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TUSB5052 Datasheet(PDF) 64 Page - Texas Instruments |
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TUSB5052 Datasheet(HTML) 64 Page - Texas Instruments |
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64 / 82 page ![]() 9−2 9.1.3 IEPINT: Input Endpoint Interrupt Request Register E7 E6 E5 E4 E3 E2 E1 E0 7 6 5 4 32 10 R/O R/O R/O R/O R/O R/O R/O R/O BIT NAME RESET FUNCTION 7−0 E[7:0] 0 These bits indicate which input endpoint interrupt is pending (IEP 7−0) E[n] = 0 No interrupt pending (n = 7:0). E[n] = 1 Indicates that the corresponding endpoint generated an interrupt. This is set by the hardware and is cleared when the MCU writes to the VECINT register. 9.1.4 OEPINT: Output Endpoint Interrupt Request Register E7 E6 E5 E4 E3 E2 E1 E0 7 6 5 4 32 10 R/O R/O R/O R/O R/O R/O R/O R/O BIT NAME RESET FUNCTION 7−0 E[7:0] 0 These bits indicate which input endpoint interrupt is pending (OEP 7−0). E[n] = 0 No interrupt pending E[n] = 1 Indicates that the corresponding endpoint generated an interrupt. This is set by the hardware and is cleared when the MCU writes to the VECINT register. 9.1.5 VECINT: Vector Interrupt Register This register contains a vector value, which identifies the internal interrupt source that trapped to location 0003H. Writing (any value) to this register removes the vector and updates the next vector value (if another interrupt is pending). Note that the vector value is offset; therefore, its value is in increments of two (bit-0 is set to 0). When no interrupt is pending, the vector is set to 00h (see Table 9−2). As shown, the interrupt vector is divided to two fields: I[2:0] and G[3:0]. The I-field defines the interrupt source within a group (on a first-come-first-served basis). In the G-field, which defines the group number, group G0 is the lowest, and G15 is the highest, priority. G3 G2 G1 G0 I2 I1 I0 0 7 6 5 4 32 10 R/O R/O R/O R/O R/O R/O R/O R/O BIT NAME RESET FUNCTION 0 RSV 0 Reserved 3−1 I[2:0] 000b This field defines the interrupt source in a given group (see Table 9−2). Bit-0 = 0 always; therefore, vector values are offset by two. 7−4 G[3:0] 0x0 This field defines the interrupt group. I[2:0] and G[3:0] combine to produce the actual interrupt vector. |
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