ZEN132V230A16LS TE Connectivity, ZEN132V230A16LS Datasheet

ZENER DIODE, 700 MW, 13.4V, SMD

ZEN132V230A16LS

Manufacturer Part Number
ZEN132V230A16LS
Description
ZENER DIODE, 700 MW, 13.4V, SMD
Manufacturer
TE Connectivity
Type
Polymer Enhanced Zener Diode Microassemblyr
Datasheet

Specifications of ZEN132V230A16LS

Zener Voltage Vz Typ
13.4V
Power Dissipation Pd
700mW
Operating Temperature Range
-40°C To +85°C
Diode Case Style
SMD
No. Of Pins
3
Rohs Compliant
Yes
Product Category
Circuit Protection Devices - Passive
Product Classification
Hybrid Devices
Product Type
PolyZen
Vz - Minimal (v)
13.2
Vz - Typical (v)
13.4
Vz - Maximum (v)
13.6
Izt (a)
0.1
Ihold @ 20°c (a)
2.3
Rtyp (?)
0.04
R1max (?)
0.06
Vint Max (v)
16
Vint Max Test Current (a)
5
Iflt Max (a)
+2/-40
Iflt Max Test Voltage (v)
+20/-12V
Construction
Surface Mount
Rohs/elv Compliance
RoHS compliant, ELV compliant
Lead Free Solder Processes
Reflow solder capable to 245°C, Reflow solder capable to 260°C
Rohs/elv Compliance History
Always was RoHS compliant

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0
electronics from damage caused by inductive voltage
spikes, voltage transients, use of incorrect power supplies
and reverse bias.
The PolyZen micro-assembly incorporates a stable
Zener diode for precise voltage clamping and a
resistively non-linear, polymeric positive temperature
coefficient (PPTC) layer that responds to either diode
heating or overcurrent events by transitioning from a
PolyZen devices are polymer enhanced precision Zener
diode micro-assemblies that help protect sensitive
low to high resistance state.
PolyZen devices help provide resettable protection
against damage caused by multi-watt fault events and
require only 0.7W power dissipation. In the event of
sustained high power conditions, the PPTC element of
the device “trips” to limit current and generate voltage
drop. This functionality helps protect both the Zener
and the follow-on electronics, effectively increasing the
diode’s power handling capacity.

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ZEN132V230A16LS Summary of contents

Page 1

PolyZen devices are polymer enhanced precision Zener diode micro-assemblies that help protect sensitive electronics from damage caused by inductive voltage spikes, voltage transients, use of incorrect power supplies and reverse bias. The PolyZen micro-assembly incorporates a stable Zener diode for ...

Page 2

Power Supply (External or internal PolyZen 1 Device + 3 Protected Electronics GND V OUT R Regulated LOAD Output Protected downstream electronics V Polymer PTC OUT Zener Diode GND I I PTC OUT IN ...

Page 3

... Time-to-Trip 0.1 0.01 0.001 80 100 RMS ( FLT OUT A = ZEN056V1yyA24LS/ ZEN065V130A24LS C = ZEN098V130A24LS D = ZEN132V130A24LS E = ZEN164V130A24LS RMS (A) FLT RMS ( FLT OUT A = ZEN056V230A16LS B = ZEN065V230A16LS C = ZEN132V230A16LS RMS (A) FLT RMS ( FLT OUT A = ZENxxxV1yyA24LS/ ZENxxxV230A16LS C = ZENxxxV075A48LS/M -30 -20 - RMS (A) FLT RMS ( PTC FLT A = ZENxxxV1yyA24LS/ ZENxxxV230A16LS C = ZENxxxV075A48LS ...

Page 4

ZEN056V130A24LS vs a 22V/120W Universal Power Supply 35 C Capacitive 30 Current Spike Supply Voltage dropped by current Current Pulled to 25 GND via diode Peak OUT 0 0 0.01 0.02 Typical ...

Page 5

... Time (s) Typical Fault Response: ZEN056V230A16LS 16V, 5.0A Current Limited Source (I OUT ( (V) A OUT (A) FLT 0.00 0.10 0.20 Time (s) Typical Fault Response: ZEN132V230A16LS 20V, 2.0A Current Limited Source (I OUT ( (V) OUT (A) FLT 0.05 0.10 0.15 0.20 ...

Page 6

Pin Configuration (Top View) 2 GND OUT Pad Dimensions 0.94mm (0.037”) 0.33mm 2.21mm (0.013”) (0.087”) 0.94mm (0.037”) 0.56mm 2.88mm 0.56mm (0.022”) (0.1135”) (0.022”) ...

Page 7

MAX Ts MIN 25 Reflow Profile 8.00 4.00 0.35 ± 0.05 Note 3 2.00 ± 0.05 R 0.3 Max Critical Zone Ramp ...

Page 8

Detail A ZEN 056V 130A 24 LS/M & GS Zener Diode Voltage Rating 056 = 5.6V 059 = 5.9V 065 = 6.5V 098 = 9.8V 132 = 13.4V 164 = 16.4V t056 12345 Batch Number Lock Feature ...

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