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DAC7760IPWPR Datasheet(PDF) 51 Page - Texas Instruments

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Part # DAC7760IPWPR
Description  Single-Channel, 12- and 16-Bit Programmable Current Output and Voltage Output Digital-to-Analog Converters for 4-mA to 20-mA Current Loop Applications
PDF  63 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

DAC7760IPWPR Datasheet(HTML) 51 Page - Texas Instruments

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GND
AVSS
AVDD
Digital I/O
Analog Supply Decoupling
Digital Supply
Decoupling
External RSET
(Optional)
BOOST Configuration
(Optional)
51
DAC7760, DAC8760
www.ti.com
SBAS528B – JUNE 2013 – REVISED JUNE 2016
Product Folder Links: DAC7760 DAC8760
Submit Documentation Feedback
Copyright © 2013–2016, Texas Instruments Incorporated
11.2 Layout Example
Figure 100. DACx760 Layout Example
11.3 Thermal Considerations
The DACx760 is designed for a maximum junction temperature of +150°C. In cases where the maximum AVDD
is driving maximum current into ground, this could be exceeded. Use the following equation, from the Absolute
Maximum Ratings, to determine the maximum junction temperature that can be reached:
Power Dissipation = (TJmax – TA)/θJA
where
•
TJmax = 150°C
•
TA is the ambient temperature
•
θJA is the package dependent junction-to-ambient thermal resistance, which is found in Thermal Information (8)
The power dissipation can be calculated by multiplying all the supply voltages with the currents supplied, which is
found in the Power Requirements subsection of Electrical Characteristics.
Consider an example: IOUT is enabled, supplying 24 mA into GND with a 25°C ambient temperature, AVDD of
24 V, AVSS is tied to GND and DVDD is generated internally. From the specifications table, the maximum value
of AIDD = 3 mA when IOUT is enabled and DAC code = 0x0000. Also, the maximum value of DIDD = 1 mA.
Accordingly, the worst case power dissipation is 24 V × (24 mA + 3 mA + 1 mA) = 672 mW. Using the RθJA value
for the TSSOP package, we get TJmax = 25°C + (32.3 × 0.672)°C = 46.7°C. At 85°C ambient temperature, the
corresponding value of TJmax is 106.7°C. Using this type of analysis, the system designer can both specify and
design for the equipment operating conditions. Note that the thermal pad in both packages is recommended to
be connected to a copper plane for enhanced thermal performance.



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