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PDF ISP1106W Data sheet ( Hoja de datos )

Número de pieza ISP1106W
Descripción Advanced Universal Serial Bus transceivers
Fabricantes NXP Semiconductors 
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ISP1105/1106/1107
Advanced Universal Serial Bus transceivers
Rev. 06 — 30 November 2001
Product data
1. General description
The ISP1105/1106/1107 range of Universal Serial Bus (USB) transceivers are fully
compliant with the Universal Serial Bus Specification Rev. 1.1. They are ideal for
portable electronics devices such as mobile phones, digital still cameras, Personal
Digital Assistants (PDA) and Information Appliances (IA).
They allow USB Application Specific ICs (ASICs) and Programmable Logic Devices
(PLDs) with power supply voltages from 1.65 V to 3.6 V to interface with the physical
layer of the Universal Serial Bus. They have an integrated 5 V to 3.3 V voltage
regulator for direct powering via the USB supply VBUS.
The ISP1105/1106/1107 range can be used as a USB device transceiver or a USB
host transceiver. They can transmit and receive serial data at both full-speed
(12 Mbit/s) and low-speed (1.5 Mbit/s) data rates.
ISP1105 allows single/differential input modes selectable by a MODE input and it is
available in HBCC16 package. ISP1106 allows only differential input mode and is
available in both TSSOP16 and HBCC16 packages. ISP1107 allows only
single-ended input mode and is available in both TSSOP16 and HBCC16 packages.
2. Features
s Complies with Universal Serial Bus Specification Rev. 1.1
s Integrated bypassable 5 V to 3.3 V voltage regulator for powering via USB VBUS
s VBUS disconnection indication through VP and VM
s Used as a USB device transceiver or a USB host transceiver
s Supports full-speed (12 Mbit/s) and low-speed (1.5 Mbit/s) serial data rates
s Stable RCV output during SE0 condition
s Two single-ended receivers with hysteresis
s Low-power operation
s Supports an I/O voltage range from 1.65 V to 3.6 V
s 4 kV on-chip ESD protection
s Full industrial operating temperature range 40 to +85 °C
s Available in small TSSOP16 (except ISP1105) and HBCC16 packages.

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ISP1106W pdf
Philips Semiconductors
ISP1105/1106/1107
Advanced USB transceivers
6.2 Pin description
Table 3: Pin description
Symbol[1] Pin
Type
ISP1105 ISP1106/7 ISP1106/7
HBCC16 HBCC16 TSSOP16
OE 1 1 3 I
RCV
2
2
4
O
VP 3 3 5 O
VM 4 4 6 O
SUSPND 5 5 7 I
MODE
6
I
GND
-[2]
6
8
-
VCC(I/O)
7
7
9
-
SPEED
8
8
10 I
D9 9 11 AI/O
D+ 10 10 12 AI/O
VPO/VO 11 11 13 I
VMO/FSE0 12 12 14 I
Description
input for output enable (CMOS level with respect to VCC(I/O),
active LOW); enables the transceiver to transmit data on
the USB bus
differential data receiver output (CMOS level with respect to
VCC(I/O)); driven LOW when input SUSPND is HIGH; the
output state of RCV is preserved and stable during an SE0
condition
single-ended D+ receiver output (CMOS level with respect
to VCC(I/O)); for external detection of single-ended zero
(SE0), error conditions, speed of connected device; driven
HIGH when no supply voltage is connected to VCC(5.0) and
Vreg(3.3)
single-ended Dreceiver output (CMOS level with respect
to VCC(I/O)); for external detection of single-ended zero
(SE0), error conditions, speed of connected device; driven
HIGH when no supply voltage is connected to VCC(5.0) and
Vreg(3.3)
suspend input (CMOS level with respect to VCC(I/O)); a
HIGH level enables low-power state while the USB bus is
inactive and drives output RCV to a LOW level
mode input (CMOS level with respect to VCC(I/O)); a HIGH
level enables the differential input mode (VPO, VMO)
whereas a LOW level enables a single-ended input mode
(VO, FSE0). see Table 5 and Table 6
ground supply
supply voltage for digital I/O pins (1.65 to 3.6 V). When
VCC(I/O) is not connected, the (D+, D) pins are in
three-state. This supply pin is totally independent of
VCC(5.0) and Vreg(3.3) and must never exceed the Vreg(3.3)
voltage.
speed selection input (CMOS level with respect to VCC(I/O));
adjusts the slew rate of differential data outputs D+ and D
according to the transmission speed:
LOW: low-speed (1.5 Mbit/s)
HIGH: full-speed (12 Mbit/s)
negative USB data bus connection (analog, differential); for
low-speed mode connect to pin Vpu(3.3) via a 1.5 kresistor
positive USB data bus connection (analog, differential); for
full-speed mode connect to pin Vpu(3.3) via a 1.5 kresistor
driver data input (CMOS level with respect to VCC(I/O),
Schmitt trigger); see Table 5 and Table 6
driver data input (CMOS level with respect to VCC(I/O),
Schmitt trigger); see Table 5 and Table 6
9397 750 08872
Product data
Rev. 06 — 30 November 2001
© Koninklijke Philips Electronics N.V. 2001. All rights reserved.
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ISP1106W arduino
Philips Semiconductors
ISP1105/1106/1107
Advanced USB transceivers
Table 14: Static characteristics: digital pins
VCC(I/O) = 1.65 to 3.6 V; VGND = 0 V; Tamb = 40 to +85 °C; unless otherwise specified.
Symbol
Parameter
Conditions
Min Typ
VCC(I/O) = 1.65 to 3.6 V
Input levels
VIL
VIH
Output levels
LOW-level input voltage
HIGH-level input voltage
-
0.6VCC(I/O)
-
-
VOL LOW-level output voltage
VOH HIGH-level output voltage
Leakage current
IOL = 100 µA
IOL = 2 mA
IOH = 100 µA
IOH = 2 mA
--
--
VCC(I/O) 0.15 -
VCC(I/O) 0.4 -
ILI input leakage current
Example 1: VCC(I/O) = 1.8 V ± 0.15 V
Input levels
--
VIL
VIH
Output levels
LOW-level input voltage
HIGH-level input voltage
--
1.2 -
VOL LOW-level output voltage
VOH HIGH-level output voltage
Example 2: VCC(I/O) = 2.5 V ± 0.2 V
Input levels
IOL = 100 µA
IOL = 2 mA
IOH = 100 µA
IOH = 2 mA
--
--
1.5 -
1.25 -
VIL
VIH
Output levels
LOW-level input voltage
HIGH-level input voltage
--
1.7 -
VOL LOW-level output voltage
VOH HIGH-level output voltage
Example 3: VCC(I/O) = 3.3 V ± 0.3 V
Input levels
IOL = 100 µA
IOL = 2 mA
IOH = 100 µA
IOH = 2 mA
--
--
2.15 -
1.9 -
VIL
VIH
Output levels
LOW-level input voltage
HIGH-level input voltage
--
2.15 -
VOL LOW-level output voltage
VOH HIGH-level output voltage
Capacitance
IOL = 100 µA
IOL = 2 mA
IOH = 100 µA
IOH = 2 mA
--
--
2.85 -
2.6 -
CIN input capacitance
pin to GND
-
-
Max Unit
0.3VCC(I/O)
-
V
V
0.15 V
0.4 V
-V
-V
±1 µA
0.5 V
-V
0.15 V
0.4 V
-V
-V
0.7 V
-V
0.15 V
0.4 V
-V
-V
0.9 V
-V
0.15 V
0.4 V
-V
-V
10 pF
9397 750 08872
Product data
Rev. 06 — 30 November 2001
© Koninklijke Philips Electronics N.V. 2001. All rights reserved.
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