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MC1495D 데이터 시트보기 (PDF) - ON Semiconductor

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MC1495D Datasheet PDF : 20 Pages
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MC1495
ELECTRICAL CHARACTERISTICS (+V = + 32 V , −V = −15 V, TA = + 25°C, I3 = I13 = 1.0 mA, RX = RY = 15 k, RL = 11 k,
unless otherwise noted.)
Characteristics
Figure Symbol
Min
Typ
Max
Unit
Linearity (Output Error in percent of full scale)
TA = + 25°C
−10 < VX < +10 (VY = ±10 V)
−10 < VY < +10 (VX = ±10 V)
TA = TLow to THigh
−10 < VX < +10 (VY = ±10 V)
−10 < VY < +10 (VX = ±10 V)
Square Mode Error (Accuracy in percent of full scale after
Offset and Scale Factor adjustment)
TA = + 25°C
TA = TLow to THigh
Scale Factor (Adjustable)
K=
2RL
13 RX RY
5
%
ERX
±1.0
±1.0
ERY
± 2.0
± 2.0
ERX
±1.5
± 2.0
ERY
± 3.0
± 4.0
5
ESQ
%
± 0.75
±1.0
K
0.1
Input Resistance (f = 20 Hz)
7
Differential Output Resistance (f = 20 Hz)
8
Input Bias Current
Ibx
=
(I9
+ I12)
2
,
Iby =
(I4 + I8)
2
6
TA = + 25°C
TA = TLow to THigh
Input Offset Current
|I9 − I12|
|I4 − I8|
TA = + 25°C
TA = TLow to THigh
Average Temperature Coefficient of Input Offset Current
TA = TLow to THigh
Output Offset Current
|I14 − I2|
TA = + 25°C
TA = TLow to THigh
Average Temperature Coefficient of Output Offset Current
TA = TLow to THigh
Frequency Response
3.0 dB Bandwidth, RL = 11 k
3.0 dB Bandwidth, RL = 50 (Transconductance Bandwidth)
3° Relative Phase Shift Between VX and VY
1% Absolute Error Due to Input-Output Phase Shift
6
6
6
6
9,10
Common Mode Input Swing
11
(Either Input)
Common Mode Gain
(Either Input)
Common Mode Quiescent
Output Voltage
TA = + 25°C
11
TA = TLow to THigh
12
Differential Output Voltage Swing Capability
9
Power Supply Sensitivity
12
Power Supply Current
DC Power Dissipation
NOTES: 1. THigh = +70°C for MC1495
= +125°C for MC1495B
12
12
TLow = 0°C for MC1495
= − 40°C for MC1495B
RinX
RinY
RO
Ibx, Iby
|Iiox|, |Iioy|
|TClio|
|IOO|
|TCIOO|
BW(3dB)
TBW(3dB)
fφ
fθ
CMV
ACM
VO1
VO2
VO
S+
S
I7
PD
±10.5
− 50
− 40
30
20
300
2.0
2.0
0.4
0.4
2.5
10
20
20
3.0
80
750
30
±12
− 60
− 50
21
21
±14
5.0
10
6.0
135
M
k
µA
8.0
12
µA
1.0
2.0
nA/°C
50
µA
100
nA/°C
MHz
MHz
kHz
kHz
Vdc
dB
Vdc
Vpk
mV/V
7.0
mA
170
mW
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