MC10H601 [ONSEMI]
9-Bit ECL/TTL Translator; 9位ECL / TTL转换器型号: | MC10H601 |
厂家: | ONSEMI |
描述: | 9-Bit ECL/TTL Translator |
文件: | 总4页 (文件大小:85K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
SEMICONDUCTOR TECHNICAL DATA
The MC10H/100H601 is a 9–bit, dual supply ECL to TTL translator.
Devices in the Motorola 9–bit translator series utilize the 28–lead PLCC for
optimal power pinning, signal flow–through and electrical performance.
The devices feature a 48 mA TTL output stage, and AC performance is
specified into both a 50 pF and 200 pF load capacitance. For the 3–state
output disable, both ECL and TTL control inputs are provided, allowing
maximum design flexibility.
The 10H version is compatible with MECL 10H ECL logic levels. The
100H version is compatible with 100K levels.
•
•
•
•
•
•
•
•
9–Bit Ideal for Byte–Parity Applications
3–State TTL Outputs
Flow–Through Configuration
Extra TTL and ECL Power Pins to Minimize Switching Noise
ECL and TTL 3–State Control Inputs
Dual Supply
4.8 ns Max Delay into 50 pF, 9.6 ns into 200 pF (all outputs switching)
PNP TTL Inputs for Low Loading
FN SUFFIX
28–LEAD PLASTIC PLCC PACKAGE
CASE 776–02
PIN NAMES
PIN
FUNCTION
GND
TTL Ground (0 V)
V
V
V
ECL V
(0 V)
CCE
CCT
EE
CC
TTL Supply (+5.0 V)
ECL Supply (–5.2/–4.5 V)
Data Inputs (ECL)
Data Outputs (TTL)
3–State Control (ECL)
3–State Control (TTL)
D0–D8
Q0–Q8
OEECL
OETTL
OEECL
OETTL
TRUTH TABLE
D0
D1
D2
D3
D4
D5
D6
D7
D8
Q0
Q1
Q2
Q3
Q4
Q5
Q6
Q7
Q8
OEECL
OETTL
D
Q
L
L
H
X
L
L
X
H
L
H
X
X
L
H
Z
Z
Q5 GND V
Q6 GND Q7 Q8
CCT
25
24
23
22
21
20
19
26
27
28
18
17
16
D8
Q4
Q3
ECL
TTL
D7
V
V
CCT
CCE
D6
D5
D4
D3
Q2
15
14
13
12
GND
Q1
2
3
4
Q0
5
6
7
8
9
10
11
OETTL NC OEECL V
EE
D0 D1 D2
Figure 1. 28–Lead Pinout (Top View)
Figure 2. Logic Diagram
10/97
REV 7
Motorola, Inc. 1997
MC10H601 MC100H601
10H ECL DC CHARACTERISTICS: V
= 5.0 V ± 10%; V
= –5.2 V ± 5%
25°C
CCT
EE
0°C
85°C
Symbol
Parameter
Unit
Condition
Min
Max
–51
225
Min
Max
–51
145
Min
Max
–51
145
I
Power Supply Current
mA
EE
I
I
Input HIGH Current
Input LOW Current
µA
µA
IH
IL
0.5
0.5
0.5
V
IH
V
IL
Input HIGH Voltage
Input LOW Voltage
–1170
–840
–1130
–810 –1060 –720
mV
–1950 –1480 –1950 –1480 –1950 –1445
100H ECL DC CHARACTERISTICS: V
CCT
= 5.0 V ± 10%; V
0°C
= –4.2 V to –5.5 V
EE
25°C
85°C
Symbol
Parameter
Min
Max
–51
225
Min
Max
–51
145
Min
Max
–53
145
Unit
Condition
I
Power Supply Current
mA
EE
I
I
Input HIGH Current
Input LOW Current
µA
µA
IH
IL
0.5
0.5
0.5
V
IH
V
IL
Input HIGH Voltage
Input LOW Voltage
–1165
–880
–1165
–880
–1165
–880
mV
–1810 –1475 –1810 –1475 –1810 –1475
TTL DC CHARACTERISTICS: V
CCT
= 5.0 V ± 10%;
V
EE
V
EE
= –5.2 V ± 5% (10H version);
= –4.2 V to –5.5 V (100H version)
0°C
25°C
85°C
Symbol
Parameter
Unit
Condition
Min
Max
110
110
Min
Max
110
110
Min
Max
110
110
I
I
Power Supply Current
mA
CCH
CCL
I
I
Power Supply Current
Input HIGH Current
105
105
105
CCZ
20
100
20
100
20
100
µA
V
IN
V
IN
= 2.7 V
= 7.0 V
IH
I
I
Input LOW Current
–0.6
–0.6
–0.6
mA
mA
µA
V
= 0.5 V
IL
IN
Output Short Circuit Current
–100
2.0
–225
–100
2.0
–225
–100
2.0
–225
V
OUT
= 0 V
OS
I
I
Output Disable Current HIGH
Output Disable Current LOW
50
–50
50
–50
50
–50
V
OUT
V
OUT
= 2.7 V
= 0.5 V
OZH
OZL
V
V
Input HIGH Voltage
Input LOW Voltage
V
V
IHT
ILT
0.8
0.8
0.8
V
Output HIGH Voltage
2.5
2.0
2.5
2.0
2.5
2.0
I
I
= –3.0 mA
= –15 mA
OHT
OH
OH
V
V
Output LOW Voltage
Input Clamp Voltage
0.55
–1.2
0.55
–1.2
0.55
–1.2
V
V
I
= 48 mA
OLT
OL
I
IN
= –18 mA
IK
AC CHARACTERISTICS: V
CCT
= 5.0 V ± 10%;
V
EE
V
EE
= –5.2 V ± 5% (10H version);
= –4.2 V to –5.5 V (100H version)
0°C 25°C
85°C
Symbol
Parameter
Propagation Delay
Unit
Condition
Min
Max
Min
Max
Min
Max
t
t
1.7
3.4
4.8
9.6
1.7
3.4
4.8
9.6
1.7
3.4
4.8
9.6
ns
ns
C
C
= 50 pF
= 200 pF
PLH
PHL
L
L
to Output
t
t
Output Disable Time
OEECL
OETTL
OEECL
OETTL
3.7
5.4
6.5
13
3.7
5.4
6.5
13
3.7
5.4
6.5
13
ns
ns
C
C
= 50 pF
= 200 pF
PLZ
PHZ
L
L
t
t
4.3
7.0
7.5
15
4.3
7.0
7.5
15
4.3
7.0
7.5
15
ns
ns
C
C
= 50 pF
= 200 pF
PLZ
PHZ
L
L
t
t
Output Enable Time
3.5
5.0
6.0
12
3.5
5.0
6.0
12
3.5
5.0
6.0
12
ns
ns
C
C
= 50 pF
= 200 pF
PZL
PZH
L
L
t
t
4.2
6.0
7.0
14
4.2
6.0
7.0
14
4.2
6.0
7.0
14
ns
ns
C
C
= 50 pF
= 200 pF
PZL
PZH
L
L
t
R
t
F
Output Rise/Fall Time
1.0 V–2.0 V
1.2
3.0
1.2
3.0
1.2
3.0
ns
ns
C
C
= 50 pF
= 200 pF
L
L
MOTOROLA
2–2
MC10H601 MC100H601
OUTLINE DIMENSIONS
FN SUFFIX
PLASTIC PLCC PACKAGE
CASE 776–02
ISSUE D
M
S
S
0.007 (0.180)
T
L–M
N
B
Y BRK
D
–N–
M
S
S
0.007 (0.180)
T
L–M
N
U
Z
–M–
–L–
W
D
S
S
S
0.010 (0.250)
T
L–M
N
X
G1
V
28
1
VIEW D–D
M
S
S
S
A
0.007 (0.180)
0.007 (0.180)
T
L–M
L–M
N
M
S
S
0.007 (0.180)
T
L–M
N
H
Z
M
S
T
N
R
K1
C
E
0.004 (0.100)
SEATING
PLANE
G
K
–T–
VIEW S
J
M
S
S
0.007 (0.180)
T
L–M
N
F
G1
S
S
S
0.010 (0.250)
T
L–M
N
VIEW S
NOTES:
INCHES
MILLIMETERS
1. DATUMS –L–, –M–, AND –N– DETERMINED
WHERE TOP OF LEAD SHOULDER EXITS
PLASTIC BODY AT MOLD PARTING LINE.
2. DIMENSION G1, TRUE POSITION TO BE
MEASURED AT DATUM –T–, SEATING PLANE.
3. DIMENSIONS R AND U DO NOT INCLUDE
MOLD FLASH. ALLOWABLE MOLD FLASH IS
0.010 (0.250) PER SIDE.
DIM
A
B
C
E
F
G
H
J
K
R
U
V
W
X
Y
Z
G1
K1
MIN
MAX
0.495
0.495
0.180
0.110
0.019
MIN
12.32
12.32
4.20
MAX
12.57
12.57
4.57
0.485
0.485
0.165
0.090
0.013
2.29
2.79
0.33
0.48
0.050 BSC
1.27 BSC
4. DIMENSIONING AND TOLERANCING PER
ANSI Y14.5M, 1982.
0.026
0.020
0.025
0.450
0.450
0.042
0.042
0.042
–––
0.032
–––
–––
0.456
0.456
0.048
0.048
0.056
0.020
10
0.66
0.51
0.64
11.43
11.43
1.07
1.07
1.07
–––
0.81
–––
–––
11.58
11.58
1.21
1.21
1.42
0.50
10
5. CONTROLLING DIMENSION: INCH.
6. THE PACKAGE TOP MAY BE SMALLER THAN
THE PACKAGE BOTTOM BY UP TO 0.012
(0.300). DIMENSIONS R AND U ARE
DETERMINED AT THE OUTERMOST
EXTREMES OF THE PLASTIC BODY
EXCLUSIVE OF MOLD FLASH, TIE BAR
BURRS, GATE BURRS AND INTERLEAD
FLASH, BUT INCLUDING ANY MISMATCH
BETWEEN THE TOP AND BOTTOM OF THE
PLASTIC BODY.
2
2
0.410
0.040
0.430
–––
10.42
1.02
10.92
–––
7. DIMENSION H DOES NOT INCLUDE DAMBAR
PROTRUSION OR INTRUSION. THE DAMBAR
PROTRUSION(S) SHALL NOT CAUSE THE H
DIMENSION TO BE GREATER THAN 0.037
(0.940). THE DAMBAR INTRUSION(S) SHALL
NOT CAUSE THE H DIMENSION TO BE
SMALLER THAN 0.025 (0.635).
2–3
MOTOROLA
MC10H601 MC100H601
Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding
the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specificallydisclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola
datasheetsand/orspecificationscananddovaryindifferentapplicationsandactualperformancemayvaryovertime. Alloperatingparameters,including“Typicals”
must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of
others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other
applicationsintended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury
ordeathmayoccur. ShouldBuyerpurchaseoruseMotorolaproductsforanysuchunintendedorunauthorizedapplication,BuyershallindemnifyandholdMotorola
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
Motorola was negligent regarding the design or manufacture of the part. Motorola and
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