SL1003A090C [LITTELFUSE]

Surge Protection Circuit, PACKAGE-3;
SL1003A090C
型号: SL1003A090C
厂家: LITTELFUSE    LITTELFUSE
描述:

Surge Protection Circuit, PACKAGE-3

文件: 总3页 (文件大小:218K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Gas Discharge Tubes  
High Performance Beta Range  
RoHS  
Pb  
®
Greentube™ SL1003 Series Gas Plasma Arresters  
The SL1003 series has been especially developed for Broadband  
equipment. Unique design features offer high levels of perform-  
ance on fast rising transients in the domain of 100V/µS to  
1KV/µS, which are those most likely from induced Lightning dis-  
turbances. These devices have Ultra low capacitance ( typically  
1.2pF or less ) and present insignificant signal losses up to  
1.5GHz. These devices are extremely robust and are able to  
divert a 5000A pulse without destruction. For AC Power Cross of  
long duration, overcurrent protection is recommended.  
FEATURES  
RoHS compliant  
• Low insertion loss  
Surface mountable  
5KA surge capability tested with 8/20µS pulse as defined by  
IEC 61000-4-5  
GHz working frequency.  
Excellent response to fast rising transients.  
Can be used to meet Telcordia GR1089 without  
series resistance  
10/700 6KV capability, as per ITUT k.21, enhanced test level  
2000 Amp 2/10µS surge rating  
Applications:  
Broadband equipment.  
ADSL equipment.  
XDSL equipment.  
Satellite and CATV equipment.  
General telecom equipment.  
3 ELECTRODE GDT  
GRAPHICAL SYMBOL  
ORDERING INFORMATION  
SL  
XXX  
A
1003  
All dimensions in mm  
Pin Configuration  
Voltage  
Type  
3 Pole Arrester  
C= Core  
R= Leaded  
331  
w w w. l i t t e l f u s e. c o m  
Gas Discharge Tubes  
High Performance Beta Range  
RoHS  
®
Pb Greentube™ SL1003 Series Gas Plasma Arresters  
LITTELFUSE 3 TERMINAL MINI ARRESTER SERIES  
TOTALLY NON-RADIOACTIVE, UL RECOGNIZED  
Nominal  
On-State  
Voltage @  
1A (V)  
Max Dynamic Max Repetitive Insulation  
Max Dynamic  
Breakover  
Voltage @  
Max  
Capacitance4  
(pF)  
Holdover  
Voltage1  
(V)  
Resistance7  
Alternating  
Discharge  
Breakover  
Voltage @  
Impulse  
DC Voltage  
@100V/sec  
(V)  
Part Number  
Discharge  
()  
Current3 (A)  
2
1 kV/µs (Vbr)  
100 V/µs (Vbr)  
Current (kA)  
1.2  
1.2  
1.2  
1.2  
1.2  
1.2  
1.2  
1.2  
SL1003A090  
SL1003A230  
9
5
5
5
5
5
5
5
5
50  
600  
350  
400  
420  
450  
500  
550  
650  
20  
20  
20  
20  
20  
20  
20  
20  
700  
500  
600  
600  
650  
700  
800  
800  
1x10 @50V  
90  
5
9
135  
135  
135  
135  
135  
135  
135  
1x10 @100V  
230  
250  
260  
300  
350  
400  
450  
5
5
5
5
5
5
5
9
SL1003A250  
SL1003A260  
SL1003A300  
1x10 @100V  
9
1x10 @100V  
9
1x10 @100V  
9
1x10 @100V  
SL1003A350  
SL1003A400  
SL1003A450  
9
1x10 @100V  
9
1x10 @100V  
Notes:  
(1) Tested according to ITU-T Rec.K12  
(2) 10 shots, 8/20µs wave form per IEC 61000-4-5  
(3) Measured @ 100 Volts  
(4) Measured @ 1 MHz, 0 volt bias  
(5) Measured with 2/10µs wave form  
(6) Measured with 10/350µs wave form  
8
(7) Measured @ 100VDC except 90V which is measured at 50VDC  
Voltage vs Time Characteristic  
Typical Intsieorn loss figures  
Max dynamic breakover  
voltage  
@1.0 GHz = 0.01dB  
@1.4 GHz = 0.1dB  
@1.8 GHz = 0.53dB  
@2.1 GHz = 0.81dB  
@2.45 GHz = 1.0dB  
@2.8 GHz = 1.2dB  
Hold-over voltage  
On-State voltage  
@3.1 GHz= 1.5dB  
@3.5 GHz = 2.1dB  
0
200  
400  
600  
800  
1000  
1200  
Time (ns)  
332  
w w w. l i t t e l f u s e. c o m  
Gas Discharge Tubes  
High Performance Beta Range  
RoHS  
®
Pb Greentube™ SL1003 Series Gas Plasma Arresters  
Profileforwave soldering  
Profilefor reflow soldering  
250  
225  
200  
175  
150  
125  
100  
75  
300  
o
Solder  
T1 max = 266C  
Flow Area  
o
T1 = 239C  
200  
Tm = 179oC  
ForcedCooling  
50  
25  
0
Preheating  
Area  
50  
100  
150  
200  
250  
300  
350  
400  
450  
500  
0
Time in seconds  
100  
10  
20  
Time(seconds)  
30  
40  
Notes:  
T1 max  
T1  
= MaximumTabTemperature = 266oC  
= FlowTempeartureof Solder = 239oC  
o
Tm  
= Melting Pointof Solder = 179 C  
o
Tamb  
= 25 C  
Maximum permissible rate of temperature change = o7C / sec  
333  
w w w. l i t t e l f u s e. c o m  

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