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DM74LS221 数据表(PDF) 4 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
部件名 DM74LS221
功能描述  Dual Non-Retriggerable One-Shot with Clear and Complementary Outputs
PDF  6 Pages
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制造商  NSC [National Semiconductor (TI)]
网页  http://www.national.com
标志 NSC - National Semiconductor (TI)

DM74LS221 数据表(HTML) 4 Page - National Semiconductor (TI)

  DM74LS221 Datasheet HTML 1Page - National Semiconductor (TI) DM74LS221 Datasheet HTML 2Page - National Semiconductor (TI) DM74LS221 Datasheet HTML 3Page - National Semiconductor (TI) DM74LS221 Datasheet HTML 4Page - National Semiconductor (TI) DM74LS221 Datasheet HTML 5Page - National Semiconductor (TI) DM74LS221 Datasheet HTML 6Page - National Semiconductor (TI)  
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Operating Rules
1 An external resistor (RX) and an external capacitor (CX)
are required for proper operation The value of CX may
vary from 0 to approximately 1000 mF For small time
constants high-grade mica glass polypropylene polycar-
bonate or polystyrene material capacitor may be used
For large time constants use tantalum or special alumi-
num capacitors If timing capacitor has leakages ap-
proaching 100 nA or if stray capacitance from either ter-
minal to ground is greater than 50 pF the timing equations
may not represent the pulse width the device generates
2 When an electrolytic capacitor is used for CX a switching
diode is often required for standard TTL one-shots to pre-
vent high inverse leakage current This switching diode is
not needed for the ’LS221 one-shot and should not be
used
Furthermore if a polarized timing capacitor is used on the
’LS221 the positive side of the capacitor should be con-
nected to the ‘‘CEXT’’ pin (Figure 1 )
TLF6409 – 8
FIGURE 1
3 For CX ll 1000 pF the output pulse width (TW)isde-
fined as follows
TW e KRX CX
where RX is in kX
CX is in pF
TW is in ns
K
Ln2 e 070
4 The multiplicative factor K is plotted as a function of CX
below for design considerations
TLF6409 – 3
FIGURE 2
5 For CX k 1000 pF see Figure 3 for TW vs CX family
curves with RX as a parameter
TLF6409 – 4
FIGURE 3
6 To obtain variable pulse widths by remote trimming the
following circuit is recommended
TLF6409 – 5
Note
‘‘Rremote’’ should be as close to the one-shot as possible
FIGURE 4
7 Output pulse width versus VCC and temperatures Figure
5 depicts the relationship between pulse width variation
versus VCC Figure 6 depicts pulse width variation versus
temperatures
TLF6409 – 6
FIGURE 5
TLF6409 – 7
FIGURE 6
4



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