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DAC3482_15 Datasheet, PDF (55/106 Pages) Texas Instruments – DAC3482, Dual-Channel, 16-Bit, 1.25 GSPS Digital-to-Analog Converter (DAC)
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SDIO
SCLK
SLEEP
TXENABLE
100 kΩ
IOVDD
400 Ω
Internal
Digital In
DAC3482
SLAS748F – MARCH 2011 – REVISED AUGUST 2015
IOVDD
100 kΩ
SDENB
RESETB
400 Ω
Internal
Digital In
GND
Figure 84. CMOS Digital Equivalent Input
GND
S0027-03
7.3.17 Reference Operation
The DAC3482 uses a bandgap reference and control amplifier for biasing the full-scale output current. The full-
scale output current is set by applying an external resistor RBIAS to pin BIASJ. The bias current IBIAS through
resistor RBIAS is defined by the on-chip bandgap reference voltage and control amplifier. The default full-scale
output current equals 64 times this bias current and can thus be expressed as:
IOUTFS = 64 x IBIAS = 64 x (VEXTIO / RBIAS ) / 2
(14)
The DAC3482 has a 4-bit coarse gain control coarse_dac(3:0) in the config3 register. Using gain control, the
IOUTFS can be expressed as:
IOUTFS = (coarse_dac + 1)/16 x IBIAS x 64 = (coarse_dac + 1)/16 x (VEXTIO / RBIAS) / 2 x 64
(15)
where VEXTIO is the voltage at terminal EXTIO. The bandgap reference voltage delivers an accurate voltage of
1.2 V. This reference is active when extref_ena = 0b in config27. An external decoupling capacitor CEXT of 0.1 µF
should be connected externally to terminal EXTIO for compensation. The bandgap reference can additionally be
used for external reference operation. In that case, an external buffer with high impedance input should be
applied in order to limit the bandgap load current to a maximum of 100 nA. The internal reference can be
disabled and overridden by an external reference by setting the extref_ena control bit. Capacitor CEXT may hence
be omitted. Terminal EXTIO thus serves as either input or output node.
The full-scale output current can be adjusted from 30 mA down to 10 mA by varying resistor RBIAS, programming
coarse_dac(3:0), or changing the externally applied reference voltage.
NOTE
With internal reference, the minimum Rbias resistor value is 1.28 kΩ. Resistor value below
1.28 kΩ is not recommended since it will program the full-scale current to go above 30 mA
and potentially damages the device.
7.3.18 DAC Transfer Function
The CMOS DACs consist of a segmented array of PMOS current sources, capable of sourcing a full-scale output
current up to 30 mA. Differential current switches direct the current to either one of the complementary output
nodes IOUTP or IOUTN. Complementary output currents enable differential operation, thus canceling out
common mode noise sources (digital feed-through, on-chip and PCB noise), dc offsets, even order distortion
components, and increasing signal output power by a factor of two.
The full-scale output current is set using external resistor RBIAS in combination with an on-chip bandgap voltage
reference source (1.2 V) and control amplifier. Current IBIAS through resistor RBIAS is mirrored internally to provide
a maximum full-scale output current equal to 64 times IBIAS.
The relation between IOUTP and IOUTN can be expressed as:
IOUTFS = IOUTP + IOUTN
(16)
Copyright © 2011–2015, Texas Instruments Incorporated
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