
Data Sheet
AD5384
Pin No.
Mnemonic
Description
E11, E12
VOUT17,
VOUT19
Buffered Analog Outputs. Each analog output is driven by a rail-to-rail output amplifier operating
at a gain of 2. Each output is capable of driving an output load of 5 k to ground.
Typical output impedance is 0.5 .
F1
REF_GND
Ground Reference Point for the Internal Reference.
F4, G4
DAC_GND1
Each Group of Eight Channels Contains a DAC_GNDx Pin. This is the ground reference point for
the internal 14-bit DAC. Connect these pins to the AGND plane.
F9, G9
SIGNAL_GND3
Analog Ground Reference Points for Each Group of Eight Output Channels. All SIGNAL_GNDx pins are
connected together internally and must be connected to the AGND plane as close as possible to the
F11, F12, G1,
G2, G11
VOUT16,
VOUT18,
VOUT28,
VOUT29,
VOUT15
Buffered Analog Outputs. Each analog output is driven by a rail-to-rail output amplifier operating
at a gain of 2. Each output is capable of driving an output load of 5 k to ground.
Typical output impedance is 0.5 .
G12
AVDD2
Analog Supply Pin. Each group of eight channels has a separate AVDDx pin. Short these pins
internally and decouple them with a 0.1 F ceramic capacitor and a 10 F tantalum capacitor.
Operating range is 4.5 V to 5.5 V.
H1
REF_OUT/
REF_IN
Common REF_OUT/REF_IN pin. The default for this pin is a reference input (REF_IN). When the
internal reference is selected, this pin is the reference output (REF_OUT). If the application requires
an external reference, apply it to this pin. The control register enables/disables the internal reference.
H2
VOUT31
Buffered Analog Output. The analog output is driven by a rail-to-rail output
amplifier operating at a gain of 2. The output is capable of driving an output load of 5 k to
ground. Typical output impedance is 0.5 .
H4, J4
DAC_GND5
Each Group of Eight Channels Contains a DAC_GNDx Pin. This is the ground reference point for
the internal 14-bit DAC. Connect these pins to the AGND plane.
H9, J9
SIGNAL_GND2
Analog Ground Reference Points for Each Group of Eight Output Channels. All SIGNAL_GNDx pins are
connected together internally and must be connected to the AGND plane as close as possible to the
H11, H12
VOUT13,
VOUT14
Buffered Analog Outputs. Each analog output is driven by a rail-to-rail output amplifier operating
at a gain of 2. Each output is capable of driving an output load of 5 k to ground.
Typical output impedance is 0.5 .
J1
AVDD1
Analog Supply Pin. Each group of eight channels has a separate AVDDx pin. Short these pins
internally and decouple them with a 0.1 F ceramic capacitor and a 10 F tantalum capacitor.
Operating range is 4.5 V to 5.5 V.
J2
VOUT30
Buffered Analog Output. The analog output is driven by a rail-to-rail output amplifier operating at a
gain of 2. The output is capable of driving an output load of 5 k to ground.
Typical output impedance is 0.5 .
J5
AGND1
Analog Ground Reference Point. Each group of eight channels contains an AGND pin. Connect
all AGND pins externally to the AGND plane.
J6, J7
DAC_GND2
Each Group of Eight Channels Contains a DAC_GNDx Pin. This is the ground reference point for
the internal 14-bit DAC. Connect these pins to the AGND plane.
J8
AGND2
Analog Ground Reference Point. Each group of eight channels contains an AGND pin. Connect
all AGND pins externally to the AGND plane.
J11, J12, K1,
K2, K12, L1
VOUT12,
VOUT11,
VOUT0,
VOUT1,
VOUT10,
VOUT2
Buffered Analog Outputs. Each analog output is driven by a rail-to-rail output amplifier operating
at a gain of 2. Each output is capable of driving an output load of 5 k to ground.
Typical output impedance is 0.5 .
L3, L4
SIGNAL_GND5
Analog Ground Reference Points for Each Group of Eight Output Channels. All SIGNAL_GNDx pins are
connected together internally and must be connected to the AGND plane as close as possible to the
L5
AGND5
Analog Ground Reference Point. Each group of eight channels contains an AGND pin. Connect
all AGND pins externally to the AGND plane.
Rev. B | Page 13 of 32