Operation of this device above any of these parameters may cause permanent damage.
Standard tape / reel size = 500 pieces for SOIC-8 package on a 7” reel
Standard tape / reel size = 1000 pieces for DFN package on a 7” reel.
Specifications and information are subject to change without notice.
TriQuint Semiconductor Inc
•
Phone 1-503-615-9000
•
FAX: 503-615-8900
•
e-mail: info-sales@tqs.com
•
Web site: www.TriQuint.com
Page 1 of 12 July 2010
AH212
1 Watt High Linearity, High Gain InGaP HBT Amplifier
S-Parameters (V
CC
= +5 V, I
CC
= 400 mA, T = 25
°C,
calibrated to device leads)
S11
1.0
0.8
Typical Device Data (SOIC-8)
6
0.
S22
2.
0
6
0.
35
30
25
Gain (dB)
20
DB(|S(2,1)|)
AH212
0.
4
Swp Max
3GHz
1.0
0.8
Gain
Swp Max
3GHz
2.
0
0
3.
0
4.
0.2
5.0
0.2
10.0
10.0
15
10
5
0
0.5
1
1.5
Frequency (GHz)
2
2.5
3
S(1,1)
AH212
-4
.0
-5.
0
-4
.0
-5.
0
2
-0.
2
-0.
-10.0
-10.0
.4
-0
.4
-0
.0
-2
-0
.6
Swp Min
0.01GHz
S(2,2)
AH212
-0.8
-0
.6
-0.8
.0
-2
Swp Min
0.01GHz
-1.0
Notes:
The gain for the unmatched device in 50-ohm system is shown as the trace in blue color. For a band specific tuned circuit, it is expected that actual gain
will be higher. The impedance plots are shown from 50 – 3000 MHz, with markers placed at 0.5 – 3.0 GHz in 0.5 GHz increment.
S-Parameters for AH212-S8G (V
CC
= +5 V, I
CC
= 400 mA, T = 25
°C,
unmatched 50 ohm system, calibrated to device leads)
Freq (MHz)
S11 (dB)
S11 (ang)
S21 (dB)
S21 (ang)
S12 (dB)
S12 (ang)
S22 (dB)
S22 (ang)
50
100
200
400
600
800
1000
1200
1400
1600
1800
2000
2200
2400
2600
2800
3000
-9.19
-4.58
-0.92
-2.81
-4.10
-10.08
-14.20
-7.51
-6.58
-6.67
-7.87
-11.42
-18.51
-8.70
-4.43
-2.78
-2.44
-130.35
-125.96
-169.81
160.59
134.99
97.76
-174.16
146.36
101.88
65.24
37.31
19.84
69.85
105.38
93.47
84.89
81.11
17.61
21.86
27.39
26.96
26.35
30.19
31.30
29.49
27.14
25.02
23.35
22.01
20.56
18.40
15.61
12.91
10.51
65.80
69.36
14.98
-55.64
-69.83
-108.08
-167.40
141.86
99.61
63.05
28.87
-5.81
-44.21
-84.80
-122.39
-156.41
167.98
-64.44
-58.42
-55.39
-50.75
-49.90
-46.20
-49.63
-44.88
-45.19
-46.75
-47.96
-44.88
-40.54
-38.49
-38.94
-39.25
-38.27
122.93
-135.96
49.47
78.75
59.30
44.46
25.99
48.15
29.86
33.97
24.08
70.88
52.01
31.21
23.84
-2.01
0.70
-2.71
-2.92
-3.04
-1.13
-0.86
-0.93
-1.05
-1.97
-2.76
-2.82
-2.53
-2.08
-1.45
-1.02
-0.89
-1.16
-1.34
-1.0
-145.39
-160.72
-166.12
-169.23
-179.36
172.84
164.98
159.52
156.95
154.08
150.05
143.86
134.91
123.57
113.66
106.71
101.38
Device S-parameters are available for download from the website at: http://www.wj.com
Application Circuit PC Board Layout
Circuit Board Material: .014” FR4, four layer, 1 oz copper, Microstrip line details: width = .026”, spacing = .026”
The silk screen markers ‘A’, ‘B’, ‘C’, etc. and ‘1’, ‘2’, ‘3’, etc. are used as placemarkers for the input and output tuning
shunt capacitor – C7. The markers and vias are spaced in 0.050” increments.
Specifications and information are subject to change without notice.
TriQuint Semiconductor Inc
•
Phone 1-503-615-9000
•
FAX: 503-615-8900
•
e-mail: info-sales@tqs.com
•
Web site: www.TriQuint.com
Page 2 of 12 July 2010
10.0
-3
.0
0.2
0.4
0.6
0.8
1.0
2.0
3.0
4.0
5.0
0.2
0.4
0.6
0.8
1.0
2.0
3.0
4.0
5.0
0
0
0.
4
0
3.
0
4.
5.0
10.0
-3
.0
AH212
1 Watt High Linearity, High Gain InGaP HBT Amplifier
AH212-S8 1850 MHz Reference Design
Typical RF Performance at 25
°C
Frequency (MHz)
Gain (dB)
Input Return Loss (dB)
Output Return Loss (dB)
Output P1dB (dBm)
Output IP3 (dBm)
(+15 dBm / tone, 1 MHz spacing)
1800
25.4
10.5
15.5
+30.5
+47
5.8
1850
25.1
12
15
+30.5
+47
5.8
+5 V
400 mA
1900
25
12.5
13
+30
+47.5
5.9
Noise Figure (dB)
Device / Supply Voltage
Quiescent Current
2
DNP
2.7 pF
Notes:
1. C7 is placed at silkscreen marker ‘2’ and ‘3’ on tqs evalboard or @ 10 deg at 1.85
GHz away from pins 6 and 7.
2. All passive components are of size 0603 unless otherwise noted.
S21 vs. Frequency
S22 vs. Frequency
28
27
S 2 2 (d B )
+25°C
-40°C
+85°C
0
-5
-10
-15
-20
+25°C
-40°C
+85°C
S 2 1 (d B )
26
25
24
23
22
1800
1820
1840
1860
Frequency (MHz)
S11 vs. Frequency
1880
1900
-25
1800
1820
1840
1860
1880
1900
Frequency (MHz)
OIP3 vs. Frequency
+85°C
O IP 3 (d B m )
55
50
+25° C, +15 dBm/tone
0
+25°C
-40°C
-5
S 1 1 (d B )
-10
-15
-20
-25
1800
45
40
35
1800
1820
1840
1860
1880
1900
1820
Frequency (MHz)
1840
1860
Frequency (MHz)
1880
1900
Specifications and information are subject to change without notice.
TriQuint Semiconductor Inc
•
Phone 1-503-615-9000
•
FAX: 503-615-8900
•
e-mail: info-sales@tqs.com
•
Web site: www.TriQuint.com
Page 3 of 12 July 2010
AH212
Frequency
Gain
Input Return Loss
Output Return Loss
Output P1dB
Output IP3
Channel Power
1 Watt High Linearity, High Gain InGaP HBT Amplifier
1960 MHz Application Circuit (AH212-S8PCB1960)
Typical RF Performance at 25
°C
1960 MHz
24.6 dB
12.5 dB
10 dB
+30 dBm
+48 dBm
23 dBm
5.5 dB
+5 V
400 mA
2
DNP
2.7 pF
(+15 dBm / tone, 1 MHz spacing)
(@-45 dBc ACPR, IS-95, 9 channels fwd)
Noise Figure
Device / Supply Voltage
Quiescent Current
Notes:
1. C7 is placed at silkscreen marker ‘2’ and ‘3’ on tqs evalboard or @14 deg at 1.96 GHz
away from pins 6 and 7.
2. All passive components are of size 0603 unless otherwise noted.
As the title says: I am working with the XScale 270 platform, but after reading the entire serial port driver, I did not find out whether the serial port is implemented using interrupts? Why can't I s...
[list=1][*][font=宋体][size=2]The last two experiments we did, both of which used the P1.0 pin to turn on the light. We can imagine: since P1.0 can turn on the light, can other pins do the same? Take a ...
Finally received theGetting Started Guide card, the font is really bigThe data cable is praised :sexy:After unpacking, there is actually a small boardI don't know what it is used for nowThe interface ...
High efficiency and low standby power consumption are two major challenges in today's switching power supply design. Resonant topology or LLC topology is becoming increasingly popular because it ca...[Details]
Traditional broadcasting systems generally need to be operated manually at a fixed time, and can only realize one-way broadcasting with few functions. Traditional bell ringing equipment has a singl...[Details]
1. Introduction
RFID (radio frequency identification) is a non-contact automatic identification technology that emerged in the 1990s. It uses the characteristics of radio frequency signal prop...[Details]
With the rapid development of science and technology, especially the widespread application of digital technology and various ultra-large-scale integrated circuits, electronic equipment, especially...[Details]
1. Circuit composition
The whole circuit consists of two parts:
1. Power saving control circuit
As shown in the figure below. Including delay circuit and drive circuit.
(1) Delay ci...[Details]
1. Introduction
With the growth of parking demand, the scale of parking lots is becoming larger and larger. A lot of research has been done on intelligent parking lots in China, but most of th...[Details]
Converged processors meet scalability requirements
In current embedded system design, solutions based on MCU, DSP, FPGA and ASIC account for more than 90% of the market share. These solutions ...[Details]
Electronic systems are located at different points on the automotive power bus and therefore often need to operate under very stringent power requirements. These include load dump, cold crank, very lo...[Details]
With the rapid development of urban economy, elevators are increasingly used as a vertical transportation tool. However, elevator fault detection and maintenance, especially the role of elevator remot...[Details]
From the PIC16F946 datasheet, we know that there are two ways to write values to the LCD for display:
1. Directly write the value to LCDDATA1~LCDDATA23
2. Use disconnect t...[Details]
With the development and widespread application of computer technology, especially in the field of industrial control, computer communication is particularly important. Although serial communication g...[Details]
1. With the development of modern industry and the continuous improvement of automation, some medium and large control systems have been greatly facilitated, which not only makes control easier, bu...[Details]
1. Introduction
Testing the temperature of steel billets before rolling is an important measure to ensure the quality of steel. Traditional manual testing is difficult to ensure product qu...[Details]
LED is the abbreviation of light emitting diode, which is an electric light source made of semiconductor technology. The core part of LED is a chip composed of P-type semiconductor and N-type semi...[Details]
The potentiometer is an adjustable electronic component. The main functions of the potentiometer in the circuit are as follows:
1. Used as a voltage divider
A potentiometer is a continuou...[Details]