TS321I ,LOW POWER SINGLE OPERATIONAL AMPLIFIERELECTRICAL CHARACTERISTICSo+ –VCC = +5V, VCC = Ground, VO = 1.4V, Tamb = +25 C (unless otherwisespe ..
TS321ID ,LOW POWER SINGLE OP-AMPapplications. N.C.V -45CCORDER CODE PackagePart Temperature SOT23 Output V +1 5CCNumber Range M ..
TS321ID ,LOW POWER SINGLE OP-AMPABSOLUTE MAXIMUM RATINGS Symbol Parameter Value UnitVSupply Voltage ±16 to 32 VCCVInput Voltag ..
TS321IDBVR ,Low-Power Single Operational Amplifier 5-SOT-23 -40 to 125Maximum Ratings(1)over operating free-air temperature range (unless otherwise noted)MIN MAX UNITSin ..
TS321IDBVRG4 ,Low-Power Single Operational Amplifier 5-SOT-23 -40 to 125 SLOS489C–DECEMBER 2005–REVISED APRIL 20156 Pin Configuration and FunctionsD Package8-Pin SOIC(Top ..
TS321IDBVT ,Low-Power Single Operational Amplifier 5-SOT-23 -40 to 125Electrical Characteristics....... 512.2 Trademarks..... 127.6 Typical Characteristics. 612.3 Electr ..
U643B ,Lamp load > 1 W, 30 mOhm shuntFeatures Temperature and Supply Voltage Compensated Flashing Frequency Frequency Doubling Indicat ..
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U666BS , GHz prescaler (factor = 256)
U6803B ,Triple-Driver with Thermal Monitoring
U6803B ,Triple-Driver with Thermal Monitoring
U6805B ,Hex-Driver with Thermal Monitoring
TS321AI-TS321I
LOW POWER SINGLE OPERATIONAL AMPLIFIER
LARGE OUTPUT VOLTAGE SWING:to 3.5V min. (@VCC= 5V). LOW SUPPLY CURRENT: 300μA. LOW INPUT BIAS CURRENT: 20nA. LOW INPUT OFFSET VOLTAGE: 2mV max.. WIDE POWER SUPPLY RANGE:SINGLE SUPPLY: +3V TO +30V
DUAL SUPPLIES: ±1.5V TO ±15V. STABLE WITH HIGH CAPACITIVE LOADS
DESCRIPTIONThe TS321is intendedfor cost sensitive applica-
tions where space savingisof great importance.
This bipolar Op-Amp offers the benefitsofa re-
duced component size (SOT23-5 package), with
specifications thatmatch(or better) industrystand-
ard devices (like the popular LM358A, LM324,
etc.). The TS321 hasan inputcommonmode range
(Vicm) that includes ground, therefore canbe em-
ployedin single supply applications.
PIN CONNECTIONS (top view)
ORDER CODES
Part
Number
Temperature
Range
Package SOT
MarkingDLTS321I -40oC, +125oC •• K401
TS321AI •• K402
SO8(Plastic Micropackage)
SOT23-5(Tiny Package)
LOW POWER SINGLE OPERATIONAL AMPLIFIER
TS321December 1998
N.C.
Inverting input
Non-inverting inputCC
Output
VCC+
N.C.
N.C.
SO8 4
Inverting inputNon-invertinginput
OutputCC-
VCC+
SOT23-51/8
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value UnitVcc Supply Voltage ±16 or32 V Input Voltage -0.3to +32 V
Vid Differential Input Voltage +32 V Output Short-circuit Duration- (note1) Infinite
Iin Input Current– (note5) 50 mA
Toper Operating FreeAir Temperature Range -40to +125 oC
Tstg Storage Temperature Range -65to +150 oC
6μA 4μA 100μA Q3Q1
Inve rting
input
Non-inve rting
input Q9
Q10
Q11
Q12
50μA
Q13
OutputSCCCC
GND
SCHEMATIC DIAGRAM
TS3212/8
ELECTRICAL CHARACTERISTICSVCC+
= +5V, VCC–
= Ground, VO
= 1.4V, Tamb
= +25oC (unless otherwise specified)
Symbol Parameter Min. Typ. Max. UnitVio Input Offset Voltage (note3)
Tamb= +25oC
TS321A
Tmin.≤ Tamb≤ Tmax.
TS321A
0.5 4
Iio Input Offset Current
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax.
Iib Input Bias Current (note2)
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax. 150
Avd Large Signal Voltage Gain
(VCC+= +15V,RL =2kΩ,VO= 1.4Vto 11.4V)
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax.
V/mV
SVR Supply Voltage Rejection Ratio (RS≤ 10kΩ)
(VCC+=5Vto 30V)
Tamb= +25oC 65 110
ICC Supply Current,no load
Tamb= +25o CVCC= +5V
VCC= +30V
Tmin.≤ Tamb≤ Tmax.VCC= +5V
VCC= +30V
Vicm Input Common Mode Voltage Range
(VCC= +30V)- (note4)
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax.
VCC -1.5
VCC-2
CMR Common-mode Rejection Ratio (RS≤ 10kΩ)
Tamb= +25o C65 85
Isource Output Current Source (Vid= +1V)
VCC= +15V,Vo= +2V 20 40
Isink Output Sink Current (Vid= -1V)
VCC= +15V,Vo= +2V
VCC= +15V,Vo= +0.2V Short Circuitto Ground VCC= +15V 40 60 mA
TS3213/8
Notes: 1. Short-circuits fromthe outputtoVCC cancause excessive heatingifVCC >15V.The maximum output currentis approximately
40mA independent ofthe magnitudeof VCC. The direction ofthe input currentisoutof theIC. This current isessentially constant, independentofthe stateofthe outputno loading change existsonthe input lines. Vo= 1.4V,Rs =0Ω,5V
The upper endofthe common-mode voltage range isVCC+- 1.5V,but eitheror both inputscango to+32V withoutdamage. This inputcurrent only exists whenthe voltageatanyof theinput leadsis driven negative.Itis duetothe collector-base
junctionofthe input PNP transistor becoming forwardbiased and thereby actingas input diodes clamps. additiontothisdiode action, thereis also NPN parasitic actionon theIC chip.this transistor actioncan causethe output
voltagesofthe Op-ampstogotothe VCCvoltage level(orto groundfora large overdrive)forthe timeduration thanan input driven negative. This isnot destructive and normal outputwillsetup againfor inputvoltage higher than -0.3V.
ELECTRICAL CHARACTERISTICS
VCC+= +5V, VCC–= Ground,VO= 1.4V, Tamb= +25oC (unless otherwise specified)
Symbol Parameter Min. Typ. Max. Unit
VOH High Level Output Voltage
(VCC= +30V)
Tamb= +25o CRL=2kΩ
Tmin.≤ Tamb≤ Tmax.
Tamb= +25o CRL= 10kΩ
Tmin.≤ Tamb≤ Tmax.
(VCC= +5V,RL =2kΩ)
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax.
VOL Low Level Output Voltage (RL =10kΩ)
Tamb= +25oC
Tmin.≤ Tamb≤ Tmax.
515 Slew Rate VCC= 15V,VI=0.5to 3V,RL =2kΩ,= 100pF, Tamb= +25oC, unity gain) 0.4
V/μs
GBP Gain Bandwidth Product VCC= 30V,f= 100kHz,
Tamb= +25oC,Vin =10mV,RL =2kΩ,CL= 100pF 0.8
MHz Phase Margin 60 Degrees
THD Total Harmonic Distortionf= 1kHz,AV= 20dB,RL =2kΩ, =2Vpp,CL= 100pF, Tamb= +25oC, VCC= 30V 0.015 Equivalent Input Noise Voltage= 1kHz,Rs= 100Ω,VCC= 30V 40Hz
TS321
4/8
TYPICAL SINGLE- SUPPLY APPLICATIONS 2VPP
10kΩ
6.2kΩ100kΩ
10kΩCICC
100kΩ
10μF
100kΩ-RV
(as shownA=-10)V COUPLED INVERTING AMPLIFIER 2VPP
10kΩL
6.2kΩB
0.1μFCC
(as shownA=11)V1+R2V
100kΩ
1MΩ
1MΩ R4100kΩ
100kΩ
10μF COUPLED NON-INVERTING AMPLIFIER
10kΩ
1MΩ
1/4
TS324
10kΩ +5V
(V)
(mV)0
AV=1+R2
(As shown =101)AV
NON-INVERTING DC GAINO4321 100kΩ
100kΩ
100kΩ
100kΩ
100kΩ
100kΩ =e1 +e2 -e3 -e4
where(e1 +e2)≥ (e3 +e4) keepeo≥ 0V SUMMING AMPLIFIER
TS321
5/8
ELECTRICAL CHARACTERISTICS
VCC+= +5V, VCC-= 0V, Tamb =25oC (unless otherwise specified)
Symbol Conditions Value Unit
Vio 0mV
Avd RL =2kΩ 100 V/mV
ICC No load,per operator 300 μA
Vicm 0to +3.5 V
VOH RL =2kΩ +3.5 V
VOL RL= 2kΩ 5mV
IOS VO =0V 40 mA
GBP RL =2kΩ, CL= 100pF 0.8 MHz RL =2kΩ, CL= 100pF 0.4 V/μs
∅mRL =2kΩ, CL= 100pF 60 Degrees Standard LinearIcs Macromodels, 1998. CONNECTIONS:1 INVERTING INPUT2 NON-INVERTING INPUT3 OUTPUT4 POSITIVE POWER SUPPLY5 NEGATIVE POWERSUPPLY
.SUBCKT TS32113245 (analog)
**********************************************************
.MODEL MDTHD IS=1E-8 KF=3.104131E-15 CJO=10F INPUT STAGE
CIP25 1.000000E-12
CIN15 1.000000E-12
EIP105251
EIN165151
RIP1011 2.600000E+01
RIN1516 2.600000E+01
RIS1115 2.003862E+02
DIP1112 MDTH 400E-12
DIN1514 MDTH 400E-12
VOFP1213DC0
VOFN1314 DC0
IPOL135 1.000000E-05
CPS 1115 3.783376E-09
DINN 1713 MDTH 400E-12
VIN175 0.000000e+00
DINR1518 MDTH 400E-12
VIP418 2.000000E+00
FCP45 VOFP 3.400000E+01
FCN54 VOFN 3.400000E+01
FIBP25 VOFN 2.000000E-03
FIBN51 VOFP 2.000000E-03 AMPLIFYING STAGE
FIP519 VOFP 3.600000E+02
FIN519 VOFN 3.600000E+02
RG1195 3.652997E+06
RG2194 3.652997E+06195 6.000000E-09
DOPM1922 MDTH 400E-12
DONM2119 MDTH 400E-12
HOPM2228 VOUT 7.500000E+03
VIPM284 1.500000E+02
HONM2127 VOUT 7.500000E+03
VINM527 1.500000E+02
EOUT26231951
VOUT2350
ROUT26320
COUT35 1.000000E-12
DOP1925 MDTH 400E-12
VOP425 2.242230E+00
DON2419 MDTH 400E-12
VON245 7.922301E-01
.ENDS
MACROMODEL
TS321
6/8