TSH310 Electrical Characteristics
4/19
I
out
Isink
Short-circuit Output current coming in
the op-amp.
See fig-8 for more details
Output to GND 70 110
mA
T
min.
< T
amb
< T
max.
100
Isource
Output current coming out from the op-
amp.
See fig-11 for more details
Output to GND 60 100
T
min.
< T
amb
< T
max.
85
Noise and distortion
eN
Equivalent Input Noise Voltage
see application note on page 13
F = 100kHz
7.5 nV/Hz
iN
Equivalent Input Noise Current (+)
see application note on page 13
F = 100kHz
13 pA/
Hz
Equivalent Input Noise Current (-)
see application note on page 13
F = 100kHz
6pA/
Hz
SFDR
Spurious Free Dynamic Range
The highest harmonic of the output
spectrum when injecting a filtered sine
wave
V
out
= 2Vp-p, A
V
= +2,
R
L
= 1k
F = 1MHz
F = 10MHz
-87
-55
dBc
dBc
Table 4: Closed-loop gain and feedback components
V
CC
(V)
Gain
R
fb
()
-3dB Bw
(MHz)
0.1dB Bw
(MHz)
±2.5
+10 510 26 4
-10 510 23 4
+2 3k 120 6
-2 1.5k 80 10
+1 3k 210 5
-1 1.3k 120 60
Table 3: Electrical characteristics for V
CC
= ±2.5Volts, T
amb
= 25°C (unless otherwise specified)
Symbol Parameter Test Condition Min. Typ. Max. Unit
Obsolete Product(s) - Obsolete Product(s)
Electrical Characteristics TSH310
5/19
Figure 1: Frequency Response, positive Gain
Figure 2: Gain Flatness, gain=+4
Figure 3: Frequency response vs. capa-load
1M 10M 100M
-10
-8
-6
-4
-2
0
2
4
6
8
10
12
14
16
18
20
22
24
Gain=+1
Gain=+2
Gain=+4
Small Signal
Vcc=5V
Load=1k
Gain=+10
Gain (dB)
Frequency (Hz)
1M 10M 100M
11,5
11,6
11,7
11,8
11,9
12,0
12,1
Gain=+4
Small Signal
Vcc=5V
Load=1k
Gain Flatness (dB)
Frequency (Hz)
1M 10M 100M
-10
-8
-6
-4
-2
0
2
4
6
8
10
+
-
3k
3k
Vin
Vout
Gain=+2, Vcc=5V,
Small Signal
1k
C-Load
R-iso
+
-
3k
3k
Vin
Vout
Gain=+2, Vcc=5V,
Small Signal
1k
C-Load
R-iso
C-Load=10pF
R-iso=0
C-Load=22pF
R-iso=47ohms
C-Load=1pF
R-iso=0
Gain (dB)
Frequency (Hz)
Figure 4: Frequency response, negative gain
Figure 5: Gain flatness, gain=+2
Figure 6: Step response vs. capa-load
1M 10M 100M
-10
-8
-6
-4
-2
0
2
4
6
8
10
12
14
16
18
20
22
24
Gain=-1
Gain=-2
Gain=-4
Small Signal
Vcc=5V
Load=1k
Gain=-10
Gain (dB)
Frequency (Hz)
1M 10M 100M
5,0
5,1
5,2
5,3
5,4
5,5
5,6
5,7
5,8
5,9
6,0
6,1
6,2
Gain=+2
Small Signal
Vcc=5V
Load=1k
Gain Flatness (dB)
Frequency (Hz)
0,0 5,0n 10,0n 15,0n 20,0n 25,0n 30,0n
-1
0
1
2
3
+
-
3k
3k
Vin
Vout
Gain=+2, Vcc=5V,
Small Signal
1k
C-Load
+
-
3k
3k
Vin
Vout
Gain=+2, Vcc=5V,
Small Signal
1k
C-Load
C-Load=1pF, 10pF and 22pF
Output step (Volt)
Time (ns)
Obsolete Product(s) - Obsolete Product(s)
TSH310 Electrical Characteristics
6/19
Figure 7: Slew rate
Figure 8: Isink
Figure 9: Output amplitude vs. load
-10ns -5ns 0s 5ns 10ns 15ns 20ns
0,0
0,5
1,0
1,5
2,0
Gain=+2
Vcc=5V
Load=1k
Output Response (V)
Time (ns)
-2,0 -1,5 -1,0 -0,5 0,0
0
25
50
75
100
125
150
+
_
RG
+2.5V
-2.5V
VOL
without load
V
Isink
Amplifier in open
loop without load
-1V
+
_
RG
+2.5V
-2.5V
VOL
without load
V
Isink
Amplifier in open
loop without load
-1V
Isink (mA)
V (V)
10 100 1k 10k 100k
2,0
2,5
3,0
3,5
4,0
Gain=+2
Vcc=5V
Load=1k
Max. Output Amplitude (Vp-p)
Load (ohms)
Figure 10: Quiescent current vs. Vcc
Figure 11: Isource
Figure 12: Input voltage noise vs. frequency
1,25 1,50 1,75 2,00 2,25 2,50
-400
-200
0
200
400
Gain=+2
Vcc=5V
Inputs to ground, no load
Icc (micro-A)
Icc(+)
Icc(-)
+/-Vcc (V)
0,00,51,01,52,0
-150
-125
-100
-75
-50
-25
0
+
_
RG
+2.5V
-2.5V
VOH
without load
V
Isource
Amplifier in open
loop without load
+1V
+
_
RG
+2.5V
-2.5V
VOH
without load
V
Isource
Amplifier in open
loop without load
+1V
Isource (mA)
V (V)
100 1k 10k 100k 1M 10M 100M
7,0
7,5
8,0
8,5
9,0
9,5
10,0
Gain=32dB
Rg=12ohms
Rfb=510ohms
non-inverting input in short-circuit
Vcc=5V
e
n
(nV/VHz)
Frequency (Hz)
Obsolete Product(s) - Obsolete Product(s)

TSH310IDT

Mfr. #:
Manufacturer:
STMicroelectronics
Description:
Operational Amplifiers - Op Amps Single Lo Pwr Hi-Spd
Lifecycle:
New from this manufacturer.
Delivery:
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Payment:
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