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CLC2000 Datasheet(PDF) 14 Page - Cadeka Microcircuits LLC.

Part # CLC2000
Description  High Output Current Dual Amplifier
PDF  18 Pages
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Manufacturer  CADEKA [Cadeka Microcircuits LLC.]
Direct Link  http://www.cadeka.com
Logo CADEKA - Cadeka Microcircuits LLC.

CLC2000 Datasheet(HTML) 14 Page - Cadeka Microcircuits LLC.

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Data Sheet
©2004-2008 CADEKA Microcircuits LLC
www.cadeka.com
14
These measurements are basic and are relatively easy to
perform with standard lab equipment. For design purposes
however, prior knowledge of actual signal levels and load
impedance is needed to determine the dissipated power.
Here, PD can be found from
PD = PQuiescent + PDynamic - PLoad
Quiescent power can be derived from the specified IS val-
ues along with known supply voltage, VSupply. Load power
can be calculated as above with the desired signal ampli-
tudes using:
(VLOAD)RMS = VPEAK / √2
( ILOAD)RMS = (VLOAD)RMS / Rloadeff
The dynamic power is focused primarily within the output
stage driving the load. This value can be calculated as:
PDYNAMIC = (VS+ - VLOAD)RMS × (ILOAD)RMS
Assuming the load is referenced in the middle of the pow-
er rails or Vsupply/2.
Figure 3 shows the maximum safe power dissipation in
the package vs. the ambient temperature for the 8 Lead
SOIC packages.
0
0.5
1
1.5
2
2.5
-40
-20
0
20
40
60
80
Ambient Temperature (°C)
SOIC-8
Figure 3. Maximum Power Derating
Better thermal ratings can be achieved by maximizing
PC board metallization at the package pins. However, be
careful of stray capacitance on the input pins.
In addition, increased airflow across the package can also
help to reduce the effective ӨJA of the package.
In the event of a short circuit condition, the CLC2000 has
circuitry to limit output drive capability to ±1000mA. This
will only protect against a momentary event. Extended
duration under these conditions will cause junction tem-
peratures to exceed 150°C. Due to internal metallization
constraints, continuous output current should be limited
to ±100mA.
Driving Capacitive Loads
Increased phase delay at the output due to capacitive load-
ing can cause ringing, peaking in the frequency response,
and possible unstable behavior. Use a series resistance,
RS, between the amplifier and the load to help improve
stability and settling performance. Refer to Figure 4.
+
-
Rf
Input
Output
Rg
Rs
CL
RL
Figure 4. Addition of RS for Driving
Capacitive Loads
Table 1 provides the recommended RS for various capaci-
tive loads. The recommended RS values result in <=1dB
peaking in the frequency response. The Frequency Re-
sponse vs. CL plots, on page 7, illustrates the response of
the CLC2000.
CL (pF)
RS (Ω)
-3dB BW (MHz)
10
40
275
20
24.5
250
50
20
175
100
13.5
135
500
6
75
1000
5
45
Table 1: Recommended RS vs. CL
For a given load capacitance, adjust RS to optimize the
tradeoff between settling time and bandwidth. In general,
reducing RS will increase bandwidth at the expense of ad-
ditional overshoot and ringing.



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