NXP PLVA650A, PLVA653A, PLVA656A, PLVA659A, PLVA662A Schematic [ru]

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DATA SH EET
ook, halfpage
DISCRETE SEMICONDUCTORS
M3D088
PLVA6xxA series
Low-voltage avalanche regulator diodes
Product data sheet Supersedes data of 1999 May 25
2004 Jan 14
NXP Semiconductors Product data sheet
Top view
Low-voltage avalanche regulator diodes PLVA6xxA series

FEATURES

Very low dynamic impedance at low currents:
1
approximately
of conventional series
20
Hard breakdown knee
Low noise: approximately
1
of conventional series
10
Total power dissipation: max. 250 mW
Small tolerances of V
Z
Working voltage range: nominal 5.00 to 6.80 V
Non-repetitive peak reverse power dissipation:
maximal
30 W.

APPLICATIONS

Low current, low power, low noise applications
CMOS RAM back-up circuits
Voltage stabilizers
Voltage limiters
Smoke detector relays.

DESCRIPTION

High performance voltage regulator diodes in small SOT23 plastic SMD packages.

PINNING

PIN DESCRIPTION
1 anode 2 not connected 3 cathode
handbook, halfpage
21
2
n.c.
3
Fig.1 Simplified outline (SOT23) and symbol.
1
3
MAM243
The series consists of PLVA650A to PLVA668A.

MARKING

TYPE NUMBER MARKING CODE
PL VA650A *9A PL VA653A *9B PL VA656A *9C PL VA659A *9D PL VA662A *9E PL VA665A *9F PL VA668A *9G
Note
1. * = p: Made in Hong Kong. * = t: Made in Malaysia. * = W: Made in China.
(1)
2004 Jan 14 2
NXP Semiconductors Product data sheet
Low-voltage avalanche regulator diodes PLVA6xxA series

ORDERING INFORMATION

TYPE
NUMBER
NAME DESCRIPTION VERSION
PACKAGE
PLVA6xxA plastic surface mounted package; 3 leads SOT23

LIMITING VALUES

In accordance with the Absolute Maximum Rating Sys tem (IEC 60134).
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
I
F
I
ZRM
P P T T
ZSM tot stg j
continuous forward current 250 mA repetitive peak working current tp = 100 μs; δ = 10% 250 mA non-repetitive peak reverse power dissipation tp = 100 μs; Tj = 150 °C 30 W total power dissipation T
= 25 °C; note 1 250 mW
amb
storage temperature −65 +150 °C junction temperature 150 °C
Note
1. Device mounted on an FR4 printed circuit-board.
2004 Jan 14 3
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