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LM828 bảng dữ liệu(PDF) 6 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor. Click here to check the latest version.
tên linh kiện LM828
Giải thích chi tiết về linh kiện  Switched Capacitor Voltage Converter
PDF  8 Pages
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nhà sản xuất  NSC [National Semiconductor (TI)]
Trang chủ  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM828 bảng dữ liệu(HTML) 6 Page - National Semiconductor (TI)

  LM828 Datasheet HTML 1Page - National Semiconductor (TI) LM828 Datasheet HTML 2Page - National Semiconductor (TI) LM828 Datasheet HTML 3Page - National Semiconductor (TI) LM828 Datasheet HTML 4Page - National Semiconductor (TI) LM828 Datasheet HTML 5Page - National Semiconductor (TI) LM828 Datasheet HTML 6Page - National Semiconductor (TI) LM828 Datasheet HTML 7Page - National Semiconductor (TI) LM828 Datasheet HTML 8Page - National Semiconductor (TI)  
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Application Information (Continued)
Low ESR Capacitor Manufacturers (Continued)
Manufacturer
Phone
Capacitor Type
Murata
(800)-831-9172
Ceramic chip capacitors
Taiyo Yuden
(800)-348-2496
Ceramic chip capacitors
Tokin
(408)-432-8020
Ceramic chip capacitors
Other Applications
Paralleling Devices
Any number of LM828s can be paralleled to reduce the out-
put resistance. Each device must have its own pumping ca-
pacitor C
1, while only one output capacitor Cout is needed as
shown in Figure 3. The composite output resistance is:
Cascading Devices
Cascading the LM828s is an easy way to produce a greater
negative voltage (e.g. A two-stage cascade circuit is shown
in Figure 4).
If n is the integer representing the number of devices cas-
caded, the unloaded output voltage V
out is (-nVin). The effec-
tive output resistance is equal to the weighted sum of each
individual device:
R
out = nRout_1 + n/2 Rout_2 +...+Rout_n
This can be seen by first assuming that each device is 100
percent efficient. Since the output voltage is different on
each device the output current is as well. Each cascaded de-
vice sees less current at the output than the previous so the
R
OUT voltage drop is lower in each device added. Note that,
the number of n is practically limited since the increasing of
n significantly reduces the efficiency, and increases the out-
put resistance and output voltage ripple.
DS100137-9
FIGURE 3. Lowering Output Resistance by Paralleling Devices
DS100137-10
FIGURE 4. Increasing Output Voltage by Cascading Devices
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