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LTC1550IGN 数据表(PDF) 9 Page - Linear Technology

部件名 LTC1550IGN
功能描述  Low Noise, Switched Capacitor Regulated Voltage Inverters
PDF  12 Pages
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制造商  LINER [Linear Technology]
网页  http://www.linear.com
标志 LINER - Linear Technology

LTC1550IGN 数据表(HTML) 9 Page - Linear Technology

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9
LTC1550/LTC1551
APPLICATIONS INFORMATION
noise – 4.1V generator which uses a ferrite bead output
filter to achieve better than 1mVP-P noise and output
ripple. The corresponding spectrum and spot noise plots
for this circuit are shown in the Typical Performance
Characteristics section.
Output Ripple vs Input Bypass Capacitor
The input bypass capacitor (CIN) can also have a fairly
significant impact on the output ripple. CIN provides most
of the LTC1550/LTC1551’s supply current while it is
charging the flying capacitor (C1). Inadequate input bypass
can cause the VCC supply to dip when the charge pump
switches, causing the output linear regulator to momentarily
stop regulating. CIN should be mounted as close to the
LTC1550/LTC1551 as possible and its value should be
significantly larger than C1. Tantalum capacitors with low
ESR generally provide adequate performance. Figure 6
shows the LTC1550/LTC1551 peak-to-peak output ripple
vs CIN, taken using the test circuit in Figure 2 with ILOAD set
at 5mA. COUT is a 10µF in parallel with a 0.1µF ceramic
capacitor.
A 4.7
µF tantalum capacitor at VCC generally provides
adequate output ripple performance for most applica-
tions.
– 4.1V Output GaAs FET Bias Generator
Figure 6. Output Ripple vs Input Bypass Capacitance
INPUT CAPACITANCE (
µF)
0.1
8
7
6
5
4
3
2
1
0
1
10
100
LTC1550/51 • F07
VCC = 6V
TA = 25°C
COUT = 10µF
TYPICAL APPLICATION
1
2
4.5V
≤ VCC ≤ 6.5V
8
7
SENSE
CPOUT
SHDN
VCC
C1+
VOUT
LTC1550
– 4.1V BIAS
GND
C1
COUT
10
µF
1550/51 TA02
CCP
0.1
µF
GaAs
TRANSMITTER
C1
0.1
µF
CIN
4.7
µF
3
4
6
5
CL
0.1
µF
+



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