Contents

 

75

FC TX Timer Value ($ Port_Index + 0x07)

164

76

FD FC Address ($ Port_Index + 0x08 – + 0x09)

164

77

IPG Receive Time 1 ($ Port_Index + 0x0A)

165

78

IPG Receive Time 2 ($ Port_Index + 0x0B)

165

79

IPG Transmit Time ($ Port_Index + 0x0C)

165

80

Pause Threshold ($ Port_Index + 0x0E)

166

81

Max Frame Size (Addr: Port_Index + 0x0F)

166

82

MAC IF Mode and RGMII Speed ($ Port_Index + 0x10)

167

83

Flush TX ($ Port_Index + 0x11)

167

84

FC Enable ($ Port_Index + 0x12)

168

85

FC Back Pressure Length ($ Port_Index + 0x13)

168

86

Short Runts Threshold ($ Port_Index + 0x14)

169

87

Discard Unknown Control Frame ($ Port_Index + 0x15)

169

88

RX Config Word ($ Port_Index + 0x16)

169

89

TX Config Word ($ Port_Index + 0x17)

170

90

Diverse Config Write ($ Port_Index + 0x18)

171

91

RX Packet Filter Control ($ Port_Index + 0x19)

172

92

Port Multicast Address ($ Port_Index +0x1A – +0x1B)

173

93

MAC RX Statistics ($ Port_Index + 0x20 – + 0x39)

174

94

MAC TX Statistics ($ Port_Index +0x40 – +0x58)

178

95

PHY Control ($ Port Index + 0x60)

181

96

PHY Status ($ Port Index + 0x61)

182

97

PHY Identification 1 ($ Port Index + 0x62)

183

98

PHY Identification 2 ($ Port Index + 0x63)

184

99

Auto-Negotiation Advertisement ($ Port Index + 0x64)

184

100

Auto-Negotiation Link Partner Base Page Ability ($ Port Index + 0x65)

185

101

Auto-Negotiation Expansion ($ Port Index + 0x66)

186

102

Auto-Negotiation Next Page Transmit ($ Port Index + 0x67)

187

103

Port Enable ($0x500)

188

104

Interface Mode ($0x501)

188

105

Link LED Enable ($0x502)

189

106

MAC Soft Reset ($0x505)

189

107

MDIO Soft Reset ($0x506)

190

108

CPU Interface ($0x508)

190

109

LED Control ($0x509)

190

110

LED Flash Rate ($0x50A)

191

111

LED Fault Disable ($0x50B)

191

112

JTAG ID ($0x50C)

192

113

RX FIFO High Watermark Port 0 ($0x580)

193

114

RX FIFO High Watermark Port 1 ($0x581)

193

115

RX FIFO High Watermark Port 2 ($0x582)

193

116

RX FIFO High Watermark Port 3 ($0x583)

194

117

RX FIFO Low Watermark Port 0 ($0x58A)

194

118

RX FIFO Low Watermark Port 1 ($0x58B)

194

119

RX FIFO Low Watermark Port 2 ($0x58C)

195

120

RX FIFO Low Watermark Port 3 ($0x58D)

195

121

RX FIFO Overflow Frame Drop Counter Ports 0 - 3 ($0x594 – 0x597)

195

122

RX FIFO Port Reset ($0x59E)

196

123

RX FIFO Errored Frame Drop Enable ($0x59F)

196

124

RX FIFO Overflow Event ($0x5A0)

197

10

 

Datasheet

Document Number: 278757

Revision Number: 009

Revision Date: 27-Oct-2005

Page 10
Image 10
Intel IXF1104 manual 165

IXF1104 specifications

The Intel IXF1104 is a cutting-edge Network Interface Controller (NIC) designed to meet the needs of high-speed communication in modern networking environments. As the demand for bandwidth-intensive applications continues to grow, Intel's IXF1104 is engineered to deliver exceptional performance, reliability, and scalability, making it an ideal choice for data centers and enterprise networks.

One of the main features of the IXF1104 is its support for high-speed Ethernet connectivity, providing up to 100 Gbps throughput. This capability allows organizations to handle large amounts of data traffic efficiently, accommodating everything from cloud computing to big data analytics. The NIC utilizes advanced packet processing technology which ensures minimal latency, enhancing the overall user experience.

The IXF1104 is built on a robust architecture that integrates Intel's latest processing technologies. It incorporates a multi-core processing engine that allows for parallel processing of network packets, improving the handling of simultaneous network requests. This architecture also supports offloading features, freeing up CPU resources for other critical tasks, which optimizes system performance.

In terms of technologies, the IXF1104 supports a variety of standards including Ethernet and Fiber Channel, making it versatile across different networking environments. Its compatibility with industry-standard networking protocols ensures that it can easily integrate into existing frameworks, facilitating seamless upgrades and expansions.

Another significant characteristic of the IXF1104 is its energy efficiency. With Intel’s focus on sustainability, this NIC is designed to consume less power relative to its performance output, thereby reducing overall operational costs for organizations. It employs dynamic power management features that adjust power usage based on demand, which is especially beneficial in large-scale deployments.

Additionally, security features are woven into the IXF1104 design, protecting sensitive data from potential threats. Hardware-based security functions, including encryption capabilities and secure boot processes, ensure that the NIC can safeguard data integrity against unauthorized access.

Overall, the Intel IXF1104 stands out in the crowded NIC market by offering high-performance capabilities, energy efficiency, and robust security features. Its combination of advanced technologies and characteristics positions it as a strategic asset for modern networks, empowering organizations to achieve their connectivity and performance goals in an increasingly data-driven world.