AZ100E142 [AZM]
ECL/PECL 9-bit Shift Register; ECL / PECL 9位的移位寄存器型号: | AZ100E142 |
厂家: | ARIZONA MICROTEK, INC |
描述: | ECL/PECL 9-bit Shift Register |
文件: | 总5页 (文件大小:75K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
ARIZONA MICROTEK, INC.
AZ10E142
AZ100E142
ECL/PECL 9-bit Shift Register
FEATURES
PACKAGE AVAILABILITY
•
•
•
•
•
•
•
700 MHz Minimum Shift Frequency
9-Bit for Byte-Parity Application
Asynchronous Master Reset
Dual Clocks
Operating Range of 4.2V to 5.46V
75kΩ Internal Input Pulldown Resistors
Direct Replacement for ON Semi
MC10E142 & MC100E142
PACKAGE
PART NUMBER
MARKING
NOTES
AZM10E142
<Date Code>
AZM100E142
<Date Code>
PLCC 28
AZ10E142FN
1,2
PLCC 28
AZ100E142FN
1,2
1
2
Add R2 at end of part number for 13 inch (2.5K parts) Tape & Reel.
Date code format: “YY” for year followed by “WW” for week.
DESCRIPTION
The AZ10/100E142 is a 9-bit shift register, designed with byte-parity applications in mind. The E142 performs
serial/parallel in and serial/parallel out, shifting in one direction. The nine inputs D0-D8 accept parallel input data,
while S-IN accepts serial input data. The Qn outputs do not need to be terminated for the shift operation to function.
To minimize noise and power, any Q output not used should be left unterminated.
The SEL (Select) input pin is used to switch between the two modes of operation – SHIFT and LOAD. The shift
direction is from bit 0 to bit 8. Input data is accepted by the registers a set-up time before the positive going edge of
CLK1 or CLK2; shifting is also accomplished on the positive clock edge. A HIGH on the Master Reset pin (MR)
asynchronously resets all the registers to zero.
NOTE: Specifications in ECL/PECL tables are valid when thermal equilibrium is established.
VCCO
SEL
25
D8
24
D7
23
D6
22
D5
21
Q8
19
20
MR
Q7
Q6
26
27
18
17
CLK1
CLK2
28
1
16
15
VCC
Q5
VEE
Pinout: 28-lead
PLCC (top view)
14
VCCO
S-IN
2
D0
D1
3
13
12
Q4
Q3
4
5
6
7
8
9
10
11
D2
D3
D4
Q0
Q1
Q2
VCCO
1630 S. STAPLEY DR., SUITE 127 • MESA, ARIZONA 85204 • USA • (480) 962-5881 • FAX (480) 890-2541
www.azmicrotek.com
AZ10E142
AZ100E142
LOGIC SYMBOL
S-IN
D0
Q0
Q1
1
0
Q
D
FUNCTION TABLE
1
0
Q
D
D1
SEL
L
H
MODE
Load
Shift
Q2
Q3
1
0
Q
D
D2
D3
1
0
Q
D
Q4
Q5
1
0
Q
D
PIN DESCRIPTION
FUNCTION
D4
D5
1
0
Q
D
PIN
D0 – D8
S – IN
Parallel Data Inputs
Serial Data Input
Mode Select Input
Clock Inputs
Q6
Q7
1
0
Q
D
SEL
D6
D7
CLK1, CLK2
MR
Master Reset
1
0
Q
D
Q0 – Q8
VCC , VCCO
VEE
Data Outputs
Positive Supply
Negative Supply
Q8
1
0
Q
D
D8
SEL
CLK1
CLK2
MR
Absolute Maximum Ratings are those values beyond which device life may be impaired.
Symbol
Characteristic
Rating
Unit
VCC
VI
VEE
VI
PECL Power Supply (VEE = 0V)
0 to +8.0
0 to +6.0
-8.0 to 0
-6.0 to 0
50
Vdc
Vdc
Vdc
Vdc
PECL Input Voltage
ECL Power Supply
ECL Input Voltage
Output Current
(VEE = 0V)
(VCC = 0V)
(VCC = 0V)
--- Continuous
--- Surge
IOUT
mA
100
TA
TSTG
Operating Temperature Range
Storage Temperature Range
-40 to +85
-65 to +150
°C
°C
10K ECL DC Characteristics (VEE = -4.94V to -5.46V, VCC = VCCO = GND)
-40°C
Typ
0°C
Typ
25°C
Typ
85°C
Typ
Symbol
Characteristic
Unit
Min
Max
-890
-1650 -1950
-890 -1170
-1500 -1950
150
0.5
145
Min
-1020
Max
-840
-1630 -1950
-840 -1130
-1480 -1950
150
0.5
145
Min
-980
Max
-810
-1630 -1950
-810 -1060
-1480 -1950
150
0.5
145
Min
-910
Max
-720
-1595
-720
-1445
150
VOH
Output HIGH Voltage1
Output LOW Voltage1
Input HIGH Voltage
Input LOW Voltage
Input HIGH Current
Input LOW Current
Power Supply Current
-1080
-1950
-1230
-1950
mV
mV
mV
mV
μA
VOL
VIH
VIL
IIH
IIL
IEE
0.5
μA
mA
120
120
120
120
145
1.
Each output is terminated through a 50Ω resistor to VCC – 2V.
November 2006 * REV - 3
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2
AZ10E142
AZ100E142
10K PECL DC Characteristics (VEE = GND, VCC = VCCO = +5.0V)
-40°C
Typ
0°C
Typ
25°C
Typ
85°C
Typ
Symbol
Characteristic
Unit
Min
3920
3050
3770
3050
Max
4110
3350
4110
3500
150
Min
3980
3050
3830
3050
Max
4160
3370
4160
3520
150
Min
4020
3050
3870
3050
Max
4190
3370
4190
3520
150
Min
4090
3050
3940
3050
Max
4280
3405
4280
3555
150
VOH
VOL
VIH
VIL
IIH
Output HIGH Voltage1,2
Output LOW Voltage1,2
Input HIGH Voltage1
Input LOW Voltage1
Input HIGH Current
Input LOW Current
mV
mV
mV
mV
μA
0.5
0.5
0.5
0.5
IIL
μA
IEE
Power Supply Current
120
145
120
145
120
145
120
145
mA
1.
2.
For supply voltages other that 5.0V, use the ECL table values and ADD supply voltage value.
Each output is terminated through a 50Ω resistor to VCC – 2V.
100K ECL DC Characteristics (VEE = -4.2V to -5.46V, VCC = VCCO = GND)
-40°C
Typ
-1085 -1005
0°C
Typ
-955
25°C
Typ
-955
85°C
Typ
-955
Symbol
Characteristic
Unit
Min
Max
-880
Min
-1025
Max
-880
Min
-1025
Max
-880
Min
-1025
Max
-880
VOH
Output HIGH Voltage1
Output LOW Voltage1
Input HIGH Voltage
Input LOW Voltage
Input HIGH Current
Input LOW Current
Power Supply Current
mV
mV
mV
mV
μA
VOL
VIH
VIL
IIH
IIL
IEE
-1830 -1695 -1555 -1810 -1705 -1620 -1810 -1705 -1620 -1810 -1705 -1620
-1165
-1810
-880
-1475 -1810
150
0.5
145
-1165
-880
-1475 -1810
150
0.5
145
-1165
-880
-1475 -1810
150
0.5
145
-1165
-880
-1475
150
0.5
μA
mA
120
120
120
138
165
1.
Each output is terminated through a 50Ω resistor to VCC – 2V.
100K PECL DC Characteristics (VEE = GND, VCC = VCCO = +5.0V)
-40°C
Typ
3995
3305
0°C
Typ
4045
3295
25°C
Typ
4045
3295
85°C
Typ
4045
3295
Symbol
Characteristic
Unit
Min
3915
3170
3835
3190
Max
4120
3445
4120
3525
150
Min
3975
3190
3835
3190
Max
4120
3380
4120
3525
150
Min
3975
3190
3835
3190
Max
4120
3380
4120
3525
150
Min
3975
3190
3835
3190
Max
4120
3380
4120
3525
150
VOH
VOL
VIH
VIL
IIH
Output HIGH Voltage1,2
Output LOW Voltage1,2
Input HIGH Voltage1
Input LOW Voltage1
Input HIGH Current
Input LOW Current
mV
mV
mV
mV
μA
0.5
0.5
0.5
0.5
IIL
μA
IEE
Power Supply Current
120
145
120
145
120
145
138
165
mA
1.
2.
For supply voltages other that 5.0V, use the ECL table values and ADD supply voltage value.
Each output is terminated through a 50Ω resistor to VCC – 2V.
AC Characteristics (VEE = 10E(-4.94V to -5.46V), 100E(-4.2V to -5.46V); VCC = VCCO = GND or VEE = GND,
V
CC = VCCO = 10E(+4.94V to +5.46V), 100E(+4.2V to +5.46V))
25°C
Typ
900
Unit
-40°C
Typ
900
0°C
Typ
900
85°C
Typ
900
Symbol
Characteristic
Min
Max
Min
Max
Min
Max
Min
Max
fSHIFT
Max. Shift Frequency
Propagation Delay to
700
700
700
700
MHz
ps
tPLH
tPHL
/
Output
CLK1, CLK2
600
600
50
300
300
75
800
800
-100
150
100
-150
700
1000
1000
600
600
50
300
300
75
800
800
-100
150
100
-150
700
1000
1000
600
600
50
300
300
75
800
800
-100
150
100
-150
700
1000
1000
600
600
50
300
300
75
800
800
-100
150
100
-150
700
1000
1000
MR
D
SEL
D
SEL
Setup Time
tS
ps
Hold Time
tH
ps
ps
tRR
tPW
Reset Recovery Time
900
900
900
900
Minimum Pulse Width
CLK1,CLK2, MR
Within-Device Skew1
Rise/Fall Times
400
400
400
300
400
300
ps
ps
tSKEW
tr / tf
75
75
75
75
300
800
300
800
800
800
ps
20% - 80%
1. Within-device skew is defined as identical transitions on similar paths through a device.
November 2006 * REV - 3
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3
AZ10E142
AZ100E142
PACKAGE DIAGRAM
PLCC 28
NOTES:
MILLIMETERS
INCHES
1.
DATUMS –L-, -M-, AND –N- DETERMINED
WHERE TOP OF LEAD SHOULDER EXITS
PLASTIC BODY AT MOLD PARTING LINE.
DIMENSION G1, TRUE POSITION TO BE
MEASURED AT DATUM –T-, SEATING PLANE.
DIMENSIONS R AND U DO NOT INCLUDE
MOLD FLASH. ALOWABLE MOLD FLASH IS
0.010mm (0.250in.) PER SIDE.
DIM
A
B
C
E
F
G
H
J
K
R
U
V
W
X
T
MIN
12.32
12.32
4.20
MAX
12.57
12.57
4.57
MIN
0.485
0.485
0.165
0.090
0.013
MAX
0.495
0.495
0.180
0.110
0.019
2.
3.
2.29
2.79
0.33
0.48
4.
DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
1.27 BSC
0.050 BSC
0.66
0.51
0.64
11.43
11.43
1.07
1.07
1.07
0.81
0.026
0.020
0.025
0.450
0.450
0.042
0.042
0.042
0.032
5.
6.
CONTROLLING DIMENSION: INCH.
THE PACKAGE TOP MAY BE SMALLER THAN
THE PACKGE BOTTOM BY UP TO 0.012mm
(0.300in.). DIMENSIONS R AND U ARE
DETERMINED AT THE OUTERMOST
EXTREMES OF THE PLASTIC BODY
EXCLUSIVE OF MOLD FLASH, THE BAR
BURRS, GATE BURRS AND INTERLEAD FLASH,
BUT INCLUDING ANY MISMATCH BETWEEN
THE TOP AND BOTTOM OF THE PLASTIC
BODY.
11.58
11.58
1.21
1.21
1.42
0.50
10O
0.456
0.456
0.048
0.048
0.056
0.020
10O
7.
DIMENSION H DOES NOT INCLUDE DAMBAR
PROTRUSION OR INTRUSION. THE DAMBAR
PROTRUSION(S) SHALL NOT CAUSE THE H
DIMENSION TO BE SMALLER THAN 0.025mm
(0.635in.).
Z
G1
K1
2O
2O
10.42
1.02
10.92
0.410
0.040
0.430
November 2006 * REV - 3
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4
AZ10E142
AZ100E142
Arizona Microtek, Inc. reserves the right to change circuitry and specifications at any time without prior notice. Arizona Microtek, Inc.
makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Arizona
Microtek, Inc. assume any liability arising out of the application or use of any product or circuit and specifically disclaims any and all
liability, including without limitation special, consequential or incidental damages. Arizona Microtek, Inc. does not convey any license
rights nor the rights of others. Arizona Microtek, Inc. products are not designed, intended or authorized for use as components in systems
intended to support or sustain life, or for any other application in which the failure of the Arizona Microtek, Inc. product could create a
situation where personal injury or death may occur. Should Buyer purchase or use Arizona Microtek, Inc. products for any such
unintended or unauthorized application, Buyer shall indemnify and hold Arizona Microtek, Inc. and its officers, employees, subsidiaries,
affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly
or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that
Arizona Microtek, Inc. was negligent regarding the design or manufacture of the part.
November 2006 * REV - 3
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5
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