MOTOROLA MHW105

Order this document
by MHW105/D
SEMICONDUCTOR TECHNICAL DATA
The RF Line
The MHW105 is designed specifically for portable radio applications. The
MHW105 is capable of 5.0 watts power output, operates from a 7.5 volt supply
and requires only 1.0 mW of RF input power.
• Specified 7.5 Volt Characteristics:
RF Input Power — 1.0 mW (0 dBm)
RF Output Power — 5.0 W
Minimum Gain — 37 dB
Harmonics — – 40 dBc Max @ 2 f0
• 50 Ohm Input/Output Impedances
5.0 W
68 to 88 MHz
VHF POWER
AMPLIFIER
• Guaranteed Stability and Ruggedness
• Epoxy Glass PCB Construction Gives Consistent Performance and Reliability
CASE 301K–02, STYLE 3
MAXIMUM RATINGS (Flange Temperature = 25°C)
Symbol
Value
Unit
Vs3
9.0
Vdc
DC Control & Bias Voltage
Vs1, 2
9.0
Vdc
DC Control Voltage
Vcont
9.0
Vdc
Pin
5.0
mW
Pout
7.0
W
Operating Case Temperature Range
TC
– 30 to +100
°C
Storage Temperature Range
Tstg
– 30 to +100
°C
Rating
DC Supply Voltage
RF Input Power
RF Output Power (Vcont = 9.0 Vdc)
ELECTRICAL CHARACTERISTICS (Vs1 = Vs2 = Vs3 = 7.5 Vdc; Vcont ≤ 7.0 Vdc; TC = +25°C, 50 Ω system, unless otherwise noted)
Symbol
Min
Max
Unit
Frequency Range
BW
68
88
MHz
Power Gain (Pout = 5.0 W) (1)
GP
37
—
dB
Vcont
—
7.0
Vdc
Characteristic
Control Voltage (Pin = 1.0 mW; Pout = 5.0 W) (1)
Efficiency (Pout = 5.0 W) (1)
Harmonics (Pout = 5.0 W) (1)
2 f0, 3 f0
Input VSWR (Pout = 5.0 W) (1)
η
40
—
%
—
—
– 40
dBc
VSWRin
—
2.0:1
—
Load Mismatch (Vs1 = Vs2 = Vs3 = 9.0 Vdc; Load VSWR = 20:1;
Pout = 5.0 W) (1)
ψ
No Degradation in
Power Output
Before and After Test
Stability (Pin = 1.0 to 3.0 mW; Vs1 = Vs2 = Vs3 = 6.0 to 9.0 Vdc;
Pout = 1.0 W to 5.0 W; Load VSWR = 8:1, All Phase Angles) (1)
—
All Spurious Outputs
More Than 60 dB
Below Desired Signal
Quiescent Current (Vs1 = Vs2 = Vs3 = 7.5 Vdc; Vcont = 7.0 Vdc; Pin = 0)
IQ
—
200
mA
NOTE:
1. Adjust Vcont for specified Pout
RF DEVICE DATA
MOTOROLA
Motorola, Inc. 1994
MHW105
1
1
2
4
C2
3
C4
5
C5
6
C8 C9
PIN NUMBERS
C10
C1
L1
L2
L3
L4
Z1
Z2
C3
C5
C7
RF IN
RF OUT
Vs1, Vs2
+ 7.5 V
@ 100 mA
(TYPICAL)
10 dB
ATTEN.
Vs3
+ 7.5 V
@ 1.24 A
(TYPICAL)
Vcont
7 Vdc
@ 230 mA
(TYPICAL)
50 Ω
LOAD
SIGNAL GENERATOR
C1, C2, C3, C4, C6, C7, C8, C9 — 18,000 pF CHIP
C5, C10 — 3.3 µF TANTALUM CHIP
L1, L2, L3, L4 — 0.2 µH
Z1, Z2 — 50 Ω MICROSTRIP LINE
Figure 1. VHF Power Module Test Circuit Diagram
38
45
TC = 100°C, Vcont = 2.73 V
36
40
Po, OUTPUT POWER (dBm)
Po, OUTPUT POWER (dBm)
37
TC = – 30°C, Vcont = 3 V
35
34
TC = 25°C, Vcont = 2.56 V
33
32
Vs1 = Vs2 = Vs3 = 7.5 V
f = 78 MHz
31
30
f = 78 MHz
88 MHz
35
30
68 MHz
25
20
15
Pin = 0 dBm
Vs1 = Vs2 = Vs3 = 7.5 V
TC = 25°C
10
5
0
29
28
–15
–10
–5
0
5
Pin, INPUT POWER (dBm)
10
Figure 2. Output Power versus Input Power
MHW105
2
15
–5
0
1
2
3
4
5
6
Vcont, CONTROL VOLTAGE (VOLTS)
7
8
Figure 3. Output Power versus Control Voltage
MOTOROLA RF DEVICE DATA
45
60
6V
35
f = 78 MHz
30
η , EFFICIENCY (%)
Po, OUTPUT POWER (dBm)
40
70
7.5 V
Vs1 = Vs2 = Vs3 = 9 V
25
20
f = 78 MHz
Pin = 0 dBm
TC = 25°C
15
10
50
30
Vs1 = Vs2 = Vs3 = 7.5 V
Pin = 0 dBm
TC = 25°C
20
5
10
0
–5
0
1
2
3
4
5
6
Vcont, CONTROL VOLTAGE (VOLTS)
7
0
8
0
1
Figure 4. Output Power versus Control Voltage
3
4
5
CONTROL PIN VOLTAGE (V)
6
7
8
7
Vcont , CONTROL VOLTAGE (VOLTS)
1.4
7.5 V
Vs1 = Vs2 = Vs3 = 6 V
1.3
9V
1.2
1.1
1
65
2
Figure 5. Efficiency versus Control Voltage
1.5
VSWR in , INPUT VSWR
68 MHz
88 MHz
40
Pin = 0 dBm
TC = 25°C
70
75
80
85
f, FREQUENCY (MHz)
90
95
Figure 6. Input VSWR versus Frequency
Pin = 0 dBm
Po = 5 W
TC = 25°C
6
Vs1 = Vs2 = Vs3 = 6 V
5
4
9V
3
7.5 V
2
1
0
65
70
75
80
f, FREQUENCY (MHz)
85
90
Figure 7. Control Voltage versus Frequency
Vcont , CONTROL VOLTAGE (VOLTS)
6
Pin = 0 dBm
Pout = 5 W
Vs1 = Vs2 = Vs3 = 7.5 V
5.5
5
TC = 100°C
4.5
4
– 30°C
3.5
3
25°C
2.5
2
65
70
75
80
f, FREQUENCY (MHz)
85
90
Figure 8. Control Voltage versus Frequency
MOTOROLA RF DEVICE DATA
MHW105
3
PACKAGE DIMENSIONS
–Z–
–A–
G
0.13 (0.005)
T A
M
M
NOTES:
1. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2. CONTROLLING DIMENSION: INCH.
3. DIMENSION F TO CENTER OF LEADS.
B
R
–S–
J
1
2
3 4
56
Q 2 PL
K
0.13 (0.005)
T S
M
W
X
D 6 PL
0.25 (0.010) M T Z
V
L
N
H
E
C
–T–
SEATING
PLANE
P
6 PL
0.25 (0.010)
M
F
T
M
DIM
A
B
C
D
E
F
G
H
J
K
L
N
P
Q
R
S
V
W
X
INCHES
MIN
MAX
1.770
1.785
1.370
1.390
0.250
0.265
0.018
0.022
0.085
0.100
0.132 BSC
1.655 BSC
1.490 BSC
0.267
0.278
0.230
0.300
0.990 BSC
1.290 BSC
0.008
0.012
0.120
0.130
0.535
0.555
0.445
0.465
0.890 BSC
0.285 BSC
0.390 BSC
STYLE 3:
PIN 1.
2.
3.
4.
5.
6.
CASE:
MILLIMETERS
MIN
MAX
44.96
45.35
34.80
35.31
6.35
6.73
0.46
0.55
2.16
2.54
3.35 BSC
42.04 BSC
37.85 BSC
6.78
7.06
5.85
7.62
25.15 BSC
32.77 BSC
0.21
0.30
3.05
3.30
13.59
14.09
11.31
11.81
22.61 BSC
7.24 BSC
9.91 BSC
RF INPUT
VS1
VCONT
VS2
VS3
RF OUTPUT
GROUND
CASE 301K–02
ISSUE G
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the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters can and do vary in different
applications. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does
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associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part.
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51 Ting Kok Road, Tai Po, N.T., Hong Kong. 852–26629298
MHW105
4
◊
*MHW105/D*
MHW105/D
MOTOROLA RF DEVICE
DATA