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M52723ASP Просмотр технического описания (PDF) - MITSUBISHI ELECTRIC

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M52723ASP
Mitsubishi
MITSUBISHI ELECTRIC  Mitsubishi
M52723ASP Datasheet PDF : 17 Pages
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MITSUBISHI ICs (Monitor)
M52723ASP
DYNAMIC FOCUS
DD Delay temperature drift
Measure the temperature drift of the delay time. (-20°C to 85°C).
I15 Pin15 input current
Measure the input current to pin15 when the voltage of pin15 is
2.5V.
VHP H parabola amplitude
Measure the amplitude of parabola waveform at pin7 and it is
defined HP50kHz.
FHP1 H para. freq. characteristics1
When the frequency of input signal in pin17 is 24kHz, the amplitude
of parabola waveform at pin7 is defined as HP24kHz.
FHP1=HP50kHz - HP24kHz
FHP2 H para. freq. characteristics2
When the frequency of input signal in pin17 is 120kHz, the
amplitude of parabola waveform at pin7 is defined as HP120KHz.
FHP2=HP50kHz - HP120kHz
VVHP1 H para. VCC. characteristics1
When the supply voltage of pin10, 20 is 11.5V, the amplitude of
parabola waveform at pin7 is defined as HP11.5V.
VVHP1=HP50kHz - HP11.5V
VVHP2 H para. VCC. characteristics2
When the supply voltage of pin10, 20 is 12.5V, the amplitude of
parabola waveform at pin7 is defined as HP12.5V.
VVHP2=HP50kHz - HP12.5V
DHP H para. size. temperature drift
Measure the temperature drift of HP50kHz. (-20°C to 85°C)
GHP1 H para. gain control1
Measure the amplitude of parabola waveform at pin7 and it is
defined as HP6 1.0V.
GHP2 H para. gain control2
The amplitude of parabola waveform at pin7 is defined as HP19 2.5V.
GHP2= HP6 2.0V - HP6 1.0V
1.5
GHP3 H para. gain control3
Measure the amplitude of parabola waveform at pin7 (Limit level).
DLI H para. limit size temperature drift
Measure temperature drift of GHP3. (-20°C to 85°C)
I6 Pin6 input current
Measure the input current to pin6 when voltage of pin6 is 2.5V.
I19 Pin19 input current
Measure the input current to pin19 when voltage of pin19 is 2V.
AVP1 V parabola accuracy1
Measure the output voltage at pin4 and it is defined as VP2 3.5V.
AVP2 V parabola accuracy2
The output voltage at pin4 is defined as VP2 1.9V.
AVP2=VP2 3.5V - VP2 1.9V
AVP3 V parabola accuracy3
The output voltage at pin4 is defined as VP2 2.7V.
AVP3= VP2 3.5V - VP2 2.7V ×100 (%)
VP2 3.5V - VP2 1.9V
SHP1 H para. size. control1
Measure the amplitude of parabola waveform at pin7 and it is
defined as HP19 4.0V.
SHP2 H para. size. control2
The amplitude of parabola waveform at pin7 is defined as HP19 2.0V.
SHP2= HP19 2.0V ×100 (%)
HP19 4.0V
SHP3 H para. size. control3
The amplitude of parabola waveform at pin7 is defined as HP19 0V.
SHP3= HP19 0V ×100 (%)
HP19 4.0V
AVP4 V parabola accuracy4
The output voltage at pin4 is defined as VP2 4.3V.
AVP4= VP2 3.5V - VP2 4.3V ×100 (%)
VP2 3.5V - VP2 1.9V
AVP5 V parabola accuracy5
The output voltage at pin4 is defined as VP2 5.1V.
AVP5= VP2 3.5V - VP2 5.1V ×100 (%)
VP2 3.5V - VP2 1.9V
GVP1 V parabola amplitude1, GVP2 V parabola amplitude2,
GVP3 V parabola amplitude3
Measure the amplitude of parabola waveform at pin4 when the
voltage of pin5 is 0V, 2.5V, and 4V.
When the voltage of pin5 is 4V, the amplitude of parabola waveform
is defined as VP70Hz.
7

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