SGS Thomson Microelectronics TS924IP, TS924IN, TS924ID, TS924AIP, TS924AIN Datasheet

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TS924
RAIL TO RAIL HIGH OUTPUT CURRENT
QUAD OPERATIONALAMPLIFIER
March 1999
.
RAILTO RAILINPUTAND OUTPUT
.
LOW NOISE : 9nV/√√Hz
.
.
HIGHOUTPUT CURRENT: 80mA (able to drive 32loads)
.
HIGHSPEED : 4MHz 1.3V/µs
.
OPERATINGFROM 2.7V to 12V
.
LOW INPUT OFFSETVOLTAGE : 900µV max. (TS924A)
.
ESD INTERNALPROTECTION: 2KV
.
LATCH-UP IMMUNITY
.
MACROMODELINCLUDED IN THIS SPECIFICATION
Inverting Input 2
Non-inverting Input 2
Non-inverting Input 1
-
CC
V
1
2
3
4
8
5
6
7
9
10
11
12
13
14
CC
V
+
Output 3
Output 4
Non-inverting Input 4
Inverting Input 4
Non-inverting Input 3
Inverting Input 3
-
+
-
+
-
+
-
+
Output 1
Inverting Input 1
Output 2
PIN CONNECTIONS (top view)
DESCRIPTION
The TS924 is a RAILTO RAILquad BiCMOS operational amplifier optimized and fully specified for 3V and 5V operation. High outputcurrent allows lowload impedancesto be driven. The TS924exhibitsa verylow noise,lowdistortion, lowoffsetandhighoutputcurrentcapabilitymaking this devicean excellent choicefor high quality,low voltage or battery operatedaudio systems. The device is stable for capacitive loads up to 500pF.
APPLICATIONS
.
headphoneamplifier
.
piezoelectricspeakerdriver
.
soundcards
.
MPEGboards, multimediasystems, ...
.
line driver, buffer
.
cordlesstelephonesand portablecommunica­tion equipment
.
instrumentationwith low noiseas key factor
ORDER CODES
Part Number Temperature Range
Package
NDP
TS924I -40,+125
o
C •••
N
DIP14
(Plastic Package)
D
SO14
(Plastic Micropackage)
P
TSSOP14
(Thin Shrink Small Outline Package)
1/11
ABSOLUTEMAXIMUMRATINGS
Symbol Parameter Value Unit
V
CC
Supply Voltage - (note 1) 14 V
V
id
Differential Input Voltage - (note 2) ±1V
V
i
Input Voltage - (note 3) -0.3 to 14 V
T
oper
Operating Free AirTemperature Range -40 to +125
o
C
T
j
Maximum Junction Temperature 150
o
C
R
thja
Thermal Resistance Junction to Ambient 130
o
C/W
Output Short Circuit Duration see note 4
Notes : 1. All voltage values,except differentialvoltage are with respect to network ground terminal.
2. Differential voltages are the non-inverting input terminal with respect to the inverting input terminal.
3. The magnitude of input and output voltages must never exceed V
CC
+
+0.3V.
4. Short-circuits can cause excessive heating. Destructive dissipation can result from simultaneous short-circuit on all amplifiers.
OPERATINGCONDITIONS
Symbol Parameter Value Unit
V
CC
Supply Voltage 2.7to 12 V
V
icm
Common Mode Input Voltage Range V
DD
-
-0.2 to V
CC
+
+0.2 V
TS924
2/11
ELECTRICAL CHARACTERISTICS
V
CC
+
=3V,T
amb
=25oC (unless otherwise specified)
Symbol Parameter Min. Typ. Max. Unit
V
io
InputOffset Voltage TS924
TS924A
T
min.
T
amb
T
max.
TS924 TS924A
3
0.9 5
1.8
mV
DV
io
InputOffset Voltage Drift 2 µV/oC
I
io
InputOffset Current
V
out
= 1.5V 1 30
nA
I
ib
InputBias Current
V
out
= 1.5V 15 100
nA
V
OH
HighLevel Output Voltage RL= 100k
R
L
connected to V
CC/2
RL= 600 R
L
=32
2.90
2.87
2.63
V
V
OL
Low Level Output Voltage RL= 10k
R
L
connected to V
CC/2
RL= 600 R
L
=32 180
50
100
mV
A
vd
LargeSignal Voltage Gain (V
out
= 2Vpk-pk) RL= 10k
R
L
= 600
R
L
=32
200
35 16
V/mV
I
CC
TotalSupply Current
no load, V
out=VCC/2
4.5 7
mA
GBP Gain Bandwidth Product
R
L
= 600 4
MHz
CMR Common Mode Rejection Ratio 60 80 dB
SVR Supply Voltage Rejection Ratio
V
CC
= 2.7 to 3.3V 60 85
dB
I
o
Output Short Circuit Current 50 80 mA
SR Slew Rate 0.7 1.3 V/µs
m PhaseMargin at Unity Gain
R
L
= 600,CL= 100pF 68
Degrees
G
m
Gain Margin
R
L
= 600,CL= 100pF 12
dB
e
n
Equivalent Input Noise Voltage
f = 1kHz
9
nV
Hz
THD Total Harmonic Distorstion
V
out
= 2Vpk-pk, F = 1kHz, AV=1,RL= 600 0.005
%
C
s
ChannelSeparation 120 dB
TS924
3/11
ELECTRICALCHARACTERISTICS
V
CC
+
=5V,T
amb
=25oC (unlessotherwisespecified)
Symbol Parameter Min. Typ. Max. Unit
V
io
Input Offset Voltage TS924
TS924A
T
min.
T
amb
T
max.
TS924 TS924A
3
0.9 5
1.8
mV
DV
io
Input Offset Voltage Drift 2 µV/oC
I
io
Input Offset Current
V
out
= 1.5V 1 30
nA
I
ib
Input Bias Current
V
out
= 1.5V 15 100
nA
V
OH
High Level Output Voltage RL= 100k
R
L
connected to V
CC/2
RL= 600 R
L
=32
4.90
4.85
4.4
V
V
OL
Low Level Output Voltage RL= 10k
R
L
connected to V
CC/2
RL= 600 R
L
=32 300
50
120
mV
A
vd
Large Signal Voltage Gain (V
out
= 2Vpk-pk) RL= 10k
R
L
= 600
R
L
=32
200
40 17
V/mV
I
CC
Total Supply Current
no load, V
out=VCC/2
4.5 7
mA
GBP Gain BandwidthProduct
R
L
= 600 4
MHz
CMR Common Mode Rejection Ratio 60 80 dB
SVR Supply Voltage Rejection Ratio
V
CC
=3Vto5V 60 85
dB
I
o
Output Short Circuit Current 50 80 mA
SR Slew Rate 0.7 1.3 V/µs
m Phase Margin at Unity Gain
R
L
= 600,CL= 100pF 68
Degrees
G
m
Gain Margin
R
L
= 600,CL= 100pF 12
dB
e
n
Equivalent Input Noise Voltage
f = 1kHz
9
nV
Hz
THD Total Harmonic Distortion
V
out
= 2Vpk-pk, F = 1kHz, AV=1,RL= 600 0.005
%
C
s
Channel Separation 120 dB
TS924
4/11
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