HA-5002
1.8
1.6
1.4 CAN
1.2
1.0
0.8
0.6
SOIC
0.4
PLCC
CERDIP
PDIP
PDMAX = θ----J---TC----J-+--M---θ-A--C--X---S--–---+--T---θ-A--S----A--
Where: TJMAX = Maximum Junction Temperature of the
Device
TA = Ambient
θJC = Junction to Case Thermal Resistance
θCS = Case to Heat Sink Thermal Resistance
θSA = Heat Sink to Ambient Thermal Resistance
0.2
0.0
25
QUIESCENT POWER DISSIPATION
AT ±15V SUPPLIES
45
65
85
105
TEMPERATURE (oC)
Graph is based on: PDMAX = T----J---M-----θA---J-X--A---–-----T----A-
125
FIGURE 2. MAXIMUM POWER DISSIPATION vs TEMPERATURE
Typical Application
+12V
V1+
V2+
RS
RM
50Ω
50Ω
VIN
V1-
V2-
-12V
RG -58
VOUT
RL 50Ω
VIN
VOUT
FIGURE 3. COAXIAL CABLE DRIVER - 50Ω SYSTEM
Typical Performance Curves
9
6 VS = ±15V, RS = 50Ω
3
GAIN
0
-3
PHASE
-6
-9
-12
-15
-18
1
10
FREQUENCY (MHz)
0o
45o
90o
135o
180o
100
FIGURE 4. GAIN/PHASE vs FREQUENCY (RL = 1kΩ)
9
6
3
0
-3
-6
-9
-12
-15
-18
1
VS = ±15V, RS = 50Ω
GAIN
PHASE
10
FREQUENCY (MHz)
0o
45o
90o
135o
180o
100
FIGURE 5. GAIN/PHASE vs FREQUENCY (RL = 50Ω)
5