EE SERIES
MOLD TYPE HIGH PRECISION METAL FILM RESISTORS
Feature
· Advanced thin film technology
· Excellent overall stability: Class 0.05%
· Very low TCR:
up to ±5ppm/K
· Very low noise and voltage coefficient
• Compliant to RoHS directive 2011/65/EU
• Compliant to REACH (EC No. 1907/2006)) (last
updated: 27/06/2018)
Description
Production is strictly controlled and follows an extensive set of instructions
established in production procedure for reproducibility. A homogeneous film of
metal alloy is deposited on the surface of CeramTec’s ceramic cores (96%
AL2O3) and conditioned to achieve the desired stability and the temperature
coefficients.
A professional laser is pressed on the metalized rods to not only achieve the
target value but also prefect electronics performance by smoothly cutting a
helical groove in the resistance layer on the ceramic rods without damaging the
ceramics. The resistance layers are covered by a protective coating and hard
Bakelite designed for electrical, mechanical and climatic protection.
The resistors are tested in accordance with MIL-R-10509F which refers to MILSTD-202 or IEC60115.
The established reliability in accordance with CECC 40401-803 Version E is
available upon request.
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1. PART NUMBER:
Part number is identified by the type series name, power rating, tolerance,
temperature coefficient, packing type and resistance value.
Example:
EE
1/8
B
5
B
Series
Power
Resistance
Temperature
Name
rating
Tolerance
Coefficient
Packing
10R0
Resistance
Style
(1) Style: EE SERIES
(2) Power rating at 70℃: 1/10=0.25W; 1/8=0.50W; 1/4=0.75W; 1/2=1W
(3) Tolerance:
W=±0.05%; B=±0.10%; C=0.25%; D=0.50%; F=1.0%
(4) T.C.R.:
7=5ppm/℃; 6=10ppm/℃; 5=15ppm/℃; 3=25ppm/℃;
(5) Packaging Type:
B=BULK; T=Taping
(6) Resistance Value: 10R0=10Ω, 1201=1k2, 3302=33k, 4733=473k,
1004=1M
2. MARKING
Digital marking with part number and batch number
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3. ELECTRICAL CHARACTERISTICS
Unless otherwise specified, all values are tested at the following condition:
Temperature: 21℃ to 25℃; Relative humidity:
*
Rated Continuous Working Voltage (RCWV)=
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45% to 60%
Power Rating Resistance Value
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4. DERATING CURVE
The power dissipation on the resistor generates a temperature rise against
the local ambient, depending on the heat flow support of the printed-circuit
board (thermal resistance). The rated dissipation applies only if the permitted
film temperature is not exceeded. These resistors do not feature a limited
lifetime when operated within the permissible limits. However, resistance
value drift increasing over operating time may result in exceeding a limit
acceptable to the specific application, thereby establishing a functional
lifetime.
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5. ENVIRONMENTAL CHARACTERISTICS
(1) Insulation Resistance
IEC 60115-1, 4.6: in V-block for 60 seconds, the test resistance should be high
than 10,000 M Ohm.
(2) Dielectric Withstanding Voltage
IEC 60115-1 4.7:
or flashover.
Place resistors in V-block for 60 Seconds, no breakdown
(3) Temperature Coefficient Test
IEC 60115-1, 4.8: Test of resistors at room temperature and 60°C or 100°C on
request above room temperature. Then measure the resistance. The
Temperature Coefficient is calculated by the following equation and its value
should be within the range requested.
Re sistor Temperature Coefficient
R
R0
t
t0
R R0
1
10 6
R0
t t0
= Resistance value under the testing temperature
= Resistance value at the room temperature
= the 2nd testing temperature
= Room temperature
(4) Short Time Over Load Test
IEC60115-1 4.13: At 10 times rated voltage or 2 times the maximum working
voltage whichever is lower for 5 seconds, the resistor should be free from
defects. The change of the resistance value should be within± (0.02%+0.05Ω)
as compared with the value before the test.
(5) Solderability
IEC 60115-1, 4.17: 235±5°C for 3±0.5 Seconds, there are at least 95% solder
coverage on the termination.
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(6) Resistance to soldering heat:
IEC 60115-1, 4.18: 260±3°C for 10±1 Seconds, immersed to a point 3±0.5mm
from the body. The change of the resistance value should be within
±(0.05%+0.05 Ω) as compared with the value before the test.
(7) Climatic sequence
IEC 60115-1, 4.19: -55°C to Room Temp. to +155°C to Room Temp. (5
cycles). The change of the resistance value shall be within ± (0.05%+0.05Ω)
as compared with the value before the load. After the test the resistors shall
be free from the electrical or mechanical damage.
(8) Damp Heat Steady State
IEC 60115-1, 4.24: 40±2°C, 90-95% RH for 56 days, loaded with 0.1 times
RCWV or the maximum working voltage whichever is lower. The change of the
resistance value should be within ± (0.05%+0.05Ω) as compared with the
value before the load.
(9) Load Life Test
IEC 60115-1, 4.25: 70±2°C at RCWV or the maximum working voltage
whichever is lower for 1,000+48/-0 Hr. (1.5Hr. on, 0.5Hr. off). The resistors shall
be arranged not much effected mutually by the temperature of others and the
excessive ventilation shall not be performed.
The change of the resistance value should be within ± (0.05%+0.05Ω) as
compared with the value before the load.
(10) Resistance to Solvent
IEC 60115-1, 4.30: IPA for 5±0.5min. with ultrasonic. No deterioration occurred.
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Disclaimer
All products, product specifications and data are subject to change
without notice to improve reliability, function or design or otherwise.
Thunder Precision Resistors makes no warranty, representation or
guarantee regarding the suitability of the products for any particular
purpose or the continuing production of any product to the
maximum extent permitted by applicable law.
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