Precision Op-amps. TP1252 Datasheet

TP1252 Op-amps. Datasheet pdf. Equivalent

TP1252 Datasheet
Recommendation TP1252 Datasheet
Part TP1252
Description Precision Op-amps
Feature TP1252;     Features TP1251/TP1252  /TP1254 36V Single  Supply,  Low  Power,  Precision  Op‐amps Descriptio.
Manufacture 3Peak
Datasheet
Download TP1252 Datasheet




3Peak TP1252
 
 
Features
TP1251/TP1252  /TP1254
36V Single  Supply,  Low  Power,  Precision  Opamps
Description
Low Offset Voltage: 250 μV Maximum
Low Current Consumption:75 μA
High EMIRR: 108dB at 1000MHz
Low Noise: 50 nV/Hz(f= 1kHz)
Wide Supply Range: 2.7V to 36V
High Bandwidth: 1.3 MHz
Low Input Bias Current: 3 pA Typical
Below-Ground (V-) Input Capability to -0.3V
Rail-to-Rail Output Voltage Range
High Output Current: 30 mA
Unit Gain Stable
–40°C to 125°C Operation Range
Robust 3kV – HBM and 2kV – CDM ESD Rating
Applications
Digital Servo Control Loops
Machine and Motion Control Devices
Photodiode Pre-amp
Industrial Process Control
Temperature Measurements
Strain Gage Amplifier
Medical Instrumentation
The TP1251/TP1252/TP1254 are low power precision
EMI Hardened 36V CMOS op-amps featuring EMIRR
of 108dB at 1000MHz. These devices provide very low
quiescent current which are very suitable for low power
or battery power supply system. The rail-to-rail output
swing and input range that includes V– makes the
TP125x ideal choices for interfacing to modern,
single-supply and precision data converters.
The TP125x op-amps offer lower noise, offset voltage,
offset drift over temperature and bias current. In
addition, the devices have better common-mode
rejection and slew rates.
The TP125x family, exhibiting high input impedance
and low noise, is excellent for small signal conditioning
for high impedance sources, such as piezoelectric
transducers. Because of the micro power dissipation
levels, the devices work well in hand held monitoring
and remote sensing applications.
The TP1251 is single channel version available in 8-pin
SOIC and 5-pin SOT23 packages. The TP1252 is dual
channel version available in 8-pin SOIC and MSOP
packages. The TP1254 is quad channel version
available in 14-pin SOIC and TSSOP packages.
3PEAK and the 3PEAK logo are registered trademarks of
3PEAK INCORPORATED. All other trademarks are the property of
their respective owners.
Pin Configuration (Top View)
TP1251
8-Pin SOIC
(-S Suffix)
NC 1
In 2
In 3
Vs 4
8 NC
7 Vs
6 Out
5 NC
TP1252
8-Pin SOIC/MSOP
(-S and -V Suffixes)
Out A 1
In A 2
In A 3
Vs 4
A
B
8 Vs
7 Out B
6 In B
5 In B
TP1251
5-Pin SOT23
(-T Suffix)
Out 1
Vs 2
+In 3
5 Vs
4 -In
TP1254
14-Pin SOIC/TSSOP
(-S and -T Suffixes)
Out A 1
In A 2
In A 3
Vs 4
In B 5
In B 6
Out B 7
A
B
14 Out D
13 In D
D
12 In D
11 Vs
10 In C
C
9 In C
8 Out C
 
Quiescent Current vs. Temperature
120
100
80
60
40
20
0
40
0 40 80
Temperature()
120
 
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Rev. A
1 



3Peak TP1252
TP1251 / TP1252 / TP1254 
 
36V Single Supply, Low Power, Precision Opamps 
Order Information
Model Name
TP1251
TP1252
TP1254
Order Number
TP1251-SR
TP1251-TR
TP1252-SR
TP1252-VR
TP1254-SR
TP1254-TR
Package
8-Pin SOIC
5-Pin SOT23
8-Pin SOIC
8-Pin MSOP
14-Pin SOIC
14-Pin TSSOP
Transport Media, Quantity
Tape and Reel, 4,000
Tape and Reel, 3,000
Tape and Reel, 4,000
Tape and Reel, 3,000
Tape and Reel, 2,500
Tape and Reel, 3,000
Marking
Information
TP1251
125
TP1252
TP1252
TP1254
TP1254
Absolute Maximum Ratings Note 1
Supply Voltage: V+ – VNote 2............................40.0V
Input Voltage............................. V– 0.3 to V+ + 0.3
Input Current: +IN, –IN Note 3.......................... ±20mA
Output Current: OUT.................................... ±30mA
Output Short-Circuit Duration Note 4…......... Indefinite
Current at Supply Pins……………............... ±60mA
Operating Temperature Range........–40°C to 125°C
Maximum Junction Temperature................... 150°C
Storage Temperature Range.......... –65°C to 150°C
Lead Temperature (Soldering, 10 sec) ......... 260°C
Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum
Rating condition for extended periods may affect device reliability and lifetime.
Note 2: The op amp supplies must be established simultaneously, with, or before, the application of any input signals.
Note 3: The inputs are protected by ESD protection diodes to each power supply. If the input extends more than 500mV beyond the power supply, the input
current should be limited to less than 10mA.
Note 4: A heat sink may be required to keep the junction temperature below the absolute maximum. This depends on the power supply voltage and how many
amplifiers are shorted. Thermal resistance varies with the amount of PC board metal connected to the package. The specified values are for short traces
connected to the leads.
ESD, Electrostatic Discharge Protection
Symbol
HBM
CDM
Parameter
Human Body Model ESD
Charged Device Model ESD
Condition
MIL-STD-883H Method 3015.8
JEDEC-EIA/JESD22-C101E
Thermal Resistance
Package Type
5-Pin SOT23
8-Pin SOIC
8-Pin MSOP
14-Pin SOIC
14-Pin TSSOP
θJA
250
158
210
120
180
θJC
81
43
45
36
35
Unit
°C/W
°C/W
°C/W
°C/W
°C/W
Minimum Level
3
2
Unit
kV
kV
2  Rev. A
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3Peak TP1252
        
TP1251/TP1252/ TP1254
36V Single Supply, Lower Power, Precision Opamps
Electrical Characteristics
The specifications are at TA = 27°C. VSUPPLY = ±15V, VCM = VOUT =0V, RL = 10k, CL =100pF.Unless otherwise noted.
SYMBOL
VOS
VOS TC
PARAMETER
Input Offset Voltage
Input Offset Voltage Drift
IB Input Bias Current
IOS
en
CIN
CMRR
VCM
PSRR
AVOL
VOL, VOH
ROUT
RO
ISC
VDD
IQ
PM
GM
GBWP
SR
FPBW
tS
Xtalk
Input Offset Current
Input Voltage Noise Density
Input Capacitance
Common Mode Rejection Ratio
Common-mode Input Voltage
Range
Power Supply Rejection Ratio
Open-Loop Large Signal Gain
Output Swing from Supply Rail
Closed-Loop Output Impedance
Open-Loop Output Impedance
Output Short-Circuit Current
Supply Voltage
Quiescent Current per Amplifier
Phase Margin
Gain Margin
Gain-Bandwidth Product
Slew Rate
Full Power Bandwidth Note 1
Settling Time, 0.1%
Settling Time, 0.01%
Channel Separation
CONDITIONS
VCM = VDD/2
-40°C to 125°C
TA = 27 °C
TA = 85 °C
TA = 125 °C
f = 1kHz
Differential
Common Mode
VCM = -14.6V to 13V
RLOAD = 10k
RLOAD = 100k
G = 1, f =1kHz, IOUT = 0
f = 1kHz, IOUT = 0
Sink or source current
RLOAD = 10k, CLOAD = 100pF
RLOAD = 10k, CLOAD = 100pF
f = 1kHz
AV = 1, VOUT = 0V to 10V, CLOAD = 100pF,
RLOAD = 10k
AV = –1, 10V Step
f = 1kHz, RL = 10k
MIN
-250
103
V-0.3
106
96
2.7
2.6
TYP
±20
0.9
3
250
7.7
0.001
50
4
2.5
130
127
130
10
0.01
125
30
75
60
8
1.3
4.1
210
3.4
3.8
110
MAX
+250
V+-2.0
20
72
36
120
UNITS
μV
μV/°C
pA
pA
nA
pA
nV/Hz
pF
dB
V
dB
dB
mV
mA
V
μA
°
dB
MHz
V/μs
kHz
μs
dB
Note 1: Full power bandwidth is calculated from the slew rate FPBW = SR/π • VP-P
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Rev. A
3 







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