SINGLEOR DUAL SUPPLYOPERATION:
3V TO 30V (±1.5V to ±15V)
.
LOW VOLTAGENOISE : 14nV/√√Hz
.
NO PHASE INVERSION
.
ESD TOLERANCE: 2kV
.
LATCH-UP IMMUNITY
.
SPICE MACROMODEL INCLUDED IN THIS
SPECIFICATION
TSH24
HIGH PERFORMANCE
N
DIP14
(Plastic Package)
D
SO14
(Plastic Micropackage)
DESCRIPTION
TheTSH24 is a quad bipolar operational amplifier
offering a single supply operation from 3V to 30V
with very good performances : medium speed
(25MHz),unity gain stabilityand low noise.
The TSH24is thereforean enhancedreplacement
of standardquad operationalamplifiers.
PINCONNECTIONS (topview)
Output 1
Inverting Input 1
Non-inverting Input 1
Non-inverting Input 2
Inverting Input 2
Output 2
June 1998
1
2
-
+
3
+
V
4
CC
5
+
-
6
7
ORDER CODES
Part NumberTemperature Range
o
TSH24I-40, +125
Output 4
14
13
-
+
+
-
Inverting Input 4
12
Non-inverting Input 4
-
11
CCV
10
Non-inverting Input 3
9
Inverting Input 3
8
Output 3
C••
Package
ND
1/11
Page 2
TSH24
SCHEMATIC DIAGRAM (1/4 TSH24)
+
V
cc
Non Inverting
Input
Inverting Inp ut
ES D
µ
20
A
250
µ
A
µ
A
20
ESD
130
µ
A
µ
130
A600
Cc
-
V
cc
µ
A
ABSOLUTE MAXIMUM RATINGS
SymbolParameterValueUnit
V
CC
V
id
V
T
oper
T
T
stg
P
tot
Notes : 1. Either or both input voltages must not exceed the magnitude of V
Supply Voltage±18 or +36V
Differential Input Voltage - (note 1)±36V
Input Voltage- (note 1)±18V
i
Output Short-Circuit Duration - (note 2)Infinite
Operating Free-air Temperature Range-40 to +125
Maximum Junction Temperature+150
j
Storage Temperature-65 to +150
Maximum Power Dissipation - (note 2)500mW
+
-
or V
CC
2. Power dissipation mustbe considered to ensure maximum junction temperature (Tj) is notexceeded
CC
Output
o
C
o
C
o
C
OPERATINGCONDITIONS
SymbolParameterValueUnit
V
2/11
CC
Supply Voltage3 to 30V
Page 3
TSH24
ELECTRICALCHARACTERISTICS
+
= +15V,V
V
CC
SymbolParameterMin.Typ.Max.Unit
V
io
∆V
io
I
io
I
ib
V
icm
A
vd
±V
opp
I
o
CMRCommon Mode Rejection Ratio (V
SVRSupply Voltage Rejection Ratio
I
CC
SRSlew Rate
GBPGain Bandwidth Product (f = 100kHz, R
BUnity Gain Bandwidth (Openloop)5MHz
∅mPhase MarginR
e
n
V
O1/VO2
THDTotal Harmonic Distortion
-
=-15V,T
CC
Input Offset Voltage (Vic= 0V, Vo= 0V)
+
= +15V, V
V
CC
≤ T ≤ T
T
min.
+
V
= +5V, V
CC
=25°C(unlessotherwisespecified)
amb
-
= -15V
CC
max.
-
=0V
CC
2.5
3.5
2.5
Input Offset Voltage Drift (Vic= 0V, Vo= 0V, T = -40, +85oC)2µV/oC
Input Offset Current (Vic= 0V, VO= 0V)365nA
Input Bias Current (Vic= 0V, VO= 0V)100650nA
Common Mode Input Voltage RangeV
Large SignalVoltage Gain(RL=2kΩ,VO= 0V to +10V)
≤ T ≤ T
T
min.
Output Voltage Swing (Vid= ±1V)
+
V
CC
max.
= +15V, V
-
= -15VRL=2kΩV
CC
V
RL= 10kΩV
V
CC
+
= +5V, V
-
=0VRL=2kΩV
CC
V
V
OH
OL
OH
OL
OH
OL
32
20
13.4
13.4
3.7
-
to
CC
+
-1.8V
V
CC
100V/mV
13.9
-13.9
-13.5
14
-14.7
0.15
-14.1
0.2
Output Short Circuit Current
= ±1V, Vo= 0V)Source
(V
id
= -15V to +13.2V)80100dB
ic
+
-
/V
V
CC
Supply Current (VO= 0V, no load, each amplifier)
V
CC
T
min.
V
CC
= -10V to +10V, CL= 100pF, RL=2kΩ,AV= +1)815
(V
i
= +15V / -15V to +5V / -5V90105
CC
+
= +15V, V
≤ T ≤ T
+
= +5V, V
max.
CC
CC
-
-
= -15V
=0V
R
Sink
=2kΩ,CL= 100pF)1725MHz
L
=2kΩ
L
=2kΩ,CL= 100pF
L
25
25
37
37
2.152.75
3
2.75
50
40
Degrees
Equivalent Input Noise Voltage (RS= 100Ω, f = 1kHz)14nV/√Hz
Channel Separation (f = 20Hz to 20kHz)120dB
-15.2 to 13.8V
RL=2kΩ+13.9V
RL=2kΩ-13.9V
VO=0V40mA
VO=0V40mA
=2k
Ω,
L
L
L
L
CL= 100pF34MHz
=2k
Ω,
CL= 100pF10V/µs
=2k
Ω,
CL= 100pF36Degrees
=2k
Ω,
CL= 300pF26Degrees
Page 5
APPLICATIONS INFORMATION
TSH24 IN COMPARATOR APPLICATION
TSH24
The TSH24 is a quad high performances operational amplifier featuringspeed of 30MHz and single supplyoperationfrom 3Vto 30V.
Most of operational amplifiers are not suited for
comparator use because of low transition speed,
output signal incompatible with standard logics
level and mainly,phase inversion.
The phaseinversionoccureswhena strongdifferential signal is applied to the device inputs. The
output level is then inverted and shows a wrong
logic state.
Displayedcurves below showthe deviceresponse
in standardcomparatorconfigurationwithoutexternal components.
Transitionspeed : Typicaltransitionspeedundera
single 5V supply voltage is about 2µs from 50mV
overdrive. V
At highdifferentialinputvoltage,the TSH24 keeps
the right output level thanks to its specific input
structures.
The advantageis obvious on the following figures
and can be also an advantagein linear use when
saturationmight occure.
Figure 5 & 6 showthe behaviour in follower stage
with saturation output of TSH24 versus 15MHz
standardoperationalamplifier.
Figure 5 : Behaviourwith TSH24
Figure6 : Saturationbehaviourwith15MHz
standardoperational amplifier
8
(V)
o
(V), V
id
Input & Ouput Voltages, V
6
4
2
0
-2
-4
-6
-8
V
id
V
o
Time (50µs/div)
6/11
Page 7
TSH24
INPUT OFFSET VOLTAGE DRIFT VERSUS
TEMPERATURE
0.4
0.3
0.2
(mV)
io
0.1
0
-0.1
-0.2
Input Offset Voltage, V
-0.3
-0.4
-50 -25 025 50 75 100 125
Temperature, T
amb
(°C)
SUPPLYCURRENT VERSUSSUPPLY
VOLTAGE (ALL OP-AMP)
SINK CURRENTSOURCE CURRENT
50
45
(mA)
40
sink
35
30
25
20
15
10
Output Sink Current,I
5
0
-15-12-9-6-303691215
Applied Output Voltage, V
T
amb
V
cc
Vid=1V
(V)
o
=25°C
= ±
15V
SLEW RATE @ 30V
20
15
(V)
10
o
5
0
-5
-10
Output Voltage, V
-15
-20
Time (0.5µs/div)
T
=25°
amb
Vcc= ±15V
=
+1
A
v
RL=2kΩ
CL= 100pF
SLEWRATE @ 3V
0.8
T
=25°
C
(V)
o
0.6
0.4
0.2
Vcc=
Av= +1
RL=2kΩ
CL= 100pF
0
-0.2
-0.4
Output Voltage, V
-0.6
-0.8
Time (0.2µs/div)
amb
C
+2V/-1V
7/11
Page 8
TSH24
LARGE SIGNAL VOLTAGE GAIN @ NO LOADLARGESIGNALVOLTAGE GAIN @ LOAD
20
15
10
(V)
o
5
0
-5
-10
Output Voltage, V
-15
-20
-0.4
-0.3 -0.2 -0.1 0 0.1 0.2 0.3 0.4
Differential InputVoltage, Vid(mV)
SMALL SIGNAL RESPONSE@ 30VSMALLSIGNALRESPONSE @ 3V
T
=25°C
amb
= ±15V
V
cc
No Load
UNITY GAIN BANDWIDTH @ 30V
8/11
UNITY GAIN BANDWIDTH @ 3V
45
40
35
30
25
20
15
Voltage Gain (dB)
10
5
0
-5
10k100k1M10M
Phase
Frequency, F(Hz)
Gain
T
=25°
amb
Vcc=
+2V/-1V
A
= 100
VCL
=2kΩ
R
L
CL= 100pF
C
0
30
60
90
Phase (degrees)
120
150
180
Page 9
TSH24
CLOSED LOOPBANDWIDTH @ 30V
21
18
15
12
Voltage Gain(dB)
A
=+5
VCL
9
A
=+2
6
VCL
3
A
=+1
0
VCL
-3
-6
-9
100k1M10M
Frequency, F(Hz)
T
=25°C
amb
Vcc= ±15V
A
= 5,2,1
VCL
RL=2kΩ
CL=100pF
CLOSEDLOOPBANDWIDTH @ 3V
21
18
15
12
Voltage Gain(dB)
A
=+5
VCL
9
A
=+2
6
VCL
3
A
=+1
0
VCL
-3
-6
-9
100k1M10M
Frequency, F (Hz)
T
=25°C
amb
Vcc= +2V/-1V
A
= 5,2,1
VCL
RL=2kΩ
CL= 100pF
9/11
Page 10
TSH24
PACKAGE MECHANICALDATA
14 PINS- PLASTICDIP
Dim.
Min.Typ.Max.Min.Typ.Max.
a10.510.020
B1.391.650.0550.065
b0.50.020
b10.250.010
D200.787
E8.50.335
e2.540.100
e315.240.600
F7.10.280
i5.10.201
L3.30.130
Z1.272.540.0500.100
MillimetersInches
10/11
Page 11
PACKAGE MECHANICALDATA
14 PINS- PLASTICMICROPACKAGE(SO)
TSH24
Dim.
Min.Typ.Max.Min.Typ.Max.
MillimetersInches
A1.750.069
a10.10.20.0040.008
a21.60.063
b0.350.460.0140.018
b10.190.250.0070.010
C0.50.020
c145
o
(typ.)
D8.558.750.3360.334
E5.86.20.2280.244
e1.270.050
e37.620.300
F3.84.00.1500.157
G4.65.30.1810.208
L0.51.270.0200.050
M0.680.027
S8
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the
consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from
its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications
mentioned in this publication are subject to change without notice. This publication supersedes and replaces all infor mation
previously supplied.STMicroelectronics productsarenot authorizedfor useas criticalcomponents inlife supportdevices orsystems
without express written approvalof STMicroelectronics.
The ST logo is a trademark of STMicroelectronics
o
(max.)
1998 STMicroelectronics – Printed in Italy – AllRights Reserved
STMicroelectronics GROUP OF COMPANIES
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11/11
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