美国eestor高能电容技术最新进展

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据美通社最新消息,由独立机构开展的eestor高能电容eesu第三次测试工作于5月30日开始,首批测量结果今日公布:EEstor, Inc. is Announcing the Certification of Our New Layer Material and Voltage vs. Capacitance
PR Newswire
CEDAR PARK, Texas, June 6, 2013
CEDAR PARK, Texas, June 6, 2013 /PRNewswire/ -- EEStor, Inc. is announcing that we have completed our initial certification of our new layer material and the voltage vs. capacitance of our composition-modified barium titanate (CMBT) powders. The data was certified by Criteria Labs which is located in Austin, Texas. The certification data is indicated below:
CAPACITANCE VS APPLIED DC VOLTAGE
PET CMBT Composite Capacitor Measurements
Sample #239-A
DC Voltage Applied
Capacitance
To Capacitor
0.0 VDC
0.11 nF
100 VDC
0.148 nF
200 VDC
0.134 nF
300 VDC
0.134 nF
400 VDC
0.134 nF
500 VDC
0.134 nF
LCR settings: 100 Hz Frequency, 1.0 V RMS
TEST EQUIPMENT LIST:
Manufacturer
Model
Serial Number
Description
QuadTech
1714 LCR Meter
AAQ17140350
LCR Meter
STD Research System
SRS350
11567
HV Power Supply
Fluke
175 Multimeter
90940148
Multimeter
Capacitance Board
DC Volt Blocking LCR
interface CKT
Fluke
80K-15 High Voltage Probe
HV Probe
CAPACITANCE INSULATION RESISTANCE – NEW LAYER MATERIAL
The average for the reading on the four layers is as follows:
Capacitance Average:
0.22 micro farads
Insulation Resistance Average
10.65 mega ohms
TEST EQUIPMENT USED
Manufacturer
Model
Description
Alph Lab
HR2
High Resistance Meter with Faraday Cage
The test data indicates that the EEStor, Inc. new layer material has the capability to provide high capacitance along with high insulation resistance. EEStor, Inc. will now be tailoring this new layer material for increase capacitance and resistance up to full product certification.
The data also indicated the stability of the CMBT powders/composite layer to capacitance vs. voltage. This indicates that advantage of our CMBT powders being in the paraelectric phase where for all practical purposes dielectric saturation does not exist.
SOURCE EEStor, Inc.据美通社最新消息,由独立机构开展的eestor高能电容eesu第三次测试工作于5月30日开始,首批测量结果今日公布:EEstor, Inc. is Announcing the Certification of Our New Layer Material and Voltage vs. Capacitance
PR Newswire
CEDAR PARK, Texas, June 6, 2013
CEDAR PARK, Texas, June 6, 2013 /PRNewswire/ -- EEStor, Inc. is announcing that we have completed our initial certification of our new layer material and the voltage vs. capacitance of our composition-modified barium titanate (CMBT) powders. The data was certified by Criteria Labs which is located in Austin, Texas. The certification data is indicated below:
CAPACITANCE VS APPLIED DC VOLTAGE
PET CMBT Composite Capacitor Measurements
Sample #239-A
DC Voltage Applied
Capacitance
To Capacitor
0.0 VDC
0.11 nF
100 VDC
0.148 nF
200 VDC
0.134 nF
300 VDC
0.134 nF
400 VDC
0.134 nF
500 VDC
0.134 nF
LCR settings: 100 Hz Frequency, 1.0 V RMS
TEST EQUIPMENT LIST:
Manufacturer
Model
Serial Number
Description
QuadTech
1714 LCR Meter
AAQ17140350
LCR Meter
STD Research System
SRS350
11567
HV Power Supply
Fluke
175 Multimeter
90940148
Multimeter
Capacitance Board
DC Volt Blocking LCR
interface CKT
Fluke
80K-15 High Voltage Probe
HV Probe
CAPACITANCE INSULATION RESISTANCE – NEW LAYER MATERIAL
The average for the reading on the four layers is as follows:
Capacitance Average:
0.22 micro farads
Insulation Resistance Average
10.65 mega ohms
TEST EQUIPMENT USED
Manufacturer
Model
Description
Alph Lab
HR2
High Resistance Meter with Faraday Cage
The test data indicates that the EEStor, Inc. new layer material has the capability to provide high capacitance along with high insulation resistance. EEStor, Inc. will now be tailoring this new layer material for increase capacitance and resistance up to full product certification.
The data also indicated the stability of the CMBT powders/composite layer to capacitance vs. voltage. This indicates that advantage of our CMBT powders being in the paraelectric phase where for all practical purposes dielectric saturation does not exist.
SOURCE EEStor, Inc.
链接地址http://www.digitaljournal.com/pr/1291826#ixzz2VSm693hn  目前测试结果已经可以验证介质片不会因电压大幅度提升而导致极化饱和。年初的第二次测试结果已经获得厚度达70um的介质,测量电压1500v下,储能密度77WH/L。
离取代电池还远着
在2009年EESU第一次测试结果耐压极限已经提高到1100V/UM,如果下一步测量电压从目前20V/UM提升到500V/UM,储能密度有望从目前的77WH/L提高到5kWH/L,超锂电池储能密度3-5倍。
20伏每微米是很一般的指标它代表的能量密度和五百伏每微米还有四百倍的差距
为什么有100赫兹这个量
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