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AZ100EP16FE डेटा पत्रक PDF( Datasheet डाउनलोड )


डेटा पत्रक - ECL/PECL High Speed VCSEL Driver - Arizona Microtek

भाग संख्या AZ100EP16FE
समारोह ECL/PECL High Speed VCSEL Driver
मैन्युफैक्चरर्स Arizona Microtek 
लोगो Arizona Microtek लोगो 
पूर्व दर्शन
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<?=AZ100EP16FE?> डेटा पत्रक पीडीएफ

AZ100EP16FE pdf
AZ100EP16FE
Absolute Maximum Ratings are those values beyond which device life may be impaired.
Symbol
Characteristic
Rating
VCC PECL Power Supply (VEE = 0V)
VI PECL Input Voltage (VEE = 0V)
VEE ECL Power Supply (VCC = 0V)
VI ECL Input Voltage (VCC = 0V)
IOUT
Output Current
--- Continuous
--- Surge
0 to +4.5
0 to +4.5
-4.5 to 0
-4.5 to 0
22
44
TA Operating Temperature Range
TSTG Storage Temperature Range
-40 to +85
-65 to +150
Unit
Vdc
Vdc
Vdc
Vdc
mA
°C
°C
100K ECL DC Characteristics (VEE = -3.0V to -3.6V, VCC = GND)
Symbol
Characteristic
-40°C
0°C
Min Typ Max Min Typ Max
VOH Output HIGH Voltage1 -1095
VOL
Output LOW Voltage1
VCTRL = VREF
-1935
VOL
Output LOW Voltage1
VCTRL = VCC
-1140
-890 -1035
-1745 -1905
-950 -1120
-870
-1715
-930
VREF Reference Voltage -1700
-1500 -1700
-1500
Input HIGH Current
IIH
D, D¯ 80
80
VCTRL
400
400
IIL
Input LOW Current
0.5
0.5
IEE
Power Supply Current
20 26 35 21 27 36
1. Each output is terminated through a 180Ω resistor to VEE.
Min
-1000
-1885
-1100
-1700
0.5
21
25°C
Typ
-920
-1790
-1005
28
Max
-840
-1695
-910
-1500
80
400
36
Min
-940
-1830
-1055
-1700
0.5
22
85°C
Typ
31
Max
-760
-1640
-865
-1500
80
400
38
100K LVPECL DC Characteristics (VEE = GND, VCC = +3.3V)
Symbol
Characteristic
-40°C
0°C
Min Typ Max Min Typ Max Min
VOH Output HIGH Voltage1,2 2205
VOL
Output LOW Voltage2
VCTRL = VREF
1365
VOL
Output LOW Voltage2
VCTRL = VCC
2160
2410
1555
2265
1395
2350 2180
2430
1585
2300
1415
2370 2200
VREF
Reference Voltage
1600
1800 1600
1800 1600
Input HIGH Current
IIH
D, D¯ 80
80
VCTRL
400
400
IIL Input LOW Current
0.5
0.5
0.5
IEE
Power Supply Current
20 26 35 21 27 36 21
1. For supply voltages other that 3.3V, use the ECL table values and ADD supply voltage value.
2. Each output is terminated through a 180Ω resistor to VEE.
25°C
Typ
2380
1510
2295
28
Max
2460
1605
2390
1800
80
400
36
Min
2360
1470
2245
1600
0.5
22
85°C
Typ
31
Max
2540
1660
2435
1800
80
400
38
Unit
mV
mV
mV
mV
μA
μA
mA
Unit
mV
mV
mV
mV
μA
μA
mA
AC Characteristics (VEE = -3.0 to -3.6V, VCC = GND, VCTRL=VREF or VEE = GND, VCC = +3.0V to +3.6V, VCTRL=VREF )
Symbol
Characteristic
-40°C
Min Typ Max
0°C 25°C
Min Typ Max Min Typ Max
85°C
Min Typ Max
Unit
fmax
Maximum Toggle
Frequency5
>6
>6 >6
>6 GHz
tPLH / tPHL
Input to Output
Delay
(Diff)
(SE)
100
150 240
155
100 150 240 100 150 240
155 155
120 170 280
175
tSKEW
Duty Cycle Skew1 (Diff)
4 20
4 15
4 15
4 15
Vpp
Minimum Input Swing2
150
150 150
150
VCMR
Common Mode Range3
VEE +
2.0
VCC
VEE +
2.0
VCC
VEE +
2.0
VCC
VEE +
2.0
VCC
Av Small Signal Gain4
28
tr / tf
Output Rise/Fall Times Q
(20% - 80%)
130
130
130
130
ps
ps
mV
V
dB
ps
1. Duty cycle skew is the difference between a tPLH and tPHL propagation delay through a device.
2. VPP is the minimum peak-to-peak differential input swing for which AC parameters are guaranteed.
3. The VCMR range is referenced to the most positive side of the differential input signal. Normal operation is obtained if the HIGH level falls within the
specified range and the peak-to-peak voltage lies between VPP(min) and 1V. The lower end of the VCMR range varies 1:1 with VEE and is equal to VEE + 2V.
4. Differential input, differential output. 180Ω to VEE on Q/Q¯ outputs with 50Ω AC coupled load.
5. See Figure 2.
July 2007 * REV - 8
www.azmicrotek.com
2

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डाउनलोड[ AZ100EP16FE Datasheet.PDF ]


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