AZ10LVEL16
AZ100LVEL16
FEATURES
•
•
•
•
•
250ps Propagation Delay
High Bandwidth Output Transitions
Operating Range of 3.0V to 5.5V
Internal Input Pulldown Resistors
Direct Replacement For ON Semiconductor
MC10EL16, MC100EL16, & MC100LVEL16
ARIZONA MICROTEK, INC.
ECL/PECL Differential Receiver
PACKAGE AVAILABILITY
PACKAGE
SOIC 8
SOIC 8 T&R
SOIC 8 T&R
SOIC 8
SOIC 8 T&R
SOIC 8 T&R
TSSOP 8
TSSOP 8 T&R
TSSOP 8 T&R
TSSOP 8
TSSOP 8 T&R
TSSOP 8 T&R
PART NO.
AZ10LVEL16D
AZ10LVEL16DR1
AZ10LVEL16DR2
AZ100LVEL16D
AZ100LVEL16DR1
AZ100LVEL16DR2
AZ10LVEL16T
AZ10LVEL16TR1
AZ10LVEL16TR2
AZ100LVEL16T
AZ100LVEL16TR1
AZ100LVEL16TR2
MARKING
AZM10LVEL16
AZM10LVEL16
AZM10LVEL16
AZM100LVEL16
AZM100LVEL16
AZM100LVEL16
AZTLV16
AZTLV16
AZTLV16
AZHLV16
AZHLV16
AZHLV16
DESCRIPTION
The AZ10/100LVEL16 is a differential receiver. The device is functionally equivalent to the E116 device with
higher performance capabilities. With output transition times significantly faster than the E116, the LVEL16 is
ideally suited for interfacing with high frequency sources.
The LVEL16 provides a V
BB
output for single-ended use or a DC bias reference for AC coupling to the
device. For single-ended input applications, the V
BB
reference should be connected to one side of the D/D
¯
differential input pair. The input signal is then fed to the other D/D input. The V
BB
pin can support 1.5mA
¯
sink/source current. When used, the V
BB
pin should be bypassed to ground via a 0.01µF capacitor.
Under open input conditions internal input clamps will force the Q output LOW.
NOTE: Specifications in the ECL/PECL tables are valid when thermal equilibrium is established.
LOGIC DIAGRAM AND PINOUT ASSIGNMENT
PIN DESCRIPTION
PIN
D, D
¯
Q, Q
¯
V
BB
V
CC
V
EE
NC
FUNCTION
Data Inputs
Data Outputs
Reference Voltage Output
Positive Supply
Negative Supply
No Connect
NC
1
8
VCC
D
2
7
Q
D
3
6
Q
VBB
4
5
VEE
1630 S. STAPLEY DR., SUITE 125
•
MESA, ARIZONA 85204
•
USA
•
(480) 962-5881
•
FAX (480) 890-2541
www.azmicrotek.com
AZ10LVEL16
AZ100LVEL16
Absolute Maximum Ratings are those values beyond which device life may be impaired.
Symbol
V
CC
V
I
V
EE
V
I
I
OUT
T
A
T
STG
Characteristic
PECL Power Supply (V
EE
= 0V)
PECL Input Voltage
(V
EE
= 0V)
ECL Power Supply
(V
CC
= 0V)
ECL Input Voltage
(V
CC
= 0V)
Output Current
--- Continuous
--- Surge
Operating Temperature Range
Storage Temperature Range
Rating
0 to +8.0
0 to +6.0
-8.0 to 0
-6.0 to 0
50
100
-40 to +85
-65 to +150
Unit
Vdc
Vdc
Vdc
Vdc
mA
°C
°C
10K ECL DC Characteristics
(V
EE
= -3.0V to -5.5V, V
CC
= GND)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1
V
OL
Output LOW Voltage
1
V
IH
Input HIGH Voltage
V
IL
Input LOW Voltage
V
BB
Reference Voltage
Input LOW Current
I
IL
Input HIGH Current
150
I
IH
I
EE
Power Supply Current
18
22
1.
Each output is terminated through a 50Ω resistor to V
CC
– 2V.
Min
-1080
-1950
-1230
-1950
-1430
-150
-40°C
Typ
Max
-890
-1650
-890
-1500
-1300
Min
-1020
-1950
-1170
-1950
-1380
-150
0°C
Typ
Max
-840
-1630
-840
-1480
-1270
150
22
Min
-980
-1950
-1130
-1950
-1350
-150
25°C
Typ
Max
-810
-1630
-810
-1480
-1250
150
22
Min
-910
-1950
-1060
-1950
-1310
-150
85°C
Typ
Max
-720
-1595
-720
-1445
-1190
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
18
10K LVPECL DC Characteristics
(V
EE
= GND, V
CC
= +3.3V)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1,2
V
OL
Output LOW Voltage
1,2
V
IH
Input HIGH Voltage
1
V
IL
Input LOW Voltage
1
V
BB
Reference Voltage
1
Input LOW Current
I
IL
I
IH
Input HIGH Current
150
150
I
EE
Power Supply Current
18
22
18
22
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 50Ω resistor to V
CC
– 2V.
Min
2220
1350
2070
1350
1870
-150
-40°C
Typ
Max
2410
1650
2410
1800
2000
Min
2280
1350
2130
1350
1920
-150
0°C
Typ
Max
2460
1670
2460
1820
2030
Min
2320
1350
2170
1350
1950
-150
25°C
Typ
Max
2490
1670
2490
1820
3050
150
22
Min
2390
1350
2240
1350
1990
-150
85°C
Typ
Max
2580
1705
2580
1855
1390
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
10K PECL DC Characteristics
(V
EE
= GND, V
CC
= +5.0V)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1,2
V
OL
Output LOW Voltage
1,2
V
IH
Input HIGH Voltage
1
V
IL
Input LOW Voltage
1
V
BB
Reference Voltage
1
Input LOW Current
I
IL
I
IH
Input HIGH Current
150
150
I
EE
Power Supply Current
18
22
18
22
1.
For supply voltages other that 5.0V, use the ECL table values and ADD supply voltage value.
2.
Each output is terminated through a 50Ω resistor to V
CC
– 2V.
Min
3920
3050
3770
3050
3570
-150
-40°C
Typ
Max
4110
3350
4110
3500
3700
Min
3980
3050
3830
3050
3620
-150
0°C
Typ
Max
4160
3370
4160
3520
3730
Min
4020
3050
3870
3050
3650
-150
25°C
Typ
Max
4190
3370
4190
3520
3750
150
22
Min
4090
3050
3940
3050
3690
-150
85°C
Typ
Max
4280
3405
4280
3555
3810
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
October 2001 * REV - 0
www.azmicrotek.com
2
AZ10LVEL16
AZ100LVEL16
100K ECL DC Characteristics
(V
EE
= -3.0V to -5.5V, V
CC
= GND)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1
V
OL
Output LOW Voltage
1
V
IH
Input HIGH Voltage
V
IL
Input LOW Voltage
V
BB
Reference Voltage
Input LOW Current
I
IL
Input HIGH Current
150
I
IH
I
EE
Power Supply Current
18
22
1.
Each output is terminated through a 50Ω resistor to V
CC
– 2V.
Min
-1085
-1830
-1165
-1810
-1380
-150
-40°C
Typ
-1005
-1695
Max
-880
-1555
-880
-1475
-1260
Min
-1025
-1810
-1165
-1810
-1380
-150
0°C
Typ
-955
-1705
Max
-880
-1620
-880
-1475
-1260
150
22
Min
-1025
-1810
-1165
-1810
-1380
-150
25°C
Typ
-955
-1705
Max
-880
-1620
-880
-1475
-1260
150
22
Min
-1025
-1810
-1165
-1810
-1380
-150
85°C
Typ
-955
-1705
Max
-880
-1620
-880
-1475
-1260
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
18
100K LVPECL DC Characteristics
(V
EE
= GND, V
CC
= +3.3V)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1,2
V
OL
Output LOW Voltage
1,2
V
IH
Input HIGH Voltage
1
V
IL
Input LOW Voltage
1
V
BB
Reference Voltage
1
Input LOW Current
I
IL
I
IH
Input HIGH Current
150
150
I
EE
Power Supply Current
18
22
18
22
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 50Ω resistor to V
CC
– 2V.
Min
2215
1470
2135
1490
1920
-150
-40°C
Typ
2295
1605
Max
2420
1745
2420
1825
2040
Min
2275
1490
2135
1490
1920
-150
0°C
Typ
2345
1595
Max
2420
1680
2420
1825
2040
Min
2275
1490
2135
1490
1920
-150
25°C
Typ
2345
1595
Max
2420
1680
2420
1825
2040
150
22
Min
2275
1490
2135
1490
1920
-150
85°C
Typ
2345
1595
Max
2420
1680
2420
1825
2040
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
100K PECL DC Characteristics
(V
EE
= GND, V
CC
= +5.0V)
Symbol
Characteristic
V
OH
Output HIGH Voltage
1,2
V
OL
Output LOW Voltage
1,2
V
IH
Input HIGH Voltage
1
V
IL
Input LOW Voltage
1
V
BB
Reference Voltage
1
Input LOW Current
I
IL
I
IH
Input HIGH Current
150
150
I
EE
Power Supply Current
18
22
18
22
1.
For supply voltages other that 5.0V, use the ECL table values and ADD supply voltage value.
2.
Each output is terminated through a 50Ω resistor to V
CC
– 2V.
Min
3915
3170
3835
3190
3620
-150
-40°C
Typ
3995
3305
Max
4120
3445
4120
3525
3740
Min
3975
3190
3835
3190
3620
-150
0°C
Typ
4045
3295
Max
4120
3380
4120
3525
3740
Min
3975
3190
3835
3190
3620
-150
25°C
Typ
4045
3295
Max
4120
3380
4120
3525
3740
150
22
Min
3975
3190
3835
3190
3620
-150
85°C
Typ
4045
3295
Max
4120
3380
4120
3525
3740
150
22
Unit
mV
mV
mV
mV
mV
µA
µA
mA
18
18
AC Characteristics
(V
EE
= -3.0V to -5.5V; V
CC
= GND or V
EE
= GND; V
CC
= +3.0V to +5.5V)
Symbol
t
PLH
/ t
PHL
Characteristic
Min
-40°C
Typ
Max
Min
0°C
Typ
Max
Min
25°C
Typ
Max
Min
85°C
Typ
Max
Unit
ps
ps
mV
V
ps
Propagation Delay
to Output
(Diff)
125
250
375
175
250
325
175
250
325
205
280
355
(SE)
75
250
425
125
250
375
125
250
375
155
280
405
t
SKEW
Duty Cycle Skew
1
(Diff)
5
5
20
5
20
5
20
2
V
PP
(AC) Minimum Input Swing
150
150
150
150
Common Mode Range
3
V
EE
+
V
CC
- V
EE
+
V
CC
- V
EE
+
V
CC
- V
EE
+
V
CC
-
V
PP
< 500mV
1.2
0.4
1.1
0.4
1.1
0.4
1.1
0.4
V
CMR
1.5
0.4
1.4
0.4
1.4
0.4
1.4
0.4
V
PP
≥
500mV
Output Rise/Fall Times Q
t
r
/ t
f
100
260
100
260
100
260
100
260
(20% - 80%)
1.
Duty cycle skew is the difference between a t
PLH
and t
PHL
propagation delay through a device.
2.
V
PP
is the minimum peak-to-peak differential input swing for which AC parameters are guaranteed. The device has a DC gain of
≈
40.
3.
The V
CMR
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 V
PP
(min) and 1V.
October 2001 * REV - 0
www.azmicrotek.com
3
AZ10LVEL16
AZ100LVEL16
PACKAGE DIAGRAM
SOIC 8
NOTES:
1.
DIMENSIONS D AND E DO NOT
INCLUDE MOLD PROTRUSION.
2.
MAXIMUM MOLD PROTRUSION
FOR D IS 0.15mm.
3.
MAXIMUM MOLD PROTRUSION
FOR E IS 0.25mm.
DIM
A
A
1
A
2
A
3
b
p
c
D
E
e
H
E
L
L
p
Q
v
w
y
Z
θ
MILLIMETERS
MIN
MAX
1.75
0.10
0.25
1.25
1.45
0.25
0.36
0.49
0.19
0.25
4.8
5.0
3.8
4.0
1.27
5.80
6.20
1.05
0.40
1.00
0.60
0.70
0.25
0.25
0.10
0.30
0.70
O
8
O
0
INCHES
MIN
MAX
0.069
0.004
0.010
0.049
0.057
0.01
0.014
0.019
0.0075
0.0100
0.19
0.20
0.15
0.16
0.050
0.228
0.244
0.041
0.016
0.039
0.024
0.028
0.01
0.01
0.004
0.012
0.028
O
0
8
O
October 2001 * REV - 0
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4
AZ10LVEL16
AZ100LVEL16
PACKAGE DIAGRAM
TSSOP 8
NOTES:
1.
DIMENSIONS D AND E DO NOT
INCLUDE MOLD PROTRUSION.
2.
MAXIMUM MOLD PROTRUSION
FOR D IS 0.15mm.
3.
MAXIMUM MOLD PROTRUSION
FOR E IS 0.25mm.
DIM
A
A
1
A
2
A
3
b
p
c
D
E
e
H
E
L
L
p
v
w
y
Z
θ
MILLIMETERS
MIN
MAX
1.10
0.05
0.15
0.80
0.95
0.25
0.25
0.45
0.15
0.28
2.90
3.10
2.90
3.10
0.65
4.70
5.10
0.94
0.40
0.70
0.10
0.10
0.10
0.35
0.70
O
6
O
0
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5