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VCS332Z24R900QB

产品描述Fixed Resistor, Metal Foil, 3W, 24.9ohm, 0.02% +/-Tol, -.2,.2ppm/Cel,
产品类别无源元件    电阻器   
文件大小561KB,共8页
制造商Vishay(威世)
官网地址http://www.vishay.com
下载文档 详细参数 全文预览

VCS332Z24R900QB概述

Fixed Resistor, Metal Foil, 3W, 24.9ohm, 0.02% +/-Tol, -.2,.2ppm/Cel,

VCS332Z24R900QB规格参数

参数名称属性值
是否Rohs认证不符合
Objectid858859536
Reach Compliance Codecompliant
Country Of OriginIsrael
ECCN代码EAR99
YTEOL10
构造Rectangular
引线长度25.4 mm
端子数量4
最高工作温度150 °C
最低工作温度-55 °C
封装高度26 mm
封装长度34 mm
封装形状RECTANGULAR PACKAGE
封装形式4 Terminals
封装宽度5.33 mm
包装方法Bulk
额定功率耗散 (P)3 W
电阻24.9 Ω
电阻器类型FIXED RESISTOR
系列VCS332Z
技术METAL FOIL
温度系数0.2 ppm/°C
容差0.02%

文档预览

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VCS331Z, VCS332Z, VFP4Z, CSNG
Vishay Foil Resistors
Bulk Metal
®
Z-Foil Technology Ultra High-Precision 4-Terminal
Power Current Sensing Resistors with TCR as Low as 0.05 ppm/°C,
Power up to 10 Watts and Thermal Stabilization of <1s
FEATURES
• Low temperature coefficient of resistance (see figure 4):
• 0.05 ppm/°C typical (0°C to +60°C)
• 0.2 ppm/°C typical (–55°C to +125°C, +25°C ref.)
• Resistance range: 0R25 to 500R
• Resistance tolerance: to ±0.01%
Power rating: 10W on heatsink(1) at +25°C;
3W in free air at +25°C (see Table 2)
• Load life stability:
• ±0.005% (50 ppm) typical, 3W on heatsink at
+25°C, 2000h
• ±0.01% (100 ppm) typical, 3W in free air at
+25°C, 2000h
• ± 0.01% typical (100 ppm), 10W on heatsink at
+25°C, 2000h
• Vishay Foil Resistors are not restricted to standard
values; specific “as required” values can be supplied at
no extra cost or delivery (e.g. 1R2345 vs. 1R)
Rapid ΔR stabilization under transient loads (see
Figure 2)
Thermal resistance: 6°C/W
• Electrostatic discharge (ESD) at least to 25 kV
• Rise time: 1 ns, effectively no ringing
Tenfold improvement of power coefficient of
resistance (PCR): 4 ppm/W (see Figure 3)
• Thermal stabilization time <1s (nominal value achieved
within 10 ppm of steady state value)
• Voltage coefficient: <0.1 ppm/V
• Current noise: 0.010 μV
RMS
/V of applied voltage
(<–40 dB)
• Inductance: 0.1 μH maximum; 0.08 μH typical
• Thermal EMF: 0.1 μV/°C (see Table 3)
• Non-inductive, non-capacitive design
• Pattern design minimizing hot spots
Note
(1) Heatsink—aluminum (6” L x 4” W x 2” H x 0.04” THK)
VCS331Z
VCS332Z
VFP4Z
CSNG
INTRODUCTION
The most precise measuring of electrical current is
achieved by the current sensing resistor method. The
precision and speed of response to changing current
depend on thermal stability of the resistor, as determined
by its low temperature coefficient of resistance (TCR) and
related power coefficient of resistance (PCR), as well as
its net reactance.
VCS331Z, VCS332Z, and VFP4Z (0R25 to 500R)
This series should be selected where rapid ΔR
stabilization and resistance stability under transient power
conditions is required. These products achieve optimum
performance when mounted on a chassis or cooled heat
sink. The Z-Foil technology provides extremely low PCR
under defined conditions (see Figure 2 and Figure 3). The
low absolute TCR provided by the Z-Foil technology is
measured over the temperature range of –55°C to +125°C
or 0°C to +60°C, +25°C reference (see Figure 4).
All of these devices utilizing the Z-Foil technology are
provided with a true 4-terminal Kelvin connection. This is
a must for precise current sensing when the resistance
value is less than 100Ω (see Figure 6).
CSNG — New Generation of
Power Current Sense Resistors (>0R005)
Custom high power designs can be developed for your
specific applications. Vishay Foil Resistors (VFR) recently
introduced New Generation of Power Current Sense
Resistors (CSNG) with short thermal setting time, long-
term stability, high power to 20W and absolute TCR to
±0.5 ppm/°C maximum (see page 5).
For more information, please contact Application
Engineering Department at foil@vishaypg.com.
*Pb containing terminations are not RoHS compliant; exemptions
may appy
Document No.: 63240
Revision: 13-Jun-2013
FIGURE 1—TRIMMING TO VALUES
(conceptual illustration)
Interloop
Capacitance
Reduction
in Series
Mutual
Inductance
Reduction due
to Opposing
Current in
Adjacent Lines
Current Path
Before Trimming
Current Path
After Trimming
Trimming Process
Removes this Material
from Shorting Strip Area
Changing Current Path
and Increasing Resistance
Note:
Foil shown in black, etched spaces in white
For questions, contact
foil@vishaypg.com
www.vishayfoilresistors.com
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