Anti-Sulfurated Thick Film Chip Resistors / Anti-Surge Type
Anti-Sulfurated Thick Film Chip Resistors /
Anti-Surge Type
Series: ERJ UP3, UP6, UP8
Features
● High resistance to sulfurization achieved by adopting Anti-Sulfurated electrode materialꢀ
(Ag-Pd-based inner electrode) and structure
● ESD surge characteristics superior to standard metal film resistors
● High reliability… Metal glaze thick film resistive element and three layers of electrodes
● Suitable for both reflow and flow soldering
● High power ……0.25 W:0603 inch / 1608 mm size(ERJUP3)
0.50 W:0805 inch / 2012 mm size(ERJUP6)
0.66 W : 1206 inch / 3216 mm size(ERJUP8)
● Reference Standard … IEC 60115-8,JIS C 5201-8,JEITA RC-2134C
● AEC-Q200 compliant
● RoHS compliant
■ As for Packaging Methods, Land Pattern, Soldering Conditions and Safety Precautions,
Please see Data Files
Explanation of Part Numbers
1
2
3
4
5
6
7
9
10
11
12
8
E
R
J
U
P
6
D
1
0
0
2
V
Product Code
Resistance Tolerance
Size, Power Rating
Resistance Value
Packaging Methods
Packaging
Code
inch
Power Rating
Code
Tolerance
±0.5 %
±1 %
The first two or three digits are
significant figures of resistance and
the third or 4th one denotes
number of zeros following.
Code
V
Part No.
ERJUP3
ERJUP6
ERJUP8
Thick Film
Chip Resistors
UP3
0603
0.25 W
0.50 W
0.66 W
D
F
J
Punched Carrier Taping
4 mm pitch, 5,000 pcs
UP6 0805
UP8 1206
±5 %
Three digit type (±5 %),
Four digit type (±1 %, ±0.5 %)
Ex. 222: 2.2 kΩ, 1002 : 10 kΩ
Ratings
Power
Rating(1)
at 70 °C
(W)
Limiting
Element
Voltage(2)
(V)
Maximum
Overload
Voltage(3)
(V)
Category
Temperature AEC-Q200
Resistance
Tolerance
(%)
Resistance
Range
(Ω)
T.C.R.
(×10-6/K)
Part No.
(inch size)
Range
(℃)
Grade
±0.5, ±1
±5
±100
±200
10 to 1 M
(E24, E96)
ERJUP3
(0603)
–55 to +155
0.25
0.50
150
400
200
Grade 0
Grade 0
1 to 1.5 M (E24)
±0.5, ±1
±100
10 to 1 M
(E24, E96)
ERJUP6
(0805)
–55 to +155
600
R<10 Ω : –100 to +600
10 Ω≤R : ±200
±100
±5
±0.5, ±1
±5
1 to 3.3 M (E24)
10 to 1 M
(E24, E96)
ERJUP8
(1206)
–55 to +155
0.66
500
1000
R<10 Ω : –100 to +600
10 Ω≤R : ±200
Grade 0
1 to 10 M (E24)
(1) Use it on the condition that the case temperature is below the upper category temperature.
(2) Rated Continuous Working Voltage (RCWV) shall be determined from RCWV=√Power Rating × Resistance Value,
or Limiting Element Voltage listed above, whichever less.
(3) Overload Test Voltage (OTV) shall be determined from OTV=Specified Magnification (refer to performance) × RCWV
or Maximum Overload Voltage listed above, whichever less.
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.
29-Jan-20