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BD77501G Folha de dados(PDF) 7 Page - Rohm

Nome de Peças BD77501G
Descrição Electrónicos  High Speed Ground Sense Excellent EMI Characteristics CMOS Operational Amplifier
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Fabricante Electrônico  ROHM [Rohm]
Página de início  http://www.rohm.com
Logo ROHM - Rohm

BD77501G Folha de dados(HTML) 7 Page - Rohm

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BD77501G BD77502FVM BD77504FV
© 2019 ROHM Co., Ltd. All rights reserved.
30.Oct.2020 Rev.003
www.rohm.com
TSZ22111 • 15 • 001
TSZ02201-0GFG2G500010-1-2
Electrical Characteristics (Unless otherwise specified VDD = 12 V, VSS = 0 V, Ta = 25 °C)
○BD77501G
(Note 1) Not 100% tested.
(Note 2) Consider the power dissipation of the IC under high temperature environment when selecting the output current value. When the output pin is short-
circuited continuously, the output current may decrease due to the temperature rise by the heat generation of inside the IC.
Parameter
Symbol
Temperature
Range
Limit
Unit
Conditions
Min
Typ
Max
Input Offset Voltage
VIO
25 °C
-
4
27
mV
Absolute value
Input Offset Current
IIO
25 °C
-
0.001
-
nA
Absolute value
Input Bias Current
IB
25 °C
-
0.001
-
nA
Absolute value
Supply Current
IDD
25 °C
-
1.3
3.0
mA
RL = ∞, G = 0 dB
-40 °C to +85 °C
-
-
4.5
Output Voltage High
VOH
25 °C
-
0.06
0.25
V
RL = 10 kΩ,
VOH = VDD-VOUT
-40 °C to +85 °C
-
-
0.3
Output Voltage Low
VOL
25 °C
-
0.07
0.25
V
RL = 10 kΩ
-40 °C to +85 °C
-
-
0.3
Large Signal Voltage Gain
AV
25 °C
60
75
-
dB
-
-40 °C to +85 °C
55
-
-
Common-mode Input Voltage
Range(Note 1)
VICMR
25 °C
0
-
VDD-2.0
V
-
Common-mode Rejection
Ratio
CMRR
25 °C
50
70
-
dB
-
-40 °C to +85 °C
45
-
-
Power Supply Rejection
Ratio
PSRR
25 °C
50
70
-
dB
-
-40 °C to +85 °C
40
-
-
Output Source Current(Note 2)
IOH
25 °C
2
7.5
-
mA
VOUT = VDD-0.4 V
Absolute value
-40 °C to +85 °C
1
-
-
Output Sink Current(Note 2)
IOL
25 °C
3.5
6.0
-
mA
VOUT = VSS+0.4 V
Absolute value
-40 °C to +85 °C
1
-
-
Slew Rate
SR
25 °C
-
10
-
V/μs
CL = 10 pF
Gain Bandwidth Product
GBW
25 °C
-
8
-
MHz
G = 40 dB
Total Harmonic Distortion +
Noise
THD+N
25 °C
-
0.05
-
%
VOUT = 4 VP-P,
LPF = 80 kHz,
f = 1 kHz


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