TC75S54F/FU/FE
2014-03-01
1
TOSHIBA CMOS Linear Integrated Circuit Silicon Monolithic
TC75S54F, TC75S54FU, TC75S54FE
Single Operational Amplifier
The TC75S54F/TC75S54FU/TC75S54FE is a CMOS single-
operation amplifier which incorporates a phase compensation
circuit. It is designed for use with a low-voltage, low-current
power supply; this differentiates this device from conventional
general-purpose bipolar op-amps.
Features
Low-voltage operation : V
DD
= ±0.9 to ±3.5 V or 1.8 to 7 V
Low-current power supply : I
DD
(V
DD
= 3 V) = 100 μA (typ.)
Built-in phase-compensated op-amp, obviating the need for
any external device
Ultra-compact package
Absolute Maximum Ratings
(Ta
=
25°C)
Characteristics Symbol Rating Unit
Supply voltage V
DD
, V
SS
7 V
Differential input voltage DV
IN
±7 V
Input voltage V
IN
V
DD
to V
SS
V
TC75S54F/FU 200
Power
dissipation
TC75S54FE
P
D
100
mW
Operating temperature T
opr
40 to 85 °C
Storage temperature T
stg
55 to 125 °C
Note: Using continuously under heavy loads (e.g. the application of high temperature/current/voltage and the
significant change in temperature, etc.) may cause this product to decrease in the reliability significantly even
if the operating conditions (i.e. operating temperature/current/voltage, etc.) are within the absolute maximum
ratings and the operating ranges.
Please design the appropriate reliability upon reviewing the Toshiba Semiconductor Reliability Handbook
(“Handling Precautions”/“Derating Concept and Methods”) and individual reliability data (i.e. reliability test
report and estimated failure rate, etc).
TC75S54F
TC75S54FU
TC75S54FE
Weight
SSOP5-P-0.95 : 0.014 g (typ.)
SSOP5-P-0.65A : 0.006 g (typ.)
SON5-P-0.50 : 0.003 g (typ.)
Start of commercial production
1995-01
TC75S54F/FU/FE
2014-03-01
2
Marking
(top view)
Pin
Connection
(top view)
Electrical Characteristics
DC Characteristics
(V
DD
=
3.0 V, V
SS
=
GND, Ta
=
25°C)
Characteristics Symbol
Test
Circuit
Test Condition Min Typ. Max Unit
Input offset voltage V
IO
1 R
S
= 1 kΩ 2 10 mV
Input offset current I
IO
1 pA
Input bias current I
I
1 pA
Common mode input voltage CMV
IN
2 0.0 2.1 V
Voltage gain (open loop) G
V
60 70 dB
V
OH
3 R
L
100 kΩ 2.9
Maximum output voltage
V
OL
4 R
L
100 kΩ 0.1
V
Common mode input signal
rejection ratio
CMRR 2 V
IN
= 0.0 to 2.1 V 60 70 dB
Supply voltage rejection ratio SVRR 1 V
DD
= 1.8 to 7.0 V 60 70 dB
Supply current I
DD
5 100 200 μA
Source current I
source
6 100 200 μA
Sink current I
sink
7 200 700 μA
DC Characteristics
(V
DD
=
1.8 V, V
SS
=
GND, Ta
=
25°C)
Characteristics Symbol
Test
Circuit
Test Condition Min Typ. Max Unit
Input offset voltage V
IO
1 R
S
= 10 kΩ 2 10 mV
Input offset current I
IO
1 pA
Input bias current I
I
1 pA
Common mode input voltage CMV
IN
2 0.2 0.9 V
Voltage gain (open loop) G
V
60 70 dB
V
OH
3 R
L
100 kΩ 1.7
Maximum output voltage
V
OL
4 R
L
100 kΩ 0.1
V
Supply current I
DD
5 80 160 μA
Source current I
source
6 80 160 μA
Sink current I
sink
7 200 600 μA
V
DD
5
IN ()
4
1 3
V
SS
2
OUT
IN (+)
S E
4 5
3 1 2
TC75S54F/FU/FE
2014-03-01
3
AC Characteristics
(V
DD
=
3.0 V, V
SS
=
GND, Ta
=
25°C)
Characteristics Symbol
Test
Circuit
Test Condition Min Typ. Max Unit
Slew rate SR 0.7 V/μs
Unity gain cross frequency f
T
0.9 MHz
AC Characteristics
(V
DD
=
1.8 V, V
SS
=
GND, Ta
=
25°C)
Characteristics Symbol
Test
Circuit
Test Condition Min Typ. Max Unit
Slew rate SR 0.6 V/μs
Unity gain cross frequency f
T
0.8 MHz
Test Circuit
1. SVRR, V
IO
2. CMRR, CMV
IN
V
OUT
V
DD
R
F
R
F
R
S
R
S
V
DD
/2
V
OUT
V
DD
R
F
R
F
R
S
R
S
V
DD
/2
V
IN
SVRR
For each of the two V
DD
values, measure the V
OUT
value, as
indicated below, and calculate the value of SVRR using the
equation shown.
When V
DD
= 1.8 V, V
DD
= V
DD
1 and V
OUT
= V
OUT
1
When V
DD
= 7.0 V, V
DD
= V
DD
2 and V
OUT
= V
OUT
2
S
R
F
R
S
R
2
V
DD
1
V
DD
2
V
OUT
1
V
OUT
og 20SVRR
+
×
V
IO
Measure the value of V
OUT
and calculate the value of V
IO
using
the following equation.
S
R
F
R
S
R
2
V
DD
V
OUT
V
IO
+
×
=
CMRR
Measure the V
OUT
value, as indicated below, and calculate the
value of the CMRR using the equation shown.
When V
IN
= 0.0 V, V
IN
= V
IN
1 and V
OUT
= V
OUT
1
When V
IN
= 2.1 V, V
IN
= V
IN
2 and V
OUT
= V
OUT
2
S
R
F
R
S
R
2
V
IN
1
V
IN
2
V
OUT
1
V
OUT
og 20CMRR
+
×
CMV
IN
Input range within which the CMRR specification guarantees
V
OUT
value (as varied by the V
IN
value).

OPA4172IDR

Mfr. #:
Manufacturer:
Texas Instruments
Description:
Operational Amplifiers - Op Amps 36-V, Sngl-Supply 10MHz Op Amp
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

Products related to this Datasheet