UD2-12SNUN [RENESAS]

Electromechanical Relay, DPDT, Latched, 100mW (Coil), 1A (Contact), 220VDC (Contact), Random, AC/DC Output;
UD2-12SNUN
型号: UD2-12SNUN
厂家: RENESAS TECHNOLOGY CORP    RENESAS TECHNOLOGY CORP
描述:

Electromechanical Relay, DPDT, Latched, 100mW (Coil), 1A (Contact), 220VDC (Contact), Random, AC/DC Output

光电二极管
文件: 总13页 (文件大小:183K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DATA SHEET  
MINIATURE SIGNAL RELAY  
UC2/UD2 SERIES  
Ultra-small package, Low profile, Surface mounting type  
DESCRIPTION  
NEC TOKIN's UC2/UD2 relay is a new generation miniature signal relays of super compact and low profile package.  
FEATURES  
• Small mounting size and low profile package.  
• Telcordia (2500 V surge coil to contacts) and FCC (1500 V) surge capability.  
• IEC60950/UL1950/EN60950 spacing and high breakdown voltage.  
(Basic insulation class on 200 V working voltage)  
• Low power consumption 140 mW  
APPLICATION  
Electronic switching systems, PBX, terminal equipment, telephone.  
For Right Use of Miniature Relays  
DO NOT EXCEED MAXIMUM RATINGS.  
Do not use relays under exceeding conditions such as over ambient temperature, over voltage and over current.  
Incorrect use could result in abnormal heating, damage to related parts or cause burning.  
READ CAUTIONS IN THE SELECTION GUIDE.  
Read the cautions described in NEC/TOKIN's "Miniature Relays" when your choose relays for your application.  
The information in this document is subject to change without notice.  
WORLD P RODUCTS INC.  
Document No. 0614EMDD03VOL02E  
Date Published May 2005 N  
Printed in Japan  
Ph (707) 996-5201 Fx (707) 996-3380  
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UC2/UD2 SERIES  
DIMENSIONS AND PAD LAYOUTS (Unit : mm [inch])  
UC2 SERIES  
mm [inch]  
6.5 [0.256]  
(mm)  
7.6  
2.2 2.2  
8-φ0.85  
10.6 [0.417]  
3.2  
5.08  
[0.2]  
(Bottom view)  
(1.5)  
(1.5)  
3.2  
2.2  
2.2  
[0.126] [0.087][0.087]  
Note. General tolerance : ±0.1  
Tolerance of lead pitch is : ±0.15 mm [0.006inch]  
Another tolerance is ±0.3 mm [0.012 inch]  
( ) is reference value.  
Value of trimmed lead type (NJ type)  
UD2 SERIES  
• STANDARD  
mm [inch]  
(mm)  
3.2  
2.2 2.2  
10.6 [0.417]  
6.5 [0.256]  
(1.5)  
(1.5)  
5.08 [0.2]  
3.2  
2.2  
2.2  
8.4 [0.331]  
0.8  
[0.126] [0.087][0.087]  
(Bottom view)  
Tolerance of lead pitch is : ±0.15 mm [0.006inch]  
Another tolerance is ±0.3 mm [0.012 inch]  
( ) is reference value.  
Note. General tolerance : ±0.1  
• MINIMUM FOOTPRINT TYPE  
mm [inch]  
(mm)  
3.2  
2.2 2.2  
10.6 [0.417]  
6.5 [0.256]  
(1.5)  
(1.5)  
5.08 [0.2]  
0.8  
3.2  
2.2  
2.2  
6.8 [0.268]  
[0.126] [0.087][0.087]  
(Bottom view)  
Tolerance of lead pitch is : ±0.15 mm [0.006inch]  
Another tolerance is ±0.3 mm [0.012 inch]  
( ) is reference value.  
Note. General tolerance : ±0.1  
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2
UC2/UD2 SERIES  
PIN CONFIGURATIONS (bottom view)  
UC2 SERIES  
1
8
2
7
3
6
4
5
1
8
2
7
3
6
4
5
+
R
+
+
S
Index mark of  
relay direction  
Non-latch type  
(not energized position)  
Single coil latch type  
(reset position)  
S : Coil polarity of set (operate)  
R : Coil polarity of reset (release)  
UD2 SERIES  
1
8
2
7
3
6
4
1
8
2
7
3
6
4
+
R
+
+
S
5
5
Index mark of  
relay direction  
Non-latch type  
(not energized position)  
Single coil latch type  
(reset position)  
S : Coil polarity of set (operate)  
R : Coil polarity of reset (release)  
MARKINGS (top view)  
<2>  
<3>  
<1> Part number  
<2> Manufacturer  
<3> Country of origin  
<4> Date code  
<1>  
J A P A N  
U D 2 4. 5 N U  
<5> Index mark of relay direction  
(pin No. 1, 8)  
0 0 3 5  
<5>  
<4>  
SAFETY STANDARD AND RATING  
TUV Certified  
(EN61810)  
UL Recoginzed  
(UL508)*  
CSA Certified  
(CSA C22.2 No. 14)+  
File No.E73266  
File No.LR46266  
No. 2050596  
Creepage and clearance of coil to contact is over  
than 2 mm (According EN60950)  
30 Vdc,1A (resistive)  
110 Vdc, 0.3A (resistive)  
125 Vac,0.5A (resistive)  
Basic insulation class  
*Spacing : UL840  
+Spacing : CSA std950  
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3
UC2/UD2 SERIES  
PERFORMANCE CHARACTERISTICS (Community)  
Contact Form  
2 Form c  
Maximum Switching Power  
30W (resistive)  
220 Vdc  
37.5 VA (resistive)  
250 Vac  
Maximum Switching Voltage  
Contact Ratings  
Maximum Switching Current  
1 A  
Maximum Carrying Current  
Minimun Contact Ratings  
1 A  
10 mV.dc, 10 µA 4  
Initial Contact Resistance  
100 mMax. (Initial)  
Contact Material  
Silver alloy with gold alloy overlay  
140 to 230 mW  
Non-Latch Type  
Nominal Operating Power  
Single Coil Latch Type  
100 to 120 mW  
Operate Time (Excluding Bounce)  
Release Time (Excluding Bounce)  
Insulation Resistance  
Approximately 2 ms  
Approximately 1 ms without diode  
1000 Mat 500 Vdc  
Between Open Contacts  
1000 Vac for one minute (1500 V surge, 10 × 160 µs 1  
)
Breakdown Voltage  
Shock Resistance  
Between Adjacent Contacts  
Between Coil and Contacts  
1500 Vac for one minute (2500 V surge, 2 × 10 µs 1  
)
735 m / s2 (misoperating)  
980 m / s2 (destructive failure)  
10 to 55 Hz at double amplitude of 3 mm  
(misoperating)  
Vibration Resistance  
10 to 55 Hz, double amplitude of 5 mm  
(Destructive failure)  
Ambient Temperature  
Coil Temperature Rise  
–40 to +85°C  
18 degrees at nominal coil voltage (140 mW)  
5 × 107 3 operations (Non-latch type)  
1 × 107 operations (Latch type)  
30 Vdc 1 A (resistive), 1 × 105 operations at 20°C  
125 Vac 0.3 A (resistive), 1 × 105 operations at 20°C  
No-load  
Load  
Running specifications  
Weight  
Approximately 0.8 grams  
1 rise time : 10 µs, decay time to half crest : 160 µs  
2 rise time : 2 µs, decay time to half crest : 10 µs  
3 This shows a number of operation where it can be running by which a fatal is not caused, and number of operation by which a  
steady characteristic is maintained is 1 × 107 operations.  
4 This value is a reference value in the resistive load.  
Minimum capacity changes depending on switching frequency and enviroment temperature and the load.  
RECOMMENDED RELAY DRIVE CONDITIONS  
Drive under conditions. If it is impossible, please inquire to NEC/TOKIN.  
Nonlatch type  
Voltage : within ±5% st nominal voltage  
Single coil latch type  
Square pulse (rise and fall time is rapidly)  
Ambient temperature  
±5% at nomianl voltage  
Pulse height : within  
Pulse width : More than 10 ms  
40 +85°C  
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4
UC2/UD2 SERIES  
PART NUMBER SYSTEM  
U C 2 – 3 S N U  
Option NU: Standard  
NR: Silver-Nickel alloy contact (with Gold alloy overlay)  
NJ: Trimmed lead type  
NRJ: Trimmed lead type with Silver-Nickel alloy contact  
Latch type Nil: Nonlatch type  
S: Single coil latch type  
Nominal coil voltage  
A numerical value of coil voltage (See the following lineup)  
Series name  
U C 2 – 3 S N U – L  
Package Nil: Tube  
L: Embossed carrying tape (L type)  
R: Embossed carrying tape (R type)  
L6: Embossed carrying tape (L type) with MBB *  
R6: Embossed carrying tape (R type) with MBB *  
(*MBB: Moisture Barrier bag)  
Option NU: Standard  
NR: Silver-Nickel alloy contact (with Gold alloy overlay)  
NUN: Minimum footprint type  
NRN: Minimum footprint type with Silver-Nickel alloy contact  
Latch type Nil: Nonlatch type  
S: Single coil latch type  
Nominal coil voltage  
A numerical value of coil voltage (See the following lineup)  
Series name  
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5
UC2/UD2 SERIES  
NOMINAL LINEUP  
Non-latch Type  
at 20°C  
Nominal Coil  
Voltage  
Coil  
Must Operate  
Voltage*  
(Vdc)  
Must Release  
Voltage*  
(Vdc)  
Nominal  
operate power  
(mW)  
Resistance  
() ±10 %  
(Vdc)  
1.5  
3
16  
64.3  
145  
1.13  
2.25  
3.38  
3.75  
4.5  
0.15  
0.3  
140  
140  
140  
140  
140  
140  
140  
230  
4.5  
5
0.45  
0.5  
178  
6
257  
0.6  
9
579  
6.75  
9.0  
0.9  
12  
24  
1028  
2504  
1.2  
18.0  
2.4  
Single-Coil Latch Type  
at 20°C  
Nominal Coil  
Voltage  
Coil  
Must Operate  
Voltage*  
(Vdc)  
Must Release  
Voltage*  
(Vdc)  
Nominal  
operate power  
(mW)  
Resistance  
() ±10 %  
(Vdc)  
1.5  
3
22.5  
90  
1.13  
2.25  
3.38  
3.75  
4.5  
1.13  
2.25  
3.38  
3.75  
4.5  
100  
100  
100  
100  
100  
100  
100  
120  
4.5  
5
202.5  
250  
6
360  
9
810  
6.75  
9.0  
6.75  
9.0  
12  
24  
1440  
4800  
18.0  
18.0  
* Test by pulse voltage  
The latch type relays should be initialized at appointed position before using, and should be enegized to specific polarity by above  
polarity to avoid wrong operation. Any special coil requirement, Please contact NEC/TOKIN for availability.  
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6
UC2/UD2 SERIES  
PERFORMANCE DATA  
COIL TEMPERATURE RISE  
Temperature is measured by coil resistance.  
30  
20  
10  
0
30  
20  
10  
0
Applied power 0.23W  
Applied power 0.14W  
0
100  
150  
200  
250  
0
5
10  
15  
20  
Applied Power (mW)  
Applied Time (minute)  
SWITCHING CAPACITY  
MAXIMUM COIL VOLTAGE  
This is allowed maximum value.  
This is a maximum value of permissible alteration.  
Inquiry for NEC/TOKIN at continuous use.  
Inquiry for NEC/TOKIN under maximum value at continuous use.  
DC (Resistive)  
AC (Resistive)  
200  
150  
100  
50  
2.0  
1.0  
0.5  
0.2  
0.1  
0
10  
20  
50  
100  
200  
40 20  
0
20  
40  
60  
80  
100  
250V.AC  
220V.DC  
Contact voltage (V)  
Ambient temperature (degree C)  
APPLIED VOLTAGE VS. TIMING (Sample : UC2-5NU)  
(Without coil diode)  
4
3
2
1
0
4
3
2
1
0
0
0
100  
150  
200  
250  
100  
150  
200  
250  
Applied power (mW)  
Applied power (mW)  
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7
UC2/UD2 SERIES  
OPERATE AND RLEASE VOLTAGE VS. AMBIENT TEMPERATURE  
This shows a typical change of operate (release) voltage. Maximum value of operate is estimated, so it must be applied  
more than this value for safety operation. In case of "hot start operation", please inquiry for NEC/TOKIN.  
100  
Operate voltage (maximum)  
80  
Operate voltage (typical)  
60  
40  
Release voltage (typical)  
20  
0
40  
20  
0
20  
40  
60  
80  
100  
Ambient temperature (degree C)  
RUNNING TEST (Nonload)  
(Load : None, Driving : 5V. DC, 50Hz, 50%duty, Ambient temperature : Room temperature, Sample : UC2-5NU 20 pieces)  
10000  
5
Operate voltage  
Release voltage  
4
3
2
1000  
100  
10  
1
0
0
20  
50  
100  
500 1000  
0
20  
50  
100  
500 1000  
Operations (×104)  
Operations (×104)  
RUNNING TEST (Load)  
(Load : 50V. DC 0.1A resistive, Driving : 5V. DC, 5Hz, 50%duty, Ambient temperature : 85 degree C, Sample : UC2-5NU 10 pieces)  
10000  
5
Operate voltage  
Release voltage  
4
3
2
1000  
100  
10  
1
0
0
2
5
10  
50  
100  
0
2
5
10  
50  
100  
Operations (×104)  
Operations (×104)  
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8
UC2/UD2 SERIES  
BREAKDOWN VOLTAGE  
Sample: UC2-5NU 10 pieces  
(a) Between open contacts  
(b) Between adjacent contacts  
100  
50  
0
100  
50  
0
0.5  
1.0  
1.5  
2.0  
0.5  
1.0  
1.5  
2.0  
Breakdown voltage (K V)  
Breakdown voltage (K V)  
(c) Between coil to contact  
100  
50  
0
1.5  
2.0  
2.5  
2.5  
Breakdown voltage (K V)  
ALTERNATION OF VOLTAGE AT DENSELY MOUNTING (Magnet interference)  
Alternation of operate voltage  
Alternation of release voltage  
+40  
+30  
+20  
+10  
0
+40  
+30  
+20  
+10  
0
10  
20  
30  
40  
10  
20  
30  
40  
I
II  
III  
IV  
V
VI  
I
II  
III  
IV  
V
VI  
Mounting layout  
Mounting layout  
Device under test  
ON OFF  
ON  
OFF  
OFF  
ON  
OFF  
ON  
I
II  
III  
IV  
ON  
OFF  
OFF  
OFF  
ON  
ON  
V
VI  
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9
UC2/UD2 SERIES  
TUBE PACKAGE (UC2, UD2)  
Dimension of Package (Unit : mm)  
50 pieces / Tube  
Material : Polyvinyl chloride  
(anti-static treated)  
560.0  
11  
Outline of Package  
Rubber stopper (Yellow)  
Rubber stopper (Green)  
Index Mark  
TAPE PACKAGE (UD2)  
APPEARANCE  
TAPE DIMENSION mm (inch)  
A
Reel  
2.0(0.079)  
Top cover tape  
0.4  
(0.016)  
12.0(0.47)  
4.0(0.157)  
φ
1.5  
(0.054)  
Embossed carrying tape  
φ
2.2  
(0.087)  
B
A
Max.6.2  
B
9.2  
UD2-∗∗NU  
(0.244) (0.362)  
UD2-∗∗NUN Max.6.6  
7.5  
(0.260) (0.295)  
Relay orientation mark and tape carrying direction.  
Orientation mark  
Orientation mark  
Tape carrying direction  
Carrying tape type  
Part number  
L
R
UD2-∗∗∗-R, R6  
UD2-∗∗∗-L, L6  
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10  
UC2/UD2 SERIES  
SOLDERING TEMPERATURE CONDITION  
Through-hole mounting type (UC2)  
<1> Automatic soldering  
Preheating  
: 100°C max. 1 minute max.  
Solder temperature : 260°C max.  
Solder time  
: 5 seconds max.  
<2> Manual soldering  
Solder temperature : 350°C max.  
Solder time : 3 seconds max.  
Surface mounting type (UD2)  
IRS Method  
Temperature (degree C)  
max. 240  
220  
200  
180  
45 (max. 70)  
Time (sec.)  
70 (max. 120)  
190 (max. 300)  
Note:  
1. Temperature profile shows printed circuit board surface on the relay termianl portion.  
2. Check the actual soldering to use other method except above mentioned temperature profiles.  
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11  
UC2/UD2 SERIES  
Because the operating temperature range varies depending  
NOTES ON CORRECT USE  
1. Notes on contact load  
on the humidity, use the relay in the temperature range  
illustrated in the figure below. Prevent the relay from being  
frozen and avoid the generation of condensation.  
Make sure that the contact load is within the specified range;  
The relay maintains constant sealability under normal  
otherwise, the lifetime of the contacts will be shortened  
considerably. Note that the running performance shown is an  
example, and that it varies depending on parameters such as the  
type of load, switching frequency, driver circuit, and ambient  
temperature under the actual operating conditions. Evaluate the  
performance by using the actual circuit before using the relay.  
atmospheric pressure (810 to 1,200 hpa). Its sealability may  
be degraded or the relay may be deformed and malfunction if  
it is used under barometric conditions exceeding the specified  
range.  
The same applies when the relay is stored or transported.  
Keep the upper-limit value of the temperature to which the  
relay is exposed after it is removed from the carton box to  
within 50˚C.  
2. Driving relays  
If the internal connection diagram of a relay shows + and -  
If excessive vibration or shock is applied to the relay, it may  
symbols on the coil, apply the rated voltage to the relay in the  
specified direction. If a rippled DC current source is used,  
abnormalities such as beat at the coil may occur.  
malfunction and the contacts remain closed. Vibration or shock  
applied to the relay during operation may cause considerable  
damage to or wearing of the contacts. Note that operation of  
a snap switch mounted close to the relay or shock due to the  
operation of magnetic solenoid may also cause  
malfunctioning.  
The maximum voltage that can be applied to the coil of the  
relay varies depending on the ambient temperature. Generally,  
the higher the voltage applied to the coil, the shorter the operating  
time. Note, however, that a high voltage also increases the bounce  
of the contacts and the contact opening and closing frequency,  
which may shorten the lifetime of the contacts.  
4. Notes on mounting relays  
When mounting a relay onto a PC board using an automatic  
If the driving voltage waveform of the relay coil rises and  
chip mounter, if excessive force is applied to the cover of the  
relay when the relay is chucked or inserted, the cover may be  
damaged or the characteristics of the relay degraded. Keep  
the force applied to the relay to within 1 kg.  
falls gradually, the inherent performance of the relay may not  
be fully realized. Make sure that the voltage waveform  
instantaneously rises and falls as a pulse.  
Avoid bending the pins to temporarily secure the relay to the  
Coil rated voltage  
PC board. Bending the pins may degrade sealability or  
adversely affect the internal mechanism.  
It is recommended to solder the relay onto a PC board under  
the following conditions:  
<1> Reflow soldering  
Refer to the recommended soldering temperature profile.  
<2> Flow soldering  
0
Solder temperature: 260˚C max., Time: 5 seconds max.,  
Preheating: 100˚C max./1 minute max.  
<3> Manual soldering  
Solder temperature: 350˚C, Time: 2 to 3 seconds  
Ventilation immediately after soldering is recommended.  
Less than 1 ms  
Less than 1 ms  
Avoid immersing the relay in cleaning solvent immediately  
after soldering due to the danger of thermal shock being  
applied to the relay.  
For a latching relay, apply a voltage to the coil according to  
the polarity specified in the internal connection diagram of  
the relay.  
Use an alcohol-based or water-based cleaning solvent. Never  
use thinner and benzene because they may damage the relay  
housing.  
If a current is applied to the coil over a long period of time,  
the coil temperature rises, promoting generation of organic  
gas inside the relay, which may result in faulty contacts. In  
this case, use of a latching relay is recommended.  
Do not use ultrasonic cleaning because the vibration energy  
generated by the ultrasonic waves may cause the contacts to  
remain closed.  
The operating time and release time indicate the time required  
for each contact to close after the voltage has been applied to  
or removed from the coil. However, because the relay has a  
mechanical structure, a bounce state exists at the end of the  
operating and release times. Furthermore, because additional  
time is required until the contact stabilizes after being in high-  
resistance state, care must be taken when using the relay at  
high speeds.  
5. Handling  
Relays are packaged in magazine cases for shipment. If a  
space is created in the case after some relays have been  
removed, be sure to insert a stopper to secure the remaining  
relays in the case. If relays are not well secured, vibration during  
transportation may cause malfunctioning of the contacts.  
Exercise care in handling the relay so as to avoid dropping it  
3. Operating environment  
or allowing it to fall. Do not use a relay that has been dropped.  
If a relay drops from a workbench to the floor, a shock of 9,800  
m/s2 (1,000 G) or more is applied to the relay, possibly  
damaging its functions. Even if a light shock has been applied  
to the relay, thoroughly evaluate its operation before using it.  
Make sure that the relay mounted in the application set is  
used within the specified temperature range. Use of a relay at  
a temperature outside this range may adversely affect  
insulation or contact performance.  
Latching relays are factory-set to the reset state for shipment.  
If the relay is used for a long period of time in highly humid  
A latching relay may be set, however, by vibration or shock  
applied while being transported. Be sure to forcibly reset the  
relay before using it in the application set. Also note that the  
relay may be set by unexpected vibration or shock when it is  
used in a portable set.  
(RH 85% or higher) environment, moisture may be absorbed  
into the relay. This moisture may react with the NOx and SOx  
generated by glow discharges that occur when the contacts  
are opened or closed, producing nitric or sulfuric acid. If this  
happens, the acid produced may corrode the metallic parts of  
the relay, causing operational malfunction.  
The sealability of a surface-mount relay may be lost if the  
relay absorbs moisture and is then heated during soldering.  
When storing relays, therefore, observe the following points:  
<1> Please use relays within 12 months after delivery. (Storage  
conditions : 30 degrees C / 60% RH)  
85  
80  
<2> ForMBBpacking, Pleaseuserelayswithin2yearsafterdelivery.  
(Storage conditions : 30 degrees C / 60% RH)  
60  
40  
After opening MBB packing, Please use within 3 months.  
(Storage conditions : 30 degrees C / 60% RH)  
20  
5
60 40 20  
0
20 40  
60 80 100  
Temperature (°C)  
Permanent magnets are used in polarized relays.  
For this reason, when magnet, transformer, or speaker is  
located nearby, the relay characteristics may change and faulty  
operations may result.  
WORLD P RODUCTS INC.  
Ph (707) 996-5201 Fx (707) 996-3380  
www.worldproducts.com  
12  
e-mail: corpsales@worldproducts.com  
UC2/UD2 SERIES  
No part of this document may be copied or reproduced in any form or by any means without the  
prior written consent of NEC/TOKIN Corporation. NEC/TOKIN Corporation assumes no resposibility  
for any errors which may appear in this document.  
NEC/TOKIN Corporation does not assume any liability for infringement of patents, copyrights or  
other intellectual property rights of third parties by or arising from use of a device described herein  
or any other liability arising from use of such device. No license, either express, implied or  
otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC  
/TOKIN Corporation or others.  
While NEC/TOKIN Corporation has been making continuous effort to enhance the reliability of its  
electronic components, the possibility of defects cannot be eliminated entirely. To minimize risks  
of damage or injury to persons or property arising from a defect in an NEC/TOKIN electronic component,  
customers must incorporate sufficient safety measures in its design, such as redundancy,fire-  
containment, and anti-failure features. NEC/TOKIN devices are classified into the following three  
quality grades:  
"Standard," "Special," and "Specific". The Specific quality grade applies only to devices  
developed based o n a c u s t o m e r d e s i g n a t e d " q u a l i t y a s s u r a n c e p r o g r a m " f o r a s p e c i f i c  
application. The recommended applications of a device depend on its quality grade, as indicated  
below. Customers must check the quality grade of each device before using it in a particular  
application.  
Standard: Computers, office equipment, communications equipment, test and measurement  
equipment, audio and visual equipment, home electronic appliances, machine tools,  
personal electronic equipment and industrial robots  
Special:  
Transportation equipment (automobiles, trains, ships, etc.), traffic control systems,  
anti-d i s a s t e r s y s t e m s , a n t i - c r i m e s y s t e m s , s a f e t y e q u i p m e n t a n d m e d i c a l  
equipment (not specifically designed for life support)  
Specific: Aircrafts, aerospace equipment, submersible repeaters, nuclear reactor control  
systems, life support systems or medical equipment for life support, etc.  
The quality grade of NEC/TOKIN devices is "Standard" unless otherwise specified in NEC/TOKIN’s  
Data Sheets or Data Books. If customers intend to use NEC/TOKIN devices for applications other  
than those specified for Standard quality grade, they should contact an NEC/TOKIN sales representative  
in advance.  
(Note)  
(1) "NEC/TOKIN" as used in this statement means NEC/TOKIN Corporation and also includes  
its majority-owned subsidiaries.  
(2) "NEC/TOKIN electronic component products" means any electronic component product developed  
or manufactured by or for NEC/TOKIN (as defined above).  
DE0202  
WORLD P RODUCTS INC.  
Ph (707) 996-5201 Fx (707) 996-3380  
www.worldproducts.com  
e-mail: corpsales@worldproducts.com  

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