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ADP1653ACPZ-R21 数据表(PDF) 14 Page - Analog Devices |
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ADP1653ACPZ-R21 数据表(HTML) 14 Page - Analog Devices |
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14 / 24 page ![]() ADP1653 Rev. A | Page 14 of 24 2-BIT LOGIC INTERFACE MODE (INTF = 1) In 2-bit logic interface mode, the two control pins, CTRL1 and CTRL0, select whether the part is disabled or operating in indicator LED mode, torch mode, or flash mode, as outlined in Table 7. Table 7. 2-Bit Logic Interface Mode Selection INTF = 1 CTRL1 CTRL0 LED Current Setting Pin Default Current (SETx = H) Disabled 0 0 – – ILED 0 1 SETI ILED = 10 mA Torch 1 0 SETT HPLED = 125 mA Flash 1 1 SETF HPLED = 500 mA The LED current levels for indicator LED mode, torch mode, and flash mode operation are set with separate external resistors tied between ground and the SETI, SETT, and SETF pins, respectively. The resulting reference current into each SETx pin is equal to 1.22 V/RSETx. The reference current multiplied by a fixed ratio sets the relevant LED current. Table 8. Reference Current to LED Current Scaling INTF = 1 CTRL1 CTRL0 LED Current Disabled 0 0 – ILED 0 1 IREF(SETI) × 400 Torch 1 0 IREF(SETT) × 5200 Flash 1 1 IREF(SETF) × 20,800 Alternatively, a default internal current setting is used by tying the SETx pin high. The default current for each mode of operation approximately equals the current obtained with a 50 kΩ resistor tied from the SETx pin to ground. Consequently, the LED current resulting from an external resistor SETx is given by the following equation: SETx DEFAULT LED R I I kΩ 50 × = (1) where IDEFAULT is the LED current resulting from tying the SETx pin high. The values of IDEFAULT are given in Table 7 for indicator LED mode (SETI), torch mode (SETT), and flash mode (SETF) operation. For accurate LED current settings, the minimum SETx resistor values should be 25 kΩ (SETI, SETT) or 50 kΩ (SETF). The flash current can be quickly reduced with an external logic signal (typically 1.8 V logic) by adding a second external resistor from the SETF pin to the logic signal. Bringing this digital input from low to high toggles the flash from normal to reduced current mode by reducing the reference current supplied to the ADP1653 via the SETF pin (see the Applications Information section). I2C INTERFACE MODE (INTF = 0) The ADP1653 includes an I2C-compatible serial interface for control of LED current, as well as for readback of system status registers. The I2C chip address is 0x60 (0110 0000 (binary) in write mode). Figure 26 illustrates the I2C write sequence. The subaddress content selects which of the four ADP1653 registers is written to. Figure 27 shows the I2C read sequence. The ADP1653 sends the data from the register denoted by the subaddress. In this case, the fault register is read (REG3). The register definitions are shown in Figure 28. The lowest bit number (0) represents the least significant bit, and the highest bit number (7) represents the most significant bit. SUBADDRESS CHIP ADDRESS ST 011 0 0 00 0 0 0 SP 0= WRITE ADP1653 RECEIVES DATA 0 Figure 26. I2C Write Sequence SUBADDRESS CHIP ADDRESS CHIP ADDRESS ST 0 110 0 0 0 0 00000 011 0 ST 0 1 1 0 0 0 0 0 1 SP 1= READ ADP1653 SENDS DATA 0= WRITE 0 1 Figure 27. I2C Read Sequence |
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