less Communications, Public Safety Radio, Avionics, Telecom, WiMAX,
Microwave Communication Systems and Satellite Systems.
Typical circuit applications: High RF Power Filter Networks, Combiners,
Couplers, Matching Networks, Output Coupling, Antenna Coupling, and
DC Blocking and Bypassing.
ELECTRICAL AND MECHANICAL
SPECIFICATIONS
QUALITY FACTOR (Q):
.
2000 @ 1 MHz
TEMPERATURE COEFFICIENT OF CAPACITANCE (TCC):
0 ±30 PPM/°C (-55°C to +125°C)
INSULATION RESISTANCE (IR):
0.1 pF to 1000 pF:
10
5
Megohms min. @ +25°C at rated WVDC
10
4
Megohms min. @ +125°C at rated WVDC
WORKING VOLTAGE (WVDC):
See Capacitance Values Table, page 2
DIELECTRIC WITHSTANDING VOLTAGE (DWV):
Case B: 250% of rated WVDC for 5 secs
RETRACE:
Less than ±(0.02% or 0.02 pF), whichever is greater
AGING EFFECTS:
None
PIEZOELECTRIC EFFECTS:
None
(No capacitance variation with voltage or pressure)
CAPACITANCE DRIFT:
±(0.02% or 0.02 pF), whichever is greater
OPERATING TEMPERATURE RANGE:
From -55°C to +125°C (No derating of working voltage)
TERMINATION STYLES:
RoHS Compliant and Solder Plate
See Mechanical Configurations, page 3
TERMINAL STRENGTH:
Terminations for chips withstand a pull of
5 lbs. min., 15 lbs. typical, for 5 seconds in direction perpendicular
to the termination surface of the capacitor. Test per MIL-STD-202,
method 211.
ENVIRONMENTAL TESTS
ATC 800 B Series Capacitors are designed and manufactured to meet and
exceed the requirements of EIA-198, MIL-PRF-55681 and MIL-PRF-123.
THERMAL SHOCK:
MIL-STD-202, Method 107, Condition A
MOISTURE RESISTANCE:
MIL-STD-202, Method 106
LOW VOLTAGE HUMIDITY:
MIL-STD-202, Method 103, Condition A, with 1.5 Volts DC applied
while subjected to an environment of 85°C with 85% relative
humidity for 240 hours min.
LIFE TEST:
MIL-STD-202, Method 108, for 2000 hours, at 125°C
200% WVDC applied
American
Technical
Ceramics
THE ENGINEERS’ CHOICE
®
w w w. atcer ami cs.com
ATC # 001-1033 Rev. J, 1/18
ATC 800 B Capacitance Values
CAP. CAP.
CODE (pF) TOL.
0R1
0R2
0R3
0R4
0R5
0R6
0R7
0R8
0R9
1R0
1R1
1R2
1R3
1R4
1R5
1R6
1R7
1R8
1R9
2R0
2R1
2R2
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
1.9
2.0
2.1
2.2
B
B, C
RATED
WVDC
CAP.
CODE
2R4
2R7
3R0
3R3
3R6
3R9
4R3
4R7
5R1
5R6
6R2
6R8
7R5
8R2
9R1
100
110
120
130
150
160
180
CAP.
(pF)
2.4
2.7
3.0
3.3
3.6
3.9
4.3
4.7
5.1
5.6
6.2
6.8
7.5
8.2
9.1
10
11
12
13
15
16
18
TOL.
RATED
WVDC
CAP.
CODE
200
220
240
270
300
330
360
390
430
470
510
560
620
680
750
820
910
101
111
121
131
CAP.
(pF)
20
22
24
27
30
33
36
39
43
47
51
56
62
68
75
82
91
100
110
120
130
TOL.
RATED
WVDC
CAP.
CODE
151
161
181
201
221
241
271
301
331
361
391
431
471
511
561
621
681
751
821
911
102
CAP.
(pF)
150
160
180
200
220
240
270
300
330
360
390
430
470
510
560
620
680
750
820
910
1000
TOL.
RATED
WVDC
300
B, C,
D
500
F, G,
J, K,
M
200
F, G,
J, K,
M
500
B, C,
D
500
B, C,
J, K,
M
100
F, G,
J, K,
M
50
300
VRMS = 0.707 X WVDC
• SPECIAL VALUES, TOLERANCES AND MATCHING AVAILABLE. PLEASE CONSULT FACTORY.
ATC PART NUMBER CODE
ATC800 B 91 0
Series
Case Size
Capacitance Code:
First 2 significant digits for capacitance.
R=Decimal Point
Indicates number of zeros following digits
of capacitance in picofarads except for decimal values.
Capacitance Tolerance
J T
500 X
T
Packaging
T - Tape & Reel: 500 and 1000 pc. qty. std.*
TV - Vertical Orientation of Product,
Tape & Reel: 500 and 1000 pc. qty. std.*
I - Special Packaging. Consult Factory.
*
Consult ATC for other quantities
CAPACITANCE TOLERANCE
Code
B
C
D
F
G
J
K
M
Laser Marking
WVDC
Termination Code
Tol.
±0.1 pF ±0.25 pF ±0.5 pF ±1% ±2% ±5% ±10% ±20%
The above part number refers to a 800 B Series (case size B) 91 pF capacitor,
J tolerance (±5%), 500 WVDC, with T termination (Tin Plated over Nickel Barrier Termination, RoHS Compliant), laser marking and tape and reel packaging.
ATC accepts orders for our parts using designations
with
or
without
the
“ATC” prefix. Both methods of defining the part number are equivalent,
i.e., part numbers referenced with the “ATC” prefix are interchangeable
to parts referenced without the “ATC” prefix. Customers are free to use
either in specifying or procuring parts from American Technical Ceramics.
For additional information and catalogs contact your ATC
representative or call direct at (+1-631) 622-4700.
Consult factory for additional performance data.
A M E R I C A N
ATC North America
sales@atceramics.com
T E C H N I C A L
ATC Europe
saleseur@atceramics.com
C E R A M I C S
ATC Asia
sales@atceramics-asia.com
2
w w w.a t c e r am ic s .c o m
ATC 800 B Capacitors: Mechanical Configurations
ATC
ATC
SERIES
TERM.
& CASE
CODE
SIZE
CASE SIZE
& TYPE
OUTLINES
W/T IS A
TERMINATION SURFACE
Y
BODY DIMENSIONS
Inches (mm)
LENGTH
(L)
.110
+.020 -.010
(2.79
+0.51 -0.25)
LEAD AND TERMINATION
DIMENSIONS AND MATERIALS
OVERLAP
(Y)
MATERIAL
WIDTH
(W)
THICKNESS
(T)
800B
T
Nickel Barrier
Y
B
Solderable
W
L
T
.110 ±.015 .070 (1.78)
(2.79 ±0.38)
max.
.015 (0.38)
±.010 (0.25)
RoHS Compliant
Tin Plated over
Nickel Barrier Termination
800B
W
B
Solder Plate
L
W
T
.110
+.020 -.010 .110 ±.015 .070 (1.78)
(2.79
(2.79 ±0.38)
max.
+0.51 -0.25)
.015 (0.38)
±.010 (0.25)
Tin /Lead Solder Plated over
Nickel Barrier Termination
ATC 800 B Capacitors: Non-Magnetic Mechanical Configurations
ATC
ATC
SERIES
TERM.
& CASE
CODE
SIZE
CASE SIZE
& TYPE
OUTLINES
W/T IS A
TERMINATION SURFACE
Y
W
L
T
BODY DIMENSIONS
Inches (mm)
LENGTH
(L)
.110
+.020 -.010
(2.79
+0.51 -0.25)
LEAD AND TERMINATION
DIMENSIONS AND MATERIALS
OVERLAP
(Y)
MATERIAL
WIDTH
(W)
THICKNESS
(T)
B
800B
TN
Non-Mag
Solderable
Barrier
.110 ±.015 .070 (1.78)
(2.79 ±0.38)
max.
.015 (0.38)
±.010 (0.25)
RoHS Compliant
Tin Plated over
Non-Magnetic Barrier Termination
Suggested Mounting Pad Dimensions
Case B Vertical Mount
Cap
Pad Size
Value.43)
All
Values
Normal
High
Density
A Min
.090
(2.29)
.070
(1.78)
B Min
.050
(1.27)
.030
(.762)
C Min
.075
(1.91)
.075
(1.91)
D Min
.175
(4.45)
.135
(3.43)
Case B Horizontal Mount
Cap
Pad Size
Value.43)
All
Values
Normal
High
Density
A Min
.130
(3.30)
.110
(2.79)
B Min
.050
(1.27)
.030
(.762)
C Min
.075
(1.91)
.075
(1.91)
D Min
.175
(4.45)
.135
(3.43)
inches (mm)
A M E R I C A N
ATC North America
sales@atceramics.com
T E C H N I C A L
ATC Europe
saleseur@atceramics.com
C E R A M I C S
ATC Asia
sales@atceramics-asia.com
w w w.a t c e r am ic s .c o m
3
ATC 800 B Performance Data
1.00
800 B ESR vs. Frequency
1.0 pF
ESR (Ohms)
3.3 pF
10 pF
0.10
39 pF
100 pF
200 pF
1000 pF
(Typical)
0.01
100
1000
10000
Frequency (MHz)
100.0
800 B FSR & FPR vs. Capacitance
10.0
Fpr
Frequency (GHz)
Fsr
1.0
0.1
1
10
100
1000
Capacitance (pF)
ATC 800 B Series Data Sheet Test Condition Description
Capacitors vertically mounted in series microstrip configuration on 23.3-mil thick Rogers RO4350
®
softboard, 52-mils wide 1/2 oz. Cu traces.
FSR
= lowest frequency at which S11 response, referenced at capacitor edge, crosses real axis on Smith Chart.
FPR
= lowest frequency at which there is a notch in S21 magnitude response.
A M E R I C A N
ATC North America
sales@atceramics.com
T E C H N I C A L
ATC Europe
saleseur@atceramics.com
C E R A M I C S
ATC Asia
sales@atceramics-asia.com
4
w w w.a t c e r am ic s .c o m
ATC 800 B Performance Data
800B Capacitance Change vs. Temperature
TCC= 0 ±30 PPM/C
1
0.8
0.6
0.4
% Change in Capacitance
0.2
0
-0.2
-0.4
-0.6
-0.8
-1
-55
-35
-15
5
25
45
65
85
105
125
Temperature (Degrees C)
Sales of ATC products are subject to the terms and conditions contained in American Technical Ceramics Corp. Terms and Conditions of Sale (ATC document #001-992). Copies of these terms
and conditions will be provided upon request. They may also be viewed on ATC’s website at www.atceramics.com/productfinder/default.asp. Click on the link for Terms and Conditions of Sale.
ATC has made every effort to have this information as accurate as possible. However, no responsibility is assumed by ATC for its use, nor for any infringements of rights of third parties which
may result from its use. ATC reserves the right to revise the content or modify its product without prior notice.
There is a problem when EVC connects to SQLCE: the open method of recordset always prompts: first-chance exception in XX.exe: 0X00000f0: stack overflow. The program is as follows CVOConnection* m_Conn...
My board is powered by a battery, and now I need a function to shut down the CPU when the voltage drops to 1.8V and reset it by power-on. I use a voltage detection chip to detect 1.8V,but I don't know...
The attached picture is an active third-order Chebyshev filter, and the output is a PWM (0-5V) wave. I don't really understand the calculation relationship in it, such as the analysis of the transfer ...
[size=5]I believe that friends who have just used DS1302 have encountered that when entering time in DS1302, it is written in BCD code. So is there any good way to quickly understand the conversion be...
Dual-mode inverters can operate both in conjunction with the grid and independently. These inverters can inject excess energy from renewable energy and storage devices into the grid, and withdraw p...[Details]
The mass production process of the new generation of cockpit platform has started, and the smart cockpit market has entered a new bonus cycle of technology iteration and platform upgrade.
...[Details]
Is pure electric vehicles a false proposition for long-distance driving? At least from my personal perspective, based on current technological and infrastructure standards, I believe so. Below, I'l...[Details]
Topics: Bring Your Own Device (BYOD) trends; the impact of using employees' own mobile devices to control access to work facilities and equipment on information security; and ways to securely imple...[Details]
summary
There are multiple approaches to making industrial systems more intelligent, including applying artificial intelligence (AI) technology at the edge and in the cloud to sensor...[Details]
According to foreign media reports, secondary battery materials company POSCO Future M announced that it has successfully developed two experimental (prototype) positive electrode materials for the...[Details]
According to foreign media reports, researchers at the University of Surrey have developed an artificial intelligence system that can accurately locate the location of equipment in densely populate...[Details]
Since the beginning of this year, price wars have intensified, new models have been launched one after another, used cars with zero kilometers have become a hot topic, and the industry's internal c...[Details]
This paper proposes a temperature real-time transmission and display solution based on LED optical data transmission, with Jingwei Yager low-power FPGA HR (Yellow River) series as the main controll...[Details]
While the current industry consensus is that autonomous vehicles are robots and that their systems are managed using robotics-developed thinking, there are also cases where autonomous driving is ac...[Details]
There are basically three causes of spontaneous combustion of electric vehicles: The first is that the battery components are punctured or suffer fatal damage due to a collision accident, and part ...[Details]
According to Nikkei, a survey found that global electric vehicle battery supply is expected to reach more than three times the required quantity due to
cooling
demand for electric vehicles,...[Details]
According to foreign media reports, Ford Motor has applied to the U.S. Patent and Social Security Office (USPTO) for a patent for a door anti-collision system that may be used in future Ford vehicl...[Details]
Tiantai Robot's official Weibo account announced on the evening of August 20 that Tiantai Robot Co., Ltd., together with strategic partners including Shandong Future Robot Technology Co., Ltd., Sha...[Details]
Preface
Low-voltage motors are widely used in nonferrous metallurgical plants. Their abnormal operation not only impacts normal production but can also threaten human life. Therefore, providin...[Details]