MOTOROLA MC10E241FN

SEMICONDUCTOR TECHNICAL DATA
The MC10E/100E241 is an 8-bit shiftable register. Unlike a standard
universal shift register such as the E141, the E241 features internal data
feedback organized so that the SHIFT control overrides the HOLD/LOAD
control. This enables the normal operations of HOLD and LOAD to be
toggled with a single control line without the need for external gating. It
also enables switching to scan mode with the single SHIFT control line.
The eight inputs D0 – D7 accept parallel input data, while S-IN accepts
serial input data when in shift mode. Data is accepted a set-up time
before the positive-going edge of CLK; shifting is also accomplished on
the positive clock edge. A HIGH on the Master Reset pin (MR)
asynchronously resets all the registers to zero.
•
•
•
•
•
•
8-BIT SCANNABLE
REGISTER
SHIFT overrides HOLD/LOAD Control
1000ps Max. CLK to Q
Asynchronous Master Reset
Pin-Compatible with E141
Extended 100E VEE Range of – 4.2V to – 5.46V
75kΩ Input Pulldown Resistors
FN SUFFIX
PLASTIC PACKAGE
CASE 776-02
Pinout: 28-Lead PLCC (Top View)
SEL0
NC
D7
D6
D5
VCCO
Q7
25
24
23
22
21
20
19
SEL1
26
18
Q6
CLK
27
17
Q5
MR
28
16
VCC
VEE
1
15
NC
S-IN
2
14
VCCO
D0
3
13
Q4
D1
4
12
Q3
5
6
7
8
9
10
11
D2
D3
D4
VCCO
Q0
Q1
Q2
LOGIC DIAGRAM
S-IN
D Q
D0
R
D Q
D1 – D6
* All VCC and VCCO pins are tied together on the die.
Q0
Q1 – Q6
R
BITS 1–6
PIN NAMES
Pin
D0 – D7
S-IN
SEL0
SEL1
CLK
MR
Q0 – Q7
Function
D Q
Parallel Date Inputs
Serial Data Inputs
SHIFT Control
HOLD/LOAD Control
Clock
Master Reset
Data Outputs
D7
R
HOLD/LOAD
SHIFT
CLK
MR
7/96
 Motorola, Inc. 1996
2–1
REV 3
Q7
MC10E241 MC100E241
DC CHARACTERISTICS (VEE = VEE(min) to VEE(max); VCC = VCCO = GND)
0°C
Symbol
Characteristic
IIH
Input HIGH Current
IEE
Power Supply Current
10E
100E
min
typ
25°C
max
min
typ
150
85°C
max
min
typ
150
max
Unit
150
µA
Condition
MA
125
125
150
150
125
125
150
150
125
144
150
173
AC CHARACTERISTICS (VEE = VEE(min) to VEE(max); VCC = VCCO = GND)
0°C
Symbol
Characteristic
min
typ
25°C
max
min
typ
700
900
625
600
750
725
85°C
max
min
typ
700
900
625
600
750
725
fSHIFT
Max. Shift Frequency
700
900
tPLH
tPHL
Propagation Delay to Output
Clk
MR
625
600
750
725
ts
Setup Time
D
SEL0 (SHIFT)
SEL1 (HOLD/LOAD)
S-IN
175
350
400
125
25
200
250
–100
175
350
400
125
25
200
250
–100
175
350
400
125
25
200
250
–100
Hold Time
D
SEL0 (SHIFT)
SEL1 (HOLD/LOAD)
S-IN
200
100
50
300
– 25
– 200
– 250
100
200
100
50
300
– 25
– 200
– 250
100
200
100
50
300
– 25
– 200
– 250
100
tRR
Reset Recovery Time
900
600
900
600
900
600
tPW
Minimum Pulse Width
Clk, MR
400
th
tSKEW
Within-Device Skew
tr
tf
Rise/Fall Times
20 - 80%
max
Unit
Condition
MHz
ps
975
975
975
975
975
975
ps
ps
ps
ps
400
60
400
60
60
ps
1
ps
300
525
800
300
525
800
300
525
800
1. Within-device skew is defined as identical transitions on similar paths through a device.
FUNCTION TABLE
MR
SEL0
SEL1
1
0
0
0
X
1
0
0
X
X
1
0
MOTOROLA
Function
Outputs LOW
Shift Data
Hold Data
Load Data
2–2
ECLinPS and ECLinPS Lite
DL140 — Rev 4
MC10E241 MC100E241
OUTLINE DIMENSIONS
FN SUFFIX
PLASTIC PLCC PACKAGE
CASE 776–02
ISSUE D
0.007 (0.180)
B
Y BRK
-N-
T L –M
M
U
0.007 (0.180)
X
G1
M
S
N
T L –M
S
S
N
S
D
Z
-L-
-M-
D
W
28
V
1
C
A
0.007 (0.180)
M
R
0.007 (0.180)
M
T L –M
S
T L –M
S
N
S
N
S
H
S
N
S
0.007 (0.180)
M
T L –M
N
S
S
0.004 (0.100)
G
J
-T-
K
SEATING
PLANE
F
VIEW S
G1
T L –M
S
N
0.007 (0.180)
M
T L –M
S
N
S
VIEW S
S
NOTES:
1. DATUMS -L-, -M-, AND -N- DETERMINED
WHERE TOP OF LEAD SHOULDER EXITS
PLASTIC BODY AT MOLD PARTING LINE.
2. DIM G1, TRUE POSITION TO BE MEASURED
AT DATUM -T-, SEATING PLANE.
3. DIM R AND U DO NOT INCLUDE MOLD FLASH.
ALLOWABLE MOLD FLASH IS 0.010 (0.250)
PER SIDE.
4. DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
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.
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).
ECLinPS and ECLinPS Lite
DL140 — Rev 4
T L –M
K1
E
S
S
VIEW D-D
Z
0.010 (0.250)
0.010 (0.250)
2–3
DIM
A
B
C
E
F
G
H
J
K
R
U
V
W
X
Y
Z
G1
K1
INCHES
MIN
MAX
0.485 0.495
0.485 0.495
0.165 0.180
0.090 0.110
0.013 0.019
0.050 BSC
0.026 0.032
0.020
—
0.025
—
0.450 0.456
0.450 0.456
0.042 0.048
0.042 0.048
0.042 0.056
—
0.020
2°
10°
0.410 0.430
0.040
—
MILLIMETERS
MIN
MAX
12.32 12.57
12.32 12.57
4.20
4.57
2.29
2.79
0.33
0.48
1.27 BSC
0.66
0.81
0.51
—
0.64
—
11.43
11.58
11.43
11.58
1.07
1.21
1.07
1.21
1.07
1.42
—
0.50
2°
10°
10.42 10.92
1.02
—
MOTOROLA
MC10E241 MC100E241
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
specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola
data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals”
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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
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are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal
Opportunity/Affirmative Action Employer.
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◊
MOTOROLA
2–4
*MC10E241/D*
MC10E241/D
ECLinPS and ECLinPS Lite
DL140 — Rev 4