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4529

fuse holder 4529

器件类别:电路保护   

厂商名称:Bussmann (Eaton)

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器件参数
参数名称
属性值
Manufacture
Cooper Bussm
产品种类
Product Category
Fuse Holde
RoHS
In Transiti
Produc
Fuse Blocks
电压额定值
Voltage Rating
10 kV
Number of Poles
1
安装风格
Mounting Style
Screw
Col
Black
Illuminati
Not Illuminated
系列
Packaging
Bulk
Unit Weigh
68.039 g
文档预览
Technical Data
4376
Effective May 2016
Supersedes October 2015
HV Supercapacitors
Cylindrical cells
Pb
HF
FREE
HALOGEN
Features
Ultra low ESR for high power density
UL recognized
Applications
Electric, Gas, Water smart meters
Controllers
RF radio power
Solar capture
Storage servers
Pulse power
Backup power
Description
Eaton supercapacitors are high reliability, high
power, ultra-high capacitance energy storage
devices utilizing electrochemical double layer
capacitor (EDLC) construction combined with
proprietary materials and processes. This
combination of advanced technologies allows
Eaton to offer a wide variety of capacitor solutions
tailored to applications for backup power, pulse
power and hybrid power systems. They can
be applied as the sole energy storage or in
combination with batteries to optimize cost, life
time and run time. System requirements can
range from a few microwatts to megawatts. All
products feature low ESR for high power density
with environmentally friendly materials for a
green power solution. Eaton supercapacitors are
maintenance-free with design lifetimes up to 20
years and operating temperatures down to -40 °C
and up to +85 °C.
Technical Data
4376
Effective May 2016
HV supercapacitors
Cylindrical cells
Ratings
Capacitance
Maximum working voltage
Surge voltage
Capacitance tolerance
Operating temperature range
Extended temperature range
1.0 F to 100 F
2.7 V
3.0 V
-10% to +30%
-40 °C to +65 °C
-40 °C to +85 °C (with linear voltage derating to 2.3 V @ 85 °C)
Specifications
Maximum
Initial ESR
1
(Ω)
Nominal
Leakage
Current
2
(µA)
Stored Energy
3
(mWh)
Peak
Power
4
(W)
Pulse
Current
5
(A)
Continuous
Current
6
(A)
Typical
Thermal
Resistance
7
,
Rth (°C/W)
Short
Circuit
Current
8
(A)
Capacitance
1
(F)
Part Number
1
3
5
6
10
15
25
35
35
60
100
HV0810-2R7105-R
HV0820-2R7305-R
HV1020-2R7505-R
HV0830-2R7605-R
HV1030-2R7106-R
HV1325-2R7156-R
HV1625-2R7256-R
HV1245-2R7356-R
HV1635-2R7356-R
HV1840-2R7606-R
HV1860-2R7107-R
0.200
0.080
0.040
0.040
0.034
0.030
0.027
0.020
0.024
0.018
0.012
10
15
20
20
23
23
45
51
51
110
260
1.0
3.0
5.1
6.1
10
15
25
35
35
61
101
9.1
23
46
46
54
61
68
91
76
101
152
1.1
3.3
5.6
6.5
10
14
20
28
26
39
61
0.8
1.6
2.3
2.8
3.3
3.1
3.4
5.8
4.0
5.7
11
120
76
73
47
40
53
47
22
39
26
10
14
34
68
68
79
90
100
135**
113
150**
225**
** Repeated short circuit current will permanently damage the leads and cause an open failure.
Performance
Parameter
Capacitance change
(% of initial value)
ESR
(% of maximum initial value)
Life (1000 hours @ +65 °C @ 2.7 Vdc)
Storage (3 years, uncharged, <+35 °C)
Cycle Life
9
(500,000 cycles)
30%
5%
30%
200%
110%
200%
1. Capacitance and Equivalent Series Resistance (ESR) measured according to IEC62391-1 at +20 °C, with current in milliamps (mA) = 8*C*V
2. Leakage current at 20 °C after 72 hour charge and hold
3. Energy (mWh) = ½*C*V
2
*1000
3600
4. Peak Power (W) = V
2
4*ESR
5. Pulse Current in Amps (A), 1 second discharge from rated voltage to half rated voltage = ½*C*V
(1+ESR*C)
6. Continuous current with a 15 °C temperature rise. Continuous current (A) =
7. Thermal resistance (Rth) cell body temperature to ambient in open air in degrees C per Watt (°C/W)
8. Short circuit current is for safety information only. Do not use as operating current.
9. Cycling between rated voltage and half voltage, 3 seconds rest at +20 °C
Safety and Certifications
Regulatory
Warnings
Shipping
UL810a, RoHS
Do not overvoltage, do not reverse polarity
UN3499, <0.3Wh, Non-hazardous goods
2
www.eaton.com/elx
HV supercapacitors
Cylindrical cells
Technical Data
4376
Effective May 2016
Dimensions (mm)
Part Number
ØD nominal
ØD maximum
L maximum
F ±0.50
Ød ±0.02
C minimum
C’ minimum
Typical mass
(grams/pieces)
HV0810-2R7105-R
HV0820-2R7305-R
HV1020-2R7505-R
HV0830-2R7605-R
HV1030-2R7106-R
HV1325-2R7156-R
HV1625-2R7256-R
HV1245-2R7356-R
HV1635-2R7356-R
HV1840-2R7606-R
HV1860-2R7107-R
8.0
8.0
10.0
8.0
10.0
13.0
16.0
12.5
16.0
18.0
18.0
8.5
8.5
10.5
8.5
10.5
13.5
16.5
12.9
16.5
18.5
18.5
13.5
21.0
22.3
31.0
31.5
28.4
28.4
49.0
38.0
42.0
60.5
3.5
3.5
5.0
3.5
5.0
5.0
7.5
5.0
7.5
7.5
7.5
0.50
0.50
0.60
0.50
0.60
0.60
0.80
0.60
0.80
0.80
0.80
20.0
20.0
20.0
20.0
20.0
20.0
20.0
20.0
20.0
20.0
20.0
25.0
25.0
25.0
25.0
25.0
25.0
25.0
25.0
25.0
25.0
25.0
1.2
1.4
2.3
2.1
3.2
4.5
7.3
8.0
9.3
13.0
20.0
L
C
D
C’
Longer lead is positive
d
Part numbering system
HV
1860
–2R7
10
7
-R
Family code
HV = Family Code
Size reference (mm)
Diameter = 18
Length = 60
Voltage (V)
R = decimal
2R7 = 2.7 V
Capacitance (μF)
Value
Example 107= 10 x 10 μF or 100 F
7
F
Multiplier
RoHS compliant
Packaging information
Part marking
Standard packaging: Bulk, 100 units per bag
(8 mm - 13 mm diameter)
16 mm - 18 mm diameter products: Bulk package
quantity varies by size.
Manufacturer
Capacitance (F)
Max operating voltage (V)
Family code (or part number)
Polarity
www.eaton.com/elx
3
Technical Data
4376
Effective May 2016
HV supercapacitors
Cylindrical cells
Temperature vs. Capacitance and ESR
180%
160%
140%
120%
100%
80%
60%
40%
20%
0%
-60
-40
-20
0
20
40
60
Capacitance
ESR
Change from 20°C Value
80
Temperature (°C)
4
www.eaton.com/elx
Technical Data
4376
Effective May 2016
HV supercapacitors
Cylindrical cells
Wave solder profile
t
p
T
p
First Wave
Second Wave
Temperature
T
smax
T
styp
T
smin
Preheat area
Cool down area
Time
Profile Feature
Standard SnPb Solder
Lead (Pb) Free Solder
Preheat and soak
• Temperature max. (Tsmax)
• Time max.
100 °C
60 seconds
160 °C max.
220 °C – 260 °C
10 seconds max
5 seconds max each wave
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
4 minutes
100 °C
60 seconds
160 °C max.
250 °C – 260 °C
10 seconds max
5 seconds max each wave
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
4 minutes
D
preheat to max Temperature
Peak temperature (TP)*
Time at peak temperature (tp)
Ramp-down rate
Time 25 °C to 25 °C
Manual solder
+350 °C, 4-5 seconds. (by soldering iron), generally manual, hand soldering is not recommended.
Cleaning/Washing
Avoid cleaning of circuit boards, however if the circuit board must be cleaned use static or ultrasonic immersion in a standard circuit board
cleaning fluid for no more than 5 minutes and a maximum temperature of +60 °C. Afterwards thoroughly rinse and dry the circuit boards. In
general, treat supercapacitors in the same manner you would an aluminum electrolytic capacitor.
Life Support Policy: Eaton does not authorize the use of any of its products for use in life support devices or systems without the express written
approval of an officer of the Company. Life support systems are devices which support or sustain life, and whose failure to perform, when properly
used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the user.
Eaton reserves the right, without notice, to change design or construction of any products and to discontinue or limit distribution of any products. Eaton also
reserves the right to change or update, without notice, any technical information contained in this bulletin.
Eaton
Electronics Division
1000 Eaton Boulevard
Cleveland, OH 44122
United States
www.eaton.com/elx
© 2016 Eaton
All Rights Reserved
Printed in USA
Publication No. 4376-BU-MC16012
May 2016
Eaton is a registered trademark.
All other trademarks are property
of their respective owners.
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