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100325QC

ECL to TTL Translator, 6 Func, True Output, ECL, PQCC28, 0.450 X 0.450 INCH, PLASTIC, MO-047, LCC-28

器件类别:模拟混合信号IC    驱动程序和接口   

厂商名称:Rochester Electronics

厂商官网:https://www.rocelec.com/

器件标准:

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器件参数
参数名称
属性值
是否无铅
不含铅
是否Rohs认证
符合
零件包装代码
LCC
包装说明
QCCJ,
针数
28
Reach Compliance Code
unknown
ECCN代码
EAR99
Is Samacsys
N
最大延迟
4.3 ns
接口集成电路类型
ECL TO TTL TRANSLATOR
JESD-30 代码
S-PQCC-J28
JESD-609代码
e3
长度
11.43 mm
湿度敏感等级
2
位数
1
功能数量
6
端子数量
28
最高工作温度
85 °C
最低工作温度
输出特性
TOTEM-POLE
输出锁存器或寄存器
NONE
输出极性
TRUE
封装主体材料
PLASTIC/EPOXY
封装代码
QCCJ
封装形状
SQUARE
封装形式
CHIP CARRIER
峰值回流温度(摄氏度)
235
认证状态
Not Qualified
座面最大高度
4.57 mm
最大供电电压
5.5 V
最小供电电压
4.5 V
标称供电电压
5 V
表面贴装
YES
技术
ECL
温度等级
OTHER
端子面层
MATTE TIN
端子形式
J BEND
端子节距
1.27 mm
端子位置
QUAD
处于峰值回流温度下的最长时间
NOT SPECIFIED
宽度
11.43 mm
Base Number Matches
1
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100325 Low Power Hex ECL-to-TTL Translator
July 1988
Revised August 2000
100325
Low Power Hex ECL-to-TTL Translator
General Description
The 100325 is a hex translator for converting F100K logic
levels to TTL logic levels. Differential inputs allow each cir-
cuit to be used as an inverting, non-inverting or differential
receiver. An internal reference voltage generator provides
V
BB
for single-ended operation, or for use in Schmitt trigger
applications. All inputs have 50k
pull-down resistors.
When the inputs are either unconnected or at the same
potential the outputs will go LOW.
When used in single-ended operation the apparent input
threshold of the true inputs is 20mV to 40mV higher (posi-
tive) than the threshold of the complementary inputs. The
V
EE
and V
TTL
power may be applied in either order.
Features
s
Pin/function compatible with 100125
s
Meets 100125 AC specifications
s
50% power reduction of the 100125
s
Differential inputs with built in offset
s
Standard FAST
outputs
s
2000V ESD protection
s
4.2V to
5.7V operating range
s
Available to industrial grade temperature range
Ordering Code:
Order Number
100325SC
100325PC
100325QI
100325QC
Package Number
M24B
N24E
V28A
V28A
Package Description
24-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-013, 0.300 Wide
24-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-010, 0.400 Wide
28-Lead Plastic Lead Chip Carrier (PLCC), JEDEC MO-047, 0.450 Square
28-Lead Plastic Lead Chip Carrier (PLCC), JEDEC MO-047, 0.450 Square
Industrial Temperature Range (
40
°
C to
+
85
°
C)
Devices also available in Tape and Reel. Specify by appending the suffix letter “X” to the ordering code.
Connection Diagrams
24-Pin DIP/SOIC
28-Pin PLCC
Pin Descriptions
Pin Names
D
0
–D
5
D
0
–D
5
Q
0
–Q
5
Description
Data Inputs
Inverting Data Inputs
Data Outputs
FAST is a registered trademark of Fairchild Semiconductor Corporation.
© 2000 Fairchild Semiconductor Corporation
DS009879
www.fairchildsemi.com
100325
Truth Table
Inputs
D
n
L
H
L
H
D
n
H
L
L
H
Outputs
Q
n
L
H
L
L
Logic Diagram
OPEN
V
EE
L
H
V
BB
V
BB
H
=
HIGH Voltage Level
L
=
LOW Voltage Level
OPEN
V
EE
V
BB
V
BB
L
H
L
L
L
H
H
L
www.fairchildsemi.com
2
100325
Absolute Maximum Ratings
(Note 1)
Storage Temperature (T
STG
)
Maximum Junction Temperature (T
J
)
V
EE
Pin Potential to Ground Pin
V
TTL
Pin Potential to Ground Pin
Input Voltage (DC)
Voltage Applied to Output
in HIGH State (with V
CC
=
0V)
Current Applied to Output
in LOW State (Max)
ESD (Note 2)
twice the rated I
OL
(mA)
65
°
C to
+
150
°
C
+
150
°
C
7.0V to
+
0.5V
0.5V to
+
6.0V
V
EE
to
+
0.5V
Recommended Operating
Conditions
Case Temperature (T
C
)
Commercial
Industrial
Supply Voltage (V
EE
)
0
°
C to
+
85
°
C
40
°
C to
+
85
°
C
5.7V to
4.2V
0.5V to V
CC
2000V
Note 1:
The “Absolute Maximum Ratings” are those values beyond which
the safety of the device cannot be guaranteed. The device should not be
operated at these limits. The parametric values defined in the Electrical
Characteristics tables are not guaranteed at the absolute maximum rating.
The “Recommended Operating Conditions” table will define the conditions
for actual device operation.
Note 2:
ESD testing conforms to MIL-STD-883, Method 3015.
Commercial Version
DC Electrical Characteristics
V
EE
= −
4.2V to
5.7V, V
CC
=
GND, V
TTL
= +
4.5V to 5.5V, T
C
=
0
°
C to
+
85
°
C (Note 3)
Symbol
V
BB
V
IH
V
IL
V
OH
V
OL
V
DIFF
V
CM
I
IH
I
IL
I
OS
I
EE
I
TTL
Parameter
Output Reference Voltage
Single-Ended Input
HIGH Voltage
Single-Ended Input
LOW Voltage
Output HIGH Voltage
Output LOW Voltage
Input Voltage Differential
Common Mode Voltage
Input HIGH Current
Input LOW Current
Output Short-Circuit Current
V
EE
Power Supply Current
V
TTL
Power Supply Current
0.5
−150
−37
−27
45
−60
−17
65
150
V
CC
2.0
V
CC
0.5
350
Min
−1380
−1165
−1830
2.5
0.5
Typ
−1320
Max
−1260
−870
−1475
Units
mV
mV
mV
V
V
mV
V
µA
µA
mA
mA
mA
V
IN
=
V
IH (Max)
, D
0
–D
5
=
V
BB
,
D
0
–D
5
=
V
IL (Min)
V
IN
=
V
IL (Min)
, D
0
–D
5
=
V
BB
V
OUT
=
GND (Note 4)
D
0
–D
5
=
V
BB
D
0
–D
5
=
V
BB
I
VBB
= −2.1
mA
Guaranteed HIGH Signal for All Inputs
(with One Input Tied to V
BB
)
Guaranteed LOW Signal for All Inputs
(with One Input Tied to V
BB
)
I
OH
= −2.0
mA
I
OL
=
20 mA
Required for Full Output Swing
V
IN
=
V
IH (Max)
or V
IL (Min)
Conditions
Note 3:
The specified limits represent the “worst case” value for the parameter. Since these values normally occur at the temperature extremes, additional
noise immunity and guardbanding can be achieved by decreasing the allowable system operating ranges. Conditions for testing shown in the tables are cho-
sen to guarantee operation under “worst case” conditions.
Note 4:
Test one output at a time.
DIP AC Electrical Characteristics
V
EE
= −
4.2V to
5.7V, V
CC
=
GND, V
TTL
= +4.5V
to
+5.5V
T
C
=
0°C
Symbol
Parameter
Min
Max
t
PLH
t
PHL
t
PLH
t
PHL
Propagation Delay
Data to Output
Propagation Delay
Data to Output
0.80
1.60
3.50
4.30
T
C
= +25°C
Min
0.90
1.70
Max
3.70
4.50
T
C
= +85°C
Min
1.00
1.80
Max
4.00
4.80
Units
ns
ns
Conditions
C
L
=
15 pF
Figures 1, 2
C
L
=
50 pF
Figures 1, 3
3
www.fairchildsemi.com
100325
Commercial Version
(Continued)
SOIC and PLCC AC Electrical Characteristics
V
EE
= −
4.2V to
5.7V, V
CC
=
GND, V
TTL
= +4.5V
to
+5.5V
T
C
=
0°C
Symbol
Parameter
Min
Max
t
PLH
t
PHL
t
PLH
t
PHL
t
OSHL
Propagation Delay
Data to Output
Propagation Delay
Data to Output
Maximum Skew Common Edge
Output-to-Output Variation
Data to Output Path
t
OSLH
Maximum Skew Common Edge
Output-to-Output Variation
Data to Output Path
t
OST
Maximum Skew Opposite Edge
Output-to-Output Variation
Data to Output Path
t
PS
Maximum Skew
Pin (Signal) Transition Variation
Data to Output Path
Note 5:
Output-to-Output Skew is defined as the absolute value of the difference between the actual propagation delay for any outputs within the same pack-
aged device. The specifications apply to any outputs switching in the same direction either HIGH-to-LOW (t
OSHL
), or LOW-to-HIGH (t
OSLH
), or in opposite
directions both HL and LH (t
OST
). Parameters t
OST
and t
PS
guaranteed by design.
T
C
= +25°C
Min
0.90
1.70
Max
3.50
4.30
T
C
= +85°C
Min
1.00
1.80
Max
3.80
4.60
Units
Conditions
C
L
=
15 pF
Figures 1, 2
C
L
=
50 pF
Figures 1, 3
PLCC Only
(Note 5)
PLCC Only
0.80
1.60
3.30
4.10
ns
ns
0.65
0.65
0.65
ns
0.65
0.65
0.65
ns
(Note 5)
PLCC Only
2.20
2.20
2.20
ns
(Note 5)
PLCC Only
2.10
2.10
2.10
ns
(Note 5)
www.fairchildsemi.com
4
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