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CC1/237-303-GT

产品描述Fixed Resistor, Carbon Composition, 0.5W, 30000ohm, 350V, 2% +/-Tol, 0.15ppm/Cel, Surface Mount, AXIAL LEADED
产品类别无源元件    电阻器   
文件大小346KB,共1页
制造商RCD Components Inc.
官网地址http://www.rcdcomponents.com/
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CC1/237-303-GT概述

Fixed Resistor, Carbon Composition, 0.5W, 30000ohm, 350V, 2% +/-Tol, 0.15ppm/Cel, Surface Mount, AXIAL LEADED

CC1/237-303-GT规格参数

参数名称属性值
Objectid145070019264
包装说明Axial,
Reach Compliance Codecompliant
ECCN代码EAR99
YTEOL5.25
其他特性NON-INDUCTIVE
构造Tubular
JESD-609代码e0
引线直径0.7 mm
安装特点SURFACE MOUNT
端子数量2
最高工作温度125 °C
最低工作温度-55 °C
封装直径3.56 mm
封装长度9.5 mm
封装形式Axial
包装方法TR
额定功率耗散 (P)0.5 W
额定温度70 °C
参考标准MIL-R-39008
电阻30000 Ω
电阻器类型FIXED RESISTOR
表面贴装YES
技术CARBON COMPOSITION
端子面层Tin/Lead (Sn/Pb)
端子形状WIRE
容差2%
工作电压350 V

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COMPOSITION RESISTORS
1/4 WATT TO 1 WATT
RESISTORSCAPACITORSCOILSDELAY LINES
CC SERIES
OPTIONS
RoHS
(Term.W)
(Term.Q)
RCD
Low inductance/high frequency performance
High surge/high pulse capability
Choice of tin or tin-lead termination finish
Mil-spec screening and a Tin-Lead
terminal finish are available as options
on this & most other RCD products.
Option 37: Group A screening per MIL-R-39008
Option EU8: Group A&B modified screening plan
Option ZZ:
Z-formed leads for surface mounting
Custom marking/ testing/ cut&formed leads, hot solder
dipped leads, preconditioning, & numerous other options.
RCD
Type
CC1/4
Wattage at
70° C
1
0.25W
Max
.
Voltage
2
250V
Peak Pulse
Voltage
3,5
6KV
Energy Rating
(1Sec)
3,5
1.8j
Dielectric
Strength
140V
Composition resistors are considered one of the most reliable of all
electronic components. There are no windings or film, resulting in a
non-inductive resistor with excellent surge and high frequency char-
acteristics. The parts are also utilized in fusing applications. Hi-Rel
Group A or A&B Screening per Mil-R-39008 is available.
Resis. Range
E24 Std Values
1Ω - 22M
H
→←
L
d
D
Dimensions Inch [mm]
L
4
D
4
d
H (bulk pack)
.250±.032
.090±.016
.024±.003
1.0 [25.4] typ.
[6.35±.8]
[2.3±.4]
[.6 ±.076]
.374±.040
.140±.018
.028±.004
CC1/2
0.5W
350V
10KV
6.4j
700V
1Ω - 22M
1.0 [25.4] typ.
[9.5±1.02]
[3.56±.45]
[.7 ±.1 ]
.610±.05
.232±.022
.036±.006
CC1
1W
500V
14KV
20j
1000V
2Ω - 1.2M
1.0 [25.4] typ.
[15.5±1.27]
[5.90±.55]
[.9 ±.15]
1
Derate W & V by 1.25%/°C above 70°C
2
Rated continuous voltage determined by E= (PR)
1/2
, E not to exceed the max value listed.
3
Energy capability varies with pulse duration.
Rating is based on a 1 sec overload. Shorter durations have significantly lower joule ratings
4
Allow .032” [0.8mm] additional to L and D on parts with optional conformal coating
CC1/4 Peak Pulse Rupture Voltage
5
10KV
1M
10KV
CC1/2 Peak Pulse Rupture Voltage
5
1M
100K
10K
1K
100Ω
10Ω
1uS
CC1 Peak Pulse Rupture Voltage
5
10KV
1M
100K
Peak Voltage
Peak Voltage
1KV
100K
10K
1K
100Ω
Peak Voltage
1KV
1KV
10K
1K
100Ω
10Ω
100V
100V
100V
10V
5
1uS
Peak pulse rupture voltage and joule ratings are dependent on resistance value, pulse wave form & repetition rate. Charts indicate the approximate rupture voltage based on capacitive
discharge non-inductive circuit, pulse width equates to one RC time constant. Refer to
Application Guide below and Engineering Guide
R-46. Verify selection by evaluating sufficient
protoypes under worst case conditions. Consult factory for assistance on all surge and fusing applications.
Pulse Width (Time Constant, Sec)
10uS
100uS
1mS
10mS
100mS
10Ω
10V
Pulse Width (Time Constant, Sec)
10uS
100uS
1mS
10mS
100mS
10V
1uS
Pulse Width (Time Constant, Sec)
10uS
100uS
1mS
10m
100mS
PERFORMANCE CHARACTERISTICS
(10
-1M, typ.)
Short-time Overload
Thermal Shock
Temperature Coefficient (25-100°C)
Moisture Resistance
Shock and Vibration
Load Life MIL-R-39008 3.21.1.2
Terminal Strength (direct pull)
Operating Temp. Range
Standard Marking
Color Code Table
±2.5%
±4%
±0.15%/°C
±10%
±2%
±10%
5 lbs. min.
-55° C to + 125° C
4 bands (or alpha numeric, 5th FR band)
TEMPERATURE RISE
60
50
TEMP RISE (°C)
CC1/2
CC1
40
30
20
10
0
0.1
0.2
0.3
0.4
0.5
0.6
APPLIED WATTAGE (W)
0.7
0.8
0.9
1.0
CC1/4
APPLICATION GUIDE
(refer to R-46 guide for additional info)
CC’s are often utilized in high frequency, fusing or pulse applications, including snub-
bers, lightning surges, grounding resistors, RFI suppression, etc. Depending on the ap-
plication, CC’s can often satisfy requirements of GR1089, ITU-K20, IEC61000-4-x, etc.
For fusing applications, use the peak pulse rupture voltage graphs and energy ratings as
a rough starting point to determine typical fusing levels. For surge applications, employ a
minimum 50% derating (greater for multiple surges, elevated temperatures, etc.). Fusing
and surge capability can vary fairly significantly so be sure to consult RCD on applica-
tions that involve any surges or fusing, and verify selection by evaluating under worst
case conditions. Series CC resistors are not intended for life-support applications.
Composition construction isn’t as stable as other types of resistors, especially in humid
conditions, and therefore not suitable for precision applications (refer to RCD’s PR and
CFZ Series for improved stability). In accordance with MIL-R-39008, parts that have
shifted beyond the nominal tolerance due to moisture shall be baked by the user at
100°C to recondition the resistance value back into tolerance.
P/N DESIGNATION:
RCD Type
Options:
37, EU8, etc (leave blank if std)
3-Digit Resis Code:
2 signif. digits & multiplier
(1R0=1Ω, 100=10Ω, 101=100Ω, 102=1K, 103=10K, etc)
Tol Code:
J=5% (std on CC1/4 &1/2), K=10% (std CC1),
consult factory for 2% (G) tolerance
Packaging:
B= Bulk, A= Ammo Pack, T= Tape & Reel *
Forming:
ZZ=surface mount (leave blank if std), additional options avail
Termination:
W=Lead-free (std), Q=Tin/Lead (leave blank if both acceptable)
CC1/2
- 101 - J T
W
*
Tape & Reel:
standard qty/reel= 5Kpcs CC1/4, 4K or 5K CC1/2, 1K CC1 (non-std qty
& cut reels available)
RCD Components Inc,
520 E.Industrial Park Dr, Manchester, NH, USA 03109
rcdcomponents.com
Tel: 603
-
669
-
0054 Fax: 603
-
669
-
5455 Email:sales@rcdcomponents.com
FA001 O Sale of this product is in accordance with GF-061. Specifications subject to change without notice.
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