TG-225 [CLARE]

HIGH-ENERGY TRIGGERED SPARK GAPS; 高能量触发的火花隙
TG-225
型号: TG-225
厂家: CLARE    CLARE
描述:

HIGH-ENERGY TRIGGERED SPARK GAPS
高能量触发的火花隙

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HIGH-ENERGY TRIGGERED SPARK GAPS  
Triggergaps  
DESCRIPTION  
CP Clare's Triggergaps are high-energy spark gaps that are capable of switching stored energy in a fraction of a  
microsecond. Triggergaps require no standby power, are extremely rugged, and require only a low-energy, high-  
voltage triggering pulse. The miniature TA series (1-15kV) provides switching capability for pulses with energy  
content as high as 50 joules. The larger TB series (2.5-25 kV) will reliably switch pulses with up to 300 joules of  
energy. The TG-221 to 226 (1-60 kV) can switch pulses with energy contents of up to 6000 joules and feature  
adjustable self-breakdown voltages.  
FEATURES  
APPLICATIONS  
Tight self-breakdown voltage tolerance  
(±10%;TA & TB series)  
Adjustable self-breakdown voltage  
(TG-221 to TG-226)  
High current surge generators  
Exploding bridge wire systems  
Crowbars  
Flashtube triggers  
Rugged ceramic-metal construction  
Refractory metal electrodes  
Corrosion-resistant stainless steel  
external surfaces (TB series)  
STANDARD VOLTAGES  
Series or P/N  
Self-Breakdown  
Units  
Voltage (typ)  
TA  
1.0  
2.0  
5.0  
7.0  
10.0  
15.0  
kV  
kV  
kV  
kV  
kV  
kV  
TB  
2.5  
5.0  
10.0  
15.0  
20.0  
25.0  
kV  
kV  
kV  
kV  
kV  
kV  
TG-221  
TG-222  
TG-224  
TG-225  
TG-226  
1.0-20.0  
18.0-40.0  
1.0-20.0  
18.0-40.0  
35.0-60.0  
kV  
kV  
kV  
kV  
kV  
North America: 1-800-CPCLARE  
Europe: 32-11-300868  
Asia: 886-2-2523-6368  
Japan: 81-3-3980-2212  
558  
HIGH-ENERGY TRIGGERED SPARK GAPS  
Triggergaps  
SPECIFICATIONS  
All characteristics at 25˚C  
TA-1.0  
TA-2.0  
TA-5.0  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
Applied Voltage  
100V/s  
EZ  
Ebb  
etrig  
-
0.9 1.0  
1.1  
0.85  
2.5  
1.8  
0.7  
3.0  
2.0  
-
-
2.2  
1.7  
2.5  
4.5  
1.2  
3.5  
5.0  
-
-
5.5  
4.2  
2.5  
kV  
kV  
0.4  
3.0  
-
-
Trigger Voltage1  
tr=0.5µs, PW=3.0µs  
kV pk  
Dimension A  
0.687 0.750 0.813 0.697 0.760 0.823 0.697 0.760 0.823 inches  
Life Ratings  
Discharge Life2  
1000 shots into .2Ω  
-
45  
-
-
50  
-
-
50  
-
-
J
TA-7.0  
TA-10.0  
TA-15.0  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
Applied Voltage  
100V/s  
EZ  
Ebb  
etrig  
-
6.3 7.0  
7.7  
5.8  
2.8  
9.0 10.0 11.0 13.5 15.0 16.5  
kV  
kV  
1.9  
3.7  
-
-
3.5  
5
-
-
8.5  
3.5  
7.0  
8.0  
-
-
12.5  
4.5  
Trigger Voltage1  
tr=0.5µs, PW=3.0µs  
kV pk  
Dimension A  
0.697 0.760 0.823 0.727 0.790 0.853 0.767 0.830 0.893 inches  
Life Ratings  
Discharge Life2  
1000 shots into .2Ω  
-
50  
-
-
60  
-
-
70  
-
-
J
TB-2.5  
TB-5.0  
TB-10.0  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
Applied Voltage  
Trigger Voltage1  
Dimension A  
100V/s  
EZ  
Ebb  
etrig  
-
2.25 2.50 2.75  
4.5  
1.5  
3.2  
-
5.0  
5.5  
4.0  
1.9  
-
0.23  
2.03  
9.0 10.0 11.0  
kV  
kV  
kV pk  
inches  
0.8  
3.1  
-
-
2.0  
1.8  
-
0.23  
2.03  
-
3.0  
4.6  
-
-
8.0  
2.1  
-
tr=0.5µs, PW=3.0µs  
-
-
-
1.99  
1.99  
1.99  
Dimension B  
-
-
-
-
-
-
-
-
-
-
-
-
0.58 inches  
2.10 inches  
Dimension C  
-
-
Life Ratings  
Discharge Life2  
discharges into .3Ω  
-
150  
-
-
150  
-
-
300  
-
-
J
TB-15.0  
TB-20.0  
TB-25.0  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
Applied Voltage  
Trigger Voltage1  
Dimension A  
100V/s  
EZ  
Ebb  
etrig  
-
13.5 15.0 16.5 18.0 20.0 22.0 22.5 25.0 27.5  
kV  
kV  
kV pk  
inches  
4.5  
6.3  
-
-
12.0  
3.5  
-
0.58  
2.10  
6.0  
8.0  
-
-
16.0  
4.5  
-
0.58  
2.10  
7.5  
9.7  
-
-
20.0  
5.2  
-
0.58 inches  
2.10 inches  
tr=0.5µs, PW=3.0µs  
-
-
-
2.67  
2.79  
2.79  
Dimension B  
-
-
-
-
-
-
-
-
-
-
-
Dimension C  
-
-
-
Life Ratings  
Discharge Life2  
discharges into .3Ω  
-
300  
-
-
300  
-
-
300  
-
-
J
1 The trigger voltages given in these tables are the minimum triggering voltages necessary for triggering at the corresponding applied voltage limits. As the applied trigger voltage  
increases, the trigger voltage required for triggering decreases. It is assumed that the trigger is applied across the trigger and adjacent main electrodes — higher trigger voltages are  
required if it is applied across the trigger voltage and opposite main electrodes.  
2 End point for life testing is a 15% reduction in the self-breakdown voltage.  
3 Because the self-breakdown voltage of these devices is adjustable, the trigger voltage required for any particular applied voltage cannot be specified. Clare suggests setting the self-  
breakdown voltage to at least 115% of the maximum applied voltage.  
www.cpclare.com  
559  
HIGH-ENERGY TRIGGERED SPARK GAPS  
Triggergaps  
SPECIFICATIONS  
All characteristics at 25˚C  
TG-221  
TG-222  
TG-224  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
Applied Voltage  
100V/s  
EZ  
1.0  
0.5  
-
-
20.0 18.0  
18.0 15.0  
-
40.0 1.0  
35.0 0.5  
-
20.0  
kV  
kV  
inches  
inches  
Ebb  
-
-
-
19.0  
-
Dimension A  
2.25  
2.50  
-
-
-
-
3.25  
2.50  
-
-
-
-
3.00  
4.50  
-
-
Dimension B  
-
-
Life Ratings  
Peak Current  
Discharge Life3  
PW=30µs  
1000 shots into 1Ω  
-
-
20  
3000  
-
-
-
-
20  
3000  
-
-
-
-
50  
6000  
-
-
-
-
kA  
J
TG-225  
TG-226  
PARAMETER  
CONDITIONS  
SYMBOL MIN TYP MAX MIN TYP MAX UNITS  
Device Specifications  
Self-Breakdown Voltage  
AppliedVoltage  
100V/s  
EZ  
18.0  
-
40.0 35.0  
35.0 30.0  
-
60.0  
kV  
Ebb  
15.0  
-
-
55.0  
kV  
-
Dimension A  
-
-
3.50  
4.50  
-
-
-
-
4.50  
4.50  
-
-
inches  
inches  
Dimension B  
-
Life Ratings  
Peak Current  
Discharge Life3  
PW=30µs  
1000 shots into 1Ω  
-
-
50  
6000  
-
-
-
-
50  
6000  
-
-
-
-
kA  
J
1 The trigger voltages given in these tables are the minimum triggering voltages necessary for triggering at the corresponding applied voltage limits. As the applied trigger voltage  
increases, the trigger voltage required for triggering decreases. It is assumed that the trigger is applied across the trigger and adjacent main electrodes — higher trigger voltages are  
required if it is applied across the trigger voltage and opposite main electrodes.  
2 End point for life testing is a 15% reduction in the self-breakdown voltage.  
3 Because the self-breakdown voltage of these devices is adjustable, the trigger voltage required for any particular applied voltage cannot be specified. Clare suggests setting the self-  
breakdown voltage to at least 115% of the maximum applied voltage.  
MECHANICAL DIMENSIONS  
ORDERING INFORMATION  
DIMENSIONS  
TA SERIES  
Triggergaps with self-breakdown voltages other than the standard val-  
ues listed (in the ranges of 1-15kV for the TA series and 2.5-25kV for the  
TB series) are available upon request.  
mm  
(inches)  
11.11 MAX.  
(0.438)  
A
A complete part number is represented by the digits below. Self-break-  
down voltages are expressed in kV. For example, TA-5.0 is a 5kV TA  
series device and TB-25.0 is a 25kV TB series device. The TG-221  
to 226 are ordered by the appropriate part number as given in the  
specifications.  
16.67 ± 0.79 DIA.  
(0.656 ± 0.031)  
25.40 ± 1.59  
(1.000 ± 0.063)  
1.59 DIA. TYP.  
(0.063)  
TA- X.X  
TA- XX.X  
TB- X.X  
TB- XX.X  
for 1.0-9.0kV  
for 10.0-15.0kV  
for 2.5-9.0kV  
for 10.0-25.0kV  
12.70 ± 1.59  
(0.500 ± 0.063)  
4.76 ± 1.59  
(0.188 ± 0.063)  
TB SERIES  
Series  
TA  
Self-breakdown voltage  
See specification tables  
C
B
TB  
ADJACENT  
TRIGGER  
OPPOSITE  
A DIA.  
North America: 1-800-CPCLARE  
Europe: 32-11-300868  
Asia: 886-2-2523-6368  
Japan: 81-3-3980-2212  
560  

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