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PCF8536AT 数据表(PDF) 34 Page - NXP Semiconductors |
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PCF8536AT 数据表(HTML) 34 Page - NXP Semiconductors |
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34 / 103 page ![]() PCA8530 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2014. All rights reserved. Product data sheet Rev. 2 — 25 September 2014 34 of 103 NXP Semiconductors PCA8530 Automotive 102 x 4 Chip-On-Glass LCD segment driver External capacitors of 100 nF minimum are required on each of the pins VDD1 to VDD3. VDD1 to VDD3 can be connected to the same power supply. In this case, a capacitor of 300 nF minimum is required. VSS1 to VSS3 can be connected to the same ground supply. The VLCD pins (VLCDOUT, VLCDSENSE, VLCDIN) can be connected, whether VLCD is generated internally or supplied from external. An external capacitor of 300 nF minimum is recommended for VLCD. For high display loads, 1 F is suggested. 8.10 LCD voltage 8.10.1 VLCD pins The PCA8530 has 3 VLCD pins: VLCDIN — VLCD supply input VLCDOUT — VLCD voltage output VLCDSENSE — VLCD regulation circuitry input The VLCD voltage can be generated on-chip or externally supplied. 8.10.2 External VLCD supply When the external VLCD supply is selected (CPE = 0), the VLCD voltage must be supplied to the pin VLCDIN. The pins VLCDOUT and VLCDSENSE can be left unconnected or alternatively connected to VLCDIN. The internal charge pump must not be enabled, otherwise an extra current may occur on pin VDD2 and pin VLCD. When VLCD is supplied externally, no internal temperature compensation occurs on this voltage even if bit TCE is set logic 1 (see Section 8.10.4). The VLCD voltage which is supplied externally will be available at the segments and backplanes of the device through the chosen bias system. Also programming the V[8:0] bit field has no effect on the externally supplied VLCD. 8.10.3 Internal VLCD generation When the internal VLCD generation is selected (CPE = 1), the VLCD voltage is available on pin VLCDOUT. The pins VLCDIN and VLCDSENSE must be connected to the pin VLCDOUT. VLCD can be generated by an on-chip charge pump and controlled by command (Table 15 on page 15). The VLCD voltage is available on pin VLCDOUT. The charge pump is controlled by the Charge-pump-ctrl command (see Table 14 on page 15). It can be enabled with the CPE bit. The multiplier setting can be configured with the CPC[2:0] bits. The charge pump can generate a VLCD up to 5 VDD2. 8.10.3.1 VLCD programming VLCD can be programmed by using the V[8:0] (see Table 15 on page 15). The final value of VLCD is a combination of the programmed V[8:0] value and the output of the temperature compensation block, VT[8:0] (see Equation 2). The system is exemplified in Figure 14. |
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