Vishay MTT11000JMAGKWS Wire bondable thin film multi-tap resistor array Datasheet

MTT
www.vishay.com
Vishay Electro-Films
Wire Bondable Thin Film Multi-Tap Resistor Arrays
FEATURES
• Wire bondable
• Selectable values by wire bonding
• Resistance range: 1.1 k to 275 k
• Chip size: 0.038" x 0.038"
• Case: 0404
• Resistor material tantalum nitride, self-passivating
• Oxidized silicon substrate for good power dissipation
Product may not be to scale
The MTT multi-tap resistors offer nineteen taps allowing the
user to select specified increments and a wide range of
values. The desired resistance value is obtained by bonding
the wires to the appropriate pads.
• Ideally suited for hybrid prototyping
These chips are manufactured using Vishay Electro-Films
(EFI) sophisticated Thin Film equipment and manufacturing
technology. The MTT’s are 100 % electrically tested and
visually inspected to MIL-STD-883, method 2032 class
H or K.
APPLICATIONS
• Material categorization: for definitions of compliance
please see www.vishay.com/doc?99912
The MTT series of multi-tap resistor chips are designed to
satisfy the requirements of prototype development and
circuit trimming in hybrid packages through selective
wire-bonding.
TEMPERATURE COEFFICIENT OF RESISTANCE, VALUES, AND TOLERANCES
PARAMETER
Total Resistance Range
10 Resistors Between Pads 1 and 11
10 Resistors Between Pads 11 and 21
Standard Tolerances
VALUE
UNIT
1.1K, 2.75K, 5.5K, 11K, 27.5K, 55K, 110K, 275K

Each 9.1 % of total resistance
Each 0.91 % of total resistance
± 1, ± 5, ± 10, ± 20 of total resistance of all 20 resistors
%
± 250
ppm/°C
TCR
Example:
When the total resistance value is 55 k, the resistors between pads 11 and 21 are 500  each, and the resistors between
pads 1 and 11 are 5 k each.
STANDARD ELECTRICAL SPECIFICATIONS
PARAMETER
VALUE
UNIT
TCR Tracking Between Elements
±5
ppm/°C
Noise, MIL-STD-202, Method 308
-30 typ.
dB
Moisture Resistance, MIL-STD-202, Method 106
± 0.5 max. R/R
%
Stability, 1000 h, +125 °C, 125 mW
± 0.5 max. R/R
%
-55 to +125
°C
Thermal Shock, MIL-STD-202, Method 107, Test Condition F
± 0.25 max. R/R
%
High Temperature Exposure ± 150 °C, 100 h
± 0.5 max. R/R
%
200
V
Operating Temperature Range
Dielectric Voltage Breakdown
Insulation Resistance
1012
min.

Operating Voltage
100 max.
V
0.250, total R
W
± 0.25 max. R/R
%
DC Power Rating at +70 °C (Derated to Zero at +175 °C)
5x Rated Power Short-Time Overload, +25 °C, 5 s
Revision: 06-Apr-17
Document Number: 61046
1
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
MTT
www.vishay.com
Vishay Electro-Films
DIMENSIONS in inches
0.038
0.009
0.038
0.004
21
0.004
0.009
0.004
0.004
TYPICAL RANGE
1.1 kΩ to 5.5 kΩ
TYPICAL RANGE
11 kΩ to 275 kΩ
SCHEMATIC
R
R
R
21
R
R
R
R
R
R
R
10R
10R
10R
10R
10R
10R
10R
10R
10R
R T = 110 R
10R
1
MECHANICAL SPECIFICATIONS
PARAMETER
Chip Size
0.038" x 0.038" ± 0.002" (0.965 mm x 0.965 mm ± 0.05 mm)
Chip Thickness
0.010" ± 0.002" (0.254 mm ± 0.05 mm)
Chip Substrate Material
Oxidized silicon, 10 kÅ minimum SiO2
Resistor Material
Tantalum nitride, self-passivating
Bonding Pads
0.004" x 0.004" (0.10 mm x 0.10 mm)
Number of Pads
21
Pad Material
10 kÅ minimum aluminum
Backing
None, lapped semiconductor silicon
GLOBAL PART NUMBER INFORMATION
Global Part Number: MTT11002KMANHWS
Global Part Number Description: MTT 110K 10 %, 250 ppm/°C, Al termination, no back metal, class H, WS
M
T
T
MODEL
RESISTANCE
MTT
First 4 digits
are significant
figures of
resistance
1
1
RESISTANCE
MULTIPLIER
CODE
A = 0.1
0=1
1 = 10
2 = 100
0
0
TOL.
CODE
(%)
F = 1.0
G = 2.0
J = 5.0
K = 10
M = 20
L = 25
2
K
TCR
(ppm/°C)
C = ± 50
K = ± 100
M = ± 250
R = 0 / -250
M
A
N
H
W
S
TERMINATION
BACK
METAL
VISUAL
CLASS
PACKAGING
CODE
G = gold
A = aluminum
G = gold
N = none
H = class H
K = class K
WS =
waffle pack
100 min,
1 mult
Historical Part Number: WMTT00210002K (will continue to be accepted)
Revision: 06-Apr-17
Document Number: 61046
2
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Legal Disclaimer Notice
www.vishay.com
Vishay
Disclaimer

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Revision: 08-Feb-17
1
Document Number: 91000
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