LH1465AB [AGERE]

LH1465AB/AAE ISDN dc Termination IC Data Sheet Advisory; LH1465AB / AAE ISDN终端DC IC数据资料咨询
LH1465AB
型号: LH1465AB
厂家: AGERE SYSTEMS    AGERE SYSTEMS
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LH1465AB/AAE ISDN dc Termination IC Data Sheet Advisory
LH1465AB / AAE ISDN终端DC IC数据资料咨询

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Advisory  
July 1998  
LH1465AB/AAE ISDN dc Termination IC  
Data Sheet Advisory  
Application Circuit  
Replace Figure 11 on page 10 of the LH1465AB/AAE data sheet with the figure shown below.  
MLT CIRCUIT  
C15  
1.0 µF  
(PLACE THIS CAPACITOR AS  
CLOSE AS POSSIBLE TO THE LH1465)  
R14  
+5 V  
R11  
1.1 k  
LH1465AB  
137 Ω  
2 W  
8
7
6
5
1
2
3
4
TC  
RS  
PD  
PR+  
T
R10  
R8  
17.8 kΩ  
U3  
10 kΩ  
R12  
137 Ω  
R
8
U2  
COM  
PR–  
6
2
3
R15  
1.1 kΩ  
2 W  
CA  
1.0 µF  
ZD  
SCNT1  
OPTOIN  
PIN  
5
R9  
7
HCPL-0701  
FOR NORTH AMERICAN  
APPLICATIONS ONLY  
RING  
TIP  
2.2 MΩ  
5-7034(C)  
Figure 1. MLT Circuit Showing New Placement of Zener Diode (ZD) and Capacitor (CA)  
In the ILOSS mode (refer to ANSI T1.601 1992, Section 6.5.2), the NT generates a scrambled, framed, 2B1Q  
signal such as SN1 and SN2. When the ILOSS mode is applied to circuits with the LH1465, it was observed  
that for some short loop lengths, the NT, once in the ILOSS mode, would not respond to further maintenance  
pulses until the ILOSS timer expired. It was discovered that there is some portion of the transmitted 2B1Q sig-  
nal from the NT that passes through the LH1465 to the optoisolator. This causes the optoisolator to report  
incorrect dial pulses at its output, and thus prevent the NT from properly exiting the ILOSS mode.  
To correct this situation, the dropout voltage (voltage at the Tip/Ring needed to turn on the optoisolator) of the  
optoisolator driver on the LH1465 is raised using the 3.6 V zener diode ZD (for example, Motorola*  
MMSZ4685T1). Capacitor CA is a 1.0 µF ±10% tantalum chip capacitor, with a voltage rating of at least 16 V.  
CA is added to provide a level of filtering for the transition points (turn-on or turn-off) of the optoisolator input  
voltage, which increases the robustness of the circuit.  
* Motorola is a registered trademark of Motorola Inc.  
For additional information, contact your Microelectronics Group Account Manager or the following:  
INTERNET:  
E-MAIL:  
http://www.lucent.com/micro  
docmaster@micro.lucent.com  
N. AMERICA: Microelectronics Group, Lucent Technologies Inc., 555 Union Boulevard, Room 30L-15P-BA, Allentown, PA 18103  
1-800-372-2447, FAX 610-712-4106 (In CANADA: 1-800-553-2448, FAX 610-712-4106)  
ASIA PACIFIC: Microelectronics Group, Lucent Technologies Singapore Pte. Ltd., 77 Science Park Drive, #03-18 Cintech III, Singapore 118256  
Tel. (65) 778 8833, FAX (65) 777 7495  
CHINA:  
Microelectronics Group, Lucent Technologies (China) Co., Ltd., A-F2, 23/F, Zao Fong Universe Building, 1800 Zhong Shan Xi Road,  
Shanghai 200233 P. R. China Tel. (86) 21 6440 0468, ext. 316, FAX (86) 21 6440 0652  
JAPAN:  
Microelectronics Group, Lucent Technologies Japan Ltd., 7-18, Higashi-Gotanda 2-chome, Shinagawa-ku, Tokyo 141, Japan  
Tel. (81) 3 5421 1600, FAX (81) 3 5421 1700  
EUROPE:  
Data Requests: MICROELECTRONICS GROUP DATALINE: Tel. (44) 1189 324 299, FAX (44) 1189 328 148  
Technical Inquiries: GERMANY: (49) 89 95086 0 (Munich), UNITED KINGDOM: (44) 1344 865 900 (Bracknell),  
FRANCE: (33) 1 48 83 68 00 (Paris), SWEDEN: (46) 8 600 7070 (Stockholm), FINLAND: (358) 9 4354 2800 (Helsinki),  
ITALY: (39) 2 6601 1800 (Milan), SPAIN: (34) 1 807 1441 (Madrid)  
Lucent Technologies Inc. reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use or application. No  
rights under any patent accompany the sale of any such product(s) or information.  
Copyright © 1998 Lucent Technologies Inc.  
All Rights Reserved  
Printed in U.S.A.  
July 1998  
AY98-028ISDN (Replaces AY98-013ISDN)  
(Must accompany DS97-414ISDN)  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Features  
Description  
ANSI U-DSL compatible  
High linearity  
The LH1465 ISDN dc Termination IC is used on U-  
interface digital subscriber lines (U-DSL) and pro-  
vides a polarity insensitive dc termination for the  
loop-sealing current and a recognizable signature for  
mechanized loop testing (MLT) systems.The LH1465  
passes dc signaling information to the NT1 circuitry  
through a 6N139 optoisolator (or equivalent). The  
LH1465 IC consists of two functional blocks. The first  
provides the electronic inductor and silicon-controlled  
rectifier portion of the termination, while the second  
drives the LED of the 6N139 optoisolator. Inquire  
about the availability of tape-and-reel packaging for  
the 16-pin SOG (LH1465AAE).  
MLT compatible  
SARTS compatible  
Portable test set compatible  
Device Code  
Package Type  
8-Pin, Plastic DIP  
LH1465AB  
LH1465AAE  
16-Pin, Plastic SOG  
2
1
2.2 kΩ  
4 W, 5%  
4
PD1  
6
1
2
3
4
8
7
6
5
8
6N139  
1 µF  
15 V, 10%  
7
68 Ω  
1/4 W, 1%  
5
3
POLARITY  
GUARD  
OPTOISOLATOR  
DRIVER  
ELECTRONIC INDUCTOR,  
BREAKOVER, AND  
CURRENT LIMIT AND EXCESS  
POWER PROTECTION  
LATCH CIRCUITS  
12-1947(F)  
Figure 1. Functional Diagram/8-Pin DIP  
Data Sheet  
LH1465AB/AAE ISDN dc Termination IC  
Functional Description  
February 1998  
1 mA loop current is interrupted for more than 100 ms.  
See Figures 6, 7, and 8 of this document or Table F1 in  
Appendix F of ANSI Standard T1.601-1991.  
The LH1465 plays a dual role in the ISDN NT1: first, as  
an electronic inductor for a dc termination with high ac  
impedance; and second, as part of the dc signaling  
system for line testing capability. The LH1465 meets or  
exceeds all specifications for the ISDN NT1 dc termina-  
tion as described by ANSI Standard T1.601-1991.  
Current for the LED is interrupted when loop current is  
interrupted. The current in the ON state is determined  
by the battery voltage and loop resistance. Should the  
loop resistance be negligible and/or applied voltage  
excessively large, the LH1465 will limit the loop current  
to less than 60 mA. While in current limit, the LH1465  
shunts the 2.2 k, 4 W power resistor R2 across itself  
to protect against excessive thermal heating.  
Use of the LH1465 requires only a few discrete compo-  
nents. See Figure 11 for a typical NT1 application. The  
LH1465 is current limited, but is not an overvoltage  
surge protector. A crowbar-type surge protector limiting  
the line voltage to less than 250 V is recommended to  
protect the LH1465. The surge protector must with-  
stand the requirements in Tables 4 and 5. One such  
protector is the Teccor* Inc., P2000AA61 SIDACTOR*.  
In the event that fault voltages exceeding 100 V are  
impressed upon TIP and RING, the LH1465 will shut  
off and go into a standby mode where very little current  
flows. When the fault voltage is removed, the LH1465  
goes back into its normal ON-state operation.  
The LH1465 has a polarity guard so that the device  
gives the same characteristics whether the NT1 TIP or  
RING terminal is connected to the battery voltage. TIP  
and RING are connected directly to the LH1465AB  
terminals 2 and 3 and to the LH1465AAE terminals 4  
and 5.  
Pin Descriptions  
DIP SOG Symbol  
Name/Function  
1
1
PR+ Protection resistor positive  
side  
The dc T to R I-V characteristics of the LH1465 are  
shown in Figures 2 and 3. As battery voltage is applied  
to the loop, the LH1465 conducts current only when the  
voltage across the LH1465 exceeds about 35 V. With  
35 V or more applied to the LH1465A, the device con-  
ducts about 150 µA of current for about 20 ms and then  
turns on and goes into the ON state. The LH1465 will  
remain in the ON state for as long as the loop current  
exceeds 0.5 mA.  
2
3
4
4
5
8
T
Tip side of the loop  
Ring side of the loop  
R
PR– Protection resistor negative  
side  
5
6
9
COM Common  
12  
PD  
Photodiode (LED input  
current)  
7
8
13  
16  
RS  
TC  
NC  
NC  
NC  
NC  
Current-limit resistor  
Timing capacitor  
No connection  
No connection  
No connection  
No connection  
The LH1465 has a turn-on and turn-off timing circuit  
that ensures that the LH1465 will: a) not turn on if a  
voltage above 43.5 V is applied for less than 3 ms; and  
b) not turn off if the loop current is interrupted for less  
than 3 ms.  
2, 3  
6, 7  
10, 11  
14, 15  
Current for the LED of the optocoupler flows when the  
current in the LH1465 is greater than 1 mA. However,  
the LH1465 is guaranteed to turn on if a voltage above  
43.5 V is applied for more than 50 ms, and turn off if  
* Teccor is a trademark and SIDACTOR is a registered trademark of Teccor, Inc.  
2
Lucent Technologies Inc.  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Absolute Maximum Ratings At 25 °C  
Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are abso-  
lute stress ratings only. Functional operation of the device is not implied at these or any other conditions in excess  
of those indicated in the operations sections of the data sheet. Exposure to absolute maximum ratings for extended  
periods can adversely affect device reliability.  
Parameter  
Symbol  
Min  
Typ  
Max  
Unit  
Ambient Operating Temperature  
Storage Temperature  
TA  
Tstg  
PD  
–40  
–40  
85  
125  
1
°C  
°C  
Power Dissipation  
W
Pin Soldering Temperature (t = 15 s)  
Maximum Voltage (T/R, R/T)*  
300  
300  
°C  
Vdc  
* If the SOG package is used, it is recommended to place a drop of RTV (room temperature vulcanizing) compound on the tip and ring pins  
(pins 3 and 4). This will guard against the possibility of arcing between the pins (which are 0.030 in. apart) under worst-case dust and oil  
board buildup conditions.  
Electrical Characteristics TA = 25 °C  
Minimum and maximum values are testing requirements. Typical values are characteristics of the device and are  
the result of engineering evaluations. Typical values are for information purposes only and are not part of the test-  
ing requirements.  
Table 1. dc Specifications, Normal Operation (See Figures 2 and 3.)  
Parameter  
Symbol  
Test Condition  
Min  
Typ  
Max  
Unit  
Activate/Nonactivate Voltage  
Breakover Current  
VAN  
IBO  
30.0  
37.0  
0.5  
39.0  
1.0  
15  
V
1 mA ISL 20 mA  
VOFF = 20 V  
mA  
V
dc Voltage Drop Active State  
dc Leakage Current  
VON  
ILKG  
IH/R  
13.75  
0.001  
0.5  
5
µA  
mA  
Hold/Release Current Active  
State  
0.1  
1.0  
Minimum ON Current  
Minimum ON Current  
IMIN1  
IMIN2  
VON < 54 V  
20  
35  
45  
mA  
mA  
54 V VON 100 V for 2 s Source  
Resistance: 200 to 4 kΩ  
9.0  
Minimum ON Current  
Maximum ON Current  
Maximum ON Current  
IMIN3  
IMAX1  
IMAX2  
VON > 100 V  
VON 70 V  
VON > 70 V  
0
0.2  
mA  
mA  
mA  
70  
VON  
-------------  
1 kΩ  
Optocoupler LED Current  
Active State (6N139)  
ILED  
0.2  
0.3  
10  
mA  
Table 2. ac Specifications, Normal Operation  
Parameter  
Symbol  
Test Condition  
Min  
Typ  
Max  
Unit  
ac Impedance  
ZMT  
D1  
200 Hz to 50 kHz (See Figure 4.)  
10  
75  
50  
84  
kΩ  
Linearity Distortion  
f = 200 Hz to 40 kHz, ISL = 1 mA to 20 mA  
dB  
VAPP 10.5 VPP (See Figures 4 and 5.)  
Linearity Distortion  
D2  
f = 200 Hz to 40 kHz, ISL = 1 mA to 20 mA  
50  
80  
dB  
VAPP 12 VPP (See Figures 4 and 5.)  
Lucent Technologies Inc.  
3
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Electrical Characteristics TA = 25 °C (continued)  
Table 3.Transition Specifications, Normal Operation (See Figure 6.)  
Parameter  
Symbol  
Test Condition  
Min  
Typ  
Max  
Unit  
Activate Time  
Release Time  
t1  
t2  
See Figure 6.  
See Figure 7.  
3.0  
3.0  
22  
10  
50  
100  
ms  
ms  
Testing Characteristics  
Table 4. Abnormal Conditions Class 1 (Survivable; No Device Damage)  
Assume carbon block primary protectors at demarcation point. Assume crowbar protection across the LH1465  
device with peak voltages limited to 250 V.  
Test Name  
Parameter  
Value  
Obsolete Sealing Current  
Voltage  
Duty Cycle  
72 V  
Continuous  
MLT Testing  
Voltage  
190 V  
200 Ω  
<1 s  
Source Impedance  
Duration  
Duty Cycle  
25%  
Inadvertent Ringing  
ac Voltage  
150 Vrms  
52 V  
dc Voltage  
Source Impedance  
Duty Cycle  
200 Ω  
33% over 6 s  
Lightning:*  
L1 Normal  
Peak Voltage  
600 V  
10 x 1000 µs  
200 A  
Rise Time vs. Fall Time  
Peak Current  
Repetitions (each polarity)  
4
L2 Normal  
L3 Normal  
Peak Voltage  
1000 V  
10 x 560 µs  
200 A  
Rise Time vs. Fall Time  
Peak Current  
Repetitions (each polarity)  
2
Peak Voltage  
1000 V  
10 x 160 µs  
200 A  
Rise Time vs. Fall Time  
Peak Current  
Repetitions (each polarity)  
2
* Voltages are applied from the first lead of the pair to ground with the second lead of the pair grounded, from the  
second lead of the pair to ground with the first lead grounded, and from the pair connected together to ground.  
Table 5. Abnormal Conditions Class 2 (Fail Safe; No Fire)  
Assume carbon block primary protectors at demarcation point. Assume crowbar protection across the LH1465  
device with peak voltages limited to 250 V.  
Test Name  
Parameter  
Value  
ac Power Cross:  
Case 1  
Voltage  
Source Impedance  
Duration  
300 Vrms—600 Vrms  
3 Ω  
5 s  
Case 2  
Case 3  
Voltage  
0 Vrms—600 Vrms  
0 A—2 A  
Source Current Limit  
Duration  
30 minutes  
Voltage  
Source Current Limit  
Duration  
300 Vrms—600 Vrms  
2 A—6 A  
5 s  
4
Lucent Technologies Inc.  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Component Specifications  
Table 6. LED Trigger Specifications During MLT Signaling  
Parameter  
Symbol Test Condition  
Min  
Typ Max Unit  
Applied ac Voltage  
60  
2
62  
3
VPEAK  
Hz  
Applied ac Frequency  
Number of Half Cycles Applied  
Total Loop Resistance  
6
10  
900  
4500  
Required LED Response at the Output of the 6N139:  
Number of Pulses per Half Cycle Applied  
Pulse Width (opto ON)  
Pulse Width (opto OFF)  
PWL  
PWH  
10  
10  
1
ms  
ms  
(See Figure 9.)  
(See Figure 9.)  
Table 7. LED Trigger Specifications During Dial Test Set Signaling (See Figure 10.)  
Parameter Symbol Test Condition  
Applied dc Battery Voltage  
Min  
Typ Max Unit  
–43.5  
4
–56  
8
Vdc  
%
Frequency (pulses per second)  
Percent Break  
40  
60  
Number of Pulses  
6
10  
Total Loop Resistance  
200  
4000  
Required LED Response at the Output of the 6N139:  
Number of Pulses per Make/Break Applied  
Pulse Width (opto ON)  
Pulse Width (opto OFF)  
PWL  
PWH  
10  
10  
1
ms  
ms  
(See Figure 9.)  
(See Figure 9.)  
Table 8. Discrete Component Specification (See Figures 10 and 11.)  
Component  
Function  
Value  
Tol. (%)  
Type  
Name  
R1  
Sets Current Limit  
68 Ω  
2.2 kΩ  
1 µF  
±1  
±5  
1/4 W  
4 W  
Provides Shunt Path During Current Limit  
R2  
Sets Activate Deactivate Time Constant:  
C1*  
±10  
Provides Gate-source Voltage Stabilization for Electronic Inductor  
Optoisolator Provides Interface to Maintenance Mode Circuit  
PD1  
6N139  
* Insulation resistance of this part must be >2 G.  
Lucent Technologies Inc.  
5
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Characteristic Curves  
1 A  
IMAX1  
IMIN1  
100 mA  
VON  
ON  
STATE  
10 mA  
1 mA  
VAN  
TRANSITION  
REGION  
IHR  
IBO  
100 µA  
10 µA  
1 µA  
0
TRANSITION  
REGION  
ILKG  
OFF  
STATE  
0
10  
20  
30  
40  
50  
ABSOLUTE VOLTAGE (V)  
12-1937  
Figure 2. I-V Requirement Template, 0 V to 50 V  
1 A  
(70 V, 70 mA)  
IMAX1  
100 mA  
10 mA  
1 mA  
IMAX2  
(54 V, 9 mA)  
IMIN1  
IMIN2  
100 µA  
10 µA  
1 µA  
0
(100 V, 0 mA)  
IMIN3  
0
50  
100  
150  
200  
250  
ABSOLUTE VOLTAGE (V)  
12-1938  
Figure 3. I-V Requirement Template, 0 V to 250 V  
6
Lucent Technologies Inc.  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Test Circuits  
68 µF  
DUT  
Vmt  
ac  
1 mA—20 mA  
GENERATOR  
dc CURRENT  
SOURCE  
1 kΩ  
Vsig  
1000 × Vmt  
|Zmt| =  
sig  
------------------------------  
V
V mt  
1000  
------------  
67.5  
Linearity = 20 log  
+ 20 log  
--------------------------------------------------  
Vsig 2nd Harm.  
12-1939  
Figure 4.Test Circuit for ac Impedance and Linearity  
ACCEPTABLE  
75  
UNACCEPTABLE  
50  
0
0
0.5  
10.0  
10.5  
11.0  
11.5  
12.0  
APPLIED ac VOLTAGE (VPP)  
12-1940  
Figure 5. Linearity Requirement Template  
Lucent Technologies Inc.  
7
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Test Circuits (continued)  
1 µF  
DUT  
85 mH  
85 Ω  
ACTIVATION: SEE FIG. 7  
DEACTIVATION: SEE FIG. 8  
12-1941  
Figure 6.Test Circuit for Activate and Deactivate Times  
43.5 V  
40 V  
SOURCE IMPEDANCE:  
200 —4 kΩ  
30 V  
20 V  
10 V  
0
t1  
MEASURE  
500 ms  
12-1942  
Figure 7. Applied Waveform for Activation Test  
8
Lucent Technologies Inc.  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Test Circuits (continued)  
2.0 mA  
CURRENT SOURCE LIMITED TO 30 V  
MEASURE  
1.5 mA  
1.0 mA  
500 ms  
t2  
0.5 mA  
0
12-1943  
Figure 8. Applied Waveform for Deactivation Test  
RLOOP  
200 —4 kΩ  
900 —4.5 k(MLT)  
SERIES  
ROTARY DIAL  
1 µF  
+
VBAT  
25 Ω  
85 mH  
85 Ω  
–43.5 V TO –56 V  
60 V PEAK, 2 Hz—3 Hz  
(MLT)  
25 Ω  
SHUNT  
ROTARY DIAL  
RING  
TIP  
+
VCC  
5 V  
8
7
6
5
R3  
10 kΩ  
1/4 W, 1%  
1
2
3
4
PD1  
R1 68 Ω  
C1  
1 µF  
R2  
2.2 kΩ  
4 W, 5%  
8
7
6
5
1
2
3
4
1/4 W, 1%  
+
VOUT  
LH1465AB  
6N139  
12-1944  
Notes:  
For series test, open SHUNT rotary dial.  
For shunt test, short SERIES rotary dial.  
For MLT test, short SERIES rotary dial and open SHUNT rotary dial.  
Figure 9.Test Circuit for LED Operation  
Lucent Technologies Inc.  
9
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Test Circuits (continued)  
RING TIP  
PD1  
1
2
8
7
6
5
R1 68 Ω  
C1  
1 µF  
1
2
3
4
8
7
6
5
2.2 kΩ  
R2  
1/4 W, 1%  
4 W, 5%  
3
4
LH1465AB  
6N139  
12-1945  
Figure 10. Connection Diagram  
1 µF  
25 Ω  
TIP  
TIP  
1
2
3
4
8
7
6
5
R1 68 Ω  
C1  
1 µF  
200 V—250 V  
PROTECTION  
2.2 kΩ  
4 W, 5%  
R2  
TRANSCEIVER  
RING  
1/4 W, 1%  
LH1465AB  
25 Ω  
RING  
PD1  
1
2
3
4
8
7
6
5
MAINTENANCE  
MODE  
CIRCUIT  
6N139  
12-1946  
Note: The Lucent T7256 is suitable for use as the transceiver. See Figure 6 in the T7256 Single-Chip NT1 (SCNT1) Transceiver Data Sheet for  
an example of a reference circuit that uses the LH1465 and the T7256.  
Figure 11.Typical NT1 Application  
10  
Lucent Technologies Inc.  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dc Termination IC  
Outline Diagrams  
Dimensions are in millimeters.  
8-Pin, Plastic DIP (LH1465AB)  
L
N
B
1
W
PIN #1 IDENTIFIER ZONE  
H
SEATING PLANE  
0.38 MIN  
2.54 TYP  
0.023 MAX  
5-4410r.1  
16-Pin, Plastic SOG (LH1465AAE)  
L
N
B
1
PIN #1 IDENTIFIER ZONE  
W
H
SEATING PLANE  
0.10  
0.024  
0.020 MAX  
1.27 TYP  
0.36 MIN  
5-4414r.2  
Package Description  
Package Dimensions  
Number  
of  
Pins (N)  
Maximum  
Height  
Above  
Maximum  
Width Without WidthIncluding  
Maximum  
Maximum  
Length (L)  
Leads (B)  
Leads (W)  
Board (H)  
PDIP3 (Plastic Dual-In-Line Package)  
SOG (Small Outline, Gull-Wing)  
8
10.16  
10.49  
6.48  
7.62  
7.87  
5.46  
2.67  
16  
10.64  
Lucent Technologies Inc.  
11  
Data Sheet  
February 1998  
LH1465AB/AAE ISDN dcTermination IC  
Ordering Information  
Device  
Package  
Comcode  
LH1465AB  
8-Pin, Plastic DIP  
106444987  
106725054  
LH1465AAE  
16-Pin, Plastic SOG  
For additional information, contact your Microelectronics Group Account Manager or the following:  
INTERNET:  
E-MAIL:  
http://www.lucent.com/mirco  
docmaster@micro.lucent.com  
U.S.A.:  
Microelectronics Group, Lucent Technologies Inc., 555 Union Boulevard, Room 30L-15P-BA, Allentown, PA 18103  
1-800-372-2447, FAX 610-712-4106 (In CANADA: 1-800-553-2448, FAX 610-712-4106)  
ASIA PACIFIC: Microelectronics Group, Lucent Technologies Singapore Pte. Ltd., 77 Science Park Drive, #03-18 Cintech III, Singapore 118256  
Tel. (65) 778 8833, FAX (65) 777 7495  
JAPAN:  
Microelectronics Group, Lucent Technologies Japan Ltd., 7-18, Higashi-Gotanda 2-chome, Shinagawa-ku, Tokyo 141, Japan  
Tel. (81) 3 5421 1600, FAX (81) 3 5421 1700  
EUROPE:  
Data Requests: MICROELECTRONICS GROUP DATALINE: Tel. (44) 1189 324 299, FAX (44) 1189 328 148  
Technical Inquiries: GERMANY: (49) 89 95086 0 (Munich), UNITED KINGDOM: (44) 1344 865 900 (Bracknell),  
FRANCE: (33) 1 41 45 77 00 (Paris), SWEDEN: (46) 8 600 7070 (Stockholm), FINLAND: (358) 9 4354 2800 (Helsinki),  
ITALY: (39) 2 6601 1800 (Milan), SPAIN: (34) 1 807 1441 (Madrid)  
Lucent Technologies Inc. reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use or application. No  
rights under any patent accompany the sale of any such product(s) or information.  
Copyright © 1997 Lucent Technologies Inc.  
All Rights Reserved  
February 1998  
DS97-414ISDN (Replaces DS93-015HVIC and DA95-031ISDN)  

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