ERJ-S,U Series Datasheet by Panasonic Electronic Components

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Panasonic .- m I! In: 1112 E m 102
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Anti-Sulfurated Thick Film Chip Resistors
E
1
R
2
J
3
S
4
0
5
6
6
F
7
1
8
0
9
0
10
2
11
V
12
Thick Film Chip Resistors
Product Code
Size, Power Rating
InchCode
U01
S02
U02
S03
U03
S06
U06
S08
U08
0.05 W
0.1 W
0.1 W
0.125 W
0.25 W
0201
0402
0603
0805
1206
1210
1812
2010
2512
Power R.
Resistance Tolerance
Code
D
F
Tolerance
± 0.5 %
± 1 %
Code
J
0
Tolerance
± 5 %
Jumper
The first two or three digits are significant figures of
resistance and the third or 4th one denotes number
of zeros following. Jumper is expressed by R00.
Three digit type (±5 %), four digit type (±0.5 %, ±1 %)
Example: 2222.2 kΩ, 100210kΩ
Resistance Value
Code Inch
S14
U14
S12
U12
S1D
U1D
S1T
U1T
0.5 W
0.75 W
0.75 W
1 W
Power R.
Packaging Methods
Code
Packaging Part No.
Pressed Carrier Taping
2 mm pitch, 15,000 pcs.
ERJU01
Embossed Carrier Taping
4 mm pitch, 4,000 pcs.
Embossed Carrier Taping
4 mm pitch, 5,000 pcs.
ERJS1T, ERJU1T
ERJS03, ERJU03
ERJS06, ERJU06
ERJS08, ERJU08
ERJS14, ERJU14
ERJS12, ERJU12
ERJS1D, ERJU1D
ERJS02, ERJU02
C
Punched Carrier Taping
2 mm pitch, 10,000 pcs.
X
Punched Carrier Taping
4 mm pitch, 5,000 pcs.
V
U
6SJR20V
E
1
R
2
J
3
U
4567891011
Code
U6 0.25 W
Power R. Code
S
Q
Resistance Value
0.1 Ω to 0.2 Ω
0.22 Ω to 1 Ω
Resistance Tolerance
Code
F
G
J
Tolerance
±1 %
±2 %
±5 %
Packaging Methods
Code
Part No.
Packaging
Shown by 3 digits or
letters.
(Example)
R20 : 0.20 Ω=200 mΩ
1R0 : 1.0 Ω=1000 mΩ
Resistance Value
ERJU6S
ERJU6Q
Res. Value
Punched Carrier Taping
4 mm pitch, 5,000 pcs.
V
Thick Film Chip Resistors
Product Code
Size, Power Rating
Inch
0805
Anti-Sulfurated
Thick Film Chip Resistors
Type: ERJ S02, S03, S06, S08, S14, S12, S1D, S1T
(Au-based inner electrode type)
Type: ERJ U01, U02, U03, U06, U08, U14, U12,
U1D, U1T, U6S, U6Q
(Ag-Pd-based inner electrode type)
Explanation of Part Numbers
Features
High resistance to sulfurization achieved by adopting an Au-based inner electrode (ERJS Series)
and Ag-Pd-based inner electrode (ERJU Series)
High reliability
Metal glaze thick fi lm resistive element and three layers of electrodes
Suitable for both refl ow and fl ow soldering
Low Resistance type ERJU6S, U6Q : 0.1 Ω to 1.0 Ω
Reference Standard IEC 60115-8, JIS C 5201-8, JEITA RC-2134C
AEC-Q200 qualifi ed (Exemption ERJU01)
RoHS compliant
As for Packaging Methods, Land Pattern, Soldering Conditions and Safety Precautions,
Please see Data Files
ERJU01 to ERJU1T, ERJS02 to ERJS1T Series
ERJU6S, U6Q Series
Mar. 201911
Panasonic — ncvwa
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Anti-Sulfurated Thick Film Chip Resistors
a
b
t
W
L
Ratings
(1)
Rated Continuous Working Voltage (RCWV) shall be de ter mined from RCWV=Power Rating × Re sis tance Values, or Limiting Element Voltage list ed above, whichever less.
(2)
Overload Test Voltage (OTV) shall be determined from OTV=Specified Magnification (refer to performance) × RCWV or Maximum Overload Voltage listed above, whichever less.
(3) Use it on the condition that the case temperature is below the upper category temperature.
(1) Use it on the condition that the case temperature is below the upper category temperature.
·
Rated Continuous Working Voltage (RCWV) shall be determined from RCWV = Power Rating × Resistance Values.
· Overload Test Voltage (OTV) shall be determined from OTV = Specified Magnification (refer to performance) × RCWV.
Part No.
(inch size)
Power
Rating (3)
at 70 °C
(W)
Limiting
Element
Voltage(1)
(V)
Maximum
Overload
Voltage(2)
(V)
Resistance
Tolerance
(%)
Resistance
Range
(Ω)
T.C.R.
(×10-6/°C )
Category
Temperature
Range
(°C)
AEC-Q200
Grade
ERJU01
(0201) 0.05 25 50 ±1 10 to 1M (E24, E96)
<10 Ω:
–100 to +600
10 Ω to 1 MΩ:
±200(±5 %)
±100(±0.5, ±1 %)
ERJU01,
ERJS02,
ERJU02 :
±200
1 MΩ<:
–400 to +150
–55 to +125
±5 1 to 1M (E24)
ERJS02
ERJU02
(0402) 0.1 50 100
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 3.3M (E24)
ERJS03
ERJU03
(0603) 0.1 75 150
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS06
ERJU06
(0805) 0.125 150 200
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS08
ERJU08
(1206) 0.25 200 400
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS14
ERJU14
(1210)
0.5 200 400
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS12
ERJU12
(1812)
0.75 200 500
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS1D
ERJU1D
(2010)
0.75 200 500
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
ERJS1T
ERJU1T
(2512)
1.0 200 500
±0.5, ±1 1 to 1M (E24, E96)
–55 to +155 Grade 0
±5 1 to 10M (E24)
Thick fi lm
resistive element
Electrode (Inner)
Au-based :
ERJS type
Ag-Pd-based:
ERJU type
Electrode (Outer)
Electrode
(Between)
Alumina substrate
Protective coating
Part No. Dimensions (mm)
Mass (Weight)
[g/1000 pcs.]
LWa b t
ERJU01 0.60±0.03 0.30±0.03 0.10±0.05 0.15±0.05 0.23±0.03 0.15
ERJS02
ERJU02 1.00±0.05 0.50±0.05 0.20±0.10 0.25±0.10 0.35±0.05 0.8
ERJS03
ERJU03 1.60±0.15 0.80+0.15 0.30±0.20 0.30±0.15 0.45±0.10 2
ERJS06
ERJU06 2.00±0.20 1.25±0.10 0.40±0.20 0.40±0.20 0.60±0.10 4
ERJU62.00±0.20 1.25±0.10 0.45±0.20 0.45±0.20 0.55±0.10 6
ERJS08
ERJU08 3.20+0.05 1.60+0.05 0.50±0.20 0.50±0.20 0.60±0.10 10
ERJS14
ERJU14 3.20±0.20 2.50±0.20 0.50±0.20 0.50±0.20 0.60±0.10 16
ERJS12
ERJU12 4.50±0.20 3.20±0.20 0.50±0.20 0.50±0.20 0.60±0.10 27
ERJS1D
ERJU1D 5.00±0.20 2.50±0.20 0.60±0.20 0.60±0.20 0.60±0.10 27
ERJS1T
ERJU1T 6.40±0.20 3.20±0.20 0.65±0.20 0.60±0.20 0.60±0.10
45
–0.05
–0.15–0.20
[Low Resistance type]
Part No.
(inch size)
PowerRating
(1)
at 70 °C
(W)
Resistance
Tolerance
(%)
Resistance
Range
(Ω)
T.C.R.
(×10-6/°C )
Category
Temperature
Range
(°C)
AEC-Q200
Grade
ERJU6S (0805) 0.25 ±1, ±2, ±5 0.1 to 0.2 (E24) ±150 –55 to +155 Grade 0
ERJU6Q (0805) 0.22 to 1 (E24)
Constructio n Dimensions in mm (not to scale)
Mar. 201911
Panasonic
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Anti-Sulfurated Thick Film Chip Resistors
–40 –20 0 20 40 60 80 100 120 140 160
0180–60
70 °C
Ambient Temperature (°C)
20
40
60
80
100
Rated Load (%)
–55 °C
125 °C
ERJU01
155 °C
[For Jumper]
Part No.
(inch size)
Rated Current
(A)
Maximum Overload Current (1)
(A)
ERJU01
(0201) 0.5 1
ERJS02
ERJU02
(0402) 12
ERJS03
ERJU03
(0603)
ERJS06
ERJU06
(0805)
24
ERJS08
ERJU08
(1206)
ERJS14
ERJU14
(1210)
ERJS12
ERJU12
(1812)
ERJS1D
ERJU1D
(2012)
ERJS1T
ERJU1T
(2512)
Power Derating Curve
For resistors operated in ambient temperatures above
70 °C, power rating shall be derated in accordance
with the figure below.
Test Item Performance Requirements Test Conditions
Resistor type Jumper type
Resistance Within Specifi ed
Tolerance 100 mΩ or less 20 °C
T. C. R. Within Specifi ed
T. C. R. 200 mΩ or less +25 °C/+155 °C (ERJU01 : +25 °C/+125 °C)
Overload ±2 % 100 mΩ or less Rated Voltage × 2.5, 5 s
Jumper type : Max. Overload Current, 5 s
Resistance to
Soldering Heat ±1 % 100 mΩ or less 270 °C, 10 s
Rapid Change of
Temperature ±1 % 100 mΩ or less –55 °C (30min.) / +155 °C (ERJU01: +125 °C) (30min.),
100 cycles
High Temperature
Exposure ±1 % 100 mΩ or less +155 °C (ERJU01 : +125 °C), 1000 h
Damp Heat, Steady State
±1 % 100 mΩ or less 60 °C, 90 % to 95 %RH, 1000 h
Load Life in Humidity ±3 % 100 mΩ or less 60 °C, 90 % to 95 %RH, Rated Voltage (Jumper type :
Rated Current), 1.5 h ON/0.5 h OFF cycle, 1000 h
Endurance at 70 °C ±3 % 100 mΩ or less 70 °C, Rated Voltage (Jumper type : Rated Current),
1.5 h ON/0.5 h OFF cycle, 1000 h
Test Item Performance
Requirements Test Conditions
Resistance Within Specifi ed
Tolerance 20 °C
T. C. R. Within Specifi ed
T. C. R. +25 °C/+125 °C
Overload ±1 % Rated Voltage × 2.5, 5 s
Resistance to Soldering Heat ±1 % 270 °C, 10 s
Rapid Change of Temperature ±1 % –55 °C (30min.) / +125 °C (30min.), 100 cycles
High Temperature Exposure ±1 % +155 °C, 1000 h
Damp Heat, Steady State
±1 % 60 °C, 90 % to 95 %RH, 1000 h
Load Life in Humidity ±3 % 60 °C, 90 % to 95 %RH, Rated Voltage,
1.5 h ON/0.5 h OFF cycle, 1000 h
Endurance at 70 °C ±3 % 70 °C, Rated Voltage, 1.5 h ON/0.5 h OFF cycle, 1000 h
ERJU01 to ERJU1T, ERJS02 to ERJS1T Series
ERJU6S, U6Q Series
Performance
(1) Overload test current
Mar. 201911
Panasonic A
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Surface Mount Resistors Safety precautions
Safety Precautions (Common precautions for Surface Mount Resistors)
The following are precautions for individual products. Please also refer to the common precautions for Fixed Resistors
in this catalog.
1. Take measures against mechanical stress during and after mounting of Surface Mount Resistors (hereafter called the
resistors) so as not to damage their electrodes and protective coatings.
Be careful not to misplace the resistors on the land patterns. Otherwise, solder bridging may occur.
2. Keep the rated power and ambient temperature within the specified derating curve.
Some circuit boards, wiring patterns, temperatures of heat generated by adjacent components, or am bi ent
tem per a tures can become factors in the rise of the temperature of the re sis tors, regardless of the level of power
applied. Therefore, check the conditions before use and op ti mize them so as not to damage the boards and peripheral
components.
Make sure to contact us before using the resistors under special conditions.
3. If a transient load (heavy load in a short time) like a pulse is expected to be applied, check and evaluate the
operations of the resistors when installed in your products before use.
Never exceed the rated power. Otherwise, the performance and/or reliability of the resistors may be impaired.
4. Before using halogen-based or other high-activity flux, check the possible effects of the flux residues on the
per for mance and reliability of the resistors.
5. When soldering with a soldering iron, never touch the resistors'bodies with the tip of the soldering iron. When using a
soldering iron with a high temperature tip, finish soldering as quickly as possible (within three seconds at 350 °C max.).
6. As the amount of applied solder becomes larger, the mechanical stress applied to the resistors increases, causing
problems such as cracks and faulty characteristics. Avoid applying an excessive amounts of solder.
7. When the resistors' protective coatings are chipped, flawed, or removed, the characteristics of the resistors may be
impaired. Take special care not to apply mechanical shock during automatic mounting or cause damage during
handling of the boards with the resistors mounted.
8. Do not apply shock to the resistors or pinch them with a hard tool (e.g. pliers and tweezers). Otherwise, the resistors'
protective coatings and bodies may be chipped, affecting their performance.
9. Avoid excessive bending of printed circuit boards in order to protect the resistors from abnormal stress.
10. Do not immerse the resistors in solvent for a long time. Before using solvent, carefully check the effects of im mer sion.
11. Transient voltage
If there is a possibility that the transient phe nom e non (significantly high voltage ap plied in a short time) may
oc cur or that a high voltage pulse may be applied, make sure to evaluate and check the char ac ter is tics of
Fixed Metal (Oxide) Film Resistors mounted on your product rather than only depending on the calculated
pow er limit or steady-state conditions to complete the de sign or decide to use the resistors.
12. Do not apply excessive tension to the terminals.
Sep. 201402
Panasonic A
Safety Precautions (Common precautions for Fixed Resistors)
When using our products, no matter what sort of equipment they might be used for, be sure to make a written
agreement on the specifications with us in advance. The design and specifications in this catalog are subject
to change without prior notice.
Do not use the products beyond the specifications described in this catalog.
This catalog explains the quality and performance of the products as individual components. Before use, check
and evaluate their operations when installed in your products.
Install the following systems for a failsafe design to ensure safety if these products are to be used in equip ment
where a defect in these products may cause the loss of human life or other significant dam age, such as damage to
vehicles (automobile, train, vessel), traffic lights, medical equipment, aerospace equipment, electric heating
appliances, combustion/gas equipment, rotating equipment, and disaster/crime prevention equipment.
Systems equipped with a protection circuit and a protection device
Systems equipped with a redundant circuit or other system to prevent an unsafe status in the event of a sin gle fault
(1) Precautions for use
These products are designed and manufactured for general and standard use in general elec tron ic equipment
(e.g. AV equipment, home electric appliances, office equipment, information and communication equipment)
These products are not intended for use in the following special conditions. Before using the products,
carefully check the effects on their quality and performance, and determine whether or not they can be used.
1. In liquid, such as water, oil, chemicals, or organic solvent
2. In direct sunlight, outdoors, or in dust
3. In salty air or air with a high concentration of corrosive gas, such as Cl2, H2S, NH3, SO2, or NO2
4. Electric Static Discharge (ESD) Environment
These components are sensitive to static electricity and can be damaged under static shock (ESD).
Please take measures to avoid any of these environments.
Smaller components are more sensitive to ESD environment.
5. Electromagnetic Environment
Avoid any environment where strong electromagnetic waves exist.
6. In an environment where these products cause dew condensation
7. Sealing or coating of these products or a printed circuit board on which these products are mounted, with
resin or other materials
These products generate Joule heat when energized. Carefully position these products so that their heat will
not affect the other components.
• Carefully position these products so that their temperatures will not exceed the category temperature range due
to the effects of neighboring heat-generating components. Do not mount or place heat-generating components
or inflammables, such as vinyl-coated wires, near these products.
Note that non-cleaning solder, halogen-based highly active flux, or water-soluble flux may deteriorate the
performance or reliability of the products.
• Carefully select a flux cleaning agent for use after soldering. An unsuitable agent may deteriorate the performance
or reliability. In particular, when using water or a water-soluble cleaning agent, be careful not to leave water
residues. Otherwise, the insulation performance may be deteriorated.
(2) Precautions for storage
The performance of these products, including the solderability, is guaranteed for a year from the date of ar riv al
at your company, provided that they remain packed as they were when delivered and stored at a tem per a ture
of 5 °C to 35 °C and a relative humidity of 45 % to 85 %.
Even within the above guarantee periods, do not store these products in the following conditions. Otherwise,
their electrical performance and/or solderability may be deteriorated, and the packaging materials (e.g. taping
materials) may be deformed or deteriorated, resulting in mounting failures.
1. In salty air or in air with a high concentration of corrosive gas, such as Cl2, H2S, NH3, SO2, or NO2
2. In direct sunlight
<Package markings>
Package markings include the product number, quantity, and country of origin.
In principle, the country of origin should be indicated in English.
Sep. 201401
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