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Número de pieza | HV9901 | |
Descripción | Universal Relay Driver | |
Fabricantes | Supertex Inc | |
Logotipo | ||
Hay una vista previa y un enlace de descarga de HV9901 (archivo pdf) en la parte inferior de esta página. Total 7 Páginas | ||
No Preview Available ! HV9901
Universal Relay Driver
Features
► 10 to 450V input voltage range
► Energy saving hold current mode
► Adjustable microcontroller supply
► Low supply current <1.0mA
► Constant current coil
► Programmable pull-in current, pull-in time,
and hold current
► Efficient PWM operation using the relay
coils’ inductance
Applications
► Industrial controls
► Relay timers
► Solenoid drivers
► Home automation
General Description
The Supertex HV9901 is a BiCMOS/DMOS universal relay driver that
employs PWM switching techniques. It is designed for efficient and energy-
saving operation of a low voltage relay with supply voltages ranging from
10 to 450V DC through utilization of the relay coils’ inductance.
The circuit is capable of operating over a wide input voltage range without
requiring a change of any external components. For example, this will
enable users to use 5.0V coil relays for DC voltages 10 to 450V or AC
voltages up to 240V.
The HV9901 has an internal high-voltage regulator to power internal
PWM circuitry. Additionally, it includes an adjustable auxiliary regulator
with a 1.0mA capability that can be used to supply low power micro
controllers.
The pull-in current, pull-in time and hold current are all program-mable
using only two resistors and a capacitor. The PWM switching frequency
can be either:
- Synchronized to an external clock, or
- Synchronized to other HV9901s, where the synchronized
frequency is the highest free-running frequency.
The enable (ENI) logic input is used to turn the relay on/off. Enable
polarity may be selected via the POL input. Audible noise is prevented
using fixed switching frequencies above 20kHz.
WARNING!!! Galvanic isolation is not provided. Dangerous voltages are
present when connected to the AC line. It is the responsibility of the
designer to ensure adequate safeguards are in place to protect the end
user from electrical shock.
Typical Boost Application Circuit
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
1 page HV9901
Application Information (cont.)
R HDa
R HDb
V IN
C DD
VDD
VREF
C REF
C HD
H/D
VIN
Int
Reg
HV9901
C IN
SYNC
V REF
PWM
GT
CS
RT
Q SW
R SENSE
R OSC
2.0–5.5V
@ 1mA
VCC
R FBa
FB
R FBb
Aux
Reg
POL
ENO
ENI
Figure 2
Pin Description
Pin # Name Description
1 VIN Input supply.
2 - Pin not present
3 - Pin not present
4 GT Gate driver output for driving the external switching MOSFET.
5 CS Current sense input.
6 COM Common. Connect to circuit ground.
7
SYNC
Open-drain input/output for synchronizing the internal PWM oscillator to other HV9901s or to an
external clock.
8 RT A resistor from this pin to ground sets the PWM switching frequency.
9 POL Input that determines the polarity of the ENI input. See the truth table.
10 ENO Enable out. It is the logical inversion of the ENI signal.
11 ENI Enabled input. Whether ENI is active low or active high is determined by the POL input.
12
VCC
Output of the internal auxiliary regulator. Output voltage is determined by the resistive divider con-
nected to the FB pin.
13 FB Feedback input for the auxiliary regulator.
14
H/D
HOLD/DELAY input. An RC network connected to this pin controls the pull-in time and the holding
current. See the equations on page 4.
15 VREF Internal reference voltage. Bypass locally with a 10nF capacitor.
16 VDD Output of the internal regulator. Bypass locally with a 10nF capacitor.
● 1235 Bordeaux Drive, Sunnyvale, CA 94089 ● Tel: 408-222-8888 ● www.supertex.com
5
5 Page |
Páginas | Total 7 Páginas | |
PDF Descargar | [ Datasheet HV9901.PDF ] |
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