SGS Thomson Microelectronics TSH22IN, TSH22ID, TSH22 Datasheet

TSH22
HIGH PERFORMANCE
DUALBIPOLAR OPERATIONALAMPLIFIER
June 1998
1
2
3
4
5
6
7
8
-
+
-
+
Inverting input 1
Non-inverting input 1
V
CC
V
CC
Inverting input 2
Non-inverting input2
-
+
PINCONNECTIONS (topview)
N
DIP8
(Plastic Package)
.
HIGHGAIN BANDWIDTH PRODUCT : 25MHz
.
HIGHSLEW RATE : 15V/µµs
.
SINGLEOR DUAL SUPPLYOPERATION: 3V TO30V (±1.5Vto ±15V)
.
LOW VOLTAGE NOISE : 14nV/√√Hz
.
NO PHASE INVERSION
.
ESD TOLERANCE: 2kV
.
LATCH-UP IMMUNITY
.
SPICE MACROMODEL INCLUDED IN THIS SPECIFICATION
D
SO8
(Plastic Micropackage)
ORDER CODES
Part Number Temperature Range
Package ND
TSH22I -40, +125
o
C ••
DESCRIPTION
TheTSH22 is a dual bipolar operational amplifier offering a single supply operation from 3V to 30V with very good performances : medium speed (25MHz),unity gain stability and low noise.
The TSH22isthereforean enhancedreplacement of standard dual operationalamplifiers.
1/11
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value Unit
V
CC
Supply Voltage ±18 or +36 V
V
id
Differential Input Voltage - (note 1) ±36 V
V
i
Input Voltage - (note 1) ±18 V Output Short-Circuit Duration - (note 2) Infinite
T
oper
Operating Free-air Temperature Range -40 to +125
o
C
T
j
Maximum Junction Temperature +150
o
C
T
stg
Storage Temperature -65 to +150
o
C
P
tot
Maximum Power Dissipation -(note 2) 500 mW
Notes : 1. Either or both input voltages must not exceed the magnitude of V
CC
+
or V
CC
-
2. Power dissipation mustbe considered to ensure maximum junction temperature (Tj) is notexceeded
OPERATINGCONDITIONS
Symbol Parameter Value Unit
V
CC
Supply Voltage 3 to 30 V
Non Inve rting
Input
Inverting Inpu t
20
µ
A
250µA
Cc
Output
ESD
ESD
V
cc
+
V
cc
-
20
µA
130
µ
A
130
µ
A
600
µA
SCHEMATIC DIAGRAM (1/2 TSH22)
TSH22
2/11
ELECTRICALCHARACTERISTICS
V
CC
+
= +15V,V
CC
-
=-15V,T
amb
=25°C(unlessotherwisespecified)
Symbol Parameter Min. Typ. Max. Unit
V
io
Input Offset Voltage (Vic= 0V, Vo= 0V)
V
CC
+
= +15V, V
CC
-
= -15V
T
min.
T T
max.
V
CC
+
= +5V, V
CC
-
=0V
2.5
3.5
2.5
mV
V
io
Input Offset Voltage Drift (Vic= 0V, Vo= 0V) 2 µV/oC
I
io
Input Offset Current (Vic= 0V, VO= 0V) 3 65 nA
I
ib
Input Bias Current (Vic= 0V, VO= 0V) 100 650 nA
V
icm
Common Mode Input Voltage Range V
CC
-
to
V
CC
+
-1.8V
V
A
vd
Large Signal Voltage Gain (RL=2kΩ,VO= 0V to +10V)
T
min.
T T
max.
32 20
100 V/mV
±V
opp
Output Voltage Swing (Vid= ±1V)
V
CC
+
= +15V, V
CC
-
= -15V RL=2k V
OH
V
OL
RL= 10k V
OH
V
OL
V
CC
+
= +5V, V
CC
-
=0V RL=2k V
OH
V
OL
13.4
13.4
3.7
13.9
-13.9 14
-14.7
0.15
-13.5
-14.1
0.2
V
I
o
Output Short Circuit Current
(V
id
= ±1V, Vo= 0V) Source
Sink
25 25
37 37
mA
CMR Common Mode Rejection Ratio (V
ic
= -15V to +13.2V) 80 100 dB
SVR Supply Voltage Rejection Ratio
V
CC
+
/V
CC
-
= +15V / -15V to +5V / -5V 90 105
dB
I
CC
Supply Current (VO= 0V, no load, each amplifier)
V
CC
+
= +15V, V
CC
-
= -15V
T
min.
T T
max.
V
CC
+
= +5V, V
CC
-
=0V
2.15 2.75 3
2.75
mA
SR Slew Rate
(V
i
= -10V to +10V,CL= 100pF, RL=2kΩ,AV= +1) 8 15
V/µs
GBP Gain Bandwidth Product (f = 100kHz, R
L
=2kΩ,CL= 100pF) 17 25 MHz
B Unity Gain Bandwidth (Open loop) 5 MHz
m Phase Margin R
L
=2k
R
L
=2kΩ,CL= 100pF
50 40
Degrees
e
n
Equivalent Input Noise Voltage (RS= 100, f = 1kHz) 14 nV/Hz
V
O1/VO2
Channel Separation (f = 20Hz to 20kHz) 120 dB
THD Total Harmonic Distortion
(V
CC
=±15V,f = 1kHz, A
VCL
= 20dB, RL= 600,Vo= 3Vrms) 0.003
%
TSH22
3/11
** StandardLinear Ics Macromodels,1993. CONNECTIONS : * 1 INVERTINGINPUT * 2 NON-INVERTINGINPUT * 3 OUTPUT * 4 POSITIVEPOWERSUPPLY * 5 NEGATIVEPOWERSUPPLY .SUBCKTTSH221 3 2 4 5 (analog) ********************************************************* .MODEL MDTH D IS=1E-8 KF=7.976636E-15 CJO=10F * INPUTSTAGE CIP 2 5 1.200000E-11 CIN 1 5 1.200000E-11 EIP 10 5 2 5 1 EIN 16 5 1 5 1 RIP 10 11 1.083333E+00 RIN 15 16 1.083333E+00 RIS 1115 8.942641E+00 DIP 1112 MDTH 400E-12 DIN 15 14 MDTH400E-12 VOFP12 13 DC 0 VOFN 1314 DC 0 IPOL 13 5 2.400000E-04 CPS 1115 10.5E-09 DINN 17 13 MDTH 400E-12 VIN 17 5 -0.200000e+00 DINR 15 18 MDTH 400E-12 VIP 4 18 1.800000E+00 FCP4 5 VOFP7.750000E+00 FCN 5 4 VOFN 7.750000E+00 FIBP2 5 VOFN 5.000000E-04 FIBN 5 1 VOFP5.000000E-04
* AMPLIFYINGSTAGE FIP 5 19 VOFP 6.708333E+02 FIN 5 19 VOFN 6.708333E+02 GVNEG5 19 5 13 1.395908E-05 GVPOS5 19 4 13 1.395908E-05 RG1 19 5 8.056996E+04 RG2 19 4 8.056996E+04 CC 19 29 1.100000E-08 HZTP30 29VOFP6.545046E+01 HZTN 530 VOFN 6.545046E+01 DOPM19 22 MDTH 400E-12 DONM 21 19 MDTH400E-12 HOPM22 28 VOUT 4.054054E+03 VIPM28 4 1.500000E+02 HONM 21 27 VOUT4.054054E+03 VINM 5 27 1.500000E+02 RPM1 5 80 1E+06 RPM2 4 80 1E+06 GAVPH5 82 1980 6.00E-07 RAVPHGH82 4 3333222 RAVPHGB82 5 3333222 RAVPHDH82 831000000 RAVPHDB82 84 1000000 CAVPHH4 83 0.12243E-12 CAVPHB5 84 0.12243E-12 EOUT26238251 VOUT23 5 0 ROUT 26 3 2.472597E+01 COUT 3 5 1.000000E-12 DOP 19 25 MDTH400E-12 VOP4 25 1.824860E+00 DON 24 19 MDTH 400E-12 VON 24 5 1.824860E+00 .ENDS
MACROMODEL
ELECTRICALCHARACTERISTICS
V
CC
= ±15V, T
amb
=25oC (unlessotherwisespecified)
Symbol Conditions Value Unit
V
id
0mV
A
vd
RL=2k 100 dB
I
CC
No load, per operator 2 mA
V
icm
-15.2 to 13.8 V
V
OH
RL=2k +13.9 V
V
OL
RL=2k -13.9 V
I
sink
VO=0V 40 mA
I
source
VO=0V 40 mA
GBP R
L
=2k
Ω,
CL= 100pF 34 MHz
SR R
L
=2k
Ω,
CL= 100pF 10 V/µs
mR
L
=2k
Ω,
CL= 100pF 36 Degrees
mR
L
=2k
Ω,
CL= 300pF 26 Degrees
TSH22
4/11
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