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Número de pieza SSL1523P
Descripción SMPS ICs
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SSL152x
SMPS ICs for mains LED drivers
Rev. 3 — 17 September 2010
Product data sheet
1. General description
The SSL152x family is a Switched Mode Power Supply (SMPS) controller IC that operate
directly from the rectified universal AC mains. It is implemented in the high-voltage Easy
High Voltage Silicon-On-Insulator (EZ-HV SOI) process, combined with a low-voltage
Bipolar Complementary Metal Oxide Semiconductor (BiCMOS) process. The device
includes a high-voltage power switch and a start-up circuit that operates directly from the
rectified mains voltage.
A dedicated circuit for valley switching is built in, which makes a very efficient slim-line
electronic concept for solid state lighting applications possible.
The SSL152x family can operate in applications with a power range of up to 15 W.
Applications in the range between 15 W and 25 W are more suited to the SSL1623PH.
LED powers above 25 W are more suited to the SSL1750.
In the most basic applications, the SSL152x family act as a voltage source. Here, no
additional secondary electronics are required. A combined voltage and current source can
be realized with minimum costs for external components. Implementation of the SSL152x
family renders an efficient and low cost power supply system for mains LED drivers.
2. Features and benefits
„ Designed for mains LED drivers up to 15 W
„ Integrated power switch:
‹ SSL1522T: 12 Ω; 650 V
‹ SSL1523P: 6.5 Ω; 650 V
„ Operates from universal AC mains supplies (80 V to 276 V)
„ Adjustable frequency for flexible design
„ RC oscillator for load insensitive regulation loop constant
„ Valley switching for minimum switch-on loss
„ Low standby power (< 100 mW) with frequency reduction at low power outputs
„ Adjustable overcurrent protection
„ Undervoltage protection
„ Temperature protection
„ Short-circuit winding protection
„ Simple application with both primary and secondary (opto) feedback
„ Available in DIP8 and SO14 packages

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SSL1523P pdf
NXP Semiconductors
SSL152x
SMPS ICs for mains LED drivers
8. Functional description
The SSL152x family is the heart of a compact flyback converter, with the IC placed at the
primary side. The auxiliary winding of the transformer can be used for indirect feedback to
control the isolated output. This additional winding also powers the IC. A more accurate
control of the output voltage and/or current can be implemented with an additional
secondary sensing circuit and optocoupler feedback.
The SSL152x family uses voltage mode control. The switching frequency is determined by
the maximum transformer demagnetizing time and the frequency of the oscillator. In the
first case, the converter operates in the Self Oscillating Power Supply (SOPS) mode. In
the latter case, it operates at a constant frequency, which can be adjusted with external
components RRC and CRC. Furthermore, a primary stroke is started only in a valley of the
secondary ringing. This can use constant power or constant current mode to drive LEDs.
The valley switching principle minimizes capacitive switch-on losses.
8.1 Start-up and undervoltage lockout
Initially, the IC is self-supplying from the rectified mains voltage. The IC starts switching as
soon as the voltage on pin VCC passes the VCC(startup) level. The supply is taken over by
the auxiliary winding of the transformer as soon as VCC is high enough and the supply
from the line is stopped for high efficiency operation.
If the auxiliary supply is not sufficient, the high-voltage supply also supplies the IC. As
soon as the voltage on pin VCC drops below the VCC(stop) level, the IC stops switching and
restarts from the rectified mains voltage.
8.2 Oscillator
The frequency of the oscillator is set by the external resistor and capacitor on pin RC. The
external capacitor is charged rapidly to the VRC(max) level and, starting from a new primary
stroke, it discharges to the VRC(min) level. Because the discharge is exponential, the
relative sensitivity of the duty factor to the regulation voltage at low duty factor is almost
equal to the sensitivity at high duty factors. This results in a more constant gain over the
duty factor range compared to systems with a linear sawtooth oscillator. Stable operation
at low duty factors is easily realized. For high efficiency, the frequency is reduced as soon
as the duty factor drops below its low power threshold. This is accomplished by increasing
the oscillator charge time.
To ensure that the capacitor can be charged within the charge time, the value of the
oscillator capacitor should be limited to approximately 1 nF.
8.3 Duty factor control
The duty factor is controlled by the internal regulation voltage and the oscillator signal on
pin RC. The internal regulation voltage is equal to the external regulation voltage (minus
2.5 V) multiplied by the gain of the error amplifier (typically 20 dB).
SSL152X
Product data sheet
All information provided in this document is subject to legal disclaimers.
Rev. 3 — 17 September 2010
© NXP B.V. 2010. All rights reserved.
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SSL1523P arduino
NXP Semiconductors
SSL152x
SMPS ICs for mains LED drivers
Table 6. Characteristics …continued
Measurement data valid at Tamb = 25 °C; no overtemperature; all voltages are measured with respect to ground; currents are
positive when flowing into the IC; unless otherwise specified.
Symbol
Parameter
Conditions
Min Typ Max Unit
VBR(DRAIN)
RDSon
tf(DRAIN)
breakdown voltage on pin DRAIN
drain-source on-state resistance
fall time on pin DRAIN
Tj > 0 °C
SSL1522T; Isource = 0.25 A
Tj = 25 °C
Tj = 100 °C
SSL1523P; Isource = 0.50 A
Tj = 25 °C
Tj = 100 °C
Vi = 300 V; no external
capacitor at drain
650
-
-
-
-
-
-
12
17
6.5
9.0
75
-V
13.8 Ω
19.6 Ω
7.5 Ω
10.0 Ω
- ns
Temperature protection
Tprot
Tprot(hys)
protection temperature
hysteresis of protection
temperature
150 160 170 °C
- 2 - °C
SSL152X
Product data sheet
All information provided in this document is subject to legal disclaimers.
Rev. 3 — 17 September 2010
© NXP B.V. 2010. All rights reserved.
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