Datenblatt für 9350004-399

THERMAL SYSTEMS - m ) RED ma [30,0] 0,59 AWG 22 PVC \NSULATED [150] 7.87 [200] LENGTH . p) BLACK TH‘CKNESS (11) ‘ 0,409 [10.4] Ceramic Mztar . (N202) HOT FACE ' So‘der Construction: 138°C, Bismuth Tin (EiSn) INCHES [ MM] \
Multistage MS Series MS3-119-14-15-22-W8
MFG Part Number: 9350004-399
The MS3-119-14-15-22-W8 multistage thermoelectric cooler is able to
reach colder temperatures than single stage thermoelectric coolers. It has
a maximum Qc of 6.7 Watts when ΔT = 0 and a maximum ΔT of 107 °C
at Qc = 0.
Multistage MS Series Thermoelectric Cooler
Features
High temperature differential
Precise temperature control
Reliable solid-state operation
Environmentally-friendly
DC operation
RoHS-compliant
Applications
Thermoelectric Cooling for CMOS Sensors
Heads-Up Displays, Imaging Sensors
ELECTRICAL AND THERMAL PERFORMANCE
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50
Operating Current (Amps)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
7.00
Qc (Watts)
Heat Pumped at Cold Side
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00
Operating Voltage (Volts)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
7.00
Qc (Watts)
Heat Pumped at Cold Side
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50
Operating Current (Amps)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
7.00
8.00
Operating Voltage (Volts)
Current vs Voltage (I vs V)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
THERMAL Lg) SYSTEMS
Multistage MS Series MS3-119-14-15-22-W8
MFG Part Number: 9350004-399
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50
Operating Current (Amps)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00
Operating Voltage (Volts)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 4.50
Operating Current (Amps)
0.00
5.00
10.00
15.00
20.00
25.00
30.00
35.00
40.00
Qh (Watts)
Total Heat Dissipated at Hot Side (Qh=Qc+Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.00 1.00 2.00 3.00 4.00 5.00 6.00 7.00 8.00
Operating Voltage (Volts)
0.00
5.00
10.00
15.00
20.00
25.00
30.00
35.00
40.00
Qh (Watts)
Total Heat Dissipated at Hot Side (Qh=Qc+Pin)
Thot = 27 °C
ΔT=0°C
ΔT=10°C
ΔT=20°C
ΔT=30°C
ΔT=40°C
ΔT=50°C
ΔT=60°C
0.0 20.0 40.0 60.0 80.0 100.0 120.0
ΔT (°C)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
7.00
Qc (Watts)
Heat Pumped at Cold Side (Qc)
Thot = 27 °C | Current = 3.1 Amps
0.0 20.0 40.0 60.0 80.0 100.0 120.0
ΔT (°C)
0.00
1.00
2.00
3.00
4.00
5.00
6.00
COP
Coefficient of Performance (COP = Qc/Pin)
Thot = 27 °C | Current = 3.1 Amps
' THERMAL Lal , SYSTEMS
Multistage MS Series MS3-119-14-15-22-W8
MFG Part Number: 9350004-399
SPECIFICATIONS*
FINISHING OPTIONS
SEALING OPTIONS
NOTES
Hot Side Temperature
27.0 °C
Qcmax (ΔT = 0)
6.7 Watts
ΔTmax (Qc = 0)
107.0 °C
Imax (I @ ΔTmax)
4.0 Amps
Vmax (V @ ΔTmax)
7.5 Volts
Module Resistance
1.88 Ohms
Max Operating Temperature
80 °C
Weight
22.0 gram(s)
* Specifications reflect thermoelectric coefficients updated March 2020
Suffix
Thickness
Flatness / Parallelism
Hot Face
Cold Face
Lead Length
22
15.203 ±0.203 mm
0.599 ± 0.008 in
0.025 mm / 0.203 mm
0.001 in / 0.008 in
Pre-tinned Pre-tinned
199.9 mm
7.87 in
Suffix
Sealant
Color
Temp Range
Description
None
No sealing specified
1.
Max operating temperature: 80°C
2.
Do not exceed Imax or Vmax when operating module
3.
Reference assembly guidelines for recommended installation
4.
Solder tinning also available on metallized ceramics
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being) accurate and reliable, is provided for information only and does not form part of any contract with Laird. All specifications are subject to change without notice.
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subject to the Laird Terms and Conditions of sale (including Laird’s limited warranty) in effect from time to time, a copy of which will be furnished upon request.
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Date: 04/24/2020