Changes to Figure 1..........................................................................1
Changes to Table 1............................................................................3
Changes to Ordering Guide ..........................................................12
10/04—Rev. 0 to Rev. A.
Changes to Features ......................................................................... 1
Changes to Product Highlights ...................................................... 1
Changes to Specifications ................................................................ 2
Changes to Ordering Guide ............................................................ 3
Change to ADG9xx Evaluation Board Section............................. 9
Changes to Ordering Guide .......................................................... 10
8/03—Revision 0: Initial Version
Rev. B | Page 2 of 16
ADG901/ADG902
SPECIFICATIONS
V
DD
= 1.65 V to 2.75 V, GND = 0 V, input power = 0 dBm, all specifications T
MIN
to T
MAX
, unless otherwise specified.
1
Table 1.
Parameter
AC ELECTRICAL CHARACTERISTICS
Operating Frequency
3
−3 dB Frequency
4
Input Power
4
Insertion Loss
Symbol
Conditions
Min
DC
0 V dc bias
0.5 V dc bias
DC to 100 MHz; V
DD
= 2.5 V ± 10%
500 MHz; V
DD
= 2.5 V ± 10%
1000 MHz; V
DD
= 2.5 V ± 10%
100 MHz
500 MHz
1000 MHz
100 MHz
500 MHz
1000 MHz
DC to 100 MHz
500 MHz
1000 MHz
DC to 100 MHz
500 MHz
1000 MHz
50% CTRL to 90% RF
50% CTRL to 10% RF
10% to 90% RF
90% to 10% RF
1000 MHz
900 MHz/901 MHz, 4 dBm
B Version
Typ
2
Max
2.5
4.5
7
16
0.7
0.8
1.25
Unit
GHz
GHz
dBm
dBm
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
dB
ns
ns
ns
ns
dBm
dBm
mV p-p
V
V
V
V
μA
pF
pF
2.75
1
V
μA
S
21
, S
12
Isolation—RF1 to RF2
CP Package
Isolation—RF1 to RF2
RM Package
Return Loss (On Channel)
4
S
21
, S
12
S
21
, S
12
S
11
, S
22
Return Loss (Off Channel)
4
S
11
, S
22
60
43
34
51
37.5
31
20
23
25
18
17
15
On Switching Time
4
Off Switching Time
4
Rise Time
4
Fall Time
4
1 dB Compression
4
Third-Order Intermodulation Intercept
Video Feedthrough
5
DC ELECTRICAL CHARACTERISTICS
Input High Voltage
Input Low Voltage
t
ON
t
OFF
t
RISE
t
FALL
P
−1 dB
IP3
B
28.5
0.4
0.5
0.8
61
45
40
60
47
37
28
29
28
23
21
19
3.6
5.8
3.1
6.0
17
36
2.5
6
9.5
5.5
8.5
V
INH
V
INH
V
INL
V
INL
I
I
C
RF
on
C
CTRL
V
DD
= 2.25 V to 2.75 V
V
DD
= 1.65 V to 1.95 V
V
DD
= 2.25 V to 2.75 V
V
DD
= 1.65 V to 1.95 V
0 ≤ V
IN
≤ 2.75 V
f = 1 MHz
f = 1 MHz
1.7
0.65 V
DD
0.7
0.35
V
DD
±1
Input Leakage Current
CAPACITANCE
4
RF1/RF2, RF Port On Capacitance
CTRL Input Capacitance
POWER REQUIREMENTS
V
DD
Quiescent Power Supply Current
1
2
±0.1
1.2
2.1
1.65
I
DD
Digital inputs = 0 V or V
DD
0.1
Temperature range for B version: −40°C to +85°C.
Typical values are at V
DD
= 2.5 V and 25°C, unless otherwise specified.
3
Point at which insertion loss degrades by 1 dB.
4
Guaranteed by design, not subject to production test.
5
The dc transience at the output of any port of the switch when the control voltage is switched from high to low or low to high in a 50 Ω test setup, measured with 1 ns
rise time pulses and 500 MHz bandwidth.
Rev. B | Page 3 of 16
ADG901/ADG902
ABSOLUTE MAXIMUM RATINGS
T
A
= 25°C, unless otherwise specified.
Table 2.
Parameter
V
DD
to GND
Inputs to GND
Continuous Current
Input Power
Operating Temperature Range
Industrial (B Version)
Storage Temperature Range
Junction Temperature
MSOP Package
θ
JA
Thermal Impedance
LFCSP Package
θ
JA
Thermal Impedance (2-Layer
board)
θ
JA
Thermal Impedance (4-Layer
board)
Lead Temperature, Soldering (10 sec)
IR Reflow, Peak Temperature (<20 sec)
ESD
1
Rating
−0.5 V to +4 V
−0.5 V to V
DD
+ 0.3
V
1
30 mA
18 dBm
−40°C
to +85°C
−65°C
to +150°C
150°C
206°C/W
84°C/W
48°C/W
300°C
235°C
1 kV
Stresses above those listed under Absolute Maximum Ratings
may cause permanent damage to the device. This is a stress
rating only; functional operation of the device at these or any
other conditions above those indicated in the operational
section of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect
device reliability.
RF1/RF2 off port inputs to ground: −0.5 V to V
DD
– 0.5 V
ESD CAUTION
ESD (electrostatic discharge) sensitive device. Electrostatic charges as high as 4000 V readily accumulate on
the human body and test equipment and can discharge without detection. Although this product features
proprietary ESD protection circuitry, permanent damage may occur on devices subjected to high energy
electrostatic discharges. Therefore, proper ESD precautions are recommended to avoid performance
The American Amateur Radio Union wrote this introductory course for amateur radio enthusiasts around the world. It ranks first in Amazon's category sales and is highly recommended. It goes from the ba...
Hello everyone, I am researching the development of PCI driver under WinCE. I have encountered a problem that has not been solved yet. I would like to ask you for advice. My device is PCI (under X86)....
Actually, a long time ago, after I learned about PC-Lint and Misrac from He Zongbin's book 8-bit Machine Development and Programming Specifications, I have always wanted to try to use these classic ch...
[b]Common-Mode Voltage Range (CMVR)[/b] Also known as the input voltage range, CMVR is the range of input voltages allowed at the two inputs before the output will clip or become excessively nonlinear...
introduction
Since the beginning of the 21st century, the world of information has changed rapidly. Maybe a high-tech product will be released today and a better similar product will be releas...[Details]
In
circuit design,
current
measurement
is widely used, and the main fields are divided into three categories: in measurement,
the electric meter
is used to measure the curre...[Details]
1. Introduction
This design was made for participating in an electronic design competition. It effectively solved the problem of the operation and control of an electric car on a seesaw. The s...[Details]
Remote keyless entry (RKE) systems have become popular with users, with more than 80% of new cars in North America and more than 70% in Europe equipped with RKE systems. In addition to the obvious ...[Details]
With the advent of increasingly powerful processors, image sensors, memory, and other semiconductor devices, as well as the algorithms that enable them, computer vision can be implemented in a wide...[Details]
In recent years, the market for mobile/portable devices such as smartphones and laptops has continued to grow rapidly. While these products continue to integrate more new features to enhance the ...[Details]
1. Introduction
Light control circuit plays a vital role in urban street lamps or corridor lighting. With light control circuit, the lights can be automatically turned on and off according to ...[Details]
Vertical cavity surface emitting lasers (VCSELs) are gradually replacing traditional edge emitting lasers, especially in low bandwidth and short-distance communication systems where cost factors ar...[Details]
VP2188 is a color STN LCD module produced by Jingdian Pengyuan. This module is a dot matrix transmissive color STN display screen with a color scale of 65 k colors and white LED backlight. Its core...[Details]
introduction
MEMS is a high-tech that has flourished on the basis of integrated circuit production technology and dedicated micro-electromechanical processing methods. Pressure sensors develop...[Details]
OC faults may be the most frequent and the most frequent of all faults in the inverter. They alarm during the startup process, during the shutdown process, during operation, and even when powered o...[Details]
As people's requirements for safety and comfort in the process of driving cars continue to increase, automotive radars are widely used in the car's adaptive cruise system, collision avoidance syste...[Details]
Preface
In recent years, white light LEDs have gradually replaced incandescent bulbs and fluorescent lamps because they have unparalleled advantages over traditional light sources in terms...[Details]
This article will introduce a design method for a distributed control system used in a tracking car, which can perform distributed control of motor modules, sensor modules, and lighting control mod...[Details]
0 Introduction
With the rapid development of social economy and science and technology, electric locomotives, subways and electric vehicles will be widely used. The power conversion and cont...[Details]