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LM3535 数据表(PDF) 21 Page - National Semiconductor (TI) |
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LM3535 数据表(HTML) 21 Page - National Semiconductor (TI) |
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21 / 26 page ![]() PWM bit set to ‘1’ (Configuration Register bit [0]). Figure 20 shows how the different blocks (PWM and ALS) influence the LED current. 30082446 FIGURE 20. Current Control Block Diagram ALS + PWM Example In this example, the APDS-9005 sensor detects that the am- bient light has changed to 1 kLux. The voltage at the ALS input is now around 875mV and the ambient light falls within Zone 5. This causes the LED brightness to be a function of Zone Target Register 5 (loaded with 0x7F). Now assume the PWM input is also driven with a 50% duty cycle pulsed waveform. The LED current now becomes: LED CONFIGURATIONS The LM3535 has a total of 8 current sinks capable of sinking 200mA of total diode current. These 8 current sinks are con- figured to operate in three independently controlled lighting regions. GroupA has four dedicated current sinks, while GroupB and GroupC each have one. To add greater lighting flexibility, the LM3535 has two additional drivers (D53 and D62) that can be assigned to either GroupA or GroupB through a setting in the general purpose register. At start-up, the default condition is four LEDs in GroupA, three LEDs in GroupB and a single LED in GroupC (NOTE: GroupC only consists of a single current sink (D1C) under any con- figuration). Bits 53A and 62A in the general purpose register control where current sinks D53 and D62 are assigned. By writing a '1' to the 53A or 62A bits, D53 and D62 become as- signed to the GroupA lighting region. Writing a '0' to these bits assigns D53 and D62 to the GroupB lighting region. With this added flexibility, the LM3535 is capable of supporting appli- cations requiring 4, 5, or 6 LEDs for main display lighting, while still providing additional current sinks that can be used for a wide variety of lighting functions. MAXIMUM OUTPUT CURRENT, MAXIMUM LED VOLTAGE, MINIMUM INPUT VOLTAGE The LM3535 can drive 8 LEDs at 25mA each (GroupA , GroupB, GroupC) from an input voltage as low as 3.2V, so long as the LEDs have a forward voltage of 3.6V or less (room temperature). The statement above is a simple example of the LED drive capability of the LM3535. The statement contains the key ap- plication parameters that are required to validate an LED- drive design using the LM3535: LED current (I LEDx), number of active LEDs (N x), LED forward voltage (VLED), and mini- mum input voltage (V IN-MIN). The equation below can be used to estimate the maximum output current capability of the LM3535: I LED_MAX = [(1.5 x VIN) - VLED - (IADDITIONAL × ROUT)] / [(N x x ROUT) + kHRx] (eq. 1) I LED_MAX = [(1.5 x VIN ) - VLED - (IADDITIONAL × 2.4Ω)] / [(N x x 2.4Ω) + kHRx] I ADDITIONAL is the additional current that could be delivered to the other LED Groups. 21 www.national.com |
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