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 BCcomponents
DATA SHEET
MBA 0204; MBB 0207; MBE 0414 Professional leaded resistors
Product specification Supersedes data of 6th September 2000 File under BCcomponents, BC08 2002 Oct 07
BCcomponents
Product specification
Professional leaded resistors
FEATURES
MBA 0204; MBB 0207; MBE 0414
* Advanced thin film technology * Power dissipation rating up to 1 W * Excellent overall stability: class 0,25 * Wide professional range: 0,22 to 22 M * Green product, supports lead-free soldering.
Sizes DIN: CECC: 0204 A 0207 B 0414 D
light blue protective coating designed for electrical, mechanical and climatic protection. Four or five colour code rings designate the resistance value and tolerance in accordance with IEC 60062. The result of the determined production is verified by an extensive testing procedure performed on 100% of the individual resistors. Only accepted products are stuck directly on the adhesive tapes in accordance with IEC 60286-1. The resistors are suitable for processing on automatic insertion equipment and cutting and bending machines. Excellent solderability is proven, even after extended storage. They are suitable for automatic soldering using wave or dipping. The encapsulation is resistant to all cleaning solvents commonly used in the electronics industry, including alcohols, esters and aqueous solutions. The resistors are completely lead-free, the pure tin plating provides compatibility with lead-free soldering processes. The immunity of the plating against tin whisker growth has been proven under extensive testing. All products comply with the CEFIC-EECA-EICTA list of legal restrictions on hazardous substances. The resistors are tested in accordance with CECC 40101-806 which refers to EN 60115-1 and EN 140100. Approval of conformity is indicated by the CECC logo on the package label. BCcomponents BEYSCHLAG has achieved "Approval of Manufacturer" in accordance with EN 100114-1. This product family of leaded thin film resistors for professional applications is complemented by Zero Ohm Jumpers and isolators. On request, resistors are available with established reliability in accordance with CECC 40101-806 Version E. Please refer to the special data sheet for information on failure rate level, available resistance ranges and ordering codes.
APPLICATIONS
* Industrial * Telecommunication * Medical equipment.
DESCRIPTION MBA 0204, MBB 0207 and MBE 0414 professional leaded thin film resistors are the general purpose resistor for all fields of professional electronics where reliability and stability is of major concern. Typical applications include industrial, telecommunication and medical equipment. Production is strictly controlled and follows an extensive set of instructions established for reproducibility. A homogeneous film of metal alloy is deposited on a high grade ceramic body (85% Al2O3) and conditioned to achieve the desired temperature coefficient. Nickel plated steel termination caps are firmly pressed on the metallised rods. A special laser is used to achieve the target value by smoothly cutting a helical groove in the resistive layer without damaging the ceramics. Connecting wires of electrolytic copper plated with 100% pure tin are welded to the termination caps. The resistor elements are covered by a
2002 Oct 07
2
BCcomponents
Product specification
Professional leaded resistors
QUICK REFERENCE DATA DESCRIPTION CECC size Resistance range Resistance tolerance Temperature coefficient Operation mode Climatic category (LCT/UCT/days) Rated dissipation, P70 Operating voltage, Umax AC/DC Film temperature Max. resistance change at P70 for resistance range, R/R max., after: 1000 h 8000 h 225000 h Specified lifetime Permissible voltage against ambient: 1 minute continuous Failure rate Note 1. 350 V for 1000 h. 300 V 75 V 125 C long term 55/125/56 0,25 W 200 V 155 C standard 55/155/56 0,4 W MBA 0204 A 0,22 to 10 M
MBA 0204; MBB 0207; MBE 0414
MBB 0207 B 0,22 to 22 M
MBE 0414 D 0,22 to 22 M
5%; 1%; 0,5% 50 ppm/K; 25 ppm/K
long term 55/125/56 0,4 W 300 V(1) 125 C 155 C 125 C standard 55/155/56 0,6 W long term 55/125/56 0,65 W 500 V 155 C standard 55/155/56 1,0 W
1 to 332 k
1 to 1 M
1 to 2,4 M
0,25% 0,5% 1,5%
225000 h
0,5% 1,0% -
8000 h
0,25% 0,5% 1,5%
225000 h
0,5% 1,0% -
8000 h
0,2% 0,4% 1,2%
225000 h
0,4% 0,8% -
8000 h
500 V 75 V
800 V 75 V
0,7 x 10-9/h
0,3 x 10-9/h
0,1 x 10-9/h
2002 Oct 07
3
BCcomponents
Product specification
Professional leaded resistors
Table 1 Temperature coefficient and resistance range DESCRIPTION T.C. TOLERANCE 5% MBA 0204 0,22 to 0,91
MBA 0204; MBB 0207; MBE 0414
RESISTANCE VALUE(1.) MBB 0207 0,22 to 0,91 11 M to 22 M MBE 0414 0,22 to 0,91
50 ppm/K
1%
1 to 10 M
1 to 10 M
1 to 22 M
0,5%
10 to 475 k
10 to 1 M
10 to 2,4 M
1%
10 to 475 k
10 to 1 M
10 to 2,4 M
25 ppm/K
0,5% 10 to 475 k 10 to 1 M 10 to 2,4 M
Jumper
-
10 m; Imax = 3,0 A
10 m, Imax = 5,0 A
-
Note 1. Resistance value to be selected from E24 series for 5% tolerance, from E24/E96 series for 1% tolerance and from E24/E192 for 0,5% tolerance. Resistance ranges printed in bold are preferred T.C. / tolerance combinations with optimized availablility.
2002 Oct 07
4
BCcomponents
Product specification
Professional leaded resistors
ORDERING INFORMATION
MBA 0204; MBB 0207; MBE 0414
Components may be ordered by using either a simple clear text ordering code, see "Type description and ordering code" or BCcomponents' unique 12NC. Numeric Ordering code (12NC)
* The resistors have a 12-digit ordering code starting with 2312. * The subsequent 4 digits indicate the resistor type, specification and packaging; see Table 2. * The remaining 4 digits indicate the resistance value:
- The first 3 digits indicate the resistance value. - The last digit indicates the resistance decade in accordance with Table 3. Table 2 12NC ordering code indicating resistor type and packaging DESCRIPTION C1 1000 units 900 3.... 900 1.... 900 5.... 901 1.... 901 5.... 900 90001 910 3.... 910 1.... 910 5.... 911 1.... 911 5.... 910 90001 920 3.... 920 1.... 920 5.... 921 1.... 921 5.... ORDERING CODE 2312 ... ..... BANDOLIER IN BOX TOL. CT 5000 units 905 3.... 905 1.... 905 5.... 906 1.... 906 5.... 905 90001 915 3.... 915 1.... 915 5.... 916 1.... 916 5.... 915 90001
TYPE
T.C.
5% 50 ppm/K
MBA 0204
1% 0,5% 1% 0,5% - 5% 1% 0,5% 1% 0,5% - 5% 1% 0,5% 1% 0,5%
25 ppm/K
jumper
50 ppm/K
MBB 0207
25 ppm/K
jumper
- - - - -
50 ppm/K
MBE 0414
25 ppm/K
Resistance ranges printed in bold are preferred T.C. / tolerance combinations with optimized availability.
2002 Oct 07
5
BCcomponents
Product specification
Professional leaded resistors
Table 3 Last digit of 12NC indicating resistance decade LAST DIGIT 7 8 9 1 2 3 4 5 6
MBA 0204; MBB 0207; MBE 0414
ORDERING EXAMPLE The ordering code of a MBA 0204 resistor, value 47 k and TC 50 with 1% tolerance, supplied on bandolier in a box of 5000 units is: 2312 905 14703.
RESISTANCE DECADE 0,1 to 0,999 1 to 9,99 10 to 99,9 100 to 999 1 k to 9,99 k 10 k to 99,9 k 100 k to 999 k 1 M to 9,99 M 10 M to 99,9 M Type description and ordering code
* We recommend that the clear text ordering code is used to minimize the possibility of errors in order handling.
M B A 0204 - 50 1% CT 47 K
Film type M = metal Product code B = axial leaded
Resistance value see Table 1 Packaging C1 = 1 000 units (cardboard box) CT = 5 000 units (cardboard box) Tolerance 0,5 % 1 % 5 % Temperature coefficient 25 ppm/K 50 ppm/K
Size code A = 0204 B = 0207 E = 0414 DIN size 0204 0207 0414
Jumpers are ordered by the resistance value 0 , e.g. MBA 0204 CT 0R0.
2002 Oct 07
6
BCcomponents
Product specification
Professional leaded resistors
FUNCTIONAL DESCRIPTION Derating
MBA 0204; MBB 0207; MBE 0414
Power Dissipation P
1
MBE 0414 MBB 0207 MBA 0204
W
0,5
0 -50 0 50 70 100
C
150
Ambient Temperature amb
Fig.1 Derating, standard operation.
Power Dissipation P
1
MBE 0414 MBB 0207 MBA 0204
W
0,5
0 -50 0 50 70 100
C
150
Ambient Temperature amb
Fig.2 Derating, long term operation.
2002 Oct 07
7
BCcomponents
Product specification
Professional leaded resistors
Temperature rise
MBA 0204; MBB 0207; MBE 0414
Temperature Rise Tr
80 K 60 40 20 0 0 0,1 0,2 0,3 0,4 0,5 0,6 0,7 0,8 0,9 1 1,1 W 1,2 Load P
MBA 0204 MBB 0207 MBE 0414
Fig.3 Rise of the surface temperature.
Single pulse
Pulse Load Pmax
100 W 10
MBE 0414 MBB 0207 MBA 0204
1
0,1 10 s 100 s 1 ms 10 ms 100 ms 1s 10 s
Pulse Duration ti
Fig.4 Maximum pulse load, single pulse; for permissible resistance change equivalent to 8000 h operation.
2002 Oct 07
8
BCcomponents
Product specification
Professional leaded resistors
Continuous pulses
MBA 0204; MBB 0207; MBE 0414
Continuous Pulse Load Pmax
100 W 10
MBE 0414 MBB 0207 MBA 0204
1
0,1 10 s 100 s 1 ms 10 ms 100 ms 1s 10 s
Pulse Duration ti
Fig.5
Maximum pulse load, continuous pulses; for permissible resistance change equivalent to 8000 h operation.
Pulse voltage
Pulse Voltage Umax
MBE 0414 MBB 0207 MBA 0204
1 kV
100 V 10 s 100 s 1 ms 10 ms 100 ms 1s 10 s Pulse Duration ti
Fig.6 Maximum pulse voltage, single and continuous pulses; for permissible resistance change equivalent to 8000 h operation.
2002 Oct 07
9
BCcomponents
Product specification
Professional leaded resistors
1,2/50 pulse
MBA 0204; MBB 0207; MBE 0414
Test Voltage
10 kV
1 kV
100 V
MBE 0414 MBB 0207 MBA 0204
10 V 10 100 1 k 10 k 100 k 1 M 10 M
Resistance Value R
Pulse load rating in accordance with IEC 60115-1, 4.27; 1,2 s / 50 s; 5 pulses at 12 s intervals; for permissible resistance change 0,5%.
Fig.7
10/700 pulse
Test Voltage
10 kV
1 kV
100 V
MBE 0414 MBB 0207 MBA 0204
10 V 10 100 1 k 10 k 100 k 1 M 10 M
Resistance Value R
Fig.8 Pulse load rating in accordance with IEC 60115-1, 4.27; 10 s / 700 s; 10 pulses at 1 minute intervals; for permissible resistance change 0,5%.
2002 Oct 07
10
BCcomponents
Product specification
Professional leaded resistors
Current noise
MBA 0204; MBB 0207; MBE 0414
Current Noise A1
1 V/V 0,1
MBA 0204 MBB 0207 MBE 0414
0,01 1 k 10 k 100 k 1 M 10 M Resistance Value R
Fig.9 Current noise A1 in accordance with IEC 60195.
2002 Oct 07
11
BCcomponents
Product specification
Professional leaded resistors
MECHANICAL DATA Outlines
MBA 0204; MBB 0207; MBE 0414
L
D
I
I d
M
For dimensions see Table 4.
Fig.10 Outlines.
Table 4
Leaded resistor types, mass and relevant physical dimensions; see Fig.10 Dmax (mm) 1,6 2,5 4,0 Lmax (mm) 3,6 6,3 11,9 dnom (mm) 0,5 0,6 0,8 Imin (mm) 29,0 28,0 31,0 Mmin (mm) 5,0 10,0(1) 15,0 MASS (mg) 125 220 700
TYPE MBA 0204 MBB 0207 MBE 0414 Note
1. For 7,5 M < 10,0 mm, use version MBB 0207 ... L0 without lacquer on the leads.
2002 Oct 07
12
BCcomponents
Product specification
Professional leaded resistors
TESTS AND REQUIREMENTS Essentially all tests are carried out in accordance with the following specifications: EN 140000 / IEC 60115-1, Generic specification (includes tests) EN 140100 / IEC 60115-2, Sectional specification (includes schedule for qualification approval) CECC 40101-806, Detail specification (includes schedule for conformance inspection) Most of the components are approved in accordance with the European CECC-system, where applicable. Table 5 contains only the most important tests. For the full test schedule refer to the documents listed above. The testing also covers most of the requirements specified by EIA/IS-703 and JIS-C-5202.
MBA 0204; MBB 0207; MBE 0414
The tests are carried out in accordance with IEC 60068 and under standard atmospheric conditions in accordance with IEC 60068-1, 5.3. Climatic category LCT/UCT/56 (rated temperature range: Lower Category Temperature, Upper Category Temperature; damp heat, long term, 56 days) is valid. Unless otherwise specified the following values apply: Temperature: 15 C to 35 C Relative humidity: 45% to 75% Air pressure: 86 kPa to 106 kPa (860 mbar to 1 060 mbar). For testing the components are mounted on a test board in accordance with IEC 60115-1, 4.31 unless otherwise specified. In Table 5 only the tests and requirements are listed with reference to the relevant clauses of IEC 60115-1 and IEC 60068-2; a short description of the test procedure is also given.
Table 5 IEC 60115-1 CLAUSE
Test procedures and requirements IEC 60068-2 TEST METHOD REQUIREMENTS PERMISSIBLE CHANGE (R/R) STABILITY CLASS 0,5 1 to 332 k 1 to 1 M 1 to 2,4 M STABILITY CLASS 1 0,22 to < 1 0,22 to < 1 0,22 to < 1 STABILITY CLASS 2 > 332 k > 1 M > 2,4 M
TEST
PROCEDURE
stability for product types: MBA 0204 MBB 0207 MBE 0414 4.5 4.8.4.2
- -
resistance temperature coefficient at 20 / LCT / 20 C and 20 / UCT / 20 C
5%; 1%; 0,5% 50 ppm/K; 25 ppm/K
4.25.1
-
endurance at U = P 70 x R or 70 C: U = Umax; standard 1,5 h on; 0,5 h off operation mode 70 C; 1000 h 70 C; 8000 h
(0,5% + 0,05 ) (1% + 0,05 )
(0,5% + 0,05 ) (1% + 0,05 )
0,5% 1%
-
endurance at U = P 70 x R or 70 C: U = Umax; long term 1,5 h on; 0,5 h off operation mode 70 C; 1000 h 70 C; 8000 h
(0,25% + 0,05 ) (0,5% + 0,05 )
13
(0,25% + 0,05 ) (0,5% + 0,05 )
0,25% 0,5%
2002 Oct 07
BCcomponents
Product specification
Professional leaded resistors
MBA 0204; MBB 0207; MBE 0414
IEC 60115-1 CLAUSE
IEC 60068-2 TEST METHOD
TEST
PROCEDURE
REQUIREMENTS PERMISSIBLE CHANGE (R/R) STABILITY CLASS 0,5 1 to 332 k 1 to 1 M 1 to 2,4 M STABILITY CLASS 1 0,22 to < 1 0,22 to < 1 0,22 to < 1 STABILITY CLASS 2 > 332 k > 1 M > 2,4 M
stability for product types: MBA 0204 MBB 0207 MBE 0414 4.25.3
-
endurance at 125 C; 1000 h upper 155 C; 1000 h category temperature damp heat, steady state climatic sequence: 40 2 C; 56 days; 93 +2/-3% RH
(0,25% + 0,05 ) (0,5% + 0,05 ) (0,5% + 0,05 )
(0,5% + 0,05 ) (1% + 0,05 ) (1% + 0,05 )
1% 2% 2%
4.24 4.23 4.23.2 4.23.3
3 (Ca)
2 (Ba) 30 (Db)
dry heat damp heat, cyclic cold low air pressure damp heat, cyclic cold short time overload
155 C; 16 h 55 C; 24 h; 90 to 100 % RH; 1 cycle
4.23.4 4.23.5 4.23.6
1 (Aa) 13 (M) 30 (Db)
-55 C; 2 h
8,5 kPa; 2 h; 15 to 35 C 55 C; 5 days; 95 to 100 % RH; 5 cycles
(0,5% + 0,05 ) no visible damage (0,1% + 0,01 ) (0,1% + 0,01 ) no visible damage (0,1 % + 0,01 ) no visible damage
(1% + 0,05 ) no visible damage (0,25% + 0,05 ) (0,25% + 0,05 ) no visible damage (0,25% + 0,05 ) no visible damage
marking legible; no visible damage
2% no visible damage 0,5% 0,5% no visible damage 0,5% no visible damage
-
4.13
1 (Aa)
-55 C; 2 h
room temperature; U = 2,5 x P 70 x R or U = 2 x Umax; 5 s
-
4.19
14 (Na)
rapid change 30 minutes at LCT of and temperature 30 minutes at UCT; 5 cycles component solvent resistance resistance to soldering heat solderability isopropyl alcohol +23 C; toothbrush method unmounted components; 260 5 C; 10 1 s +235 C; 2 s solder bath method
4.29
45 (XA)
4.18.2
20 (Tb)
(0,1% + 0,01 ) no visible damage
(0,25% + 0,05 ) no visible damage
0,5% no visible damage
4.17
20 (Ta)
good tinning ( 95% covered); no visible damage
2002 Oct 07
14
BCcomponents
Product specification
Professional leaded resistors
MBA 0204; MBB 0207; MBE 0414
IEC 60115-1 CLAUSE 4.22 4.16
IEC 60068-2 TEST METHOD 6 (B4) 21 (Ua1) 21 (Ub) 21 (Uc)
TEST
PROCEDURE
REQUIREMENTS PERMISSIBLE CHANGE (R/R)
vibration
6 h; 10 to 2000 Hz 1,5 mm or 196 m/s2
(0,1% + 0,01 ) (0,1% + 0,01 )
(0,25% + 0,05 ) (0,25% + 0,05 )
0,5% 0,5%
robustness of tensile, bending and terminations torsion voltage proof Urms = 100 V; 60 s
4.7
-
no flashover or breakdown
2002 Oct 07
15
BCcomponents
Product specification
Professional leaded resistors
MBA 0204; MBB 0207; MBE 0414
ADDITIONAL ORDERING INFORMATION * North american part numbers (NAFTA code)
B0207 C xxxxx F 5T
Type A0204 = MBA0204 B0207 = MBB0207 E0414 = MBE0414 Temperature coefficient (TC) C = 50 ppm/K E = 25 ppm/K
FO R
2003 Apr 14
IN
TE RN
16
AL
US E
ON LY
Package 5T = 5 000 pcs T&R 5A = 5 000 pcs ammo Tolerance D = 0.5% F = 1% Ohmic value (5 digit code) 1 W = 1R000 10 W = 10R00 100 W = 100R0 1kW = 1K000 10kW = 10K00 100kW = 100K0 1MW = 1M000 10MW = 10M00


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