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DS1100LU-125 数据表(PDF) 5 Page - Dallas Semiconductor

部件名 DS1100LU-125
功能描述  3.3V 5-Tap Economy Timing Element Delay Line
PDF  6 Pages
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制造商  DALLAS [Dallas Semiconductor]
网页  https://www.maximintegrated.com/en.html
标志 DALLAS - Dallas Semiconductor

DS1100LU-125 数据表(HTML) 5 Page - Dallas Semiconductor

  DS1100LU-125 Datasheet HTML 1Page - Dallas Semiconductor DS1100LU-125 Datasheet HTML 2Page - Dallas Semiconductor DS1100LU-125 Datasheet HTML 3Page - Dallas Semiconductor DS1100LU-125 Datasheet HTML 4Page - Dallas Semiconductor DS1100LU-125 Datasheet HTML 5Page - Dallas Semiconductor DS1100LU-125 Datasheet HTML 6Page - Dallas Semiconductor  
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DS1100L
5 of 6
TERMINOLOGY
Period: The time elapsed between the leading edge of the first pulse and the leading edge of the
following pulse.
tWI (Pulse Width): The elapsed time on the pulse between the 1.5V point on the leading edge and the
1.5V point on the trailing edge or the 1.5V point on the trailing edge and the 1.5V point on the leading
edge.
tRISE (Input Rise Time): The elapsed time between the 20% and the 80% point on the leading edge of the
input pulse.
tFALL (Input Fall Time): The elapsed time between the 80% and the 20% point on the trailing edge of the
input pulse.
tPLH (Time Delay, Rising): The elapsed time between the 1.5V point on the leading edge of the input
pulse and the 1.5V point on the leading edge of any tap output pulse.
tPHL (Time Delay, Falling): The elapsed time between the 1.5V point on the trailing edge of the input
pulse and the 1.5V point on the trailing edge of any tap output pulse.
TEST SETUP DESCRIPTION
Figure 3 illustrates the hardware configuration used for measuring the timing parameters on the
DS1100L. The input waveform is produced by a precision pulse generator under software control. Time
delays are measured by a time interval counter (20ps resolution) connected between the input and each
tap. Each tap is selected and connected to the counter by a VHF switch control unit. All measurements
are fully automated, with each instrument controlled by a central computer over an IEEE 488 bus.
TEST CONDITIONS INPUT:
Ambient Temperature:
25°C ±3°C
Supply Voltage (VCC):
3.3V ±0.1V
Input Pulse:
High = 3.0V ± 0.1V
Low = 0.0V ± 0.1V
Source Impedance:
50
W max
Rise and Fall Time:
3.0ns max (measured between 10% and 90%)
Pulse Width:
500ns (1µs for -500 version)
Period:
1µs (2µs for -500 version)
OUTPUT:
Each output is loaded with the equivalent of one 74F04 input gate. Delay is measured at the 1.5V level on
the rising and falling edge.
NOTE:
Above conditions are for test only and do not restrict the operation of the device under other data sheet
conditions.



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