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What is iT3010E?

This electronic component, produced by the manufacturer "gigoptix", performs the same function as "Medium gain differential amplifier".


iT3010E Datasheet PDF - gigoptix

Part Number iT3010E
Description Medium gain differential amplifier
Manufacturers gigoptix 
Logo gigoptix Logo 


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iT3010E
10 GHz Medium-Gain Differential Amplifier
Description
The iT3010E is a RoHS-6-compliant packaged differential amplifier designed for use in 10.7
Gb/s and 12.5 Gb/s (OC-192) optical transmitters and receivers as a gain stage with limiting
functionality. It allows single-ended input signals from 350 mVpp up to 900 mVpp, or differential
signals from 250 mVpp to 1800 mVpp to be limited at a constant differential output voltage of
3.8 Vpp. The iT3010E can be used as predriver for OC-192 optical modulator driver amplifiers.
Output voltage control and external offset correction are provided. The amplifier also provides
excellent linear performance when operating at lower output voltage. Both AC and DC input
coupling are allowed. DC-coupled SCFL differential input (input HIGH voltage = 0 V, and input
LOW voltage = -900 mV) are allowed.
Features
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¾ Limiting function with 3.8 Vpp differential output
¾ 3 dB Bandwidth: 10 GHz
¾ Differential gain: 23.5 dB
¾ Standard bias supply: -5 V or -5.2V, +5 V
¾ Power consumption: 855 mW
¾ <1% total harmonic distortion at Pout = 0 dBm
¾ Low group delay
¾ Low jitter
¾ Output voltage control
¾ AC and DC input coupling (SCFL compatible)
¾ AC and DC output coupling
¾ RoHS-6-compliant 4x4 mm QFN (MO-220) package
Absolute
Maximum
Ratings
Sym bol
Vee
Vcc
Vd
Vm
IDCin (+),(-)
Tch
Tstg
Param eters/conditions
Pow er supply voltage
Pow er supply voltage
Applied voltage at data input (differential)
Applied voltage at data input (single ended)
Offset control current
Maximum channel temperature
Storage temperature
M in.
-8
0
-65
M ax.
0
8
3
1.5
5
150
150
Units
V
V
V
V
mA
°C
°C
Recommended
Operating
Conditions
Symbol
Tc
Vee
Vcc
Vcb2
Iee
Icc
V DCi n
Vctrl
Vm
Vd
Vindc
R
Parameters/conditions
Operating temperature range (Tcase)
Negative pow er supply voltage
Positive pow er supply voltage
First internal bias control voltage
Negative supply current
Positive supply current
Offset control voltage
Voltage control pin
Applied peak-peak voltage at data input (single ended)
Applied peak-peak voltage at data input (differential)
DC input voltage (w ith DC-coupled input)
Data bit rate
Min.
0
-5.45
4.75
86
60
-5
-2.7
350
250
-0.5
Typ.
-5
5
0
101
70
Max.
85
-4.75
5.25
116
81
5
0
900
1800
0
12.5
Units
oC
V
V
V
mA
mA
V
V
mV
mV
V
Gb/s
For pricing, delivery, and ordering information, please contact GigOptix at (650) 424-1937,
e-mail: [email protected], or visit our site at www.GigOptix.com.
1

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iT3010E equivalent
iT3010E
10 GHz Medium-Gain Differential Amplifier
Power
Performance
And Harmonic
Distortion
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Pout vs Frequency
15
14
13
12
11
10
9
8
7
6
5
4
P1dB
P3dB
3
2
1
0
2 2.5 3 3.5 4 4.5 5 5.5 6 6.5 7 7.5 8 8.5 9 9.5 10
Freq. (GHz)
0
-6
-12
-18
-24
-30
-36
-42
-48
-54
-60
0
Total Harmonics Distortion vs Frequency
1234567
Freq. (GHz)
8
Vee = -5 V, Vcc = +5 V, Iee = 105 mA, Icc = 65 mA At Pout = 0 dBm. Vee = -5 V, Vcc = +5 V,
Iee = 105 mA, Icc = 65 mA
Device
Diagram
DCin
Din
/Din
/DCin
Vctrl
1k50
1k50
Vee
Vcb2
Q
/Q
Vcc
Recommended
Operational Setup
Vctrl
DCin
1 µF Vcb2
Input
-5.0 V
Din
iT3010E
/Din
Q
/Q
/DCin Vee
Vcc
1µF 560 pF 560 pF
Output
+5 V
1 µF
Bias Conditions
For Vee = -5V
• Apply +5.0 V at Vcc
• Apply -5 V at Vee
• Vcb2 =0 V
• Vctrl = -2.7 V or open for maximum
output voltage
• Vctrl from –2.7V to –1V for output
voltage control
For Vee = -5.2 V bias application
• Apply +5 V at Vcc
• Apply -5.2 V at Vee
• Vcb2 = 0 V
• Vctrl =-1.8 V for maximum output
voltage
• Vctrl from –1.8V to –1V for output
voltage control
For pricing, delivery, and ordering information, please contact GigOptix at (650) 424-1937,
e-mail: [email protected], or visit our site at www.GigOptix.com.
5


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Part Details

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