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CR6929 Ver la hoja de datos (PDF) - Philips Electronics

Número de pieza
componentes Descripción
Fabricante
CR6929
Philips
Philips Electronics Philips
CR6929 Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
Philips Semiconductors
Triple video driver hybrid amplifier
Product specification
CR6929
FEATURES
Transition times (10 to 90%) with 45 V (p-p) swing and
CL = 10 pF:
– rise time (typ.) 2.5 ns
– fall time (typ.) 2.1 ns
Small 11-pin package
Optimized for low supply voltages up to 90 V
Design optimized for excellent smearing performance
Low power consumption: 11 W with 25 MHz square
wave
Gold metallization ensures excellent reliability.
DESCRIPTION
The CR6929 is a 3-channel hybrid RGB-amplifier module
in an 11-pin SOT451A package. Being an Active Load
amplifier, the CR6929 combines a high bandwidth with a
relatively low and constant dissipation. It is the
pin-compatible 11-pin successor to the 12-pin CR6928
and CR6727 modules.
An optimized design, together with innovative application
recommendations, ensure excellent smearing
performance.
A member of the ‘29-family’ of active loads, the CR6929 is
optimized for low static dissipation. Other ‘29-family’
members are designed for higher bias currents, this being
denoted by an ‘A’ in the name, where CR6729A is
intended for lower supply voltages, and CR6929A is
intended for highest monitor performance.
APPLICATIONS
High-end CRT monitors with low static dissipation and
pixel frequencies up to 250 MHz.
PINNING
PIN
1
2, 6, 10
3
4, 8
5
7
9
11
DESCRIPTION
input 1
ground
output 1
supply voltage (VS)
input 2
output 2
input 3
output 3
handbook, halfpage
1
Front view
11
MBK056
Fig.1 Simplified outline SOT451A.
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL
PARAMETER
VS
supply voltage (DC)
Tmb
operating mounting base temperature
Tstg
storage temperature
MIN.
20
40
MAX.
110
+110
+125
UNIT
V
°C
°C
RECOMMENDED OPERATING CONDITIONS
SYMBOL
VS
Tmb
Tstg
PARAMETER
supply voltage (DC)
operating mounting base temperature
storage temperature
MIN.
20
40
MAX.
90
+100
+125
UNIT
V
°C
°C
1998 Sep 21
2

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