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AD53522JSQ Datasheet(PDF) 11 Page - Analog Devices

Part # AD53522JSQ
Description  High Speed Dual Pin Electronic
PDF  12 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD53522JSQ Datasheet(HTML) 11 Page - Analog Devices

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REV. A
–11–
AD53522
Pin Number
Mnemonic
Description
60
QL2
One of Two Complementary Outputs for the Logic 0 Window Comparator of Channel 2.
61
RLDB2
One of Two Complementary Inputs that Control, in Conjunction with IOD2 and IODB2, the Operating
Mode of the Channel 2 Driver. Refer to Table I for specific conditions.
62
PWRD2
Power-Down Control for Channel 2.
63
GND_ROT
Analog Ground.
64
PWRD1
Power-Down Control for Channel 1.
65
RLDB1
One of Two Complementary Inputs that Control, in Conjunction with IOD1 and IODB1, the Operating
Mode of the Channel 1 Driver.
66
QL1
One of Two Complementary Outputs for the Logic 0 Window Comparator of Channel 1.
67
QLB1
One of Two Complementary Outputs for the Logic 0 Window Comparator of Channel 1.
68
VCCO1
Input Supply Voltage for QH1, QHB1, QL1, and QLB1 Signals and Reference Voltage for DATA1,
DATAB1, IOD1, IODB1, RLD1, and RLDB1.
69
QHB1
One of Two Complementary Outputs for the Logic 1 Window Comparator of Channel 1.
70
QH1
One of Two Complementary Outputs for the Logic 1 Window Comparator of Channel 1.
75
LCOMP1
Analog Input Voltage that Sets the Logic 0 Compare Reference for the Window Comparator of Channel 1.
76
HCOMP1
Analog Input Voltage that Sets the Logic 1 Compare Reference for the Window Comparator of Channel 1.
77
VL1
Analog Input Voltage that Sets the Logic 0 Level of the Driver Output Limit for Channel 1. Determines
the driver output for DATAB1 > DATA1.
78
VTERM1
Analog Input Voltage that Sets the Termination Voltage Level of the Channel 1 Driver when in VTERM Mode.
79
VH1
Analog Input Voltage that Sets the Logic 1 Level of the Driver Output Limit for Channel 1. Determines
the driver output for DATA1 > DATAB1.
80
VCOM1
Analog Input Voltage that Establishes the Commutation Voltage for the Active Load Diode Bridge for Channel 1.
83
DATAB1
One of Two Complementary Inputs that Determine the High and Low State of the Channel 1 Driver.
Driver output is high for DATA1 > DATAB1. Refer to the Driver Truth Table for specific conditions.
84
DATA1
One of Two Complementary Inputs that Determine the High and Low State of the Channel 1 Driver.
Driver output is high for DATA1 > DATAB1. Refer to the Driver Truth Table for specific conditions.
85
IODB1
One of Two Complementary Inputs that Control, in Conjunction with RLD1 and RLDB1, the Operating
Mode of the Channel 1 Driver. Refer to Table I for specific conditions.
86
IOD1
One of Two Complementary Inputs that Control, in Conjunction with RLD1 and RLDB1, the Operating
Mode of the Channel 1 Driver. Refer to Table I for specific conditions.
87
RLD1
One of Two Complementary Inputs that Control, in Conjunction with IOD1 and IODB1, the Operating
Mode of the Channel 1 Driver. Refer to Table I for specific conditions.
91
INHLB1
One of Two Complementary Inputs that Control the Inhibit Mode for the Active Load Bridge of Channel 1.
92
INHL1
One of Two Complementary Inputs that Control the Inhibit Mode for the Active Load Bridge of Channel 1.
93
HQGND
Clean Analog Ground for the Active Load for Channel 1.
94
IOHC1
Analog Input Voltage that Programs the Channel 1 Active Load Sink Current.
95
IOLC1
Analog Input Voltage that Programs the Channel 1 Active Load Source Current.
96
THERM
Temperature Sensor Output Pin. A resistor (10 k
Ω) should be connected between THERM and V
CC.
The approximate die temperature can be determined by measuring the current through the resistor. The
typical scale factor is 1
µA/°K.
97
VCOM_S1
Analog Output Voltage that Represents a Buffered VCOM1 Input.
100
PROT_LO1
Channel 1 Output Voltage Sensing Diode.



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