to 5.5 V. It is available in an 8-pin SOIC package to reduce board space in standard commercial and industrial temperature ranges.

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Typ Titel Datum
* Data sheet 2.7 V To 5.5 V Low Power Dual 8-Bit DAC w/Internal Ref. And Power Down datasheet (Rev. A) 05 Jun 2000

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