Standby Mode TSH60,61,62,63,64
4/13
3 Standby Mode
Table 3. V
CC
+
(positive supply voltage), V
CC
-
(negative supply voltage, or ground), T
amb
= 25°C
(unless otherwise specified)
Symbol Parameter Test Conditions Min. Typ. Max. Unit
Vl
ow
Standby Low Level V
CC
-
(V
CC
-
+0.8) V
V
high
Standby High Level (V
CC
-
+2) (V
CC
+
)V
I
CC STBY
Current Consumption per
Operator when STANDBY is
Active
pin 8 (TSH61) to V
CC
-
pin 1,2 or 3 (TSH63) to V
CC
-
20 55 µA
Z
out
Output Impedance (Rout//Cout)
R
out
C
out
10
17
M
pF
T
on
Time from Standby Mode to
Active Mode
2 µs
T
off
Time from Active Mode to
Standby Mode
Down to I
CC STBY
= 10µA10 µs
TSH61 Standby Control pin 8 (STBY
) Operator Status
V
low
Standby
V
high
Active
TSH63 Standby Control Operator Status
pin 1
(STBY
OP1)
pin 2
(STBY OP2)
pin 3
(STBY OP3)
OP1 OP1 OP3
V
low
x x Standby x x
V
high
xxActivexx
xV
low
x x Standby x
xV
high
xActivex
xxV
low
x x Standby
xxV
high
xxActive
TSH60,61,62,63,64 Electrical Characteristics
5/13
4 Electrical Characteristics
Table 4. V
CC
+
= 5V, V
CC
-
= GND, V
ic
= 2.5V, T
amb
= 25
°
C (unless otherwise specified)
Symbol Parameter Test Conditions Min. Typ. Max. Unit
|V
io
| Input Offset Voltage
T
amb
= 25
°
C
T
min.
< T
amb
< T
max.
1.5 10
12
mV
I
ib
Input Bias Current 6 µA
C
in
Input Capacitance 0.3 pF
I
CC
Supply Current per Operator
8.2
mA
CMRR
Common Mode Rejection Ratio
(δVic/δVio)
+0.1 < Vic < 3.9V & Vout = 2.5V 85 dB
PSRR
Power Supply Rejection Ratio
(δVCC/δVout)
Positive & Negative Rail 70 dB
A
vd
Large Signal Voltage Gain
R
L
=150 to 1.5V
V
out
=1V to 4V 78
dB
I
o
Output Short Circuit Current Source
V
id
= +1, V
out
to 1.5V
V
id
= -1, V
out
to 1.5V
|Source|
Sink
45
45
mA
V
oh
High Level Output Voltage
R
L
= 150 to GND
R
L
= 150 to 2.5V
4.36
4.66
V
V
ol
Low Level Output Voltage
R
L
= 150 to GND
R
L
= 150 to 2.5V
48
220
100
400
mV
Bw Bandwidth @-3dB
A
VCL
= +1
R
L
=150 to 2.5V
60 MHz
SR Slew Rate
A
VCL
= +2
R
L
=150 to 2.5V 86
V/µs
φm Phase Margin R
L
=150 to 2.5V 40 °
THD Total Harmonic Distortion
A
VCL
= +2, F = 4MHz
R
L
=150 to 2.5V
V
out
= 1Vpp
V
out
= 2Vpp
-57
-51
dB
G Differential gain
A
VCL
= +2, R
L
= 150 to 2.5V
F = 4.5MHz, V
out
= 2Vpp
0.5 %
Df Differential phase
A
VCL
= +2, R
L
=150 to 2.5V
F = 4.5MHz, V
out
= 2Vpp
0.5 °
Gf Gain Flatness F= DC to 6MHz, A
VCL
= +2 0.2 dB
Vo1/Vo2 Channel Separation F=1MHz to 10MHz 65 dB
Electrical Characteristics TSH60,61,62,63,64
6/13
Table 5. V
CC
+
= 5V, V
CC
-
= -5V, V
ic
= GND, T
amb
= 25
°
C (unless otherwise specified)
Symbol Parameter Test Condition Min. Typ. Max. Unit
|V
io
| Input Offset Voltage
T
min.
< T
amb
< T
max.
1.2 10
12
mV
I
ib
Input Bias Current 6 µA
C
in
Input Capacitance 0.7 pF
I
CC
Supply Current per Operator 9.8 mA
CMRR
Common Mode Rejection Ratio
(δVic/δVio)
-4.9 <Vic < 3.9V & Vout = GND 94 dB
PSRR
Power Supply Rejection Ratio
(δVCC/δVout)
Positive & Negative Rail 70 dB
A
vd
Large Signal Voltage Gain
R
L
=150 to GND
V
out
=- 4 to +4 80
dB
I
o
Output Short Circuit Current Source
V
id
= +1, V
out
to 1.5V
V
id
=- 1, V
out
to 1.5V
|Source|
Sink
45
45
mA
V
oh
High Level Output Voltage R
L
= 150 to GND 4.36 V
V
ol
Low Level Output Voltage R
L
= 150 to GND -4.63 -4.4 mV
Bw Bandwidth @-3dB
A
VCL
= +1
R
L
= 150 to GND
74 MHz
SR Slew Rate
A
VCL
= +2
R
L
=150 to GND 98
V/µs
φmPhase Margin R
L
= 150 to GND 40 °
THD Total Harmonic Distortion
A
VCL
= +2, F = 4MHz
R
L
=150 to GND
V
out
= 1Vpp
V
out
= 2Vpp
-57
-51
dB
G Differential gain
A
VCL
= +2, R
L
= 150 to GND
F = 4.5MHz, V
out
= 2Vpp
0.5 %
Df Differential phase
A
VCL
= +2, R
L
=150 to GND
F = 4.5MHz, V
out
= 2Vpp
0.5 °
Gf Gain Flatness F = DC to 6MHz, A
VCL
= +2 0.2 dB
Vo1/Vo2 Channel Separation F = 1MHz to 10MHz 65 dB

TSH60CDT

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Operational Amplifiers - Op Amps Wide band low power operational
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union