MC100EP52DTR2 [ONSEMI]

3.3V / 5V ECL Differential Receiver/Driver with Internal Termination Data and Clock D Flip-Flop; 3.3V / 5V ECL差分接收器/驱动器,内部端接数据和时钟D触发器
MC100EP52DTR2
型号: MC100EP52DTR2
厂家: ONSEMI    ONSEMI
描述:

3.3V / 5V ECL Differential Receiver/Driver with Internal Termination Data and Clock D Flip-Flop
3.3V / 5V ECL差分接收器/驱动器,内部端接数据和时钟D触发器

驱动器 触发器 时钟
文件: 总10页 (文件大小:86K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
MC10EP52, MC100EP52  
3.3V / 5VꢀECL Differential  
Data and Clock D Flip−Flop  
The MC10EP/100EP52 is a differential data, differential clock D  
flip−flop. The device is pin and functionally equivalent to the EL52  
device.  
Data enters the master portion of the flip−flop when the clock is  
LOW and is transferred to the slave, and thus the outputs, upon a  
positive transition of the clock. The differential clock inputs of the  
EP52 allow the device to also be used as a negative edge triggered  
device.  
http://onsemi.com  
MARKING DIAGRAMS*  
8
8
The EP52 employs input clamping circuitry so that under open input  
8
HEP52  
ALYW  
KEP52  
ALYW  
conditions (pulled down to V ) the outputs of the device will remain  
1
EE  
stable.  
SO−8  
D SUFFIX  
CASE 751  
The 100 Series contains temperature compensation.  
1
1
330 ps Typical Propagation Delay  
8
1
8
1
Maximum Frequency u 4 GHz Typical  
PECL Mode: V = 3.0 V to 5.5 V with V = 0 V  
8
HP52  
ALYW  
KP52  
ALYW  
CC  
EE  
1
TSSOP−8  
DT SUFFIX  
CASE 948R  
NECL Mode: V = 0 V with V = −3.0 V to −5.5 V  
CC  
EE  
Open Input Default State  
Safety Clamp on Inputs  
Q Output Will Default LOW with Inputs Open or at V  
EE  
L = Wafer Lot  
Y = Year  
H = MC10  
K = MC100  
W = Work Week  
A = Assembly Location  
*For additional marking information, refer to  
Application Note AND8002/D.  
ORDERING INFORMATION  
See detailed ordering and shipping information in the package  
dimensions section on page 7 of this data sheet.  
Semiconductor Components Industries, LLC, 2004  
1
Publication Order Number:  
June, 2004 − Rev. 3  
MC10EP52/D  
MC10EP52, MC100EP52  
Table 1. PIN DESCRIPTION  
D
D
1
2
8
7
V
CC  
PIN  
FUNCTION  
CLK*, CLK*  
D*, D*  
ECL Clock Inputs  
ECL Data Input  
D
Q
Q
Q, Q  
ECL Data Outputs  
Positive Supply  
Negative Supply  
V
CC  
EE  
Flip-Flop  
V
CLK  
CLK  
3
4
6
5
*
Pins will default LOW when left open.  
Table 2. TRUTH TABLE  
D
CLK  
Q
V
EE  
L
H
Z
Z
L
H
Figure 1. 8−Lead Pinout (Top View) and Logic Diagram  
Z = LOW to HIGH Transition  
Table 3. ATTRIBUTES  
Characteristics  
Value  
75 kW  
N/A  
Internal Input Pulldown Resistor  
Internal Input Pullup Resistor  
ESD Protection  
Human Body Model  
Machine Model  
Charged Device Model  
> 4 kV  
> 200 V  
> 2 kV  
Moisture Sensitivity, Indefinite Time Out of Drypack (Note 1)  
Level 1  
Flammability Rating  
Transistor Count  
Oxygen Index: 28 to 34  
UL 94 V−0 @ 0.125 in  
155 Devices  
Meets or exceeds JEDEC Spec EIA/JESD78 IC Latchup Test  
1. For additional information, see Application Note AND8003/D.  
http://onsemi.com  
2
 
MC10EP52, MC100EP52  
Table 4. MAXIMUM RATINGS  
Symbol  
Parameter  
Condition 1  
= 0 V  
Condition 2  
Rating  
Unit  
V
V
PECL Mode Power Supply  
NECL Mode Power Supply  
V
V
6
CC  
EE  
I
EE  
V
V
= 0 V  
−6  
V
CC  
PECL Mode Input Voltage  
NECL Mode Input Voltage  
V
V
= 0 V  
= 0 V  
V v V  
6
V
V
EE  
I
CC  
V w V  
−6  
CC  
I
EE  
I
Output Current  
Continuous  
Surge  
50  
mA  
mA  
out  
100  
I
V
Sink/Source  
± 0.5  
mA  
°C  
BB  
BB  
T
Operating Temperature Range  
Storage Temperature Range  
−40 to +85  
−65 to +150  
A
T
°C  
stg  
q
Thermal Resistance (Junction to Ambient) 0 lfpm  
500 lfpm  
Standard Board  
Thermal Resistance (Junction to Ambient) 0 lfpm  
500 lfpm  
SOIC−8  
SOIC−8  
190  
130  
°C/W  
°C/W  
JA  
q
q
Thermal Resistance (Junction to Case)  
SOIC−8  
41 to 44  
°C/W  
JC  
JA  
TSSOP−8  
TSSOP−8  
185  
140  
°C/W  
°C/W  
q
Thermal Resistance (Junction to Case)  
Wave Solder  
Standard Board  
TSSOP−8  
41 to 44  
265  
°C/W  
°C  
JC  
T
sol  
<2 to 3 sec @ 248°C  
Maximum ratings are those values beyond which device damage can occur. Maximum ratings applied to the device are individual stress limit  
values (not normal operating conditions) and are not valid simultaneously. If these limits are exceeded, device functional operation is not implied,  
damage may occur and reliability may be affected.  
Table 5. 10EP DC CHARACTERISTICS, PECL V = 3.3 V, V = 0 V (Note 2)  
CC  
EE  
−40°C  
25°C  
85°C  
Symbol  
Characteristic  
Power Supply Current  
Min  
26  
Typ  
34  
Max  
44  
Min  
26  
Typ  
35  
Max  
45  
Min  
28  
Typ  
37  
Max  
47  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
V
V
V
V
V
Output HIGH Voltage (Note 3)  
Output LOW Voltage (Note 3)  
2165  
1365  
2090  
1365  
2.0  
2290  
1490  
2415  
1615  
2415  
1690  
3.3  
2230  
1430  
2155  
1430  
2.0  
2355  
1555  
2480  
1680  
2480  
1755  
3.3  
2290  
1490  
2215  
1490  
2.0  
2415  
1615  
2540  
1740  
2540  
1815  
3.3  
OH  
OL  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
IH  
IL  
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 4)  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
2. Input and output parameters vary 1:1 with V . V can vary +0.3 V to −2.2 V.  
CC  
EE  
3. All loading with 50 W to V − 2.0 V.  
CC  
4. V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
http://onsemi.com  
3
 
MC10EP52, MC100EP52  
Table 6. 10EP DC CHARACTERISTICS, PECL V = 5.0 V, V = 0 V (Note 5)  
CC  
EE  
−40°C  
25°C  
85°C  
Symbol  
Characteristic  
Power Supply Current  
Min  
26  
Typ  
34  
Max  
44  
Min  
26  
Typ  
35  
Max  
45  
Min  
28  
Typ  
37  
Max  
47  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
V
V
V
V
V
Output HIGH Voltage (Note 6)  
Output LOW Voltage (Note 6)  
3865  
3065  
3790  
3065  
2.0  
3990  
3190  
4115  
3315  
4115  
3390  
5.0  
3930  
3130  
3855  
3130  
2.0  
4055  
3255  
4180  
3380  
4180  
3455  
5.0  
3990  
3190  
3915  
3190  
2.0  
4115  
3315  
4240  
3440  
4240  
3515  
5.0  
OH  
OL  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
IH  
IL  
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 7)  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
5. Input and output parameters vary 1:1 with V . V can vary +2.0 V to −0.5 V.  
CC  
EE  
6. All loading with 50 W to V − 2.0 V.  
CC  
7. V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
Table 7. 10EP DC CHARACTERISTICS, NECL V = 0 V, V = −5.5 V to −3.0 V (Note 8)  
CC  
EE  
−40°C  
25°C  
85°C  
Symbol  
Characteristic  
Power Supply Current  
Min  
26  
Typ  
Max  
Min  
Typ  
Max  
Min  
Typ  
Max  
47  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
34  
44  
26  
35  
45  
28  
37  
V
V
V
V
V
Output HIGH Voltage (Note 9)  
Output LOW Voltage (Note 9)  
1135 −1010 −885 −1070 −945  
−820 −1010 −885  
−760  
OH  
OL  
−1935 −1810 −1685 −1870 −1745 −1620 −1810 −1685 −1560  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
−1210  
−1935  
−885 −1145  
−1610 −1870  
−820 −1085  
−1545 −1810  
−760  
−1485  
0.0  
IH  
IL  
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 10)  
V
EE  
+2.0  
0.0  
V
EE  
+2.0  
0.0  
V
EE  
+2.0  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
8. Input and output parameters vary 1:1 with V  
.
CC  
9. All loading with 50 W to V − 2.0 V.  
CC  
10.V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
http://onsemi.com  
4
 
MC10EP52, MC100EP52  
Table 8. 100EP DC CHARACTERISTICS, PECL V = 3.3 V, V = 0 V (Note 11)  
CC  
EE  
−40°C  
Typ  
25°C  
Typ  
85°C  
Typ  
Symbol  
Characteristic  
Power Supply Current  
Min  
26  
Max  
Min  
26  
Max  
45  
Min  
28  
Max  
47  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
34  
44  
35  
37  
V
V
V
V
Output HIGH Voltage (Note 12)  
Output LOW Voltage (Note 12)  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
2155  
1355  
2075  
1355  
2.0  
2280  
1480  
2405  
1605  
2420  
1675  
3.3  
2155  
1355  
2075  
1355  
2.0  
2280  
1480  
2405  
1605  
2420  
1675  
3.3  
2155  
1355  
2075  
1355  
2.0  
2280  
1480  
2405  
1605  
2420  
1675  
3.3  
OH  
OL  
IH  
IL  
V
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 13)  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
11. Input and output parameters vary 1:1 with V . V can vary +0.3 V to −2.2 V.  
CC  
EE  
12.All loading with 50 W to V − 2.0 V.  
CC  
13.V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
Table 9. 100EP DC CHARACTERISTICS, PECL V = 5.0 V, V = 0 V (Note 14)  
CC  
EE  
−40°C  
Typ  
25°C  
Typ  
85°C  
Typ  
Symbol  
Characteristic  
Power Supply Current  
Min  
26  
Max  
Min  
26  
Max  
45  
Min  
28  
Max  
47  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
34  
44  
35  
37  
V
V
V
V
V
Output HIGH Voltage (Note 15)  
Output LOW Voltage (Note 15)  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
3855  
3055  
3775  
3055  
2.0  
3980  
3180  
4105  
3305  
4120  
3375  
5.0  
3855  
3055  
3775  
3055  
2.0  
3980  
3180  
4105  
3305  
4120  
3375  
5.0  
3855  
3055  
3775  
3055  
2.0  
3980  
3180  
4105  
3305  
4120  
3375  
5.0  
OH  
OL  
IH  
IL  
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 16)  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
14.Input and output parameters vary 1:1 with V . V can vary +2.0 V to −0.5 V.  
CC  
EE  
15.All loading with 50 W to V − 2.0 V.  
CC  
16.V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
http://onsemi.com  
5
 
MC10EP52, MC100EP52  
Table 10. 100EP DC CHARACTERISTICS, NECL V = 0 V, V = −5.5 V to −3.0 V (Note 17)  
CC  
EE  
−40°C  
25°C  
Typ  
35  
85°C  
Typ  
37  
Symbol  
Characteristic  
Power Supply Current  
Min  
Typ  
Max  
Min  
Max  
Min  
Max  
Unit  
mA  
mV  
mV  
mV  
mV  
V
I
EE  
26  
34  
44  
26  
45  
28  
47  
V
V
V
V
V
Output HIGH Voltage (Note 18)  
Output LOW Voltage (Note 18)  
Input HIGH Voltage (Single−Ended)  
Input LOW Voltage (Single−Ended)  
1145 −1020 −895 −1145 −1020 −895 −1145 −1020 −895  
−1945 −1820 −1695 −1945 −1820 −1695 −1945 −1820 −1695  
OH  
OL  
−1225  
−1945  
−880 −1225  
−1625 −1945  
−880 −1225  
−1625 −1945  
−880  
−1625  
0.0  
IH  
IL  
Input HIGH Voltage Common Mode  
Range (Differential Configuration)  
(Note 19)  
V
EE  
+2.0  
0.0  
V
EE  
+2.0  
0.0  
V
EE  
+2.0  
IHCMR  
I
I
Input HIGH Current  
Input LOW Current  
150  
150  
150  
mA  
mA  
IH  
0.5  
0.5  
0.5  
IL  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
17.Input and output parameters vary 1:1 with V  
.
CC  
18.All loading with 50 W to V − 2.0 V.  
CC  
19.V  
min varies 1:1 with V , V  
max varies 1:1 with V . The V  
range is referenced to the most positive side of the differential  
IHCMR  
EE IHCMR  
CC  
IHCMR  
input signal.  
Table 11. AC CHARACTERISTICS V = 0 V; V = −3.0 V to −5.5 V or  
V = 3.0 V to 5.5 V; V = 0 V (Note 20)  
CC EE  
CC  
EE  
−40°C  
Typ  
25°C  
Typ  
730  
85°C  
Typ  
640  
Symbol  
Characteristic  
Min  
Max  
Min  
Max  
Min  
Max  
Unit  
V
OUTpp  
Output Voltage Amplitude @ 3.0 GHz  
(Figure 2)  
630  
750  
610  
520  
GHz  
t
t
,
Propagation Delay to  
Output Differential  
CLK, CLK−>Q, Q  
ps  
PLH  
PHL  
250  
300  
350  
280  
330  
380  
310  
360  
410  
t
t
Setup Time  
Hold Time  
50  
0
50  
0
50  
0
ps  
ps  
S
H
t
CLOCK Random Jitter (RMS)  
(Figure 2)  
0.2  
1
0.2  
1
0.2  
1
JITTER  
V
Input Voltage Swing  
(Differential Configuration)  
150  
70  
800  
1200  
150  
80  
800  
1200  
150  
90  
800  
1200  
mV  
ps  
PP  
t
r
t
f
Output Rise/Fall Times  
(20% − 80%)  
Q, Q  
110  
170  
120  
180  
130  
200  
NOTE: Device will meet the specifications after thermal equilibrium has been established when mounted in a test socket or printed circuit  
board with maintained transverse airflow greater than 500 lfpm. Electrical parameters are guaranteed only over the declared  
operating temperature range. Functional operation of the device exceeding these conditions is not implied. Device specification limit  
values are applied individually under normal operating conditions and not valid simultaneously.  
20.Measured using a 750 mV source, 50% duty cycle clock source. All loading with 50 W to V − 2.0 V.  
CC  
http://onsemi.com  
6
 
MC10EP52, MC100EP52  
0.9  
0.8  
0.7  
0.6  
0.5  
0.4  
0.3  
0.2  
0.1  
0.0  
5 V  
3.3 V  
0.0  
0.5  
1.0  
1.5  
2.0  
2.5  
3.0  
3.5  
4.0  
FREQUENCY (MHz)  
Figure 2. Fmax Typical  
Z = 50 W  
Q
Q
D
D
o
Receiver  
Device  
Driver  
Device  
Z = 50 W  
o
50 W  
50 W  
V
TT  
V
TT  
= V − 2.0 V  
CC  
Figure 3. Typical Termination for Output Driver and Device Evaluation  
(See Application Note AND8020/D − Termination of ECL Logic Devices.)  
ORDERING INFORMATION  
Device  
MC10EP52D  
Package  
SO−8  
Shipping  
98 Units / Rail  
2500 Tape & Reel  
98 Units / Rail  
MC10EP52DR2  
MC100EP52D  
SO−8  
SO−8  
MC100EP52DR2  
MC10EP52DT  
SO−8  
2500 Tape & Reel  
100 Units / Rail  
2500 Tape & Reel  
100 Units / Rail  
2500 Tape & Reel  
TSSOP−8  
TSSOP−8  
TSSOP−8  
TSSOP−8  
MC10EP52DTR2  
MC100EP52DT  
MC100EP52DTR2  
†For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging  
Specifications Brochure, BRD8011/D.  
http://onsemi.com  
7
MC10EP52, MC100EP52  
Resource Reference of Application Notes  
AN1405/D  
AN1406/D  
AN1503/D  
AN1504/D  
AN1568/D  
AN1642/D  
AND8001/D  
AND8002/D  
AND8020/D  
AND8066/D  
AND8090/D  
ECL Clock Distribution Techniques  
Designing with PECL (ECL at +5.0 V)  
ECLinPSt I/O SPiCE Modeling Kit  
Metastability and the ECLinPS Family  
Interfacing Between LVDS and ECL  
The ECL Translator Guide  
Odd Number Counters Design  
Marking and Date Codes  
Termination of ECL Logic Devices  
Interfacing with ECLinPS  
AC Characteristics of ECL Devices  
http://onsemi.com  
8
MC10EP52, MC100EP52  
PACKAGE DIMENSIONS  
SO−8  
D SUFFIX  
PLASTIC SOIC PACKAGE  
CASE 751−07  
ISSUE AB  
NOTES:  
1. DIMENSIONING AND TOLERANCING PER  
ANSI Y14.5M, 1982.  
2. CONTROLLING DIMENSION: MILLIMETER.  
3. DIMENSION A AND B DO NOT INCLUDE  
MOLD PROTRUSION.  
−X−  
A
4. MAXIMUM MOLD PROTRUSION 0.15 (0.006)  
PER SIDE.  
8
5
4
5. DIMENSION D DOES NOT INCLUDE DAMBAR  
PROTRUSION. ALLOWABLE DAMBAR  
PROTRUSION SHALL BE 0.127 (0.005) TOTAL  
IN EXCESS OF THE D DIMENSION AT  
MAXIMUM MATERIAL CONDITION.  
6. 751−01 THRU 751−06 ARE OBSOLETE. NEW  
STANDARD IS 751−07.  
S
M
M
B
0.25 (0.010)  
Y
1
K
−Y−  
G
MILLIMETERS  
DIM MIN MAX  
INCHES  
MIN  
MAX  
0.197  
0.157  
0.069  
0.020  
A
B
C
D
G
H
J
K
M
N
S
4.80  
3.80  
1.35  
0.33  
5.00 0.189  
4.00 0.150  
1.75 0.053  
0.51 0.013  
C
N X 45  
_
SEATING  
PLANE  
−Z−  
1.27 BSC  
0.050 BSC  
0.10 (0.004)  
0.10  
0.19  
0.40  
0
0.25 0.004  
0.25 0.007  
1.27 0.016  
0.010  
0.010  
0.050  
8
0.020  
0.244  
M
J
H
D
8
0
_
_
_
_
0.25  
5.80  
0.50 0.010  
6.20 0.228  
M
S
S
X
0.25 (0.010)  
Z
Y
RECOMMENDED FOOTPRINT  
1.52  
0.060  
7.0  
0.275  
4.0  
0.155  
0.6  
0.024  
1.270  
0.050  
mm  
inches  
ǒ
Ǔ
SCALE 6:1  
http://onsemi.com  
9
MC10EP52, MC100EP52  
TSSOP−8  
DT SUFFIX  
PLASTIC TSSOP PACKAGE  
CASE 948R−02  
ISSUE A  
8x K REF  
NOTES:  
1. DIMENSIONING AND TOLERANCING PER ANSI  
Y14.5M, 1982.  
M
S
S
V
0.10 (0.004)  
T
U
S
0.15 (0.006) T U  
2. CONTROLLING DIMENSION: MILLIMETER.  
3. DIMENSION A DOES NOT INCLUDE MOLD FLASH.  
PROTRUSIONS OR GATE BURRS. MOLD FLASH  
OR GATE BURRS SHALL NOT EXCEED 0.15  
(0.006) PER SIDE.  
4. DIMENSION B DOES NOT INCLUDE INTERLEAD  
FLASH OR PROTRUSION. INTERLEAD FLASH OR  
PROTRUSION SHALL NOT EXCEED 0.25 (0.010)  
PER SIDE.  
2X L/2  
8
5
4
0.25 (0.010)  
B
−U−  
L
1
M
PIN 1  
IDENT  
5. TERMINAL NUMBERS ARE SHOWN FOR  
REFERENCE ONLY.  
6. DIMENSION A AND B ARE TO BE DETERMINED  
AT DATUM PLANE −W−.  
S
0.15 (0.006) T U  
A
−V−  
F
DETAIL E  
MILLIMETERS  
INCHES  
MIN  
DIM MIN  
MAX  
3.10  
3.10  
MAX  
0.122  
0.122  
0.043  
0.006  
0.028  
A
B
C
D
F
2.90  
2.90  
0.80  
0.05  
0.40  
0.114  
0.114  
C
1.10 0.031  
0.15 0.002  
0.70 0.016  
0.10 (0.004)  
−W−  
SEATING  
PLANE  
D
−T−  
G
G
K
L
0.65 BSC  
0.026 BSC  
0.25  
0.40 0.010  
0.016  
4.90 BSC  
0.193 BSC  
0
DETAIL E  
M
0
6
6
_
_
_
_
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ON Semiconductor and  
are registered trademarks of Semiconductor Components Industries, LLC (SCILLC). SCILLC reserves the right to make changes without further notice  
to any products herein. SCILLC makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does SCILLC assume any liability  
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MC10EP52/D  

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