Texas Instruments TLV5608 TLV5610 TLV5629 8-CHANNEL, 12- 10- 8-BIT, 2.7-V TO 5.5-V LOW POWER DIGITAL-TO-ANALOG CONVERTER WITH POWER DOWN Data Sheet Manual User Guide
Summary
These pin-compatible Digital-to-Analog Converters (DACs) deliver eight synchronized, high-precision analog channels in a single package. Available with 12-bit, 10-bit, or 8-bit resolution, these DACs operate efficiently on single-supply rails (2.7V to 5.5V). The manual provides comprehensive details covering the serial interface protocols, programmable settling times, and low-power features like power-down mode. They are ideally designed for developers in demanding fields such as industrial process control, motion systems, and advanced signal acquisition requiring reliable digital accuracy.
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查询TLV5608IDW供应商
TLV5608
TLV5610
TLV5629
www.ti.com
SLAS268E–MAY 2000–REVISED MARCH
8-CHANNEL, 12-/10-/8-BIT, 2.7-V TO 5.5-V LOW POWER
DIGITAL-TO-ANALOG CONVERTER WITH POWER DOWN
FEATURES APPLICATIONS
Eight Voltage Output DACs in One Package Digital Servo Control Loops•
Digital Offset and Gain Adjustment–
TLV5610 12-Bit
Industrial Process Control–
TLV5608 10-Bit
Machine and Motion Control Devices–
TLV5629 8-Bit
Mass Storage Devices•
Programmable Settling Time vs Power
Consumption DW OR PW PACKAGE
(TOP VIEW)
µs In Fast Mode
µs In Slow Mode
DGND DVDD
Compatible With TMS320 and SPI™ Serial DIN DOUT
Ports SCLK LDAC
FS MODE
Monotonic Over Temperature
PRE REF
Low Power Consumption:
OUTE OUTD
m W In Slow Mode at 3-V OUTF OUTC
m W In Fast Mode at 3-V OUTG OUTB
OUTH OUTA
Reference Input Buffers
AGND AVDD
Power-Down Mode
Buffered, High Impedance Reference Inputs
Data Output for Daisy-Chaining
DESCRIPTION
The TLV5610, TLV5608, and TLV5629 are pin-compatible, eight-channel, 12-/10-/8-bit voltage output DACs
each with flexible serial interface. The serial interface allows glueless interface to TMS320 and SPI, QSPI, and
Microwire serial ports. It is programmed with 16-bit serial string containing control and data bits.
Additional features are power-down mode, an LDAC input for simultaneous update of all eight DAC outputs,
and data output which can be used to cascade multiple devices.
The resistor string output voltage is buffered by rail-to-rail output amplifier with programmable settling time to
allow the designer to optimize speed vs power dissipation. The buffered, high-impedance reference input can be
connected to the supply voltage.
Implemented with CMOS process, the DACs are designed for single-supply operation from 2.7 to 5.5 V. The
devices are available in 20-pin SOIC and TSSOP packages.
AVAILABLE OPTIONS
PACKAGE
SMALL OUTLINE (DW) TSSOP (PW) RESOLUTION
TLV5610IDW TLV5610IPW
-40°C to 85°C TLV5608IDW TLV5608IPW
TLV5629IDW TLV5629IPW
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas
Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
SPI is trademark of Motorola, Inc.
PRODUCTION DATA information is current as of publication date. Copyright 2000–2004, Texas Instruments Incorporated
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.
Page Summary Contents For Texas Instruments TLV5608 TLV5610 TLV5629 8-CHANNEL, 12- 10- 8-BIT, 2.7-V TO 5.5-V LOW POWER DIGITAL-TO-ANALOG CONVERTER WITH POWER DOWN Data Sheet Manual User Guide
Manual Details
| Brand | Texas Instruments |
|---|---|
| Pages | 16 |
| File Size | 254.03 KB |
| Published | June 18, 2026 |
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Frequently Asked Questions
What serial protocols are compatible with this DAC?
The serial interface allows for a glueless connection to TMS320 using SPI, QSPI, and Microwire ports.
How can I update all eight DAC outputs simultaneously?
Use the dedicated LDAC (Load DAC) input; it is designed for synchronous updates of all eight channels.
What voltage range must be used for single-supply operation?
The devices are designed for single-supply operation ranging from 2.7 V to 5.5 V.
What handling precautions should I follow during storage?
To prevent electrostatic damage, the leads should be shorted together or the device placed in conductive foam.